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Optimization of transmitter and receiver filters for digital communication systems using mean field annealing

机译:使用平均场退火优化数字通信系统的发射器和接收器滤波器

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摘要

A technique for finding transmitter and receiver filters for a wide class of digital communication systems which minimize the bit-error rate (BER) is presented. The technique uses Monte Carlo simulation to estimate the BER and mean field annealing (MFA) to optimize the pulse shapes. Modeling of the link can be as complex as simulation will allow, while MFA is resistant to the statistical variation in the BER estimate from the simulation. Initially, the MFA technique was applied to a binary symmetric channel in a nonsimulation environment, and an approximate analysis of the behavior of MFA for this problem was performed. In a more complex example, MFA was coupled with Monte Carlo simulation techniques to find near-optimal transmit and receive filters for a satellite communications link, taking 6 CPU hours on a DECstation 3100. The BER of the link was found to be as much as three orders of magnitude lower when using the MFA-constructed optimal filters than when using filters from other comparison results. For this example, the pulse shapes obtained using MFA exhibit a low BER even as the parameter controlling the nonlinearity of the satellite-link model is varied over a wide range, thus showing the solution is robust.
机译:提出了一种用于为各种数字通信系统寻找发射器和接收器滤波器的技术,该技术使误码率(BER)最小。该技术使用蒙特卡罗模拟来估算BER,并使用平均场退火(MFA)来优化脉冲形状。链接的建模可以像仿真所允许的那样复杂,而MFA可以抵抗来自仿真的BER估计的统计变化。最初,MFA技术应用于非模拟环境中的二进制对称通道,并且针对该问题对MFA的行为进行了近似分析。在一个更复杂的示例中,MFA与蒙特卡洛模拟技术相结合,以找到用于卫星通信链路的近乎最佳的发送和接收滤波器,在DECstation 3100上花费了6个CPU小时。发现该链路的BER高达与使用其他比较结果的滤波器相比,使用由MFA构造的最佳滤波器时要低三个数量级。对于此示例,即使控制卫星链接模型非线性的参数在很宽的范围内变化,使用MFA获得的脉冲形状也显示出较低的BER,因此表明该解决方案是可靠的。

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