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Parallel parametric design optimization for RF amplifiers with 3D EM-PIC

机译:具有3D EM-PIC的RF放大器的并行参数设计优化

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摘要

Three-dimensional electromagnetic Particle-in-Cell (3D EM-PIC) codes offer an advantage in the process of RF amplifier design since they are capable of highly-accurate, device-independent simulation and prediction of the amplifier's performance and physical characteristics. Achieving the desired amplifier performance generally requires optimization of device's geometry and operating parameters with respect to a specific set of criteria. The RF amplifier design cycle typically involves many simulations with varying parameters that are carried out until such criteria are met. Traditionally, the computational intensity and prohibitively long runtimes of 3D EM-PIC codes have limited their practical application to the case of manually controlled parametric optimization of RF amplifiers.
机译:三维电磁粒子 - 细胞(3D EM-PIC)代码在RF放大器设计过程中提供了优势,因为它们能够高度准确,无关的仿真和预测放大器的性能和物理特性。 实现所需的放大器性能通常需要优化设备的几何形状和操作参数的优化标准。 RF放大器设计周期通常涉及许多具有不同参数的模拟,直到满足这种标准。 传统上,3D EM-PIC代码的计算强度和限定长期运行时间将其实际应用限制在RF放大器的手动控制参数优化的情况下。

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