发明名称 Method and Device for Detecting Secondary Synchronous Signal, Computer Program and Storage Medium
摘要 The present invention provides a method and a device for detecting a secondary synchronous signal, a computer program and a storage medium. The method comprises: Step S1: extracting a first SSS sequence from a received signal according a PSS detection result; Step S2: performing rotation on the first SSS sequence, to obtain at least two second sequences including the first SSS sequence, channel paths corresponding to the at least two second sequences being located within a channel window in a time domain; Step S3: calculating a channel estimation result of each of the second sequences corresponding to each of SSS standard sequences; Step S4: selecting, according to the channel estimation result, valid channel paths corresponding to the respective SSS standard sequence from the channel paths corresponding to the second sequences; Step S5: calculating a signal-to-noise ratio corresponding to the respective SSS standard sequence according to the valid channel paths corresponding to the respective SSS standard sequence; and Step S6: determining a cell ID according to the SSS standard sequence corresponding to a maximum signal-to-noise ratio. According to the present invention, it is able to improve the accuracy of the SSS detection.
申请公布号 US2015189609(A1) 申请公布日期 2015.07.02
申请号 US201314407354 申请日期 2013.11.06
申请人 Telefonaktiebolaget LM Ericsson (publ) 发明人 Zhang Liping;Xu Baicheng;Ma Jing
分类号 H04W56/00;H04L25/02;H04J11/00 主分类号 H04W56/00
代理机构 代理人
主权项 1. A method for detecting a secondary synchronous signal in a Long Term Evolution LTE system, comprising: Step S1: extracting a first secondary synchronous signal SSS sequence from a received signal according a primary synchronous signal PSS detection result; Step S2: performing rotation on the first SSS sequence, to obtain at least two second sequences including the first SSS sequence, wherein channel paths corresponding to the at least two second sequences being located within a channel window in a time domain; Step S3: calculating a channel estimation result of each of the second sequences corresponding to each of SSS standard sequences; Step S4: selecting, according to the channel estimation result, valid channel paths corresponding to the respective SSS standard sequence from the channel paths corresponding to the second sequences; Step S5: calculating a signal-to-noise ratio corresponding to the respective SSS standard sequence according to the valid channel paths corresponding to the respective SSS standard sequence; and Step S6: determining a cell ID according to the SSS standard sequence corresponding to a maximum signal-to-noise ratio.
地址 Stockholm SE
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