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A message-passing approach for joint channel estimation, interference mitigation, and decoding

机译:一种用于联合信道估计,缓解干扰和解码的消息传递方法

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Channel uncertainty and co-channel interference are two major challenges in the design of wireless systems such as future generation cellular networks. This paper studies receiver design for a wireless channel model with both timevarying Rayleigh fading and strong co-channel interference of similar form as the desired signal. It is assumed that the channel coefficients of the desired signal can be estimated through the use of pilots, whereas no pilot for the interference signal is available, as is the case in many practical wireless systems. Because the interference process is non-Gaussian, treating it as Gaussian noise generally often leads to unacceptable performance. In order to exploit the statistics of the interference and correlated fading in time, an iterative message-passing architecture is proposed for joint channel estimation, interference mitigation and decoding. Each message takes the form of a mixture of Gaussian densities where the number of components is limited so that the overall complexity of the receiver is constant per symbol regardless of the frame and code lengths. Simulation of both coded and uncoded systems shows that the receiver performs significantly better than conventional receivers with linear channel estimation, and is robust with respect to mismatch in the assumed fading model.
机译:在诸如下一代蜂窝网络的无线系统的设计中,信道不确定性和同信道干扰是两个主要挑战。本文研究了随时间变化的瑞利衰落和具有与所需信号相似形式的强同信道干扰的无线信道模型的接收机设计。假设可以通过使用导频来估计所需信号的信道系数,而没有干扰信号的导频可用,就像许多实际无线系统中的情况一样。由于干扰过程是非高斯的,因此将其视为高斯噪声通常会导致性能不可接受。为了利用干扰和相关衰落的时间统计,提出了一种迭代的消息传递架构,用于联合信道估计,干扰减轻和解码。每条消息采用高斯密度混合的形式,其中组件的数量受到限制,因此每个符号的接收器总体复杂度是恒定的,而与帧和代码长度无关。对编码和未编码系统的仿真均显示,该接收机的性能明显优于具有线性信道估计的传统接收机,并且在假定的衰落模型中对于失配具有鲁棒性。

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