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首页> 外文期刊>IEEE Transactions on Communications >Performance Evaluation for Widely Linear Demodulation of PAM/QAM Signals in the Presence of Rayleigh Fading and Co-channel Interference
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Performance Evaluation for Widely Linear Demodulation of PAM/QAM Signals in the Presence of Rayleigh Fading and Co-channel Interference

机译:存在瑞利衰落和同频干扰的情况下对PAM / QAM信号进行宽线性解调的性能评估

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摘要

In this paper, widely linear filtering (WLF) techniques are applied to the demodulation of both pulse amplitude modulation (PAM) and quadrature amplitude modulation (QAM) systems with multiple receiver antennas and multiple cochannel interferers. In the proposed implementation, the existing correlations between the real (I) and imaginary (Q) parts of the complex-valued baseband received signal are exploited using a widely linear (WL) maximum likelihood (ML) receiver. Several bounds and approximations are developed to analyze the average symbol error rate (SER) performance, and to analyze the tradeoff between the diversity advantage and interference cancellation (IC) gain in a flat Rayleigh fading channel. Two new results are shown. First, we show that the IC ability of WL receivers is independent of the modulation type used by the desired signal but the gain depends mainly on the modulation type employed by the individual interferers and the total number of antennas. Secondly, assuming that the system uses a mixture of PAM and QAM signals, we show that a WL receiver with N antennas can reject any combination of M1 PAM, M2 QAM interferers satisfying the constraint: M1 + 2M2 < 2N with an asymptotic diversity order N ?? M1/2 ??M2. In contrast, a conventional receiver whose performance is independent of the modulation characteristics of the individual interferers can reject only up to M1/ + M2 interferers, where M1 + M2 < N with an asymptotic diversity order N ?? M1 ?? M2. When the system contains either PAM, or a mixture of PAM and QAM type CCI, it is shown that WL processing offers a significant performance advantage with a moderate increase in the receiver complexity.
机译:本文将广泛的线性滤波(WLF)技术应用于具有多个接收器天线和多个同频干扰源的脉冲幅度调制(PAM)和正交幅度调制(QAM)系统的解调。在提出的实现中,使用宽线性(WL)最大似然(ML)接收机利用复数值基带接收信号的实部(I)和虚部(Q)之间的现有相关性。开发了几种边界和近似值,以分析平均符号误码率(SER)性能,并分析平坦瑞利衰落信道中分集优势与干扰消除(IC)增益之间的折衷。显示了两个新结果。首先,我们表明WL接收机的IC能力与所需信号所使用的调制类型无关,但增益主要取决于各个干扰源所采用的调制类型以及天线的总数。其次,假设系统使用了PAM和QAM信号的混合,我们表明具有N个天线的WL接收机可以拒绝满足以下条件的M1 PAM,M2 QAM干扰的任意组合:M1 + 2M2 <2N,并且渐近分集阶数N ?? M1 /2≤M2。相反,性能独立于各个干扰源的调制特性的常规接收机只能拒绝最多M1 / + M2个干扰源,其中M1 + M2

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