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Simple Calculation of Thresholds for Adaptive Modulation in Middleton Class A Noise

机译:Middleton A类噪声中自适应调制阈值的简单计算

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This paper proposes a simple method of calculating the signal to noise ratio (SNR) thresholds for an adaptive modulation in Middleton class A noise for a given target symbol error rate (SER). Adaptive modulation is commonly used for increasing spectral efficiency by adaptively switching the modulation order of the transmission along with the channel quality variation. A communication system in military is susceptible to impairment by impulsive noise that degrades performance of the communication system, and there are a large mount of needs for adaptive modulation in the environment. But there are little outcomes about the SNR thresholds for adaptive modulation used in impulsive noise due to the complicated SER equation expressed with infinite terms. Therefore, this paper proposes a simple method of calculating the SNR thresholds for adaptive modulation in impulsive noise environment. To derive the SNR thresholds, we analyse the performance of the various modulations in impulsive noise to further reach an approximation, and then the difference between the exact analysis and the approximation is investigated. Simulation results illustrate that the proposed SNR thresholds allow adaptive modulation to perform well in impulsive noise environment with various impulsiveness parameters.
机译:本文提出了一种简单的方法,用于计算给定目标符号错误​​率(SER)时在Middleton A类噪声中进行自适应调制的信噪比(SNR)阈值。自适应调制通常用于通过自适应地切换传输的调制顺序以及信道质量变化来提高频谱效率。军用通信系统容易受到脉冲噪声的损害,脉冲噪声会降低通信系统的性能,并且在环境中对自适应调制的需求量很大。但是,由于用无限项表示的复杂SER方程,用于脉冲噪声中的自适应调制的SNR阈值几乎没有结果。因此,本文提出了一种简单的计算脉冲噪声环境下自适应调制的SNR阈值的方法。为了得出SNR阈值,我们分析了脉冲噪声中各种调制的性能以进一步达到近似值,然后研究了精确分析与近似值之间的差异。仿真结果表明,所提出的SNR阈值允许自适应调制在具有各种脉冲参数的脉冲噪声环境中良好地执行。

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