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A new family of unitary space-time codes with a fast parallel sphere decoder algorithm

机译:具有快速并行球解码器算法的时空码新系列

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In this paper, we propose a new design criterion and a new class of unitary signal constellations for differential space-time modulation for multiple-antenna systems over Rayleigh flat-fading channels with unknown fading coefficients. Extensive simulations show that the new codes have significantly better performance than existing codes. We have compared the performance of our codes with differential detection schemes using orthogonal design, Cayley differential codes, fixed-point-free group codes, and product of groups and for the same bit-error rate, our codes allow smaller signal-to-noise ratio (SNR) by as much as 10 dB. The design of the new codes is accomplished in a systematic way through the optimization of a performance index that closely describes the bit-error rate as a function of the SNR. The new performance index is computationally simple and we have derived analytical expressions for its gradient with respect to constellation parameters. Decoding of the proposed constellations is reduced to a set of one-dimensional closest point problems that we solve using parallel sphere decoder algorithms. This decoding strategy can also improve efficiency of existing codes.
机译:在本文中,我们为未知衰落系数的瑞利平坦衰落信道上的多天线系统的差分时空调制提出了一种新的设计准则和一类新的ary信号星座图。大量的仿真表明,新代码比现有代码具有更好的性能。我们已经使用正交设计,Cayley差分码,无定点无用组码和组乘积将码的性能与差分检测方案进行了比较,并且对于相同的误码率,我们的码允许较小的信噪比信噪比(SNR)高达10 dB。新代码的设计是通过性能指标的优化以系统的方式完成的,该性能指标将误码率严格描述为SNR的函数。新的性能指标在计算上很简单,并且我们已经推导出了其相对于星座参数的梯度的解析表达式。所提议星座的解码被简化为我们使用并行球面解码器算法解决的一组一维最近点问题。该解码策略还可以提高现有代码的效率。

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