发明名称 Orthogonal frequency division multiplexing (OFDM) transmitter and receiver windowing for adjacent channel interference (ACI) suppression and rejection
摘要 An optimum time domain windowing scheme for orthogonal frequency-division multiplexing (OFDM)-based waveforms in the sense of spectral concentration is proposed. Instead of evenly suppressing the sidelobes along the frequency, the sidelobe power is concentrated within a guard band while maximally suppressing the power for a desired frequency range. This is achieved by employing optimum finite duration pulses, prolate spheroidal wave functions (PSWF), to shape the OFDM transmit pulse. Also with per-subcarrier windowing scheme, the effect of inner subcarriers on sidelobes is diminished by utilizing the concentration bandwidth versus out-of-band power trade-off in PSWF and the multicarrier nature of the OFDM.
申请公布号 US8908796(B1) 申请公布日期 2014.12.09
申请号 US201414276629 申请日期 2014.05.13
申请人 University of South Florida 发明人 Guvenkaya Ertugrul;Arslan Huseyin
分类号 H04K1/02;H04L25/03;H04L25/49;H04J11/00;H04L27/26;H04L25/08 主分类号 H04K1/02
代理机构 Smith & Hopen, P.A. 代理人 Sauter Molly;Smith & Hopen, P.A.
主权项 1. A method for time domain windowing of an Orthogonal Frequency Division Multiplexing (OFDM)-based signal, the method comprising: receiving, at a receiver, an OFDM-based signal comprising a plurality of subcarriers; and performing, at the receiver, discrete prolate spheroidal windowing of each of the plurality of subcarriers of the received OFDM-based signal, wherein performing discrete prolate spheroidal windowing of each of the plurality of subcarriers of the received OFDM-based signal further comprises: identifying a spectral location of an edge subcarrier of the plurality of subcarriers;identifying a spectral distance between each of the plurality of subcarriers and the edge subcarrier;identifying a unique windowing function for each of the plurality of subcarriers, the unique windowing function for each of the plurality of subcarriers having a confinement band that is determined by the summation of a guard band of the OFDM-based signal and the spectral distance between the subcarrier and the edge subcarrier; andperforming, at the receiver, discrete prolate spheroidal windowing of each of the plurality of subcarriers of the received OFDM-based signal by shaping each of the plurality of subcarriers using the unique windowing function identified for each of the plurality of subcarriers.
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