Research on Frequency Optimization of Electronic Equipment Based on Nonlinear Coefficient

Shiji Yuan, B. Qiu, Peng Yu, Yunsheng Yang, Huihui Sun
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Abstract

The interference between electronic equipment have become more and more serious with the extensive use of information equipment. In order to effectively solve the interference problem between electronic equipment, the paper use the receiver nonlinear coefficient method to quantitatively analyze and calculate the self-interference and mutual interference of electronic equipment. Then based on the genetic algorithm, the equipment frequency is optimized, and the genetic coding and adaptation are designed. Finally, the algorithm is used to simulate the frequency optimization of a small regional electronic equipment. The simulation experiment results show that the method provided by this paper can solve the frequency optimization problem of electronic equipment to a certain extent.
基于非线性系数的电子设备频率优化研究
随着信息设备的广泛使用,电子设备间的干扰问题日益严重。为了有效地解决电子设备之间的干扰问题,本文采用接收机非线性系数法对电子设备的自干扰和互干扰进行了定量分析和计算。然后基于遗传算法对设备频率进行优化,并进行遗传编码和自适应设计。最后,将该算法应用于某小型区域性电子设备的频率优化仿真。仿真实验结果表明,本文提出的方法能在一定程度上解决电子设备的频率优化问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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