An MGF-derivative based unified analysis of incoherent diversity reception of M-ary orthogonal signals over fading channels

A. Annamalai, C. Tellambura
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引用次数: 6

Abstract

Exact error probability expressions for noncoherent M-ary frequency-shift-keying (MFSK) systems that employ postdetection equal-gain diversity over Rayleigh, Rician and Nakagami-m channels are derived using a Laplace derivative formula. Both independent and generically correlated fading cases are considered. For independent fading, closed-form solutions are also derived for both Nakagami-q fading (either with identical or dissimilar fading statistics) and mixed fading cases. Previous results are shown to be specific instances of our general expressions. Additionally, a new concise, derivative formula is obtained for calculating the bit error rate of square-law detected multichannel binary differential phase-shift-keying (BDPSK) signals. All these expressions are applicable in many cases of practical interest and provide accurate predictions of the performance of both binary and M-ary orthogonal signalling over generalized fading channels (with arbitrary fading parameters). Several numerical examples are presented to illustrate the application of the theory, including the investigation into optimal diversity order in energy-sharing communications, characterization of block orthogonal codes with soft-decision decoding (i.e., MFSK may also be viewed as a form of repetition coding) and analysis of MFSK with space (antenna) diversity.
基于mgf导数的衰落信道正交信号非相干分集接收的统一分析
使用拉普拉斯导数公式推导了非相干m波段移频键控(MFSK)系统的精确误差概率表达式,该系统采用检测后等增益分集在瑞利、瑞利和Nakagami-m信道上。考虑了独立衰落和一般相关衰落两种情况。对于独立衰落,还推导了Nakagami-q衰落(具有相同或不同衰落统计量)和混合衰落情况的封闭解。前面的结果显示为一般表达式的特定实例。此外,还得到了一个新的简洁的导数公式,用于计算平方律检测的多通道二进制差分相移键控(BDPSK)信号的误码率。所有这些表达式都适用于许多实际情况,并提供了在广义衰落信道(具有任意衰落参数)上二进制和m正交信号性能的准确预测。给出了几个数值例子来说明该理论的应用,包括对能量共享通信中最优分集顺序的研究,使用软判决解码(即MFSK也可以视为重复编码的一种形式)的块正交码的表征以及具有空间(天线)分集的MFSK的分析。
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