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Apparatus and method for receiving signals in a mobile communication system, the technology of adaptive array antenna

机译:在移动通信系统中接收信号的装置和方法,自适应阵列天线技术

摘要

1.the device u0434u043bu00a0 reception signal in a base station, comprising u0441u0435u0431u00a0 at least one reception antenna, the device contains a device u0441u0443u0436u0435u043du0438u00a0 spectrum and u0434u043bu00a0 reception signal and reception of the reception signal u0441u0443u0436u0435u043du0438u00a0, the processor signals u0434u043bu00a0 u0432u044bu0447u0438u0441u043bu0435u043du0438u00a0 u0437u043du0430u0447u0435u043du0438u00a0 error, the difference between the reception with u043fu0440u0435u0434u0441u0442u0430u0432u043bu00a0u044eu0449u0435u0433u043e u0438u0433u043du0430u043bu043eu043c and required reception signalusing the methodology of the first method and the second method, a spectral signal by the reception date, u0432u044bu0447u0438u0441u043bu0435u043du0438u00a0 u0437u043du0430u0447u0435u043du0438u00a0 step weighting the reception beam using u0437u043du0430u0447u0435u043du0438u00a0 errors and output signal, which is formed by u043fu0440u0438u043cu0435u043du0435u043du0438u00a0 pre weighting factor w u0440u0438u0435u043cu043du043eu0433u043e u0441u0443u0436u0435u043du043du043eu043cu0443 beam to a spectral signalthe difference between the previous and u0432u044bu0447u0438u0441u043bu0435u043du0438u00a0 reception beam weight coefficient and a weighting factor u0437u043du0430u0447u0435u043du0438u00a0 step receiving the beam, u0441u043fu0435u043au0442u0440u0430u043bu044cu043d on the date signal and u0441u043eu043fu0440u00a0u0436u0435u043du043du043eu0439 values u0437u043du0430u0447u0435u043du0438u00a0 mistakesas the current reception beam weight coefficient and the receiving beam u0434u043bu00a0 u0444u043eu0440u043cu0438u0440u043eu0432u0430u043du0438u00a0 reception beam using a spectral u0441u0438u0433u043d date ala and the weighting factor and the receiving beam output signal by receiving the beam u0444u043eu0440u043cu0438u0440u043eu0432u0430u043du0438u00a0 u043fu0440u0438u043cu0435u043du0435u043du0438u00a0 u0441u0443u0436u0435u043du043du043eu043cu0443 to a spectral signal.;2. device for p.1, in which the signal processor contains a weighting calculator u0434u043bu00a0 u0432u044bu0447u0438u0441u043bu0435u043du0438u00a0 u0437u043du0430u0447u0435u043du0438u00a0 errors using the techniques from the first method ica and the second method through the reception of a spectral signal and u0432u044bu0447u0438u0441u043bu0435u043du0438u00a0 date difference between the previous reception beam weight coefficient and etc. u0435u0434u0435u043du0438u0435u043c u0437u043du0430u0447u0435u043du0438u00a0 step weighting factor within the beam.a spectral signal and u0441u043eu043fu0440u00a0u0436u0435u043du043du043eu0439 date values u0437u043du0430u0447u0435u043du0438u00a0 mistakes as a weighting factor and weighting factor calculator step receiving beam u0434u043bu00a0 u0432u044bu0447u0438u0441u043bu0435u043du0438u00a0 u0437u043du0430u0447u0435u043du0438u00a0 step weighting factor the reception beam using u0437u043du0430u0447u0435u043du0438u00a0 errors and output signal.;3. device 1, in which the value of the error value of the error u00a0u0432u043bu00a0u0435u0442u0441u00a0 u0441u0440u0435u0434u043du0435u043au0432u0430u0434u0440u0430u0442u0438u0447u0435u0441u043au043eu0439 (at).;4. device 1, in which the first base u00a0u0432u043bu00a0u0435u0442u0441u00a0 technique u043fu043eu0441u0442u043eu00a0u043du043du044bu0445 modules (cm), and the second method u00a0u0432u043bu00a0u0435u0442u0441u00a0 technique with the decision (dd).;5. device 1, in which the processor signals u043eu043fu0440u0435u0434u0435u043bu00a0u0435u0442 importance step weighting factor within the beam so that the beam u0441u043eu043eu0442u0432 reception weighting factor u0435u0442u0441u0442u0432u043eu0432u0430u043b optimal step beam in the direction of the reception signal.;6.a reception signal in a base station, comprising u0441u0435u0431u00a0 at least one reception antenna in this way contains stages in which take a c drive and narrow range of the reception signal, u0432u044bu0447u0438u0441u043bu00a0u044eu0442 important mistakes, u043fu0440u0435u0434u0441u0442u0430u0432u043bu00a0u044eu0449u0435u0439 difference between the reception signal and a reception signalusing the methodology of the first method and the second method, a spectral signal by the reception date, u0432u044bu0447u0438u0441u043bu00a0u044eu0442 importance step weighting the reception beam using u0437u043du0430u0447u0435u043du0438u00a0 errors and output signal, which is formed by u043fu0440u0438u043cu0435u043du0435u043du0438u00a0 pre weighting factor etc. u0438u0435u043cu043du043eu0433u043e u0441u0443u0436u0435u043du043du043eu043cu0443 beam to a spectral signalthe difference between the previous weight coefficient u0432u044bu0447u0438u0441u043bu00a0u044eu0442 reception beam and a weighting factor u0437u043du0430u0447u0435u043du0438u00a0 step receiving beam, and a spectral u0443u0436u0435u043du043du043eu0433u043e signal and u0441u043eu043fu0440u00a0u0436u0435u043du043du043eu0439 values u0437u043du0430u0447u0435u043du0438u00a0 mistakes, as the current reception beam weight coefficient.form a beam using a spectral date signal and the weighting factor to form the output signal by receiving the beam u043fu0440u0438u043cu0435u043du0435u043du0438 u00a0 receiving beam to a spectral u0441u0443u0436u0435u043du043du043eu043cu0443 signal.;7. method for p.6, in which the error u00a0u0432u043bu00a0u0435u0442u0441u00a0 importance u0441u0440u0435u0434u043du0435u043au0432u0430u0434u0440u0430u0442u0438u0447u0435u0441u043au043eu0439 errors (at).;8. method for p.6, in which first the u00a0u0432u043bu00a0u0435u0442u0441u00a0 technique u043fu043eu0441u0442u043eu00a0u043du043du044bu0445 modules (cm), and the second method u00a0u0432u043bu00a0u0435u0442u0441u00a0 technique with the decision (dd).;9. method for p.6, in which the phase in which the value of the weighting factor u043eu043fu0440u0435u0434u0435u043bu00a0u044eu0442 step receiving the beam, includes a stage in which the u043eu043fu0440u0435u0434u0435u043bu00a0u044eu0442 importance step u0432u0435u0441u043eu0432u043eu0433 on the reception beam so that the beam is consistent with the optimal weighting of the adoptive adoptive beam in the direction of the reception signal.;10.a reception signal in a base station, comprising u0441u0435u0431u00a0 at least one reception antenna in this way contains stages in which u0432u044bu0447u0438u0441u043bu00a0u044eu0442 importance of osh u0438u0431u043au0438, u043fu0440u0435u0434u0441u0442u0430u0432u043bu00a0u044eu0449u0435u0435 difference between the reception signal and the reception signal using the joint method of the first method and the second method through the reception of the reception signal.u0432u044bu0447u0438u0441u043bu00a0u044eu0442 importance step weighting factor the reception beam using u0437u043du0430u0447u0435u043du0438u00a0 errors and output signal, which is formed by u043fu0440u0438u043cu0435u043du0435u043du0438u00a0 u043fu0440u0435u0434u0448u0435u0441 the weighting factor u0442u0432u0443u044eu0449u0435u0433u043e reception beam to the step signal, u0432u044bu0447u0438u0441u043bu00a0u044eu0442 difference between previous weight coefficient and a reception beam. m u0437u043du0430u0447u0435u043du0438u00a0 step weighting factor within the beam.the reception signal and u0441u043eu043fu0440u00a0u0436u0435u043du043du043eu0439 values u0437u043du0430u0447u0435u043du0438u00a0 mistakes, as the current reception beam weight coefficient, to form a beam using priya a reception beam signal and the weighting factor to form the output signal by receiving the beam u043fu0440u0438u043cu0435u043du0435u043du0438u00a0 to step signal.;11. way on p.10, in which the error u00a0u0432u043bu00a0u0435u0442u0441u00a0 importance u0441u0440u0435u0434u043du0435u043au0432u0430u0434u0440u0430u0442u0438u0447u0435u0441u043au043eu0439 errors (at).;12. way on p.10, in which first the u00a0u0432u043bu00a0u0435u0442u0441u00a0 technique u043fu043eu0441u0442u043eu00a0u043du043du044bu0445 modules (cm), and the second method u00a0u0432u043bu00a0u0435u0442u0441u00a0 technique with the decision (dd).;13. way on p.10, in which the phase in which the value of the weighting factor u043eu043fu0440u0435u0434u0435u043bu00a0u044eu0442 step receiving the beam, includes a stage in which the u043eu043fu0440u0435u0434u0435u043bu00a0u044eu0442 importance step u0432u0435u0441u043eu0432u043eu0433 on the reception beam so that the beam is consistent with the optimal weighting of the adoptive adoptive beam in the direction of the reception signal.;14.method u0444u043eu0440u043cu0438u0440u043eu0432u0430u043du0438u00a0 optimal weighting factor within the beam so that a beam u00a0u0432u043bu00a0u043bu0441u00a0 optimal reception beam in the direction of the reception signal. a base station comprising u0441u0435u0431u00a0 at least one reception antenna.with the u0431u0430u0437u043eu0432u0430u00a0 u0441u0442u0430u043du0446u0438u00a0 forms the reception beam reception antenna weighting factor using the previous reception beam, and a spectral date with u0438u0433u043du0430u043bu0430 current reception signal u0432u044bu0447u0438u0441u043bu00a0u0435u0442 value errors, showing the difference between the current reception signal and a reception signaland u0432u044bu0447u0438u0441u043bu00a0u0435u0442 current reception beam weight coefficient using the previous reception beam weight coefficient, a spectral signal and the date u043du0430u0447u0435u043du0438u00a0 errors, the method includes u0441u0435u0431u00a0 phases, which form the important step of receiving beam weighting factor using the u0437u043du0430u0447u0435u043du0438u00a0 mistakes and the output signal.which is formed by u043fu0440u0438u043cu0435u043du0435u043du0438u00a0 weighting factor to a spectral u0441u0443u0436u0435u043du043du043eu043cu0443 reception beam signal, the difference between the previous weight u043au043eu044du0444 u0432u044bu0447u0438u0441u043bu00a0u044eu0442 u0444u0438u0446u0438u0435u043du0442u043eu043c reception beam and a weighting factor u0437u043du0430u0447u0435u043du0438u00a0 step reception beam, a spectral signal and u0441u043eu043fu0440u00a0u0436u0435u043du043du043eu0439 date values u0437u043du0430u0447u0435u043du0438u00a0 mis kee,as the current reception beam weight coefficient and selecting the important step of receiving beam weighting factor so that the weight coefficient etc. u0438u0435u043cu043du043eu0433u043e beam with optimal step beam.;15.the device u0444u043eu0440u043cu0438u0440u043eu0432u0430u043du0438u00a0 optimal weighting factor within the beam so that a beam u00a0u0432u043bu00a0u043bu0441u00a0 optimal reception beam in the direction of the reception. was chasing in the base station, including u0441u0435u0431u00a0 at least one reception antenna.with the u0431u0430u0437u043eu0432u0430u00a0 u0441u0442u0430u043du0446u0438u00a0 forms the reception beam reception antenna weighting factor using the previous reception beam, and a spectral date with u0438u0433u043du0430u043bu0430 current reception signal u0432u044bu0447u0438u0441u043bu00a0u0435u0442 value errors, showing the difference between the current reception signal and a reception signaland u0432u044bu0447u0438u0441u043bu00a0u0435u0442 current reception beam weight coefficient using the previous reception beam weight coefficient, a spectral signal and the date u043du0430u0447u0435u043du0438u00a0 errors, the device contains a weighting factor calculator step reception beam u0434u043bu00a0 u0432u044bu0447u0438u0441u043bu0435u043du0438u00a0 u0437u043du0430u0447u0435u043du0438u00a0 step reception weighting factor the beam using u0437u043du0430u0447u0435u043du0438u00a0 errors and output signalwhich is formed by u043fu0440u0438u043cu0435u043du0435u043du0438u00a0 weighting factor to a spectral u0441u0443u0436u0435u043du043du043eu043cu0443 reception beam signal, and receiving the beam of the weighting factor calculator the difference between the previous weight coefficient u043bu00a0 u0432u044bu0447u0438u0441u043bu0435u043du0438u00a0 reception beam and a weighting factor u0437u043du0430u0447u0435u043du0438u00a0 step receiving the beam, u0441u043fu0435u043au0442u0440u0430u043bu044c but the date signal and u0441u043eu043fu0440u00a0u0436u0435u043du043du043eu0439 values u0437u043du0430u0447u0435u043du0438u00a0 mistakesas the current reception beam weight coefficient.;16. device for p.15, in which the weighting factor calculator step reception beam selects important step weighting factor the reception beam, so that the current this is consistent with the optimal weighting of step beam.;17.method u0444u043eu0440u043cu0438u0440u043eu0432u0430u043du0438u00a0 optimal weighting factor within the beam so that a beam u00a0u0432u043bu00a0u043bu0441u00a0 optimal reception beam in the direction of the reception signal. a base station comprising u0441u0435u0431u00a0 at least one reception antenna.with the u0431u0430u0437u043eu0432u0430u00a0 u0441u0442u0430u043du0446u0438u00a0 forms the reception beam reception antenna weighting factor using the previous reception beam and the current reception u0441u0438u0433u043d ala, u0432u044bu0447u0438u0441u043bu00a0u0435u0442 value errors, indicating the difference between the current reception signal and a reception signaland u0432u044bu0447u0438u0441u043bu00a0u0435u0442 current reception beam weight coefficient using the previous reception beam weight coefficient, and are the current reception signal u0435u043du0438u00a0 errors, the method includes u0441u0435u0431u00a0 phases, which form the important step of receiving beam weighting factor using the u0437u043du0430u0447u0435u043du0438u00a0 mistakes and tips one signalthrough the weighting factor is u043fu0440u0438u043cu0435u043du0435u043du0438u00a0 reception beam to the step signal, u0432u044bu0447u0438u0441u043bu00a0u044eu0442 difference between previous weight coefficient etc. u0438u0435u043cu043du043eu0433u043e beam and a weighting factor u0437u043du0430u0447u0435u043du0438u00a0 step receiving beam, the reception signal and u0441u043eu043fu0440u00a0u0436u0435u043du043du043eu0439 values u0437u043du0430u0447u0435u043du0438u00a0 mistakesas the current reception beam weight coefficient and selecting the important step of receiving beam weighting factor so that the weight coefficient etc. u0438u0435u043cu043du043eu0433u043e beam with optimal step beam.;18.the device u0444u043eu0440u043cu0438u0440u043eu0432u0430u043du0438u00a0 optimal weighting factor within the beam so that a beam u00a0u0432u043bu00a0u043bu0441u00a0 optimal reception beam in the direction of the reception. was chasing in the base station, including u0441u0435u0431u00a0 at least one reception antenna.with the u0431u0430u0437u043eu0432u0430u00a0 u0441u0442u0430u043du0446u0438u00a0 forms the reception beam reception antenna weighting factor using the previous reception beam and the current reception u0441u0438u0433u043d ala, u0432u044bu0447u0438u0441u043bu00a0u0435u0442 value errors, indicating the difference between the current reception signal and a reception signaland u0432u044bu0447u0438u0441u043bu00a0u0435u0442 current reception beam weight coefficient using the previous reception beam weight coefficient, and are the current reception signal u0435u043du0438u00a0 errors, the device contains a weighting factor calculator step reception beam u0434u043bu00a0 u0432u044bu0447u0438u0441u043bu0435u043du0438u00a0 u0437u043du0430u0447u0435u043du0438u00a0 step weighting factor foster lou cha using u0437u043du0430u0447u0435u043du0438u00a0 errors and output signalthrough the weighting factor is u043fu0440u0438u043cu0435u043du0435u043du0438u00a0 reception beam to the step signal, and receiving the beam u0434u043bu00a0 u0432u044bu0447u0438u0441u043bu0435u043du0438 weighting factor calculator the difference between the previous weight coefficient u00a0 reception beam and a weighting factor u0437u043du0430u0447u0435u043du0438u00a0 step receiving beam, the reception signal and u043fu0440u00a0u0436u0435u043du043du043eu0439 values u0437u043du0430u0447u0435u043du0438u00a0 mistakesas the current reception beam weight coefficient.;19. device on p.18, in which the weighting factor calculator step reception beam selects important step weighting factor the reception beam, so that the current this is consistent with the optimal weighting of step beam.;20.the device u0434u043bu00a0 reception signal in a base station, comprising u0441u0435u0431u00a0 at least one reception antenna, the device contains a processor signals u0434u043bu00a0 u0432u044bu0447 u0438u0441u043bu0435u043du0438u00a0 u0437u043du0430u0447u0435u043du0438u00a0 mistakes, u043fu0440u0435u0434u0441u0442u0430u0432u043bu00a0u044eu0449u0435u0433u043e difference between the reception signal and a reception signal using the techniques from the first method ica and the second method by receiving the reception signalu0432u044bu0447u0438u0441u043bu0435u043du0438u00a0 u0437u043du0430u0447u0435u043du0438u00a0 step weighting factor the reception beam using u0437u043du0430u0447u0435u043du0438u00a0 errors and output signal, which is formed by u043fu0440u0438u043cu0435u043du0435u043du0438u00a0 preceding the weighting factor u0441u0442u0432u0443u044eu0449u0435u0433u043e reception beam to the step signal, and the difference between the previous weight coefficient u0432u044bu0447u0438u0441u043bu0435u043du0438u00a0 reception beam and works the weighting factor of the u0437u043du0430u0447u0435u043du0438u00a0 step within the beam.the reception signal and u0441u043eu043fu0440u00a0u0436u0435u043du043du043eu0439 values u0437u043du0430u0447u0435u043du0438u00a0 mistakes, as the current reception beam weight coefficient and the reception beams u0434u043bu00a0 u0444u043eu0440u043cu0438u0440u043eu0432u0430u043du0438u00a0 p u0440u0438u0435u043cu043du043eu0433u043e beam using the reception signal and a reception beam weight coefficient and u0444u043eu0440u043cu0438u0440u043eu0432u0430u043du0438u00a0 output signal by receiving the beam u043fu0440u0438u043cu0435u043du0435u043du0438u00a0 the step signal.;21. device for the p.20, in which the error u00a0u0432u043bu00a0u0435u0442u0441u00a0 importance u0441u0440u0435u0434u043du0435u043au0432u0430u0434u0440u0430u0442u0438u0447u0435u0441u043au043eu0439 errors (at).;22. device for the p.20, in which first the u00a0u0432u043bu00a0u0435u0442u0441u00a0 technique u043fu043eu0441u0442u043eu00a0u043du043du044bu0445 modules (cm), and the second method u00a0u0432u043bu00a0u0435u0442u0441u00a0 technique with the decision (dd).;23. device for the p.20, in which the processor signals u043eu043fu0440u0435u0434u0435u043bu00a0u0435u0442 importance step weighting factor within the beam so that the beam u0441u043eu043eu0442u0432 reception weighting factor u0435u0442u0441u0442u0432u043eu0432u0430u043b optimal step beam in the direction of the reception signal.
机译:1,基站中的设备接收信号,包括至少一个接收天线,该设备包含一个设备接收设备,该设备包含一个设备接收信号,该设备包含一个设备接收信号。 u00a0频谱和 u0434 u043b u00a0接收信号以及接收信号 u0441 u0443 u0436 u0435 u043d u0438 u00a0的接收,处理器信号 u0434 u043b u00a0 u0432 u044b u0447 u0438 u0441 u043b u0435 u043d u0438 u00a0 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0错误,接收与 u043f u0440 u0435 u0434 u0434 u0441 u0442 u0430 u0432 u043b u00a0 u044e u0449 u0435 u0433 u043e u0438 u0433 u043d u0430 u043b u043e u043c和所需的接收信号使用第一种方法和第二种方法的方法,即由接收产生的频谱信号日期, u0432 u044b u0447 u0438 u0441 u043b u0435 u043d u0438 u00a0 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0使用 u0437 u043d u04a加权接收波束 u0447 u0435 u043d u0438 u00a0错误和输出信号,由 u043f u0440 u0438 u043c u0435 u043d u0435 u043d u0438 u00a0预加权因子w u0440 u0438 u0435 u0435 u043c u043d u043e u0433 u043e u0441 u0443 u0436 u0435 u043d u043d u043e u043c u0443光束到频谱信号前一信号与 u0432 u044b u0447 u0438 u0441 u043b u0435 u043d u0438 u00438光束权重系数和权重因子 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0接收光束的步骤, u0441 u043f u0435 u043a u044a u0442 u0440 u0430 u0430 u043b u044c u043d日期信号和 u0441 u043e u043f u0440 u00a0 u0436 u0435 u043d u043d u043d u043e u0439值 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0错误地作为当前接收光束权重系数和接收光束 u0434 u043b u00a0 u0444 u043e u0440 u043c u0438 u0440 u043e u0432 u0430 u043d u0438 u00a0使用光谱 u0441 u0438 u0433 u043d日期ala和the加权因子和接收光束输出信号最后通过接收光束 u0444 u043e u0440 u043c u0438 u0440 u043e u0432 u0430 u043d u0438 u00a0 u043f u0440 u0438 u043c u0435 u0435 u043d u0435 u043d u0438 u00a0将u0441 u0443 u0436 u0435 u043d u043d u043e u043c u0443转换为频谱信号; 2。用于第1页的设备,其中信号处理器包含加权计算器 u0434 u043b u00a0 u0432 u044b u0447 u0438 u0441 u043b u0435 u043d u043d u0438 u00a0 u0437 u043d u043d u0430 u0447 u0435 u043d u0438 u00a0错误使用第一种方法ica和第二种方法通过接收频谱信号和 u0432 u044b u0447 u0438 u0441 u043b u0435 u043d u0438 u00a0日期差 u0435 u0434 u0435 u043d u0438 u0435 u043c u0437 u043d u0430 u0447 u0435 u043d u043d u0438 u00a0波束内的步长加权因子。频谱信号和 u0441 u043e u043f u0440 u00a0 u0436 u0435 u043d u043d u043d u043e u0439日期值 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0错误作为加权因子和加权因子计算器步进接收光束 u0434 u043b u00a0 u0432 u044b u0447 u0438 u0441 u043b u0435 u043d u0438 u00a0 u0437 u043d u0430 u0447 u0435 u0435 u043d u0438 u00a0步权重因子b使用 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0错误和输出信号进行eam; 3。设备1,其中错误的值 u00a0 u0432 u043b u00a0 u0435 u0442 u0441 u00a0 u0441 u0440 u0435 u0434 u043d u0435 u0435 u043a u043a u0432 u04330 u0434 u0440 u0430 u0442 u0438 u0447 u0435 u0441 u043a u043e u0439(at).; 4。设备1,其中第一个基本 u00a0 u0432 u043b u00a0 u0435 u0442 u0441 u00a0技术 u043f u043e u0441 u0442 u043e u00a0 u043d u043d u043d u044b u0445模块(cm),第二种方法(u)带有决策(dd)的方法。设备1,其中处理器发信号通知 u043e u043f u0440 u0435 u0434 u0435 u043b u00a0 u0435 u0442波束内的重要步长加权因子,以便波束 u0441 u043e u043e u0442 u0432接收权重因子 u0435 u0442 u0441 u0442 u0432 u043e u0432 u0430 u043b沿接收信号方向的最佳步进波束。6.基站中的接收信号,包括 u0441 u0435 u0431 u00a0以此方式至少有一个接收天线包含进行交流驱动和缩小接收信号范围的阶段, u0432 u044b u0447 u0438 u0441 u043b u00a0 u044e u0442重要错误, u043f u0440 u0435 u0434 u0441 u0442 u0430 u0432 u043b u00a0 u044e u0449 u0435 u0439使用第一种方法和第二种方法的接收信号和接收信号之间的差异,即按接收日期划分的频谱信号, u0432 u044b u0447 u0438 u0441 u043b u00a0 u044e u0442重要步长使用 u0437 u043d u0430 u0447加权接收波束 u0435 u043d u0438 u00a0错误和输出信号,它由 u043f u0440 u0438 u043c u0435 u043d u0435 u043d u0438 u00a0预加权因子等组成。 u0438 u0435 u043c u043d u043e u0433 u043e u0441 u0443 u0436 u0435 u043d u043d u043e u043c u0443先前的权重系数 u0432 u044b u0447 u0438 u0441 u043b u00a0 u044e u0442接收光束与加权因子 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0步进接收光束,以及频谱 u0443 u0436 u0435 u043d u043d u043e u0433 u0433信号和 u0441 u043e u043f u0440 u00a0 u0436 u0435 u043d u043d u043e u0439值 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0错误,因为当前接收波束权重系数。使用频谱日期信号和权重因子形成波束通过接收光束 u043f u0440 u0438 u043c u0435 u043d u0435 u043d u0438 u00a0接收光束到频谱 u0441 u0443 u0436 u0435 u043d u043d u043d u043e u043c u0443信号; 7。第6页的方法,其中错误 u00a0 u0432 u043b u00a0 u0435 u0442 u0441 u00a0重要性 u0441 u0440 u0435 u0434 u0434 u043d u0435 u043a u0432 u0432 u0430 u0434 u0440 u0430 u0442 u0438 u0447 u0435 u0441 u043a u043e u0439错误(at).; 8。第6页的方法,其中首先 u00a0 u0432 u043b u00a0 u0435 u0442 u0441 u00a0技术 u043f u043e u0441 u0441 u0442 u043e u00a0 u043d u043d u043d u044b u0445 ),第二种方法 u00a0 u0432 u043b u00a0 u0435 u0442 u0441 u00a0技术的决定(dd)。; 9。第6页的方法,其中权重因子 u043e u043f u0440 u0435 u0434 u0435 u043b u00a0 u044e u0442的步骤接收光束的阶段包括一个阶段,其中 u043e u043f u0440 u0435 u0434 u0435 u043b u00a0 u044e u0442重要步骤 u0432 u0435 u0441 u043e u0432 u0432 u043e u0433使其与接收光束的最佳加权一致10,包括 u0441 u0435 u0431 u00a0的基站中的接收信号,以此方式至少有一个接收天线包含其中 u0432 u044b u0447的级 u0438 u0441 u043b u00a0 u044e u0442 osh的重要性 u0438 u0431 u043a u0438, u043f u0440 u0435 u0434 u0441 u0442 u0430 u0432 u0432 u043b u00a0 u044e u043e u043e u0435使用第一种方法和第二种方法的联合方法通过接收信号的接收来接收信号和接收信号之间的差异。 u0432 u044b u0447 u0438 u044 1 u043b u00a0 u044e u0442重要级加权因子使用 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0错误和输出信号,由 u043f u0440 u0438 u043c形成 u0435 u043d u0435 u043d u0438 u00a0 u043f u0440 u0435 u0434 u0448 u0435 u0441加权因子 u0442 u0432 u0443 u044e u0449 u0435 u0433 u043e到步骤的接收光束信号 u0432 u044b u0447 u0438 u0441 u043b u00a0 u044e u0442先前权重系数与接收波束之间的差异。 m u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0波束内的步长加权因子。接收信号和 u0441 u043e u043e u043f u0440 u00a0 u0436 u0435 u0435 u043d u043d u043d u043e u0439值 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0错误,作为当前接收波束权重系数,使用priya接收波束信号形成波束并通过接收波束形成加权信号以形成输出信号 u043f u0440 u0438 u043c u0435 u043d u0435 u043d u0438 u00a0到步进信号; 11。第10页上的方法,其中错误 u00a0 u0432 u043b u00a0 u0435 u0442 u0441 u00a0重要度 u0441 u0440 u0435 u0434 u0434 u043d u0435 u043a u043a u0432 u0430 u0434 u0440 u0430 u0442 u0438 u0447 u0435 u0441 u043a u043e u0439错误(at).; 12。第10页的方法,其中首先 u00a0 u0432 u043b u00a0 u0435 u0442 u0441 u00a0技术 u043f u043e u0441 u0441 u0442 u043e u00a0 u043d u043d u043d u044d u044b u0445模块(cm ),第二种方法 u00a0 u0432 u043b u00a0 u0435 u0442 u0441 u00a0技术的决定(dd)。; 13。在第10页的方法中,其中加权因子 u043e u043f u0440 u0435 u0434 u0435 u043b u00a0 u044e u0442步骤接收光束的阶段包括一个阶段,其中 u043e u043f u0440 u0435 u0434 u0435 u043b u00a0 u044e u0442重要步骤 u0432 u0435 u0441 u043e u0432 u0432 u043e u0433使其与接收光束的最佳加权一致14,方法 u0444 u043e u0440 u043c u0438 u0440 u043e u0432 u0430 u043d u0438 u00a0波束内的最佳加权因数使波束 u00a0 u0432 u043b u00a0 u043b u0441 u00a0沿接收信号方向的最佳接收光束。包括至少一个接收天线的基站,该基站至少具有一个接收天线,并且具有u0431 u0430 u0437 u043e u0432 u0430 u00a0 u0441 u0442 u0430 u043d u0446 u0438 u00a0使用先前的接收波束的接收波束接收天线加权因子,以及带有 u0438 u0433 u043d u0430 u043b u0430当前接收信号 u0432 u044b u0447 u0438 u0441 u043b u00a0 u0435 u0442值错误的频谱数据,显示了当前接收信号之间的差异使用前一个接收波束权重系数,频谱信号和日期 u043d u04d u0430 u0447 u0435 和一个接收信号和 u0432 u044b u0447 u0438 u0441 u043b u00a0 u0435 u0442当前接收波束权重系数u043d u0438 u00a0错误,该方法包括 u0441 u0435 u0431 u00a0相位,这是使用 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0错误和接收光束加权因子的重要步骤由 u043f u0440 u0438 u043c u0435 u043d u0435 u043d u0438 u00a0加权系数到频谱 u0441 u0443 u0436 u0435 u043d u043d u043d u043e u043c u0443接收波束信号,前一个权重之间的差444 u0438 u0446 u0438 u0435 u043d u0442 u043e u043c接收光束和加权因子 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0步进接收光束,频谱信号和 u0441 u043e u043f u0440 u00a0 u0436 u0435 u043d u043d u043e u0439日期值 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0作为当前接收波束权重系数并选择 u0438 u0435 u043c u043d u043e u0433 u043e具有最佳步进光束的光束; 15.设备 u0444 u043e u0440 u043c u0438 u0440 u043e u0432 u0430 u043d u0438 u00a0波束内的最佳加权因子,以使波束 u00a0 u0432 u043b u00a0 u043b u0441 u00a0在接收方向上是最佳接收波束。正在使用 u0431 u0430 u0437 u043e u043e u0432 u0430 u00a0 u0441 u0442 u0442 u0430 u043d u043d u0446 u0438至少追踪一个接收天线,包括 u0441 u0435 u0431 u00a0 u00a0使用前一个接收波束和接收日期 u0438 u0433 u043d u0430 u043b u0430当前接收信号 u0432 u044b u0447 u0438 u0441 u043b u00a0的频谱日期形成接收波束接收天线加权因子 u0435 u0442值误差,显示当前接收信号与接收信号之间的差值,并使用先前的接收波束权重系数, u043b u00a0 u0435 u0442当前接收波束权重系数,频谱信号和日期 u043d u0430 u0447 u0435 u043d u0438 u00a0错误,该设备包含一个加权因子计算器阶跃接收波束 u0434 u043b u00a0 u0432 u044b u0447 u0438 u0441 u043b u0435 u043d u0438 u00a0 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0步接收加权因子b使用 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0错误和输出信号,由 u043f u0440 u0438 u043c u0435 u043d u0435 u043d u043d u0438 u00a0加权系数形成频谱 u0441 u0443 u0436 u0435 u043d u043d u043e u043c u0443接收波束信号,并且接收加权因子计算器的波束与先前加权系数之间的差 u043b u00a0 u0432 u044b u0447 u0438 u0441 u043b u0435 u043d u0438 u00a0接收光束和加权因子 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0接收光束的步骤, u0441 u043f u0435 u043a u0442 u0440 u0430 u043b u044c,但日期信号和 u0441 u043e u043f u0440 u00a0 u0436 u0435 u043d u043d u043d u043e u0439值 u0437 u043d u043d u0430 u0447 u0435 u043d u043d u00a0误认为当前接收波束权重系数; 16。第15页的设备,其中加权因子计算器的步进接收波束选择重要的步进加权因子作为接收波束,从而使当前电流与步进波束的最佳加权相一致。; 17.方法u043c u0438 u0440 u043e u0432 u0430 u043d u0438 u00a0波束内的最佳加权因子,从而使波束 u00a0 u0432 u043b u00a0 u043b u0441 u0040在接收方向上为最佳接收波束信号。包括至少一个接收天线的基站,该基站至少具有一个接收天线,并且具有u0431 u0430 u0437 u043e u0432 u0430 u00a0 u0441 u0442 u0430 u043d u0446 u0438 u00a0使用前一接收波束和当前接收波束的接收波束加权天线加权因子 u0441 u0438 u0433 u043d ala, u0432 u044b u0447 u0438 u0441 u043b u00a0 u0435 u0442值误差,指示两者之间的差异当前接收信号和接收信号和使用前一个接收波束权重系数的当前接收波束权重系数为当前接收信号 u0435 u043d u0432 u044b u0447 u0438 u0441 u043b u00a0 u0435 u0442 u0438 u00a0错误,该方法包括 u0441 u0435 u0431 u00a0阶段,这是使用 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0接收光束加权因子的重要步骤,并提示通过权重因子发出的一个信号是 u043f u0440 u0438 u043c u043c u0435 u043d u0435 u043d u0438 u00a0到步进信号的接收光束, u0432 u044b u0447 u0438 u0441 u043b u00a0 u044e u0442先前权重系数之间的差等。 u0438 u0435 u043c u043d u043e u0433 u043e波束和加权因子 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0步进接收波束,接收信号和 u0441 u043e u043f u0440 u00a0 u0436 u0435 u043d u043d u043d u043e u0439的值 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0误将其作为当前接收波束权重系数,并选择接收波束加权因子的重要步骤,以便权重系数等。 u0438 u0435 u043c u043d u043e u0433 u043e光束具有最佳步进光束; 18.设备 u0444 u043e u0440 u043c u0438 u0440 u043e u0432 u0430 u043d u0438 u00a0 op波束内的最佳加权因子,以使波束 u00a0 u0432 u043b u00a0 u043b u0441 u00a0在接收方向上是最佳接收波束。正在使用 u0431 u0430 u0437 u043e u043e u0432 u0430 u00a0 u0441 u0442 u0442 u0430 u043d u043d u0446 u0438至少追踪一个接收天线,包括 u0441 u0435 u0431 u00a0 u00a0使用前一个接收波束和当前接收波束形成接收波束接收天线加权因子, u0432 u044b u0447 u0438 u0441 u043b u00a0 u0435 u0442值误差,使用先前的接收波束权重系数表示当前接收信号与接收信号之间的差,并且 u0432 u044b u0447 u0438 u0441 u043b u00a0 u0435 u0442当前接收波束权重系数为当前接收信号u0435 u043d u0438 u00a0错误,设备包含一个加权因子计算器步接收波束 u0434 u043b u00a0 u0432 u044b u0447 u0438 u0441 u043b u0435 u043d u0438 u00a0 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0使用 u0437 u043d u0430 u0447 u0435 u043的步权重因子d u0438 u00a0错误和通过加权因子输出的信号为 u043f u0440 u0438 u043c u0435 u043d u0435 u043d u0438 u00a0接收到步进信号的光束,并接收光束 u0434 u043b u00a0 u0432 u044b u0447 u0438 u0441 u043b u0435 u043d u0438先前加权系数 u00a0接收波束与加权因子 u0437 u043d u0430 u0447 u0435 u0435 u043d u0438之间的差 u00a0步进接收光束,接收信号和 u043f u0440 u00a0 u0436 u0435 u043d u043d u043d u043e u0439值 u0437 u043d u0430 u0447 u0435 u043d u043d u0438 u00a0错误地作为当前接收光束重量系数; 19。第18页的设备,其中加权因子计算器的步进接收波束选择重要的步进加权因子作为接收波束,以使当前电流与步进波束的最佳加权相一致。20.设备 u0434 u043b u00a0基站中的接收信号,包括 u0441 u0435 u0431 u00a0,该设备包含处理器信号 u0434 u043b u00a0 u0432 u044b u0447 u0438 u0441 u043b u0435 u043d u0438 u00a0 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0错误, u043f u0440 u0435 u0434 u0441 u0442 u0430 u0432 u043b u00a0 u044e u0449 u043e u043e使用第一种方法ica和第二种方法的技术通过接收接收信号来接收信号和接收信号之间的差异 u0432 u044b u0447 u0438 u0441 u043b u0435 u043d u0438 u00a0 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0使用 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0错误接收光束rs和输出信号,由 u043f u0440 u0438 u043c u0435 u043d u0435 u043d u043d u0438 u00a0形成,位于加权因子 u0441 u0442 u0432 u0443 u044e u0449 u0435 u0433 u043e接收光束到阶跃信号,与先前的权重系数 u0432 u044b u0447 u0438 u0441 u043b u0435 u043d u0438 u00a0接收光束之间的差和 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0步距。接收信号和 u0441 u043e u043f u0440 u00a0 u0436 u0435 u043d u043d u043e u0439值 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0错误,因为当前接收波束权重系数和接收波束 u0434 u043b u00a0 u0444 u043e u0440 u043c u0438 u0440 u043e u0432 u0430 u043d u0438 u00a0 p u0440 u0438 u0435 u043c u043d u043e u0433 u043e光束使用接收信号和接收光束权重系数以及 u0444 u043e u0440 u043c u0438 u0440 u043e u0432 u0432 u0430 u043d u0438 u00a0输出符号通过接收光束 u043f u0440 u0438 u043c u0435 u043d u0435 u043d u0438 u00a0的步进信号; 21。第20页的装置,其中错误 u00a0 u0432 u043b u00a0 u0435 u0442 u0441 u00a0重要性 u0441 u0440 u0435 u0434 u043d u043d u0435 u043a u0432 u0430 u04330 u0434 u0440 u0430 u0432 u0432 u0430 u0434 u0434 u0440 u0447 u0435 u0441 u043a u043e u0439错误(at).; 22。第20页的设备,其中首先是 u00a0 u0432 u043b u00a0 u0435 u0442 u0441 u00a0技术 u043f u043e u0441 u0441 u0442 u043e u00a0 u043d u043d u043d u044d u044b u0445厘米),第二种方法(u)决定(dd).23。 p.20的装置,其中处理器发出信号 u043e u043f u0440 u0435 u0434 u0435 u043b u00a0 u0435 u0442光束内的重要步长加权因子,以便光束 u0441 u043e u043e u0442 u0432接收加权因子 u0435 u0442 u0441 u0442 u0432 u043e u0432 u0430 u043b沿接收信号方向的最佳步进波束。

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