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Wavelet packet division multiplexing and wavelet packet design under timing error effects

机译:时序误差影响下的小波包划分复用和小波包设计

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Wavelet packet division multiplexing (WPDM) is a multiple signal transmission technique in which the message signals are waveform coded onto wavelet packet basis functions for transmission. The overlapping nature of such waveforms in time and frequency provides a capacity improvement over the commonly used frequency division multiplexing (FDM) and time division multiplexing (TDM) schemes while their orthogonality properties ensure that the overlapping message signals can be separated by a simple correlator receiver. The interference caused by timing offset in transmission is examined. A design procedure that exploits the inherent degrees of freedom in the WPDM structure to mitigate the effects of timing error is introduced, and a waveform that minimizes the energy of the timing error interference is designed. An expression for the probability of error due to the presence of Gaussian noise and timing error for the transmission of binary data is derived. The performance advantages of the designed waveform over standard wavelet packet basis functions are demonstrated by both analytical and simulation methods. The capacity improvement of WPDM, its simple implementation, and the possibility of having optimum waveform designs indicate that WPDM holds considerable promise as a multiple signal transmission technique.
机译:小波包分割多路复用(WPDM)是一种多信号传输技术,其中消息信号被波形编码到基于小波包的功能上进行传输。此类波形在时间和频率上的重叠性质提供了比常用的频分复用(FDM)和时分复用(TDM)方案更高的容量,同时它们的正交性确保可以通过简单的相关器接收器分离重叠的消息信号。检查由传输中的定时偏移引起的干扰。介绍了一种利用WPDM结构固有的自由度来减轻时序误差影响的设计过程,并设计了一种使时序误差干扰能量最小的波形。推导了由于高斯噪声的存在而导致的错误概率和二进制数据传输的定时误差的表达式。通过分析和仿真方法都证明了设计波形相对于标准小波包基函数的性能优势。 WPDM的容量提高,其简单的实现以及具有最佳波形设计的可能性表明,WPDM作为多信号传输技术具有广阔的前景。

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