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A Linear Programming Receiver for Blind Detection of Full Rate Space-Time Block Codes

机译:用于全速率空时分组码盲检测的线性编程接收器

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摘要

We present a new approach to the blind detection of full rate space-time block coded transmissions. Our method is based on linear programming and is globally convergent. We exploit the implicit structure of space-time block codes to cast the problem as linear programming to be solved efficiently. Unlike several known methods, the proposed technique is applicable to full-rate space-time block codes such as the popular Alamouti orthogonal code and the quasi-orthogonal space time code. Moreover, we utilize the code structure of these full rate codes to achieve simultaneous detection of all coded data streams without relying on successive schemes that are prone to error propagation. For orthogonal space-time codes, our algorithm allows near maximum likelihood detection of orthogonal codes without channel knowledge. We also can generalize the application of the proposed receiver to be used with nonorthogonal codes. Our proposed algorithm can provide performance competitive with existing techniques without imposing any conditions on the number of receive antennas.
机译:我们提出了一种全速空时分组编码传输的盲检测新方法。我们的方法基于线性规划,并且是全局收敛的。我们利用时空分组码的隐式结构将问题投射为线性规划,以便有效解决。与几种已知方法不同,所提出的技术适用于全速空时分组码,例如流行的Alamouti正交码和准正交时空码。此外,我们利用这些全速率代码的代码结构来实现对所有编码数据流的同时检测,而无需依赖易于出错传播的连续方案。对于正交空时码,我们的算法无需信道知识即可在正交码附近进行最大似然检测。我们还可以将拟议的接收机的应用与非正交码一起推广。我们提出的算法可以提供与现有技术竞争的性能,而无需对接收天线的数量施加任何条件。

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