Note On Mutual Information and Orthogonal Space-Time Codes

Guy Bresler, B. Hajek
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引用次数: 6

Abstract

Bit-error probability and mutual information rate have both been used as performance criteria for space-time codes for wireless communication. We use mutual information as the performance criterion because it determines the possible rate of communication when using an outer code. In this context, linear dispersion codes, first proposed by Hassibi and Hochwald, are appealing because of the high mutual information they provide, as well as their simplicity. Because complexity increases with the number of symbols, it may be sensible in some settings to fix the number of symbols sent per data bit. In the dissertation of Y. Jiang, it was conjectured that among linear dispersion codes with independent, binary symbols, orthogonal space-time codes are optimal in the following sense: they maximize mutual information subject to an average power constraint on each symbol. We prove the conjecture for a fixed number of real symbols with arbitrary distributions
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互信息与正交空时码的注释
误码率和互信息率都被用作无线通信空时码的性能标准。我们使用互信息作为性能标准,因为它决定了使用外部代码时可能的通信速率。在这种情况下,由Hassibi和Hochwald首先提出的线性色散码由于其提供的高互信息以及简单性而具有吸引力。由于复杂性随着符号数量的增加而增加,在某些设置中,固定每个数据位发送的符号数量可能是明智的。Y. Jiang的论文推测,在具有独立二进制符号的线性色散码中,正交空时码在以下意义上是最优的:它们在每个符号的平均功率约束下最大化相互信息。我们证明了具有任意分布的固定数目实数符号的猜想
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