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Channel-Optimized Quantization With Soft-Decision Demodulation for Space–Time Orthogonal Block-Coded Channels

机译:时空正交块编码信道的软判决解调信道优化量化

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We introduce three soft-decision demodulation channel-optimized vector quantizers (COVQs) to transmit analog sources over space–time orthogonal block (STOB)-coded flat Rayleigh fading channels with binary phase-shift keying (BPSK) modulation. One main objective is to judiciously utilize the soft information of the STOB-coded channel in the design of the vector quantizers while keeping a low system complexity. To meet this objective, we introduce a simple space–time decoding structure that consists of a space–time soft detector, followed by a linear combiner and a scalar uniform quantizer with resolution$q$. The concatenation of the space–time encoder/modulator, fading channel, and space–time receiver can be described by a binary-input,$2^q$-output discrete memoryless channel (DMC). The scalar uniform quantizer is chosen so that the capacity of the equivalent DMC is maximized to fully exploit and capture the system''s soft information by the DMC. We next determine the statistics of the DMC in closed form and use them to design three COVQ schemes with various degrees of knowledge of the channel noise power and fading coefficients at the transmitter and/or receiver. The performance of each quantization scheme is evaluated for memoryless Gaussian and Gauss–Markov sources and various STOB codes, and the benefits of each scheme is illustrated as a function of the antenna-diversity and soft-decision resolution$q$. Comparisons to traditional coding schemes, which perform separate source and channel coding operations, are also provided.
机译:我们引入了三个软决策解调通道优化矢量量化器(COVQ),以通过具有二进制相移键控(BPSK)调制的空时正交块(STOB)编码的平坦瑞利衰落信道传输模拟源。一个主要目标是在向量量化器的设计中明智地利用STOB编码通道的软信息,同时保持较低的系统复杂度。为了实现此目标,我们引入了一个简单的时空解码结构,该结构由一个时空软检测器,一个线性组合器和一个分辨率为$ q $的标量均匀量化器组成。空时编码器/调制器,衰落信道和空时接收机的连接可以用二进制输入,$ 2 ^ q $输出离散无记忆信道(DMC)来描述。选择标量均匀量化器,以使等效DMC的容量最大化,以充分利用DMC充分利用和捕获系统的软信息。接下来,我们确定封闭形式的DMC的统计数据,并使用它们来设计三种COVQ方案,从而对发射机和/或接收机处的信道噪声功率和衰落系数有不同程度的了解。针对无记忆的高斯和高斯-马尔可夫信号源以及各种STOB码,评估了每种量化方案的性能,并说明了每种方案的优势是天线分集和软判决分辨率$ q $的函数。还提供了与传统编码方案的比较,传统编码方案执行单独的源编码和通道编码操作。

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