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Permutation-Based Noncoherent Space-Time Codes With Analog Energy Detection for IR-UWB Communications With PPM

机译:基于置换的具有模拟能量检测的非相干空时码,用于具有PPM的IR-UWB通信

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In this paper, we consider the problem of space-time (ST) coding for the noncoherent ultra-wideband (UWB) systems with pulse position modulation (PPM). In particular, we propose the first known family of ST codes that lends itself to optimal decoding with the energy detectors. Energy detection avoids the sampling of the received signal where the sampling rates can be prohibitively high and escapes from the challenging task of estimating the dense multi-path UWB channel. In the absence of design criteria that are adapted to the problem under consideration, we derive two novel design criteria and propose the novel construction accordingly. The proposed code is based solely on permutations, and hence it does not introduce any constellation expansion on the totally-real and unipolar PPM signal set. In other words, the components of the constructed codewords are limited to either zero or one indicating the absence or presence of an UWB pulse in the corresponding PPM slot, respectively. The above characteristics result in a remarked simplicity of the ST encoder/decoder making it an appealing solution to low-cost and low-power UWB systems. For a system equipped with transmit antennas, we prove that the proposed code is capable of achieving a full transmit diversity order with -PPM constellations for while transmitting at the rate of bits per channel use.
机译:在本文中,我们考虑了具有脉冲位置调制(PPM)的非相干超宽带(UWB)系统的时空(ST)编码问题。尤其是,我们提出了第一个已知的ST代码系列,使其适合于使用能量检测器进行最佳解码。能量检测避免了对采样率极高的接收信号的采样,并且摆脱了估计密集多径UWB信道这一艰巨的任务。在没有适合所考虑问题的设计标准的情况下,我们推导出两个新颖的设计标准,并据此提出新颖的构造。提议的代码仅基于排列,因此不会在完全实数和单极性PPM信号集上引入任何星座扩展。换句话说,所构造的码字的分量分别被限制为零或一个,以指示相应的PPM时隙中不存在或存在UWB脉冲。上述特性导致ST编码器/解码器的显着简化,使其成为低成本和低功耗UWB系统的理想解决方案。对于配备有发射天线的系统,我们证明了所提出的代码能够以-PPM星座图实现完整的发射分集阶数,同时以每信道使用的比特率进行发射。

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