基于FPGA实时实现的功率变换器半桥模型

Saif Alsarayreh, Z. Sütő
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引用次数: 0

摘要

实时硬件在环(HIL)仿真工具在现代电力电子发展的各个层面是不可避免的,要么用信号级模拟器测试控制板实现,要么用功率HIL解决方案验证功率转换器。用于HIL工具的FPGA器件的高计算能力提供了许多优势,但开发人员必须在HIL模型的精度和实现所需的资源之间做出权衡。半桥电路是许多电源变换器的组成部分,其高效的实时模型可用于更复杂系统的HIL仿真器的开发。本文研究了半桥实时模型的优缺点。比较了简单的开关函数模型、更复杂但广泛使用的关联离散电路(ADC)模型和基于PI控制器的增强断续导通模式(DCM)仿真模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power Converter Half-bridge Models in the Light of Real-time FPGA Implementation
Real-time Hardware-In-the-Loop (HIL) simulation tools used at various levels in the development of modern power electronics are inevitable, either testing the control board implementations with signal-level simulators or validating the power converters with power HIL solutions. The high computational power of FPGA devices used in HIL tools offers many advantages, but the developers have to make a trade-off between the precision of HIL models and the resources required by the realization. The half-bridge is the building block of many power converters, its efficient real-time model is useful in the development of HIL simulators of more complex systems. In this paper the advantages and disadvantages of real-time models of the half-bridge are studied. The simple switching function model, the more complex but widely used Associated Discrete Circuit (ADC) model, and a PI controller based model with enhanced Discontinuous Conduction Mode (DCM) emulation are compared.
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