Invention Grant
- Patent Title: Preamble symbol generation and receiving method, and frequency-domain symbol generation method and device
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Application No.: US15304857Application Date: 2015-04-16
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Publication No.: US10148476B2Publication Date: 2018-12-04
- Inventor: Wenjun Zhang , Guanbin Xing , Ge Huang , Hongliang Xu , Dazhi He , Yunfeng Guan
- Applicant: Shanghai National Engineering Research Center of Digital Television Co., Ltd.
- Applicant Address: CN Shanghai
- Assignee: Shanghai National Engineering Research Center of Digital Television Co., Ltd.
- Current Assignee: Shanghai National Engineering Research Center of Digital Television Co., Ltd.
- Current Assignee Address: CN Shanghai
- Agency: Kilpatrick Townsend & Stockton, LLP
- Priority: CN201410184919 20140405; CN201410153040 20140416; CN201410168180 20140424; CN201410175323 20140428; CN201410177035 20140429; CN201410182962 20140430; CN201410185112 20140505; CN201410229558 20140528; CN201410259080 20140612; CN201410274626 20140619; CN201410326504 20140710; CN201410753506 20141210; CN201510039510 20150126; CN201510052202 20150130; CN201510061935 20150130; CN201510064118 20150206; CN201510076151 20150212; CN201510076155 20150212; CN201510076216 20150212
- International Application: PCT/CN2015/076808 WO 20150416
- International Announcement: WO2015/158292 WO 20151022
- Main IPC: H04L27/26
- IPC: H04L27/26 ; H04L5/00 ; H04L25/02 ; H04L7/00

Abstract:
Provided are a preamble symbol generation method and receiving method, and a relevant frequency-domain symbol generation method and a relevant device, characterized in that the method comprises: generating a cyclic prefix according to a partial time-domain main body signal truncated from a time-domain main body signal; generating a modulation signal based on a portion or the entirety of the partial time-domain main body signal; and generating time-domain symbols based on at least one of the cyclic prefix, the time-domain main body signal and the modulation signal, wherein the preamble symbol contains at least one of the time-domain symbols. Therefore, using the entirety or a portion of a certain length of a time-domain main body signal as a prefix, it is possible to implement coherent detection, which solves the issues of performance degradation with non-coherent detection and differential decoding failure under complex frequency selective fading channels; and generating a modulation signal as a postfix based on the entirety or a portion of the above truncated time-domain main body signal enables the generated preamble symbol to have sound fractional frequency offset estimation performance and timing synchronization performance.
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