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A Bayesian Approach for Nonlinear Equalization and Signal Detection in Millimeter-Wave Communications

机译:毫米波通信中非线性均衡和信号检测的贝叶斯方法

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摘要

For the emerging 5G millimeter-wave communications, the nonlinearity is inevitable due to RF power amplifiers of the enormous bandwidth operating in extremely high frequency, which, in collusion with frequency-selective propagations, may pose great challenges to signal detections. In contrast to classical schemes, which calibrate nonlinear distortions in transmitters, we suggest a nonlinear equalization algorithm, with which the multipath channel and unknown symbols contaminated by nonlinear distortions and multipath interferences are estimated in receiver-ends. Attributed to the nonlinearity and marginal integration, the involved posterior density is analytically intractable and, unfortunately, most existing linear equalization schemes may become invalid. To solve this problem, the Monte-Carlo sequential importance sampling based particle filtering is suggested, and the non-analytical distribution is approximated numerically by a group of random measures with the evolving probability-mass. By applying the Taylor's series expansion technique, a local-linearization observation model is further constructed to facilitate the practical design of a sequential detector. Thus, the unknown symbols are detected recursively as new observations arrive. Simulation results validate the proposed joint detection scheme. By excluding transmitting pre-distortion of high complexity, the presented algorithm is specially designed for the receiver-end, which provides a promising framework to nonlinear equalization and signal detection in millimeter-wave communications.
机译:对于新兴的5G毫米波通信,非线性是不可避免的,这是因为在极高的频率下工作的巨大带宽的RF功率放大器,与频率选择性传播相结合,可能会对信号检测带来巨大挑战。与校准发射机中的非线性失真的经典方案相比,我们提出了一种非线性均衡算法,利用该算法,可以在接收器端估算受非线性失真和多径干扰污染的多径信道和未知符号。归因于非线性和边际积分,所涉及的后验密度在分析上是棘手的,不幸的是,大多数现有的线性均衡方案可能变得无效。为了解决这个问题,提出了基于蒙特卡洛顺序重要性抽样的粒子滤波方法,并通过一组具有不断发展的概率质量的随机度量对非分析分布进行数值近似。通过应用泰勒级数展开技术,可以进一步构建局部线性化观测模型,以方便顺序检测器的实际设计。因此,随着新观察的到来,递归地检测未知符号。仿真结果验证了提出的联合检测方案。通过排除高复杂度的发射预失真,该算法是专门为接收端设计的,为毫米波通信中的非线性均衡和信号检测提供了有希望的框架。

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