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Polynomial perceptrons and their applications to fading channel equalization and co-channel interference suppression

机译:多项式感知器及其在衰落信道均衡和同信道干扰抑制中的应用

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This paper investigates the behaviors of polynomial perceptrons and introduces a fractionally spaced recursive polynomial perceptron with low complexity and fast convergence rate. The nonlinear mapping ability of the polynomial perceptron is analyzed. It is shown that a polynomial perceptron with degree L(/spl ges/4) satisfies the Stone-Weierstrass theorem and can approximate any continuous function to within a specified accuracy. Moreover, the nonlinear mapping ability of a polynomial perceptron with degree L is similar to that of the three-layer perceptron with one hidden layer for time same number of neurons in the input layer. The nonlinear mapping ability of the fractionally spaced recursive polynomial perceptron is also presented. Applications of polynomial perceptrons for fading channel equalization and co-channel interference suppression in a 16-level quadrature amplitude modulation receiver system are considered. Computer simulations are used to evaluate and compare the performance of polynomial perceptron (PP) and fractionally spaced bilinear perceptron (FSBLP) with that of the synchronous decision feedback multilayer perceptron (SDFMLP), fractionally spaced decision feedback multilayer perceptron (FSDFMLP), and the conventional decision feedback equalizer (DFE). The results show that the performance of the fractionally spaced bilinear perceptron is clearly superior to that of the other structures.
机译:本文研究了多项式感知器的行为,并介绍了一种复杂度低,收敛速度快的分数间隔递归多项式感知器。分析了多项式感知器的非线性映射能力。结果表明,度为L(/ spl ges / 4)的多项式感知器满足Stone-Weierstrass定理,并且可以在指定的精度内近似任何连续函数。此外,对于输入层中相同数量的神经元,次数为L的多项式感知器的非线性映射能力类似于具有一个隐藏层的三层感知器的非线性映射能力。还提出了分数间隔递归多项式感知器的非线性映射能力。考虑了多项式感知器在16级正交幅度调制接收器系统中用于衰落信道均衡和同信道干扰抑制的应用。使用计算机仿真来评估和比较多项式感知器(PP)和分数间隔双线性感知器(FSBLP)与同步决策反馈多层感知器(SDFMLP),分数间隔决策反馈多层感知器(FSDFMLP)和常规算法的性能决策反馈均衡器(DFE)。结果表明,等距双线性感知器的性能明显优于其他结构。

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