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Packet Design and Signal Processing for OFDM-Based Mobile Broadband Wireless Communication Systems

机译:基于OFDM的移动宽带无线通信系统的分组设计和信号处理

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摘要

We consider improving the performance of orthogonal frequency-division multiplexing (OFDM)-based mobile broadband wireless communication (MBWC) systems. We show that a recently approved packet-based MBWC standard can cause the resulting systems to suffer from severe performance degradations for time-varying channels due to the lack of a mechanism for tracking the time-varying channels needed for coherent detection. We consider both packet design and signal processing to deal with time-varying channels. For the packet design, we segment an entire packet into multiple subpackets—with each subpacket having zero tail bits to reset the convolutional channel encoder—so that the detection/decoding result of each subpacket can be used to update the channel response for this subpacket. For signal processing, we use weighted polynomial fitting and prediction at the receiver to improve the channel tracking accuracy. Simulation results show that the coherent detection based on our new scheme can significantly outperform the commonly suggested differential modulation/detection methods.
机译:我们考虑提高基于正交频分复用(OFDM)的移动宽带无线通信(MBWC)系统的性能。我们表明,最近批准的基于数据包的MBWC标准可能会导致所产生的系统遭受时变信道的严重性能下降,这是由于缺乏跟踪相干检测所需的时变信道的机制所致。我们考虑包设计和信号处理来处理时变信道。对于数据包设计,我们将整个数据包分割为多个子数据包-每个子数据包具有零尾比特以重置卷积信道编码器-以便每个子数据包的检测/解码结果都可以用于更新此子数据包的信道响应。对于信号处理,我们在接收器处使用加权多项式拟合和预测来提高信道跟踪精度。仿真结果表明,基于我们的新方案的相干检测可以明显优于通常提出的差分调制/检测方法。

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