一种便于联合检测的同步算法

Andrew Apollonsky, Sam M. Keene
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引用次数: 0

摘要

研究了加性高斯白噪声(AWGN)下准静态平坦衰落信道联合检测时的同步问题。传统的检测器由于同时同步和解码两个信号的计算复杂性而避免进行联合检测。本文提出了一种检测主信号解码过程中是否存在干扰并确定干扰开始的时间点的系统。提出了一种继续解码主信号的遗传算法,同时对干扰源进行频率和信道同步。一旦同步完成,一种检测算法允许主信号和同步干扰同时解码被实现。仿真结果表明,802.11训练序列的长度为12个符号,足以实现有效的同步和联合检测。探讨了该制度的不足之处和今后工作中可能改进的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A synchronization algorithm to facilitate joint detection
This paper addresses the problem of synchronization when performing joint detection in a quasi-static flat-fading channel with Additive White Gaussian noise (AWGN). Conventional detectors avoid performing joint detection due to the computational complexity involved in both synchronizing and then decoding two signals simultaneously. This paper proposes a system that detects the presence of interference during the decoding of a primary signal and determines the point in time where the interference begins. A genetic algorithm that continues decoding the primary signal while performing frequency and channel synchronization on the interferer is presented. Once synchronization is completed, a detection algorithm that allows the simultaneous decoding of the primary signal and the synchronized interferer is implemented. It is demonstrated by simulation that the span of 12 symbols, the length of an 802.11 training sequence, is sufficient for effective synchronization and joint detection. The deficiencies of the system and potential avenues for improvement in future work are explored.
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