$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Fiber optic antenna remoting for multi-sector cell sites 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04J-014/02
  • H04B-010/00
  • A01F-012/20
출원번호 US-0898993 (1992-06-15)
발명자 / 주소
  • Tang Douglas D. (Chelmsford MA)
출원인 / 주소
  • GTE Laboratories Incorporated (Waltham MA 02)
인용정보 피인용 횟수 : 293  인용 특허 : 0

초록

A base station in a cellular communications system is connected to a plurality of remote cellular sites by a communications link having a base terminal coupled to a remote terminal by two optical fibers. The base terminal receives RF downlink channels from the base station and optically transmits th

대표청구항

A communication link for transmitting a plurality of radio frequency (RF) downlink signal bands, each including a plurality of RF transmit channels, from a base station to a remote cellular hub, and for transmitting a plurality of RF uplink signal bands, each including a plurality of RF cellular cha

이 특허를 인용한 특허 (293)

  1. Hazani, Ami; Radian, Eytan, Analog distributed antenna systems (DASS) supporting distribution of digital communications signals interfaced from a digital signal source and analog radio frequency (RF) communications signals.
  2. Binder, Yehuda; Hazani, Ami, Apparatus and method for frequency shifting of a wireless signal and systems using frequency shifting.
  3. Dahlfort, Stefan; Laraqui, Kim; Gustafsson, Kåre, Apparatus for communicating a plurality of antenna signals at different optical wavelengths.
  4. Bianchi, Charles H.; Greenwood, Ken C.; Sabat, Jr., John, Architecture for signal and power distribution in wireless data network.
  5. Bianchi, Charles H.; Greenwood, Ken C.; Sabat, Jr., John, Architecture for signal and power distribution in wireless data network.
  6. Bianchi, Charles H.; Greenwood, Ken C.; Sabat, Jr., John, Architecture for signal and power distribution in wireless data network.
  7. Bianchi, Charles H.; Greenwood, Ken C.; Sabat, Jr., John, Architecture for signal and power distribution in wireless data network.
  8. Bianchi, Charles H.; Greenwood, Ken C.; Sabat, Jr., John, Architecture for signal distribution in wireless data network.
  9. Phillips, Melvin Richard; Holt, Sr., Jefferson Logan; Meador, William C., Auto-discovery in a switch.
  10. Trisno,Tjandra; Freckmann,Chris L, Automatic assignment of addresses to nodes in a network.
  11. Trisno,Tjandra; Freckmann,Chris L., Automatic assignment of addresses to nodes in a network.
  12. Trisno,Tjandra; Freckmann,Chris L., Automatic assignment of addresses to nodes in a network.
  13. Lomp, Gary R.; Ozluturk, Faith M.; Kowalski, John, Automatic power control system for a code division multiple access (CDMA) communications system.
  14. Chow, Bruce Cinkai; Yee, Ming Li, Autonomous proximity-based standby mode switching remote antenna unit.
  15. Fischer, Larry G.; Tolstrup, Morten, Backfire distributed antenna system (DAS) with delayed transport.
  16. Hiramatsu,Katsuhiko; Kato,Osamu, Base station apparatus provided with array antennas.
  17. Nomoto, Akihiro, Base station device and signal processing method.
  18. Frey,James E.; Iverson,Myren, Bi-directional single fiber optic link for data and radio frequency transmissions.
  19. Uyehara, Lance K.; Zavadsky, Dean; Golubovic, Boris, Bitrate efficient transport through distributed antenna systems.
  20. Uyehara, Lance K.; Zavadsky, Dean; Golubovic, Boris, Bitrate efficient transport through distributed antenna systems.
  21. Uyehara, Lance K.; Zavadsky, Dean; Golubovic, Boris, Bitrate efficient transport through distributed antenna systems.
  22. Uyehara, Lance K.; Zavadsky, Dean; Golubovic, Boris, Bitrate efficient transport through distributed antenna systems.
  23. Hazani, Ami, Cabling connectivity monitoring and verification.
  24. Fischer Larry G. (Waseca MN) Wala Philip M. (Waseca MN) Brennan Jeffrey (Waseca MN), Cellular communications system having passive handoff.
  25. Russell David S. (Minneapolis MN) Fischer Larry G. (Waseca MN) Wala Philip M. (Waseca MN) Ratliff Charles R. (Crystal Lake IL) Brennan Jeffrey (Waseca MN), Cellular communications system with centralized base stations and distributed antenna units.
  26. Fischer Larry G. ; Ratliff Charles R. ; Wala Philip M., Cellular communications system with sectorization.
  27. Fischer, Larry G.; Russell, David S.; Wala, Philip M.; Ratliff, Charles R.; Brennan, Jeffrey O., Cellular communications system with sectorization.
  28. Fischer, Larry G.; Russell, David S.; Wala, Philip M.; Ratliff, Charles R; Brennan, Jeffrey O., Cellular communications system with sectorization.
  29. Fischer,Larry G.; Russell,David S.; Wala,Philip M.; Ratliff,Charles R.; Brennan,Jeffrey O., Cellular communications system with sectorization.
  30. Newell,Laurence J.; Coward,James F., Channel gain control for an optical communications system utilizing frequency division multiplexing.
  31. Hedin, John M.; Stuart, Steven B.; Forland, Jody, Clock priority chain level systems and methods.
  32. Ozluturk, Fatih M.; Jacques, Alexander M.; Lomp, Gary R.; Kowalski, John, Code division multiple access (CDMA) communication system.
  33. Casini,Andrea; Faccin,Pier, Communication network in particular for telephony.
  34. Shapira, Isaac; Saban, Ofer; Hazani, Ami, Communication system using cables carrying ethernet signals.
  35. Saban, Ofer; Shapira, Isaac; Shapira, Yair Zeev, Communication system using low bandwidth wires.
  36. Shapira, Isaac; Saban, Ofer; Shapira, Yair Zeev, Communication system using low bandwidth wires.
  37. Hazani, Ami, Connection mapping in distributed communication systems.
  38. Miyashita, Atsushi; Akiyama, Toshiyuki; Sano, Seiichi; Koda, Hisao; Ishida, Itsuo; Takesue, Hiroyuki; Nakada, Tatsuhiro; Tsukamoto, Nobuo, Data transmission system, data transmission communication station, and data transmission method.
  39. Stuart, Steven B., Delay management for distributed communications networks.
  40. Cune, William Patrick; Greene, Jason Elliott; Toure', Mohamed Lamin, Deployable wireless infrastructures and methods of deploying wireless infrastructures.
  41. Berlin, Igor; Pikula, Dragan; Sauer, Michael; Schmidt, Gerald B., Determining propagation delay of communications in distributed antenna systems, and related components, systems, and methods.
  42. Berlin, Igor; Pikula, Dragan; Sauer, Michael; Schmidt, Gerald B., Determining propagation delay of communications in distributed antenna systems, and related components, systems, and methods.
  43. Berlin, Igor; Pikula, Dragan; Sauer, Michael; Schmidt, Gerald B., Determining propagation delay of communications in distributed antenna systems, and related components, systems, and methods.
  44. Beamon, Hubert B.; Blackwell, Chois A.; Brower, Boyd Grant, Digital data services and/or power distribution in optical fiber-based distributed communications systems providing digital data and radio frequency (RF) communications services, and related components and methods.
  45. Beamon, Hubert Blair; Blackwell, Jr., Chois Alven; Brower, Boyd Grant, Digital data services and/or power distribution in optical fiber-based distributed communications systems providing digital data and radio frequency (RF) communications services, and related components and methods.
  46. Harel, Dror; Mizrahi, Gavriel, Digital interface modules (DIMs) for flexibly distributing digital and/or analog communications signals in wide-area analog distributed antenna systems (DASs).
  47. Forrest M. Farhan ; Alberto P. Gaibazzi, Digital optical transmitter.
  48. Gupta, Deepnarayan; Mukhanov, Oleg, Digital radio frequency transceiver system and method.
  49. Harel, Dror; Mizrahi, Gavriel, Digital-analog interface modules (DAIMs) for flexibly distributing digital and/or analog communications signals in wide-area analog distributed antenna systems (DASs).
  50. Zavadsky, Dean; Wala, Philip M.; Wiwel, Bernard K., Digitized reverse link monitor.
  51. Uyehara, Lance K.; Hart, David; Zavadsky, Dean; Fischer, Larry G., Distinct transport path for MIMO transmissions in distributed antenna systems.
  52. Uyehara, Lance K.; Hart, David; Zavadsky, Dean; Fischer, Larry G., Distinct transport path for MIMO transmissions in distributed antenna systems.
  53. Scheinert, Stefan, Distributed antenna communications system.
  54. Scheinert, Stefan, Distributed antenna communications system.
  55. Scheinert, Stefan, Distributed antenna communications system.
  56. Scheinert, Stefan, Distributed antenna communications system and methods of implementing thereof.
  57. Cune, William Patrick; Deutsch, Bernhard Arthur Maria; Greene, Jason Elliott; Knuth, Thomas, Distributed antenna system architectures.
  58. Berlin, Igor; Oren, Yair; Reuven, Rami; Saban, Ofer; Shapira, Isaac, Distributed antenna system for MIMO technologies.
  59. Berlin, Igor; Oren, Yair; Reuven, Rami; Saban, Ofer; Shapira, Isaac, Distributed antenna system for MIMO technologies.
  60. Berlin, Igor; Oren, Yair; Reuven, Rami; Saban, Ofer; Shapira, Isaac, Distributed antenna system for MIMO technologies.
  61. Oren, Yair; Berlin, Igor; Reuven, Rami; Saban, Ofer; Shapira, Isaac, Distributed antenna system for MIMO technologies.
  62. Oren, Yair; Berlin, Igor; Saban, Ofer; Shapira, Isaac; Reuven, Rami, Distributed antenna system for MIMO technologies.
  63. Oren, Yair; Berlin, Igor; Saban, Ofer; Shapira, Isaac; Reuven, Rami, Distributed antenna system for MIMO technologies.
  64. Uyehara, Lance K.; Fischer, Larry G.; Stratford, Scott, Distributed antenna system using time division duplexing scheme.
  65. Uyehara, Lance K.; Fischer, Larry G.; Stratford, Scott, Distributed antenna system using time division duplexing scheme.
  66. Fischer, Larry G.; Uyehara, Lance K., Distributed antenna system with combination of both all digital transport and hybrid digital/analog transport.
  67. Fischer, Larry G.; Uyehara, Lance K., Distributed antenna system with combination of both all digital transport and hybrid digital/analog transport.
  68. Bauman, Donald R.; Wala, Philip M.; Brennan, Jeffrey O., Distributed digital antenna system.
  69. Uyehara, Lance K.; Fischer, Larry G.; Hart, David; Zavadsky, Dean, Distributed digital reference clock.
  70. Uyehara, Lance K.; Fischer, Larry G.; Hart, David; Zavadsky, Dean, Distributed digital reference clock.
  71. Uyehara, Lance K.; Fischer, Larry G.; Hart, David; Zavadsky, Dean, Distributed digital reference clock.
  72. Koziy, Robert J.; Roberts, Harold A.; Schieffert, Todd, Distributed remote base station system.
  73. Hazani, Ami; Nisan, Ofer, Distribution of time-division multiplexed (TDM) management services in a distributed antenna system, and related components, systems, and methods.
  74. Hazani, Ami; Nisan, Ofer, Distribution of time-division multiplexed (TDM) management services in a distributed antenna system, and related components, systems, and methods.
  75. Lee Jun-Sung,KRX ; Sim Dae-Hyun,KRX, Duplex outdoor base station transceiver subsystem utilizing a hybrid system of a high power amplifier and an optic antenna.
  76. Kobyakov, Andrey; Sauer, Michael, Dynamic cell bonding (DCB) for radio-over-fiber (RoF)-based networks and communication systems and related methods.
  77. Kobyakov, Andrey; Sauer, Michael, Dynamic cell bonding (DCB) for radio-over-fiber (RoF)-based networks and communication systems and related methods.
  78. Kobyakov, Andrey; Sauer, Michael, Dynamic cell bonding (DCB) for radio-over-fiber (RoF)-based networks and communication systems and related methods.
  79. Conyers, David J.; Cannon, Jeffrey J.; Hedin, John M.; Weaver, Douglas D.; Sonbarse, Santosh K.; Mitchell, William J.; Hermel, Michael J.; Bauman, Donald R.; Toms, Jerry E., Dynamic frequency hopping.
  80. Conyers, David J.; Cannon, Jeffrey J.; Weaver, Douglas D.; Sonbarse, Santosh K.; Mitchell, William J.; Hermel, Michael J.; Bauman, Donald R.; Toms, Jerry Edward, Dynamic readjustment of power.
  81. Conyers, David J.; Cannon, Jeffrey J.; Fischer, Larry G.; Weaver, Douglas D.; Sonbarse, Santosh K.; Mitchell, William J.; Hermel, Michael J.; Bauman, Donald R.; Toms, Jerry Edward; Wala, Philip M., Dynamic reallocation of bandwidth and modulation protocols.
  82. Conyers, David J.; Cannon, Jeffrey J.; Fischer, Larry G.; Weaver, Douglas D.; Sonbarse, Santosh K.; Mitchell, William J.; Hermel, Michael J.; Bauman, Donald R.; Toms, Jerry Edward; Wala, Philip M., Dynamic reallocation of bandwidth and modulation protocols.
  83. Hedin, John M.; Weaver, Douglas D.; Sonbarse, Santosh K.; Mitchell, William J.; Hermel, Michael J.; Bauman, Donald R.; Toms, Jerry Edward, Dynamic reconfiguration of resources through page headers.
  84. Adam L. Schwartz ; Kam-Yin Lau, Dynamic sectorization in a CDMA cellular system employing centralized base-station architecture.
  85. Sternowski,Robert H., Electro optical microwave communications system.
  86. Grenier, James Robert; Hedin, John M., End-to-end delay management for distributed communications networks.
  87. Schmidt, Robert D.; Jain, Rahul; Schutzer, Mark F.; Uyehara, Lance K.; Peleg, Gilad; O'Connell, John; Vardi, Ilan, Enterprise mobile network for providing cellular wireless service using licensed radio frequency spectrum and internet protocol backhaul.
  88. Schmidt, Robert D.; Jain, Rahul; Schutzer, Mark F.; Uyehara, Lance K.; Peleg, Gilad; O'Connell, John; Vardi, Ilan, Enterprise mobile network for providing cellular wireless service using licensed radio frequency spectrum and supporting multiple-device ring for incoming calls.
  89. Schmidt, Robert D.; Jain, Rahul; Schutzer, Mark F.; Uyehara, Lance K.; Peleg, Gilad; O'Connell, John; Vardi, Ilan, Enterprise mobile network for providing cellular wireless service using licensed radio frequency spectrum and the session initiation protocol.
  90. Schmidt, Robert D.; Jain, Rahul; Schutzer, Mark F.; Uyehara, Lance K.; Peleg, Gilad; O'Connell, John; Vardi, Ilan, Enterprise mobile network for providing cellular wireless service using licensed radio frequency spectrum and the session initiation protocol.
  91. Shapira, Isaac; Shapira, Yair; Zatloukal, Catherine, Extending outdoor location based services and applications into enclosed areas.
  92. Easton, Martyn N.; Renfro, Jr., James G.; Sauer, Michael, Fiber optic cable and fiber optic cable assembly for wireless access.
  93. Chang, Lee-Chuan; Huang, Wen-Jye; Chiou, Chuang-Chun; Chen, Cheng-Yen, Fiber-optic communication apparatus capable of operating in a normal mode and a power calibration mode, and communication device used within the same.
  94. Berlin, Igor; Cune, William Patrick; Mizrahi, Gavriel, Flexible head-end chassis supporting automatic identification and interconnection of radio interface modules and optical interface modules in an optical fiber-based distributed antenna system (DAS).
  95. Berlin, Igor; Cune, William Patrick; Mizrahi, Gavriel, Flexible head-end chassis supporting automatic identification and interconnection of radio interface modules and optical interface modules in an optical fiber-based distributed antenna system (DAS).
  96. Harel, Dror, Frequency shifting a communications signal(S) in a multi-frequency distributed antenna system (DAS) to avoid or reduce frequency interference.
  97. Harel, Dror, Frequency shifting a communications signal(s) in a multi-frequency distributed antenna system (DAS) to avoid or reduce frequency interference.
  98. Harel, Dror, Frequency shifting a communications signal(s) in a multi-frequency distributed antenna system (DAS) to avoid or reduce frequency interference.
  99. Molnar, Alyosha C.; Magoon, Rahul; Rampmeier, Keith J., Harmonic cancellation mixer.
  100. George, Jacob; Ng'Oma, Anthony; Sambaraju, Rakesh, Hybrid intra-cell / inter-cell remote unit antenna bonding in multiple-input, multiple-output (MIMO) distributed antenna systems (DASs).
  101. Thelen, Dean Michael; George, Jacob; Zenteno, Luis Alberto; Sauer, Michael; Easton, Martyn N., Hybrid wireless/wired RoF transponder and hybrid RoF communication system using same.
  102. Thelen, Dean Michael; George, Jacob; Zenteno, Luis Alberto; Sauer, Michael; Easton, Martyn N., Hybrid wireless/wired RoF transponder and hybrid RoF communication system using same.
  103. Malach, Adi, IOT automation and data collection system.
  104. Harel, Dror, Individualized gain control of remote uplink band paths in a remote unit in a distributed antenna system (DAS), based on combined uplink power level in the remote unit.
  105. Harel, Dror, Individualized gain control of uplink paths in remote units in a distributed antenna system (DAS) based on individual remote unit contribution to combined uplink power.
  106. Ommodt,Kevin; Melester,Matthew; Maca,Gregory A.; Stone,Donald, Indoor wireless voice and data distribution system.
  107. Li, Yongqing; Vardi, Ilan, Integration of a private cellular system into a unified communications solution.
  108. Xie, Kai; Elyasi, Sattar, Joint channel estimation and modulation detection.
  109. Scheinert, Stefan; Walther, Peter, Localization of a mobile device in distributed antenna communications system.
  110. Scheinert, Stefan; Walther, Peter, Localization of a mobile device in distributed antenna communications system.
  111. Wala, Philip M.; Zavadsky, Dean; Forland, Jody; Cannon, Jeffrey J.; Hedin, John M., Master reference for base station network interface sourced from distributed antenna system.
  112. Braz, Oliver; Eisenwinter, Stefan; Schmalisch, Mathias; Stefanik, Joerg; Schmid, Peter, Master unit, remote unit and multiband transmission system.
  113. Sonbarse, Santosh K.; Hedin, John M.; Cannon, Jeffrey J.; Schatz, Paul; Kremer, Michael; Mitchell, William J., Mechanism to upgrade system capability without affecting service.
  114. Wiwel, Bernard K.; Brennan, Jeffrey O.; Wala, Philip M.; Cannon, Jeffrey J.; Zavadsky, Dean, Method and apparatus for digitally equalizing a signal in a distributed antenna system.
  115. Wiwel, Bernard K.; Brennan, Jeffrey O.; Wala, Philip M.; Cannon, Jeffrey J.; Zavadsky, Dean, Method and apparatus for digitally equalizing a signal in a distributed antenna system.
  116. Mani, Sanjay; Cutrer, David, Method and apparatus for multiplexing in a wireless communication infrastructure.
  117. Mani, Sanjay; Cutrer, David, Method and apparatus for multiplexing in a wireless communication infrastructure.
  118. Mani,Sanjay; Cutrer,David, Method and apparatus for multiplexing in a wireless communication infrastructure.
  119. Zavadsky, Dean; Cannon, Jeffrey J.; Hedin, John M., Method and apparatus for muting a digital link in a distributed antenna system.
  120. Jorgenson, Anthony William; Possley, Nicholas Joseph, Method and apparatus for providing a Gigabit Ethernet circuit pack.
  121. Ojanpera Tero (Oulu FIX) Keskitalo Ilkka (Oulu FIX), Method and apparatus for synchronizing subscriber equipment with base stations in a CDMA radio network.
  122. Weckstrom, Mikko, Method and apparatus for synchronizing telecommunications devices via a transmission network.
  123. Rappaport, Theodore; Skidmore, Roger, Method and apparatus for utilizing RF signals to create a site specific representation of an environment.
  124. Mells, Bradley N., Method and apparatus of utilizing RF/microwave and optical mixing techniques to select a given band of an optical transmission.
  125. Rappaport, Theodore S.; Skidmore, Roger R., Method and system for a building database manipulator.
  126. Rappaport, Theodore; Skidmore, Roger, Method and system for a building database manipulator.
  127. Basak, Joydeep K.; Anatha, Veeraraghavan A.; Reifsnider, Eric S.; Skidmore, Roger R.; Yang, Gemel M., Method and system for analysis and visualization of a wireless communications network.
  128. Rappaport,Theodore S.; Skidmore,Roger R., Method and system for analysis, design, and optimization of communication networks.
  129. Rappaport,Theodore; Skidmore,Roger; Sheethalnath,Praveen, Method and system for automated selection of optimal communication network equipment model, position, and configuration.
  130. Bodell Donald H., Method and system for cellular communication with centralized control and signal processing.
  131. Shapiro, Carmi, Method and system for coupling multimode optical fiber to an optical detector.
  132. Rappaport,Theodore; Skidmore,Roger, Method and system for designing or deploying a communications network which allows simultaneous selection of multiple components.
  133. Rappaport,Theodore; Skidmore,Roger; Reifsnider,Eric, Method and system for designing or deploying a communications network which considers component attributes.
  134. Rappaport,Theodore S.; Skidmore,Roger R., Method and system for displaying network performance, cost, maintenance, and infrastructure wiring diagram.
  135. Oren, Yair; Berlin, Igor; Saban, Ofer, Method and system for equalizing cable losses in a distributed antenna system.
  136. Rappaport, Theodore S; Skidmore, Roger R., Method and system for generating a real time bill of materials and evaluating network performance.
  137. Oren, Yair; Saban, Ofer, Method and system for improving uplink performance.
  138. Oren, Yair; Saban, Ofer, Method and system for improving uplink performance.
  139. Saban, Ofer; Shapira, Isaac; Hazani, Ami; Atias, Nissim; Ben Shlomo, Dror, Method and system for integrating an RF module into a digital network access point.
  140. Rappaport,Theodore S.; Skidmore,Roger R.; Sheethalnath,Praveen, Method and system for modeling and managing terrain, buildings, and infrastructure.
  141. Berlin, Igor; Harel, Dror; Saban, Ofer; Shapira, Isaac, Method and system for real time control of an active antenna over a distributed antenna system.
  142. Saban, Ofer; Shapira, Isaac; Harel, Dror; Berlin, Igor, Method and system for real time control of an active antenna over a distributed antenna system.
  143. Hermel, Michael J., Method and system for reducing uplink noise in wireless communication systems.
  144. Rappaport, Theodore; Skidmore, Roger, Method and system for using raster images to create a transportable building database for communications network engineering and management.
  145. Rappaport, Theodore S.; Skidmore, Roger B.; Reifsneider, Eric, Method and system to model frequency dependent effects of a communciations network.
  146. Rappaport,Theodore S.; Skidmore,Roger R.; Reifsneider,Eric, Method and system, with component kits for designing or deploying a communications network which considers frequency dependent effects.
  147. Rappaport, Theodore; Skidmore, Roger; Reifsneider, Eric, Method and system, with component kits, for designing or deploying a communications network which considers frequency dependent effects.
  148. Skidmore, Roger R.; Rappaport, Theodore S., Method for creating a computer model and measurement database of a wireless communication network.
  149. Zavadsky, Dean, Method for data converter sample clock distribution.
  150. Templ, Wolfgang; Wiegner, Dirk, Method for data transmission using an envelope elimination and restoration amplifier, an envelope elimination and restoration amplifier, a transmitting device, a receiving device, and a communication network therefor.
  151. Wala, Philip M.; Zavadsky, Dean, Method of inserting CDMA beacon pilots in output of distributed remote antenna nodes.
  152. Laraqui, Kim; Almeida, Henrik; Dortschy, Boris; Lu, Chenguang; Trojer, Elmar, Methods and arrangements for providing radio access at local site.
  153. Wala, Philip M., Methods and systems for communicating in a cellular network.
  154. Schatz, Paul; Zavadsky, Dean; Mitchell, William J.; Stuart, Steve; Santos, Ana, Methods and systems for controlling optical power attenuation.
  155. Bauman, Donald R.; Cannon, Jeffrey J.; Hedin, John M.; Sonbarse, Santosh K., Methods and systems for handling underflow and overflow in a software defined radio.
  156. Wala, Philip M.; Koziy, Robert J.; Zavadsky, Dean, Modular wireless communications platform.
  157. Wala, Philip M.; Koziy, Robert J.; Zavadsky, Dean, Modular wireless communications platform.
  158. Wala, Philip M.; Koziy, Robert J.; Zavadsky, Dean, Modular wireless communications platform.
  159. Berlin, Igor; Daniel, Liav Moshe; Henia, Yoni; Reuven, Rami; Yakobi, Motti, Monitoring non-supported wireless spectrum within coverage areas of distributed antenna systems (DASs).
  160. Berlin, Igor; Daniel, Liav Moshe; Henia, Yoni; Reuven, Rami; Yakobi, Motti, Monitoring non-supported wireless spectrum within coverage areas of distributed antenna systems (DASs).
  161. Berlin, Igor; Daniel, Liav Moshe; Henia, Yoni; Reuven, Rami; Yakobi, Motti, Monitoring non-supported wireless spectrum within coverage areas of distributed antenna systems (DASs).
  162. Schwartzman, Ronen; Tzur, Yuval, Multi-band monopole planar antennas configured to facilitate improved radio frequency (RF) isolation in multiple-input multiple-output (MIMO) antenna arrangement.
  163. Logan, Eric Raymond, Multi-port accumulator for radio-over-fiber (RoF) wireless picocellular systems.
  164. Sabat, Jr., John; Yelle, Peter, Multi-protocol distributed antenna system for multiple service provider-multiple air interface co-located base stations.
  165. Saban, Ofer; Shapira, Isaac, Multiple data services over a distributed antenna system.
  166. Saban, Ofer; Shapira, Isaac, Multiple data services over a distributed antenna system.
  167. Schmidt, Robert D.; Jain, Rahul; Schutzer, Mark F.; Uyehara, Lance K.; Peleg, Gilad; O'Connell, John; Vardi, Ilan, Multiple-TRX PICO base station for providing improved wireless capacity and coverage in a building.
  168. Rosenfelder, Pinhas Yehuda; Shapira, Carmi, Multiplexing two separate optical links with the same wavelength using asymmetric combining and splitting.
  169. Rosenfelder, Pinhas Yehuda; Shapira, Carmi, Multiplexing two separate optical links with the same wavelength using asymmetric combining and splitting.
  170. Sabat, Jr., John; Yelle, Peter, Multiprotocol antenna system for multiple service provider-multiple air interface co-located base stations.
  171. Sabat, Jr., John; Yelle, Peter, Multiprotocol antenna system for multiple service provider-multiple air interface co-located base stations.
  172. Sabat, Jr., John; Yelle, Peter, Multiprotocol antenna system for multiple service provider-multiple air interface co-located base stations.
  173. Sabat, Jr., John; Yelle, Peter, Multiprotocol antenna system for multiple service providers.
  174. Harel, Dror, Offsetting unwanted downlink interference signals in an uplink path in a distributed antenna system (DAS).
  175. Sabat, Jr., John; Millar, Jeffrey R., Operations and maintenance architecture for multiprotocol distributed system.
  176. Sabat, Jr., John; Millar, Jeffrey R., Operations and maintenance architecture for multiprotocol distributed system.
  177. Sabat, Jr., John; Millar, Jeffrey R., Operations and maintenance architecture for multiprotocol distributed system.
  178. Hyo Jin Lee KR, Optic repeater system for extending coverage.
  179. Seto, Ichiro; Tomioka, Tazuko; Ohshima, Shigeru, Optical communication system.
  180. Seto, Ichiro; Tomioka, Tazuko; Ohshima, Shigeru, Optical communication system.
  181. Yoshihiro Imajo JP, Optical conversion relay amplification system.
  182. Palanisamy, Rajeshkannan; Peters, David Robert; Sadowski, Eric Michael; Sauer, Michael; Webb, Dale Alan, Optical fiber-based distributed antenna systems, components, and related methods for calibration thereof.
  183. Palanisamy, Rajeshkannan; Peters, David Robert; Sadowski, Eric Michael; Sauer, Michael; Webb, Dale Alan, Optical fiber-based distributed antenna systems, components, and related methods for calibration thereof.
  184. Palanisamy, Rajeshkannan; Peters, David Robert; Sadowski, Eric Michael; Sauer, Michael; Webb, Dale Alan, Optical fiber-based distributed antenna systems, components, and related methods for calibration thereof.
  185. Palanisamy, Rajeshkannan; Peters, David Robert; Sadowski, Eric Michael; Sauer, Michael; Webb, Dale Alan, Optical fiber-based distributed antenna systems, components, and related methods for calibration thereof.
  186. Casterline, Raymond Allen; Kapp, Steven Casey; Palanisamy, Rajeshkannan; Sadowski, Eric Michael; Webb, Dale Alan; Webb, Michael Brian, Optical fiber-based distributed antenna systems, components, and related methods for monitoring and configuring thereof.
  187. Malach, Adi, Optimizing remote antenna unit performance using an alternative data channel.
  188. Malach, Adi, Optimizing remote antenna unit performance using an alternative data channel.
  189. Wala, Philip M., Point-to-multipoint digital radio frequency transport.
  190. Wala, Philip M., Point-to-multipoint digital radio frequency transport.
  191. Wala, Philip M., Point-to-multipoint digital radio frequency transport.
  192. Wala, Philip M., Point-to-multipoint digital radio frequency transport.
  193. Wala, Philip M., Point-to-multipoint digital radio frequency transport.
  194. Chan, Siu Bun; Liang, Hong Bin; Ying, Min, Private cellular system with auto-registration functionality.
  195. Berlin, Igor; Cune, William Patrick; Greene, Jason Elliott; Heidler, Christian; Register, III, James Arthur; Schweiker, Wolfgang Gottfried Tobias, Providing digital data services as electrical signals and radio-frequency (RF) communications over optical fiber in distributed communications systems, and related components and methods.
  196. Berlin, Igor; Cune, William Patrick; Greene, Jason Elliott; Heidler, Christian; Register, III, James Arthur; Schweiker, Wolfgang Gottfried Tobias, Providing digital data services as electrical signals and radio-frequency (RF) communications over optical fiber in distributed communications systems, and related components and methods.
  197. Berlin, Igor; Cune, William Patrick; Greene, Jason Elliott; Heidler, Christian; Register, III, James Arthur; Schweiker, Wolfgang Gottfried Tobias, Providing digital data services as electrical signals and radio-frequency (RF) communications over optical fiber in distributed communications systems, and related components and methods.
  198. Cune, William Patrick; Sauer, Michael; Schweiker, Wolfgang Gottfried Tobias, Providing digital data services in optical fiber-based distributed radio frequency (RF) communication systems, and related components and methods.
  199. Cune, William Patrick; Sauer, Michael; Schweiker, Wolfgang Gottfried Tobias, Providing digital data services in optical fiber-based distributed radio frequency (RF) communications systems, and related components and methods.
  200. Bickham,Richard S.; Schultz,Joseph; Anderson,Dale; Van Horn,Mark, RF power device with on-chip digital control and optical interface.
  201. Aburakawa,Yuji; Suda,Hirohito; Yamao,Yasushi, Radio base station system and central control station with unified transmission format.
  202. Saban, Ofer; Shapira, Isaac, Radio-frequency integrated circuit (RFIC) chip(s) for providing distributed antenna system functionalities, and related components, systems, and methods.
  203. Saban, Ofer; Shapira, Isaac, Radio-frequency integrated circuit (RFIC) chip(s) for providing distributed antenna system functionalities, and related components, systems, and methods.
  204. George, Jacob; Sauer, Michael; Thelen, Dean Michael, Radio-over-fiber (ROF) system for protocol-independent wired and/or wireless communication.
  205. George, Jacob; Sauer, Michael; Thelen, Dean Michael, Radio-over-fiber (ROF) system for protocol-independent wired and/or wireless communication.
  206. George, Jacob; Sauer, Michael; Thelen, Dean Michael, Radio-over-fiber (ROF) system for protocol-independent wired and/or wireless communication.
  207. George, Jacob; Sauer, Michael, Radio-over-fiber (RoF) optical fiber cable system with transponder diversity and RoF wireless picocellular system using same.
  208. Sauer, Michael; Vodhanel, Richard S.; Easton, Martyn N.; Chamarti, Aravind; Winters, Jack, Radio-over-fiber (RoF) wireless picocellular system with combined picocells.
  209. George, Jacob; Sauer, Michael; Zenteno, Luis A., Radio-over-fiber transponder with a dual-band patch antenna system.
  210. Rideout William C. ; Regan Robert J. ; Tang Douglas, Reconfigurable ring system for the transport of RF signals over optical fibers.
  211. George, Jacob; Ng'Oma, Anthony; Yang, Hejie, Reducing location-dependent destructive interference in distributed antenna systems (DASS) operating in multiple-input, multiple-output (MIMO) configuration, and related components, systems, and methods.
  212. George, Jacob; Ng'Oma, Anthony; Yang, Hejie, Reducing location-dependent destructive interference in distributed antenna systems (DASS) operating in multiple-input, multiple-output (MIMO) configuration, and related components, systems, and methods.
  213. George, Jacob; Ng'Oma, Anthony; Yang, Hejie, Reducing location-dependent destructive interference in distributed antenna systems (DASS) operating in multiple-input, multiple-output (MIMO) configuration, and related components, systems, and methods.
  214. George, Jacob; Ng'Oma, Anthony; Yang, Hejie, Reducing location-dependent interference in distributed antenna systems operating in multiple-input, multiple-output (MIMO) configuration, and related components, systems, and methods.
  215. George, Jacob; Ng'Oma, Anthony; Yang, Hejie, Reducing location-dependent interference in distributed antenna systems operating in multiple-input, multiple-output (MIMO) configuration, and related components, systems, and methods.
  216. Daniel, Liav Moshe; Ziv, Roi Yosy, Reducing out-of-channel noise in a wireless distribution system (WDS).
  217. Sauer, Michael; Kobyakov, Andrey, Redundant transponder array for a radio-over-fiber optical fiber cable.
  218. Berlin, Igor; Harris, Dan; Sauer, Michael, Remote antenna clusters and related systems, components, and methods supporting digital data signal propagation between remote antenna units.
  219. Berlin, Igor; Harris, Dan; Sauer, Michael, Remote antenna clusters and related systems, components, and methods supporting digital data signal propagation between remote antenna units.
  220. Anolik, Rami; Hazani, Ami, Remote units for distributed communication systems and related installation methods and apparatuses.
  221. Biegert, Mark R.; Lee, Peter, Return path for uspstream communications originating from optical node.
  222. Conyers, David J.; Hermel, Michael J.; Fischer, Larry G.; Solum, Jeff, Scalable distributed radio network.
  223. Wala Philip M., Scanning RSSI receiver system using inverse fast fourier transforms for a cellular communications system with centralized base stations and distributed antenna units.
  224. Berlin, Igor; Cune, William P.; Greene, Jason E.; Sauer, Michael; Schmidt, Gerald B., Sectorization in distributed antenna systems, and related components and methods.
  225. Berlin, Igor; Cune, William Patrick; Greene, Jason Elliot; Sauer, Michael; Schmidt, Gerald Bernhart, Sectorization in distributed antenna systems, and related components and methods.
  226. Hanson, Van E.; Ranson, Christopher G., Selectively combining uplink signals in distributed antenna systems.
  227. Ben-Shlomo, Dror, Separation of communication signal sub-bands in distributed antenna systems (DASs) to reduce interference.
  228. Elyasi, Sattar, Smooth modulation switching.
  229. Newell, Laurence J.; Coward, James F., Synchronizing nodes in an optical communications system utilizing frequency division multiplexing.
  230. Hazani, Ami; Butbul, Shlomo; Binder, Yehuda, System and method for carrying a wireless based signal over wiring.
  231. Hazani, Ami; Butbul, Shlomo; Binder, Yehuda, System and method for carrying a wireless based signal over wiring.
  232. Rappaport, Theodore; Skidmore, Roger; Henty, Benjamin, System and method for design, tracking, measurement, prediction and optimization of data communication networks.
  233. Rappaport, Theodore; Skidmore, Roger; Henty, Benjamin, System and method for design, tracking, measurement, prediction and optimization of data communication networks.
  234. Rappaport,Theodore; Skidmore,Roger; Gold,Brian, System and method for efficiently visualizing and comparing communication network system performance.
  235. Rappaport,Theodore; Skidmore,Roger; Gold,Brian, System and method for efficiently visualizing and comparing communication network system performance.
  236. Wala, Philip M., System and method for enhancing the performance of wideband digital RF transport systems.
  237. Wala, Philip M., System and method for enhancing the performance of wideband digital RF transport systems.
  238. Reudink Douglas O., System and method for frequency multiplexing antenna signals.
  239. Rappaport,Theodore S.; Skidmore,Roger R., System and method for indicating the presence or physical location of persons or devices in a site specific representation of a physical environment.
  240. Mickelsson,Hans; Cagenius,Torbj?rn, System and method for integrating a fiber optic fixed access network and a fiber optic radio access network.
  241. Skidmore,Roger R.; Rappaport,Theodore S., System and method for measuring and monitoring wireless network performance in campus and indoor environments.
  242. Hwang, Seong-Taek; Han, Shuangfeng; Zhou, Chunhui; Wang, Jing; Zhao, Ming; Xu, Zheng, System and method for performing handover in WiMAX mobile communication system.
  243. Hu, Junqiang; Wang, Ting; Qian, Dayou; Luo, Yuanqiu; Suemura, Yoshihiko; Shibutani, Makoto, System and method for providing wireless over a passive optical network (PON).
  244. Millar, Jeffrey R., System and method for retransmission of data.
  245. Singh, Baljit, System and method for synchronized time-division duplex signal switching.
  246. Xie, Kai; Elyasi, Sattar, System and method of generating soft bits.
  247. Kremer, Michael; Mitchell, William J.; Schatz, Paul; Toms, Jerry; Wala, Philip M.; Wiwel, Bernard K.; Zavadsky, Dean, System and method to monitor broadband radio frequency transport systems.
  248. Scheinert, Stefan; Walther, Peter, System for and method of configuring distributed antenna communications system.
  249. Scheinert, Stefan, System for and method of for providing dedicated capacity in a cellular network.
  250. Scheinert, Stefan; Sugarbroad, Ian, System for and method of providing remote coverage area for wireless communications.
  251. Rappaport,Theodore S.; Skidmore,Roger R., System for the three-dimensional display of wireless communication system performance.
  252. Rappaport, Theodore S.; Gold, Brian T.; Skidmore, Roger R., System, method, and apparatus for portable design, deployment, test, and optimization of a communication network.
  253. Henia, Yoni, System-wide uplink band gain control in a distributed antenna system (DAS), based on per band gain control of remote uplink paths in remote units.
  254. Henia, Yoni, System-wide uplink band gain control in a distributed antenna system (DAS), based on per-band gain control of remote uplink paths in remote units.
  255. Fischer, Larry G.; Cannon, Jeffrey J.; Stuart, Steven B.; Hedin, John M., Systems and methods for IP communication over a distributed antenna system transport.
  256. Fischer, Larry G.; Cannon, Jeffrey J.; Stuart, Steven B.; Hedin, John M., Systems and methods for IP communication over a distributed antenna system transport.
  257. Hermel, Michael J.; Fischer, Larry G.; Mitchell, William J., Systems and methods for analog transport of RF voice/data communications.
  258. Zavadsky, Dean; Hebert, Thomas G., Systems and methods for delay management in distributed antenna system with direct digital interface to base station.
  259. Zavadsky, Dean; Hebert, Thomas G., Systems and methods for delay management in distributed antenna system with direct digital interface to base station.
  260. Cannon, Jeffrey J.; Zavadsky, Dean; Wala, Philip M., Systems and methods for improved digital RF transport in distributed antenna systems.
  261. Cannon, Jeffrey J.; Zavadsky, Dean; Wala, Philip M., Systems and methods for improved digital RF transport in distributed antenna systems.
  262. Zavadsky, Dean; Wala, Philip M., Systems and methods for integrating asynchronous signals in distributed antenna system with direct digital interface to base station.
  263. Zavadsky, Dean; Wala, Philip M., Systems and methods for integrating asynchronous signals in distributed antenna system with direct digital interface to base station.
  264. Wala, Philip M.; Zavadsky, Dean, Systems and methods for mobile phone location with digital distributed antenna systems.
  265. Wala, Philip M.; Zavadsky, Dean, Systems and methods for mobile phone location with digital distributed antenna systems.
  266. Gutman, Amit, Systems and methods for simultaneous sampling of serial digital data streams from multiple analog-to-digital converters (ADCS), including in distributed antenna systems.
  267. Gutman, Amit, Systems and methods for simultaneous sampling of serial digital data streams from multiple analog-to-digital converters (ADCs), including in distributed antenna systems.
  268. Kummetz, Thomas; Hanson, Van E.; Ranson, Christopher Goodman, Systems and methods for transporting digital RF signals.
  269. Kummetz, Thomas; Hanson, Van E.; Ranson, Christopher Goodman, Systems and methods for transporting digital RF signals.
  270. Kummetz, Thomas; Hanson, Van E.; Ranson, Christopher Goodman, Systems and methods for transporting digital RF signals.
  271. Kummetz, Thomas; Hanson, Van; Ranson, Christopher G., Systems and methods for transporting digital RF signals.
  272. Kummetz, Thomas; Hanson, Van; Ranson, Christopher G., Systems and methods for transporting digital RF signals.
  273. Sabat, Jr., John; Hebert, Thomas G., Systems and methods of optical path protection for distributed antenna systems.
  274. Sabat, Jr., John; Hebert, Thomas G., Systems and methods of optical path protection for distributed antenna systems.
  275. Sabat, Jr., John; Hebert, Thomas G., Systems and methods of optical path protection for distributed antenna systems.
  276. Sabat, Jr., John; Hebert, Thomas G., Systems and methods of optical path protection for distributed antenna systems.
  277. Berlin, Igor; Cune, William P.; Greene, Jason E., Systems, methods, and devices for increasing radio frequency (RF) power in distributed antenna systems.
  278. Berlin, Igor; Cune, William Patrick; Greene, Jason Elliott, Systems, methods, and devices for increasing radio frequency (RF) power in distributed antenna systems.
  279. Berlin, Igor; Cune, William Patrick; Greene, Jason Elliott, Systems, methods, and devices for increasing radio frequency (RF) power in distributed antenna systems.
  280. Rappaport,Theodore; Skidmore,Roger; Henty,Benjamin, Textual and graphical demarcation of location from an environmental database, and interpretation of measurements including descriptive metrics and qualitative values.
  281. Rappaport, Theodore; Skidmore, Roger; Henty, Benjamin, Textual and graphical demarcation of location, and interpretation of measurements.
  282. Pechner,David A; Newell,Laurence J; Konezny,Mark D, Through-timing of data transmitted across an optical communications system utilizing frequency division multiplexing.
  283. Ben-Shlomo, Dror; Shapira, Isaac, Time-division duplexing (TDD) in distributed communications systems, including distributed antenna systems (DASs).
  284. George, Jacob; Kobyakov, Andrey; Sauer, Michael, Transponder systems and methods for radio-over-fiber (RoF) wireless picocellular systems.
  285. Fischer, Larry G.; Wala, Philip M.; Zavadsky, Dean; Uyehara, Lance K.; Forland, Jody, Universal remote radio head.
  286. Fischer, Larry G.; Wala, Philip M.; Zavadsky, Dean; Uyehara, Lance K.; Forland, Jody, Universal remote radio head.
  287. Fischer, Larry G.; Wala, Philip M.; Zavadsky, Dean; Uyehara, Lance K.; Forland, Jody, Universal remote radio head.
  288. Fischer, Larry G.; Wala, Philip M.; Zavadsky, Dean; Uyehara, Lance K.; Forland, Jody, Universal remote radio head.
  289. Ralph Spickermann, Use of bandwidth efficient modulation techniques in a wavelength division multiplexed optical link.
  290. Kinamon, Roy; Zuckerman, Gal; Liv, Oz, Using a coaxial cable for distributing MIMO signals in-house.
  291. Reuven, Rami, Voltage controlled optical directional coupler.
  292. Tseng Stone ; Basu Kalyan ; Zhu Yixin ; Elsayed Khaled,EGX, Wireless architecture having redistributed access functions.
  293. Easton,Martyn N.; Sauer,Michael; Vodhanel,Richard S., Wireless picocellular RFID systems and methods.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로