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首页> 外文期刊>IEEE Transactions on Plasma Science >Optimal Design of an N-Stage Nonlinear Transmission Line Based on Genetic Algorithm and LTspice
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Optimal Design of an N-Stage Nonlinear Transmission Line Based on Genetic Algorithm and LTspice

机译:基于遗传算法和LTspice的N阶段非线性输电线路的优化设计

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In this paper, we discuss a theoretical optimal design of a nonlinear transmission line using a genetic algorithm (GA) to achieve peak pulse power. The technique is based on an integrated optimization approach that uses a GA coded in Matlab and the circuit simulation program LTspice. A bidirectional interface is created that allowed information to be rapidly transferred between the circuit simulator and GA with real-time monitoring of the entire design process, including peak power and elemental values. The designed process shows a peak voltage enhancement of 318% while eliminating the tedious trial and error process usually required. It is important to note that this result is achieved using only six L-C segments and a much greater voltage increase is likely as the number of segments is increased.
机译:在本文中,我们讨论了使用遗传算法(GA)实现峰值脉冲功率的非线性传输线的理论优化设计。该技术基于集成优化方法,该方法使用Matlab中编码的GA和电路仿真程序LTspice。创建了双向接口,该接口允许在电路仿真器和GA之间快速传输信息,并实时监视整个设计过程,包括峰值功率和元素值。设计的过程显示出318%的峰值电压增强,同时消除了通常所需的繁琐的反复试验过程。重要的是要注意,仅使用六个L-C段即可获得此结果,并且随着段数的增加,电压的增加可能会更大。

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