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Iterative semi-blind single-antenna cochannel interference cancellation and tight lower bound for joint maximum-likelihood sequence estimation

机译:迭代半盲单天线共信道干扰消除和紧密下限,用于联合最大似然序列估计

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In this paper, an iterative receiver for joint channel estimation and cochannel interference cancellation suitable for time-division multiple-access cellular radio systems is proposed. The receiver is blind with respect to (w.r.t.) the data of the interfering users and training-based w.r.t the data of the desired user and is therefore referred to as semi-blind. As opposed to concurrent receiver structures, where the number of receiving antennas must exceed the number of cochannel interferes, the proposed receiver is suitable for just one receiving antenna, i.e., the proposed receiver is also suitable for the downlink. A tight analytical lower bound on the bit error probability for joint maximum-likelihood sequence estimation in the presence of cochannel interference and intersymbol interference is presented. Monte Carlo simulation results indicate that with just one receiving antenna and no oversampling the proposed receiver is able to achieve a raw bit error rate of 10{sup}(-2) even at a signal-to-interference ratio of 0 dB in asynchronous GSM/EDGE networks given a single dominant interferer.
机译:在本文中,提出了一种适用于时分多址蜂窝无线系统的用于联合信道估计和同信道干扰消除的迭代接收机。接收器对干扰用户的数据(w.r.t.)是盲目的,而对所需用户的数据是基于训练的w.r.t.t,因此被称为半盲。与并发接收机结构相反,在该结构中,接收天线的数量必须超过同频干扰的数量,所提出的接收机仅适用于一个接收天线,即所提出的接收机也适用于下行链路。提出了在存在共信道干扰和符号间干扰的情况下,联合最大似然序列估计的误码概率的严格分析下界。蒙特卡罗仿真结果表明,即使在异步GSM中,即使在0 dB的信噪比的情况下,仅使用一个接收天线且不进行过采样,所提出的接收器也能够实现10 {sup}(-2)的原始误码率。 / EDGE网络具有单个主要干扰源。

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