Reception of Short QAM Data Packets Using Sequential and Partial GLRT

A. Sergienko
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Abstract

Two methods are proposed to improve error rate performance for reception of short packets with quadrature amplitude modulation (QAM). Both approaches are based on the same idea as generalized likelihood ratio test (GLRT) but have reduced computational cost that scales linearly in both packet length and signal constellation size. The first method, sequential GLRT, is based on demodulation of QAM symbols sequentially using GLRT decision rule and treating previously demodulated symbols as known data. The second method, partial GLRT, uses partial search over a portion of packet while remaining data symbols are demodulated with hard decisions, and Euclidean distance between these decisions and received signal samples is used as a decision metric to improve detection reliability. Computer simulation results showed that partial GLRT provides bit error rate (BER) very close to achievable limit even for very short QAM packets where the number of data symbols is equal to the QAM constellation size. The loss at high signal-to-noise ratio is about 0.3 dB for 16-QAM and about 0.085 dB for 64-QAM. For sequential GLRT, BER performance is worse, but this method has lower computational cost and can be useful for choosing a suitable trade-off between BER performance and complexity.
使用顺序和部分GLRT接收短QAM数据包
提出了两种提高正交调幅(QAM)短报文接收误码率的方法。这两种方法都基于与广义似然比检验(GLRT)相同的思想,但在分组长度和信号星座大小上都呈线性扩展,从而降低了计算成本。第一种方法是顺序GLRT,它基于使用GLRT决策规则对QAM符号进行顺序解调,并将先前解调的符号作为已知数据处理。第二种方法是部分GLRT,它对部分数据包进行部分搜索,同时对剩余的数据符号进行硬决策解调,并使用这些决策与接收信号样本之间的欧几里得距离作为决策度量来提高检测可靠性。计算机仿真结果表明,即使对于数据符号数等于QAM星座大小的非常短的QAM数据包,部分GLRT也提供了非常接近可实现极限的误码率(BER)。高信噪比时,16-QAM的损耗约为0.3 dB, 64-QAM的损耗约为0.085 dB。对于顺序GLRT,误码率性能较差,但该方法的计算成本较低,可以在误码率性能和复杂性之间选择合适的权衡。
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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