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Direct Blind Adaptive MOE Receiver for PAM Modulated Time-Hopping UWB System Over Frequency-Selective Fading Channel

机译:用于选频衰落信道上PAM调制时跳UWB系统的直接盲自适应MOE接收器

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Ultra wideband impulse radio systems have attracted great attention for their promised applications in high-speed short-range indoor wireless communication systems. Among the various modulation and multiple access schemes, this paper deals with time-hopping (TH) antipodal pulse amplitude modulation operating in the presence of a multipath fading downlink channel. We first employ a constrained optimization technique to design a batch mode blind (without exploiting training sequences and undesired users' time-hopping (TH) codes) mobile station receiver. To reduce the computational complexity, we propose a blind adaptive receiver that is based on the criterion of maximizing the receiver's minimum possible output energy. The algorithm jointly and iteratively optimizes the weight vector and channel impulse response to improve system performance. Simulation results show that the proposed adaptive receiver converges to the optimum batch mode receiver. Moreover, the algorithms are shown to be robust to multi-user interference and near-far problems.
机译:超宽带脉冲无线电系统因其在高速短程室内无线通信系统中的应用前景而备受关注。在各种调制和多址方案中,本文涉及在存在多径衰落下行链路信道的情况下运行的时跳(TH)对等脉冲幅度调制。我们首先采用一种约束优化技术来设计批处理模式盲点(无需利用训练序列和不希望的用户的跳时(TH)码)移动站接收机。为了降低计算复杂度,我们提出了一种盲自适应接收器,该接收器基于最大化接收器的最小可能输出能量的标准。该算法联合迭代优化权重向量和信道冲激响应,以提高系统性能。仿真结果表明,所提出的自适应接收机收敛于最优批处理模式接收机。此外,算法显示出对多用户干扰和远距离问题具有鲁棒性。

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