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The Lth and (L+1)th order Asymptotic Symbol Error Rate Based SNR Expressions as a Function of Modulation Scheme, Constellation Size and Diversity Order in a Rayleigh Fading Channel

机译:LTH和(L + 1)TH顺序渐近符号误差率基于SNR表达式作为调制方案,星座大小和瑞利衰落通道中的分集顺序的函数

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In this paper, the expression for symbol error rate (SER) or BER of linear modulation in Rayleigh fading as a function of signal-to-noise ratio (SNR), modulation scheme and diversity order, is inverted, thereby giving SNR as a function of SER. The key is to represent the PDF (or MGF) by a Maclaurin series and discard all but the first one or two terms. For large SNRs, the first term in the series is accurate and simple closed-form SNR expressions for an arbitrary diversity order are derived, in terms of asymptotic SER (ASER), in SNR. Here ASER only has the term of the inverse SNR raised to the system diversity order L, thereby called the Lth order ASER. When the SNR is not large enough, the first two terms in the series, the terms containing Lth and (L_1)th order, are used and proven to be accurate. Based on the derived ASERs, we then present closed-form SNR expressions for smaller SNRs. In this paper, closed-form expressions for BPSK, MQAM and MPSK signals are presented, respectively. Using the derived closed-form expressions, one can easily design a link budget for a given BER requirement without going through tedious and time consuming simulations (for example, in MATLAB). As an application, several examples are presented to illustrate the ease of usage of the presented SNR closed-form expressions in a wireless SISO and MIMO link budget design. Tables are given to show the SNR expressions for their SER ranges with different modulation schemes/constellation sizes for diversity order varying from one to four.
机译:在本文中,作为信噪比(SNR),调制方案和分集顺序的rayleigh衰减符号误差率(SER)或线性调制的表达式,从而使SNR作为函数Ser。关键是通过Maclaurin系列代表PDF(或MGF)并丢弃所有但第一个或两个术语。对于大型SNR,该系列中的第一个术语是在SNR中的Asymptotic Ser(Aser)方面的准确且简单的闭合性SNR表达式,用于任意分集顺序。这里的Aser仅具有向系统分集顺序L提出的逆SNR的术语,从而称为Lth Order Aser。当SNR足够大时,该系列中的前两种术语,使用并证明包含Lth和(L_1)顺序的术语,并证明是准确的。基于派生的ASERS,我们为较小的SNR呈现封闭式的SNR表达式。在本文中,分别呈现了BPSK,MQAM和MPSK信号的闭合表达式。使用派生的闭合表格表达式,可以轻松地设计给定BER要求的链接预算,而无需经过繁琐且耗时的模拟(例如,在MATLAB中)。作为应用,提出了几个例子以说明在无线SISO和MIMO链路预算设计中易于使用所呈现的SNR闭合表达式。给出表格以不同的调制方案/星座尺寸显示其SER表达式,以便不同于一到四个变化的分集顺序。

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