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Gradient estimation for sensitivity analysis and adaptive multiuser interference rejection in code-division multiple-access systems

机译:码分多址系统中灵敏度分析和自适应多用户干扰抑制的梯度估计

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摘要

In this paper, we consider a direct-sequence code-division multiple-access (DS-CDMA) system in the framework of a discrete-event dynamic system (DEDS) in order to optimize the system performance. Based on this formulation, we develop infinitesimal perturbation analysis (IPA) for estimating the sensitivity of the average probability of bit error to factors ranging from near-far effects to imperfections in power control. The above estimates are shown to be unbiased, and this technique is then further incorporated into a stochastic gradient algorithm for achieving adaptive multiuser interference rejection for such systems, which is also subject to frequency nonselective slow fading. We use an IPA-based stochastic training algorithm for developing an adaptive linear detector with the average probability of error being the minimization criterion. We also develop a practical implementation of such an adaptive detector where we use a joint estimation-detection algorithm for minimizing the average probability of bit error. A sequential implementation that does not require a stochastic training sequence or a preamble is also developed.
机译:在本文中,我们考虑在离散事件动态系统(DEDS)的框架中考虑直接序列码分多址(DS-CDMA)系统,以优化系统性能。基于此公式,我们开发了无穷微扰动分析(IPA),用于估计平均误码概率对从远近效应到功率控制缺陷的各种因素的敏感性。上面的估计值显示为无偏的,然后将该技术进一步并入随机梯度算法中,以实现针对此类系统的自适应多用户干扰抑制,该算法也要经历频率非选择性慢衰落。我们使用基于IPA的随机训练算法来开发自适应线性检测器,其平均错误概率为最小化标准。我们还开发了这种自适应检测器的实际实现,其中我们使用联合估计检测算法来最小化平均误码率。还开发了一种不需要随机训练序列或序言的顺序实现。

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