Adaptive optimization of receiver chip waveform for DS/SSMA with random spreading sequences

Joon Ho Cho, J. Lehnert
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引用次数: 3

Abstract

We consider the receiver optimization problem in asynchronous direct-sequence spread-spectrum multiple-access (DS/SSMA) communications with random spreading sequences. It is shown that the minimum average bit error rate of a correlation receiver is achieved by adaptively optimizing the receiver chip waveform depending on the energy and delay profiles of interfering users. Instead of directly solving an integral equation which gives the optimum chip waveform, we discretize the receiver chip waveform and develop a simple adaptive algorithm to find an approximate solution. Analytical predictions, as well as numerical results, show that the proposed receiver achieves a significant performance improvement over the conventional correlation receiver by effectively suppressing the multiple-access interference.
随机扩频DS/SSMA接收机芯片波形的自适应优化
研究了具有随机扩展序列的异步直接序列扩频多址(DS/SSMA)通信中的接收机优化问题。研究表明,通过根据干扰用户的能量和时延特征自适应优化接收机芯片波形,可以实现最小的相关接收机平均误码率。我们不是直接求解给出最佳芯片波形的积分方程,而是将接收器芯片波形离散化,并开发一种简单的自适应算法来求近似解。分析预测和数值结果表明,该接收机通过有效地抑制多址干扰,实现了比传统相关接收机性能的显著提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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