发明授权
US06873371B2 Ghost cancellation reference signal with bessel chirps and PN sequences, and TV receiver using such signal
失效
带有贝塞尔啁啾和PN序列的Ghost消除参考信号,以及使用这种信号的TV接收机
- 专利标题: Ghost cancellation reference signal with bessel chirps and PN sequences, and TV receiver using such signal
- 专利标题(中): 带有贝塞尔啁啾和PN序列的Ghost消除参考信号,以及使用这种信号的TV接收机
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申请号: US10155440申请日: 2002-05-24
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公开(公告)号: US06873371B2公开(公告)日: 2005-03-29
- 发明人: Chandrakant Bhailalbhai Patel , Jian Yang
- 申请人: Chandrakant Bhailalbhai Patel , Jian Yang
- 申请人地址: KR Seoul
- 专利权人: Samsung Electronics Co., Ltd.
- 当前专利权人: Samsung Electronics Co., Ltd.
- 当前专利权人地址: KR Seoul
- 代理机构: Howrey Simon Arnold & White, LLP
- 主分类号: H04N5/21
- IPC分类号: H04N5/21 ; H04N5/44
摘要:
Composite ghost cancellation reference (GCR) signals that make available both a chirp and a PN sequence during the same vertical-blanking-interval (VBI) scan line in each successive field facilitate more rapid and efficient calculations of ghost cancellation and of equalization, on a continuing basis. A television receiver for use with such composite GCR signals includes circuitry for separating the chirp and PN sequence portions of the GCR signals from the remainder of the composite video signal, a ghost cancellation filter and an equalization filter connected in cascade to respond to the composite video signal and provided each with adjustable filtering weights, and a computer. Random-access memory addressed during writing snatches the vertical-blanking-interval scan lines selected to include GCR signals. Sets of four successive ones of the selected scan lines are then additively and subtractively combined to separate the chirp portions of the GCR signals from a remainder of the composite video signal. The sets of selected scan lines are additively and subtractively combined in another way to separate the PN sequence portions of the GCR signals form a remainder of the composite video signal. The computer responds to the separated chirp portions of the GCR signals to calculate a discrete Fourier transform (DFT) therefrom. The computer proceeds from that DFT to determine the adjustable filtering weights of the ghost cancellation filter. The computer thereafter responds to the separated PN sequences to determine the adjustable filtering weights of the equalization filter.
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