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GPS receiver having an initial adjustment for correcting for drift in reference frequency 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01S-005/02
출원번호 US-0634612 (1996-04-18)
발명자 / 주소
  • Rodal Eric B. (Cupertino CA) Farmer Dominic G. (Milpitas CA) Lau Chung Y. (Sunnyvale CA)
출원인 / 주소
  • Trimble Navigation Limited (Sunnyvale CA 02)
인용정보 피인용 횟수 : 67  인용 특허 : 5

초록

A GPS receiver having a rapid acquisition of a GPS satellite signal when a normal operational mode is entered after a low power standby mode. The GPS receiver includes an RF section for receiving the GPS satellite signal and providing an GPS IF signal, a correlator section for providing a correlatio

대표청구항

A global positioning system (GPS) receiver for receiving a GPS signal, including: a memory including an executable program for calculating an initial time of arrival (TOA) adjustment to correct for a TOA drift caused by a drift in a reference frequency that has occurred during a time duration in a s

이 특허에 인용된 특허 (5)

  1. Vig John R. (Colts Neck NY), High accuracy frequency standard and clock system.
  2. Parra Jorge M. (7332 Grand Blvd. New Port Richey FL 34652), Integrated passive acoustic and active marine aquatic apparatus and method.
  3. Steiner Glenn C. (Los Altos CA) Banta Lloyd H. (Palo Alto CA) Trask Matthew M. (San Jose CA), Personal digital location assistant including a memory cartridge, a GPS smart antenna and a personal computing device.
  4. Lennen Gary R. (San Jose CA), Signal timing synchronizer.
  5. Otten David D. (Redondo Beach CA), System and method for mobile communications in coexistence with established communications systems.

이 특허를 인용한 특허 (67)

  1. Shin, Seung-Woo; Kim, Ki-Hyun, Apparatus and method for timing synchronization in a communication system.
  2. Abraham,Charles; Fuchs,Donald L., Apparatus for computing signal correlation at multiple resolutions.
  3. Qahwash, Murad, CRC-based message detection/demodulation apparatus and method for radio frequency signals.
  4. Gronemeyer, Steven A., Calibrated real time clock for acquisition of GPS signals during low power operation.
  5. Lo, Chi-Yeh, Communication apparatuses and wireless communications modules.
  6. Wang, Chi-Shin; Cheng, Jian; Jia, Zhike; Kudrethaya, Shridhara A., Correlator sum method for spread spectrum signal receivers.
  7. Lanoue, Jean-Claude; Domey, Daniel, Digital indirectly compensated crystal oscillator.
  8. Shakeri,Kaveh; Mehrnia,Alireza; Eftekhar,Ali A.; Nassiri,Massoumeh; Fotowat Ahmady,Ali, Efficient epoch processing in multichannel global positioning system signal receiver.
  9. Nir, Joseph; Shayevits, Baruch; Cohen, Hanoch, Enhanced GPS receiver utilizing wireless infrastructure.
  10. Gronemeyer, Steven A., Fast acquisition of GPS signal.
  11. Gronemeyer, Steven A., Fast reacquisition of a GPS signal.
  12. Gronemeyer,Steven A., Fast reacquisition of a GPS signal.
  13. Zhi, Xiaorong; Yu, Yiming; Fontes, Joseph W., Fast time to first fix by calibration of a real time clock.
  14. Jin, Xin; Grant, Christopher James; Rosselet, Andrew Jonathan Gilbert, Frequency aiding method and system for navigation satellite receiver with crystal oscillator frequency hysteresis.
  15. Ansorge, Christian; Reiner, Michael, Frequency offset correction based on the presence or absence of a received signal.
  16. Zhi, Xiaorong; Yu, Yiming; Fontes, Joseph W., GNSS time fraction calibration of a real time clock.
  17. Gildea David R., GPS receiver using data bit timing to achieve a fast time to first fix.
  18. Woo,Arthur N., Hardware curve flattening of crystal oscillator temperature drift followed by software compensation for residual offset.
  19. Mehrnia,Alireza; Shakeri,Kaveh, High speed precision pseudo random noise shift control for fast multiple channel global positioning system signal re-tracking.
  20. Shakeri, Kaveh; Mehrnia, Alireza; Soheili-Najafabadi, Farshid, Low power passive correlators for multichannel global positioning system signal receiver.
  21. Smith, Vincent Maddock, Method and apparatus for a global navigation satellite system receiver coupled to a host computer system.
  22. Hani, Mohammad Bani; Bernhardt, Bruce, Method and apparatus for calibrating a global positioning system oscillator.
  23. Abraham,Charles, Method and apparatus for compensating an oscillator in a location-enabled wireless device.
  24. Abraham,Charles, Method and apparatus for compensating an oscillator in a location-enabled wireless device.
  25. Abraham, Charles; Fuchs, Donald L., Method and apparatus for computing signal correlation at multiple resolutions.
  26. Leonid Sheynblat ; Norman F. Krasner, Method and apparatus for determining time in a satellite positioning system.
  27. Sheynblat Leonid ; Krasner Norman F., Method and apparatus for determining time in a satellite positioning system.
  28. Sheynblat, Leonid; Krasner, Norman F., Method and apparatus for determining time in a satellite positioning system.
  29. Sheynblat, Leonid; Krasner, Norman F., Method and apparatus for determining time in a satellite positioning system.
  30. Carsello Stephen Rocco, Method and apparatus for estimating time-of-arrival of a synchronization signal sent simultaneously from at least two non-collocated transmitters.
  31. Goldberg, Jason; Abraham, Charles; Tapucu, Emre, Method and apparatus for performing frequency synchronization.
  32. Goldberg, Jason; Abraham, Charles; Tapucu, Emre, Method and apparatus for performing frequency synchronization.
  33. Abraham, Charles, Method and apparatus for performing signal correlation.
  34. Abraham, Charles; de la Porte, Serge; Podshivalov, Sergei, Method and apparatus for performing signal correlation.
  35. Abraham,Charles; de la Porte,Serge; Podshivalov,Sergei, Method and apparatus for performing signal correlation.
  36. Abraham, Charles; Fuchs, Donald L., Method and apparatus for performing signal correlation at multiple resolutions to mitigate multipath interference.
  37. Abraham, Charles; Fuchs, Donald L., Method and apparatus for performing signal correlation at multiple resolutions to mitigate multipath interference.
  38. Abraham, Charles; Tapucu, Emre, Method and apparatus for performing signal correlation using historical correlation data.
  39. Abraham, Charles; van Diggelen, Frank, Method and apparatus for performing signal correlation using historical correlation data.
  40. Abraham, Charles; Tapucu, Emre, Method and apparatus for performing signal processing using historical correlation data.
  41. Gronemeyer,Steven A., Method and apparatus for real time clock (RTC) brownout detection.
  42. Wang,Chi Shin; Shridhara,Kudrethaya A.; Mo,Jun; Han,Shaowei; Wang,Hansheng, Method and apparatus for self-calibration and adaptive temperature compensation in GPS receivers.
  43. Yang, Shi-Xian, Method and apparatus of correcting clock drift error.
  44. Zolfaghari, Alireza, Method and system for clock synchronization in a global navigation satellite system (GNSS) receiver.
  45. Siegel,Neil G.; Bixler,David, Power cycling for a global positioning system.
  46. McBurney, Paul W., Real time clock for GPS receivers.
  47. Lennen Gary R., Receiver having a memory based search for fast acquisition of a spread spectrum signal.
  48. Lennen Gary R., Receiver having a memory based search for fast acquisition of a spread spectrum signal.
  49. Gary R. Lennen, Receiver having a memory search for fast acquisition of a spread spectrum signal.
  50. Tanaka, Katsuyuki; Takahashi, Hideki; Awata, Hideki, Receiving device, receiving method, computer program, and portable terminal.
  51. Krasner Norman F., Reducing satellite signal interference in a global positioning system receiver.
  52. Percy, Roger D; Burke, Kay S; Baker, James W; Percy, R Cameron, Satellite positioning system and method for determining the demographics of individuals passing retail locations.
  53. Percy,Roger D.; Burke,Kay S.; Baker,James W.; Percy,R. Cameron, Satellite positioning system enabled business location planning.
  54. Percy,Roger D; Burke,Kay S; Baker,James W; Percy,R Cameron, Satellite positioning system enabled media exposure.
  55. Percy, Roger D.; Burke, Kay S.; Baker, James W.; Percy, R. Cameron, Satellite positioning system enabled media measurement system and method.
  56. Percy,Roger D.; Burke,Kay S.; Baker,James W.; Percy,R. Cameron, Satellite positioning system enabled media measurement system and method.
  57. Percy,Roger D.; Burke,Kay S.; Baker,James W.; Percy,R. Cameron, Satellite positioning system enabled media measurement system and method.
  58. Dougherty Lamar F. ; Niles Frederick A. ; Wennersten Miriam D., Spaceborne global positioning system for spacecraft.
  59. May, Reed R.; Morgan, Kenneth S., System and method for dynamically estimating output variances for carrier-smoothing filters.
  60. Babitch, Daniel; Gronemeyer, Steven A., Systems and methods for managing power consumption.
  61. Babitch, Daniel; Gronemeyer, Steven A.; Naji, Peter, Systems and methods for managing power consumption.
  62. Bickerstaff, Jacqueline; Winiecki, Thomas, Temperature compensation in a telecommunications device.
  63. Fujisawa, Teruhiko, Time adjustment device, timekeeping device with a time adjustment device, and a time adjustment method.
  64. Wang,Chi Shin; Xiong,Lianxue; Jia,Zhike; Dong,Lei; Liu,Jingbin, Timing calibration for fast signal reacquisition in navigational receivers.
  65. Croyle Steven R. ; Spencer ; II Larry E. ; Sittaro Ernie R., Vehicle navigation system and method.
  66. Croyle Steven R., Vehicle navigation system and method using GPS velocities.
  67. Spencer ; II Larry E. ; Croyle Steven R., Zero motion detection system for improved vehicle navigation system.
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