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NOx emission-control system using a virtual sensor 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G06G-007/70
출원번호 US-0144721 (2002-05-15)
발명자 / 주소
  • Liang, Cho Y.
  • Srinivasan, Syamaia
  • Jacobson, Evan E.
출원인 / 주소
  • Caterpillar Inc
대리인 / 주소
    Finnegan, Henderson, Farabow, Garrett &
인용정보 피인용 횟수 : 96  인용 특허 : 23

초록

A method and system may be provided to perform a process for controlling NOx emissions of an target engine. In one embodiment of the invention, the process may include determining predicted NOx values based on a model reflecting a predetermined relationship between control parameters and NOx emissio

대표청구항

1. A method for controlling NOx emissions of an engine, comprising:determining predicted NOx values based on a model reflecting a predetermined relationship between control parameters and NOx emissions, wherein the control parameters include ambient humidity, manifold pressure, manifold temperature,

이 특허에 인용된 특허 (23)

  1. Ford ; Jr. Mark R. (West Roxbury MA) Colozzi Brian G. (Winthrop MA), Ammonia control system for NOx emission control for gas turbine exhaust.
  2. Puskorius Gintaras V. (Redford MI) Feldkamp Lee A. (Plymouth MI), Catalyst monitor with direct prediction of hydrocarbon conversion efficiency by dynamic neural networks.
  3. Paul R. Miller ; Mike Barbieri ; Chaun He, Emission control in an automotive engine.
  4. Mandel Stephen ; Sobel Richard A., Emission monitoring system.
  5. Watson Harry C. (Eltham AUX), Internal combustion engine ignition device.
  6. Gotoh Masato,JPX ; Sasaki Shizuo,JPX ; Yoshizaki Kouji,JPX ; Ito Takekazu,JPX ; Murata Hiroki,JPX, Internal combustion engine, controller and method.
  7. van Nieuwstadt, Michiel Jacques, Method and apparatus for controlling the amount of reactant to be added to a substance using a sensor which is responsive to both the reactant and the substance.
  8. Joseph R. Griffin, Method and apparatus for determining the A/F ratio of an internal combustion engine.
  9. Kato Nobuhide,JPX ; Kurachi Hiroshi,JPX, Method of removing NO.sub.x from exhaust gases.
  10. Oguchi Haruo (Yokohama JPX) Hino Shirou (Yokohama JPX) Kataoka Toshie (Kawasaki JPX), Nitrogen oxide removal control apparatus.
  11. Goto Yasuo (Saitama-ken JPX), Nitrogen oxide removal control method.
  12. Ishida Akira,JPX ; Takigawa Masuo,JPX, Parameter estimation apparatus.
  13. Buchhop Thomas Robert (Canton MI) D\Alleva Randall (St. Clair Shores MI) Darnell Ronald Keith (Ortonville MI) Little Jack Ryan (Metamora MI) Pedersen Curtis Thomas (Fenton MI), Parametric emissions monitoring system having operating condition deviation feedback.
  14. Tarabulski Theodore J. ; Peter-Hoblyn Jeremy D.,GBX ; Valentine James M., Reducing NO.sub.x emissions from an engine by selective catalytic reduction utilizing solid reagents.
  15. Tarabulski Theodore J., Reducing NO.sub.x emissions from an engine while maximizing fuel economy.
  16. Tarabulski Theodore J. ; Knapper Curtis J. ; Peter-Hoblyn Jeremy D.,GBX ; Valentine James M., Reducing no.sub.x emissions from an engine by temperature-controlled urea injection for selective catalytic reduction.
  17. Kobayashi Motonobu (Hyogo JPX) Kinoshita Futoru (Hyogo JPX) Hagi Mitsuharu (Hyogo JPX) Inoue Akira (Osaka JPX) Uno Terushige (Osaka JPX), Removing nitrogen oxides in exhaust gases from a diesel engine.
  18. Borroni-Bird Christopher E. ; Kizer Thomas L., System and method for controlling exhaust gas temperatures for increasing catalyst conversion of NOx emissions.
  19. Peter-Hoblyn Jeremy D.,GBX ; Balles Eric N. ; Tarabulski Theodore J. ; Hofmann John E. ; Valentine James M., Urea pyrolysis chamber and process for reducing lean-burn engine NOx emissions by selective catalytic reduction.
  20. Keeler James D. (Austin TX) Havener John P. (Austin TX) Godbole Devendra (Austin TX) Ferguson Ralph B. (Austin TX), Virtual continuous emission monitoring system with sensor validation.
  21. Keeler James D. (Austin TX) Havener John P. (Austin TX) Godbole Devendra (Austin TX) Ferguson ; II Ralph B. (Austin TX), Virtual emissions monitor for automobile.
  22. Keeler James David (Austin TX) Havener John Paul (Austin TX) Godbole Devendra (Austin TX) Ferguson ; II Ralph Bruce (Austin TX), Virtual emissions monitor for automobile and associated control system.
  23. Cheng Jie ; LaCrosse Stephanie Mary ; Tascillo Anya Lynn ; Newman ; Jr. Charles Edward ; Davis George Carver, Virtual vehicle sensors based on neural networks trained using data generated by simulation models.

이 특허를 인용한 특허 (96)

  1. Nagathil, Roopesh Bhaskaran; Chadha, Rahul; Rivera, Jr., Rodel Belen; Gawde, Prashant Ramkrishna, Alarm management.
  2. Shamis, Dmitry Arie; McCarthy, Jr., James Edward; Reuter, Johannes Walter; Bevan, Karen Evelyn; Chimner, Christian Thomas, Algorithm incorporating driving conditions into LNT regeneration scheduling.
  3. Hartman, Jehuda; Brill, Eyal; Kokolov, Yuri, Apparatus and method for the analysis of a process having parameter-based faults.
  4. Chi, John N.; Hill, Joe V., Apparatus, system, and method for NOx signal correction in feedback controls of an SCR system.
  5. Wills, Joan M.; Garimella, Phanindra; Chi, John N., Apparatus, system, and method for controlling ammonia slip from an SCR catalyst.
  6. Chi, John N.; Wang, Weiwen; Garimella, Phanindra; Hill, Joe V., Apparatus, system, and method for controlling reductant dosing in an SCR catalyst system.
  7. Garimella, Phanindra; Wills, Joan M.; Chi, John N.; Currier, Neal W.; Yezerets, Aleksey, Apparatus, system, and method for determining the degradation of an SCR catalyst.
  8. Garimella, Phanindra; Osburn, Andy; Chi, John N.; Wills, Joan M., Apparatus, system, and method for estimating an NOx conversion efficiency of a selective catalytic reduction catalyst.
  9. Ofoli, Abdul R.; Garimella, Phanindra; Chi, John N., Apparatus, system, and method for reducing NO.
  10. Chi, John N.; Hill, Joe V.; Wills, Joan M.; Farrell, Lisa A.; Frazier, Timothy R.; Mohammed, Hasan, Apparatus, system, and method for reducing NOx emissions from an engine system.
  11. Chi, John N.; Wang, Weiwen; Garimella, Phanindra; Wills, Joan M.; Hill, Joe V.; Farrell, Lisa A.; Ofoli, Abdul R., Apparatus, system, and method for reducing NOx emissions on an SCR catalyst.
  12. Wills, Joan M.; Chi, John N.; Wang, Weiwen; Garimella, Phanindra; Frazier, Timothy R.; Ofoli, Abdul R.; Hill, Joe V.; Farrell, Lisa A.; Currier, Neal W.; Yezerets, Aleksey; Osburn, Andy, Apparatus, system, and method for reducing NOx emissions on an SCR catalyst.
  13. Garimella, Phanindra; Ofoli, Abdul R.; Frazier, Timothy R.; Wills, Joan M.; Chi, John N.; Wang, Weiwen; Osburn, Andrew, Apparatus, system, and method for reducing NOx emissions on an SCR catalyst using ammonia storage and slip control.
  14. Robertson, Thomas F.; Neville, Thomas B.; Kilfoyle, Charles E.; Nowakowski, John J., Assured compliance mode of operating a combustion system.
  15. Grichnik, Anthony J.; Seskin, Michael X.; Mason, James R.; Felty, Timothy J., Asymmetric random scatter process for probabilistic modeling system for product design.
  16. MacNeille, Perry Robinson; Weber, David Charles, Automotive virtual humidity sensor.
  17. Grichnik, Anthony J.; Mason, James; Felty, Tim, Calibration certificate for virtual sensor network (VSN).
  18. Fuxman, Adrian Matias; Pachner, Daniel, Condition-based powertrain control system.
  19. Tanabe,Kazuya; Tsutsumizaki,Takashi; Inomoto,Yutaka; Tsunashima,Kosuke, Control method and control apparatus of internal combustion engine.
  20. Wei, Zhiyong; Kostek, Theodore M.; Sharp, Christopher Alan, Control of SCR system having a filtering device.
  21. Grichnik, Anthony J.; Seskin, Michael; Perez, Marco; Collins, Roy T., Control system and method.
  22. Yasui, Yuji; Nakajima, Koichi; Fischer, Michael, Controller for plant.
  23. Stewart, Greg; Pekar, Jaroslav; Pachner, Daniel, Coordinated engine and emissions control system.
  24. Clerc, James C.; White, Timothy M.; Zaczek, Melissa; Qi, Baohua, Detection of aftertreatment catalyst degradation.
  25. Wei, Zhiyong; Sharp, Christopher Alan, Emission control system implementing reduction agent injection.
  26. Mohammed, Hasan; Brault, Joseph M., Emissions reductions through reagent release control.
  27. Mohammed, Hasan; Brault, Joseph M., Emissions reductions through regent release control.
  28. Pachner, Daniel; Pekar, Jaroslav, Engine and aftertreatment optimization system.
  29. Willi, Martin L.; Fiveland, Scott B.; Montgomery, David T.; Gong, Weidong, Engine control system having fuel-based timing.
  30. Willi, Martin L.; Fiveland, Scott B.; Montgomery, David T.; Gong, Weidong, Engine control system having pressure-based timing.
  31. Willi, Martin L.; Fiveland, Scott B.; Montgomery, David T.; Gong, Weidong, Engine control system having speed-based timing.
  32. Wang, Yue-Yun; He, Yongsheng, Engine out NOx virtual sensor using cylinder pressure sensor.
  33. Farrell, Lisa A.; Frazier, Timothy R.; Mohammed, Hasan, Engine system properties controller.
  34. Wang, Yue-Yun; He, Yongsheng; Brown, David B., Engine-out NOx virtual sensor for an internal combustion engine.
  35. Garimella, Phanindra V.; Osburn, Andrew W.; Hsieh, Ming-Feng, Engine-out emissions controls.
  36. Upadhyay,Devesh; Kubinski,David J., Exhaust gas aftertreatment systems.
  37. Itoh, Kazuhiro, Exhaust gas purification system of internal combustion engine.
  38. Grichnik, Anthony J., Expert knowledge combination process based medical risk stratifying method and system.
  39. Grichnik, Anthony J.; Mason, James; Felty, Tim, Fixed-point virtual sensor control system and method.
  40. Rodman, Anthony; Katari, Ashutosh, Fluid delivery system.
  41. Nagathil, Roopesh Bhaskaran; Berkeley, Dalero Winston; Linkenauger, David Lynn; Nichols, Jason Fredrick, Fuzzy logic based system monitoring system and method.
  42. Pachner, Daniel, Identification approach for internal combustion engine mean value models.
  43. Kesse, Mary L.; Scrivner, Wade D.; Jayachandran, Amit; Zhu, Liangtao, Integrated engine and exhaust after treatment system and method of operating same.
  44. Ettireddy, Padmanabha Reddy; Henrichsen, Matthew, Low temperature selective catalytic reduction catalyst and associated systems and methods.
  45. Kurtz, Eric Matthew, Managing reductant slip in an internal combustion engine.
  46. Grichnik,Anthony J.; Seskin,Michael, Medical risk stratifying method and system.
  47. Kropinski,Michael A.; Miotke,Mark D., Method and apparatus to diagnose intake airflow.
  48. Cesario, Nicola; Amato, Paolo; Di Meglio, Maurizio; Pirozzi, Francesco; Moselli, Giovanni; Taglialatela-Scafati, Ferdinando; Carpentieri, Francesco, Method and associated device for sensing the air/fuel ratio of an internal combustion engine.
  49. Hofmeister, Carl-Eike; Käsbauer, Michael, Method and device for identifying errors in emission-relevant control devices in a vehicle.
  50. Barillon, Pascal; Gauvin, Fabrice; Lucea, Marc; Poilane, Emmanuel, Method and system for estimating exhaust gas temperature and internal combustion engine equipped with such a system.
  51. Grichnik,Anthony J.; Seskin,Michael, Method and system for intelligent maintenance.
  52. Allain,Marc Christian; Sun,Min, Method and system of diesel engine setpoint compensation for transient operation of a heavy duty diesel engine.
  53. Allain, Marc Christian; Sun, Min, Method and system to operate diesel engine using real time six dimensional empirical diesel exhaust pressure model.
  54. Healy, Timothy Andrew; Simons, Derrick Walter, Method for controlling fuel splits to gas turbine combustor.
  55. Healy,Timothy Andrew; Simons,Derrick Walter, Method for controlling fuel splits to gas turbine combustor.
  56. Graupner, Olaf; Rösel, Gerd, Method for correcting the output signal of a lambda probe.
  57. Jung, Jae Yoon, Method for determining malfunction of nitrogen oxide sensor and selective catalytic reduction system operating the same.
  58. Kim, Yong-Wha; Yoo, In Kwang; Van Nieuwstadt, Michiel J.; Fulton, Brien Lloyd, Method for estimating intake air humidity.
  59. Swanson, Brian G., Method for generating a model representative of a process.
  60. Wickert,Stefan; Handler,Torsten; Samuelsen,Dirk; Walz,Christian, Method for operating an internal combustion engine and a device for carrying out the method.
  61. Hou,Zhixin Jason; Wagner,Wayne M.; Zhang,Wenzhong; Steinbrueck,Edward A.; Angelo,Theodore G.; Wiegandt,Ted J.; Anderson,Mike, Method of dispensing fuel into transient flow of an exhaust system.
  62. Chauvin,Jonathan; Moulin,Philippe; Corde,Gilles; Petit,Nicolas; Rouchon,Pierre, Method of estimating the fuel/air ratio in a cylinder of an internal-combustion engine by means of an adaptive nonlinear filter.
  63. Chauvin, Jonathan; Moulin, Philippe; Corde, Gilles; Petit, Nicolas; Rouchon, Pierre, Method of estimating the fuel/air ratio in a cylinder of an internal-combustion engine by means of an extended Kalman filter.
  64. Thompson, Marleen F.; Golub, Tomislav Ivo, Method to operate an electronically controlled internal combustion engine.
  65. Dobson, Douglas Allen; Badillo, Ed; Guo, Gang; Warner, James Robert, Methods and systems for control of an emission system with more than one SCR region.
  66. Dobson, Douglas Allen; Cavataio, Giovanni; Badillo, Ed; Lambert, Christine Kay; Guo, Gang, Methods and systems for diagnostics of an emission system with more than one SCR region.
  67. Dobson, Douglas Allen; Cavataio, Giovanni; Badillo, Ed; Lambert, Christine Kay; Guo, Gang, Methods and systems for diagnostics of an emission system with more than one SCR region.
  68. Dobson, Douglas Allen; Cavataio, Giovanni; Badillo, Ed; Lambert, Christine Kay; Guo, Gang, Methods and systems for diagnostics of an emission system with more than one SCR region.
  69. Sun, Min; Sankara-Chinttoanony, Sathish; Pham, Bryant Chan; Radwan, Amr Mohamed; Han, Zhiping; Krueger, Wolfgang, Model based method for selective catalyst reducer urea dosing strategy.
  70. Swanson, Larry William; Beadie, Douglas Frank; Widmer, Neil Colin; Zhang, Hua; Kraemer, Gilbert Otto, Model based tempering air control and enhancement of exhaust for select catalytic reduction.
  71. Ponnathpur, Chetan, NH3 emissions management in a NOX reduction system.
  72. Ponnathpur, Chetan, NH3 emissions management in a NOx reduction system.
  73. Driscoll, James J.; Kesse, Mary L.; Robel, Wade J.; Jayachandran, Amit, NOx control using a neural network.
  74. Swanson,Brian G., Predictive emissions monitoring method.
  75. Swanson, Brian G., Predictive emissions monitoring using a statistical hybrid model.
  76. Grichnik, Anthony J.; Seskin, Michael; Jayachandran, Amit, Probabilistic modeling system for product design.
  77. Grichnik,Anthony J.; Seskin,Michael, Process model based virtual sensor and method.
  78. Grichnik,Anthony J., Process model error correction method and system.
  79. Grichnik, Anthony J.; Seskin, Michael, Process modeling and optimization method and system.
  80. Grichnik, Anthony J.; Brazzale-Anderson, Andrea; Patel, Amar; Seskin, Michael; Roozenboom, Stephan D.; Milam, David M., Product design optimization method and system.
  81. Li, Yongxiang; Sun, Jinhui, Reductant dosing system.
  82. Ofoli, Abdul R.; Mohammed, Hasan, SCR catalyst ammonia surface coverage estimation and control.
  83. Ofoli, Abdul R.; Mohammed, Hasan, SCR catalyst ammonia surface coverage estimation and control.
  84. Wei, Zhiyong; Liang, Cho Ying, SCR emissions control system.
  85. Grichnik, Anthony J.; Seskin, Michael, Symmetric random scatter process for probabilistic modeling system for product design.
  86. Herrmann, Olaf Erik, System for controlling the exhaust gas return rate by means of virtual NOx sensors with adaptation via a NOx sensor.
  87. Zhang, Yanchai; Snopko, Michael A.; Converse, Perry D.; Janardhan, Vijay; Chang, Insu, System for controlling the total emissions produced by a multi-engine power system.
  88. Johnson, Debra; Marlar, David B., Systems and methods for high efficiency reliable catalyst delivery to internal combustion engines.
  89. Wang, Da Yu; Yao, Sheng, Systems and methods for sensing an ammonia concentration in exhaust gases.
  90. Sun, Min, Variable engine out emission control roadmap.
  91. Markham, Thomas R., Vehicle security module system.
  92. Grichnik, Anthony J.; Seskin, Michael, Virtual sensor based control system and method.
  93. Grichnik, Anthony J.; Jacobson, Evan E.; Jayachandran, Amit; Seskin, Michael, Virtual sensor based engine control system and method.
  94. Grichnik, Anthony J.; Mason, James; Felty, Tim, Virtual sensor network (VSN) system and method.
  95. Grichnik, Anthony J.; Jayachandran, Amit; Kesse, Mary L.; Seskin, Michael, Virtual sensor system and method.
  96. Grichnik, Anthony James; Felty, Timothy Joe; Mason, James Robert, Virtual sensor system and method for generating output parameters.
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