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Performance Analysis of Coded SSK Modulation on Block-Fading Channels

机译:块衰落信道上编码SSK调制的性能分析

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摘要

In this paper, we analyze the performance of convolutionally coded space-shift keying (SSK) modulation on block-fading channels. We derive the transfer function bound for the conditional error performance of coded SSK modulation. Existing works on SSK error performance focus mostly either on uncoded systems or on coded systems with independent fading between successive symbols. Code performance analysis is complicated by the fact that SSK modulation does not yield a uniform symbol, i.e., the error probability of a bit in a symbol is not independent of the position of the bit in the label. Furthermore, there are no nearest neighbors in the SSK constellation. The code and modulation must be jointly analyzed. We show techniques that can be employed to derive the error transfer function of the convolutional code. The degrees of separation in SSK modulation are accurately represented. The diversity order achieved by the system can be predicted. We also show a technique that can simplify analysis of the coded system. We present simulation results that demonstrate the asymptotic accuracy of the derived transfer function bound.
机译:在本文中,我们分析了在块衰落信道上卷积编码的空移键控(SSK)调制的性能。我们推导了编码SSK调制的条件误差性能的传递函数。现有的关于SSK错误性能的工作主要集中在未编码系统或在连续符号之间具有独立衰落的编码系统。由于SSK调制不会产生统一的符号,即符号中某个位的错误概率与标签中该位的位置无关,这一事实使代码性能分析变得复杂。此外,在SSK星座中没有最近的邻居。编码和调制必须一起分析。我们展示了可以用来推导卷积码的误差传递函数的技术。 SSK调制中的分离度可以准确表示。可以预测系统实现的分集顺序。我们还展示了一种可以简化编码系统分析的技术。我们目前的仿真结果证明了导出的传递函数界的渐近精度。

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