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Performance of Orthogonal Space-Time Block Codes With Generalized Complex Orthogonal Design for Arbitrary Rectangular QAM Over Correlative Fading Channels

机译:相关衰落信道下具有任意正交矩形QAM的广义复正交设计的正交空时分组码的性能

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摘要

We derive the symbol error probability (SEP) expressions for orthogonal space-time block codes with any form of generalized complex orthogonal design (GCOD) employing arbitrary rectangular quadratic-amplitude modulation signaling over correlative fading channels. By first decorrelating the physical branches into uncorrelated virtual branches, a general expression for the moment generating function of the received signal-to noise ratio (SNR) is obtained, from which the SEP is derived. The result can be applied to correlative fading channels with any form of Gaussian fading gains. Moreover, channels having joint fading models, as well as mixed channel powers, are considered. We also discover that, for certain GCOD codes, different information symbols may exhibit different SEPs. The above features are demonstrated by two GCOD examples used for simulations. Theoretical performance curves are compared with Monte Carlo simulated results in excellent agreement.
机译:我们使用相关衰落信道上的任意矩形二次振幅调制信号,通过任何形式的广义复正交设计(GCOD),得出正交空时分组码的符号错误概率(SEP)表达式。通过首先将物理分支解相关为不相关的虚拟分支,可以获得接收信噪比(SNR)的矩生成函数的一般表达式,从中可以得出SEP。该结果可以应用于具有任何形式的高斯衰落增益的相关衰落信道。此外,考虑具有联合衰落模型的信道以及混合信道功率。我们还发现,对于某些GCOD代码,不同的信息符号可能表现出不同的SEP。以上功能通过两个用于仿真的GCOD示例进行了演示。理论性能曲线与蒙特卡洛模拟结果进行了比较,吻合得很好。

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