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Analog IC Design for Real-Time Simulation of Power Electronic Circuits

机译:电力电子电路实时仿真模拟IC设计

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This paper presents a feasibility study of real-time simulation of power electronic circuits using analog IC technologies. Unlike conventional analog simulation where a mathematical model is developed first and then implemented by using op-amps, the proposed approach simulates a power electronic circuit directly by analog devices and components. Capacitors and switches are shown to be amenable to direct IC implementation after proper scaling; inductors and diodes are emulated by active circuits to facilitate IC implementation. Such analog simulation avoids the limitations of digital simulation in terms of simulation time and convergence problems when applied to power electronic circuits. The overall concept has been tested by numerical simulation. Possible applications of the proposed method include simulation of large power electronic systems, rapid control prototyping and hardware-in-loop simulation, model-referenced adaptive control, and online diagnosis and prognosis.
机译:本文介绍了使用模拟IC技术对电力电子电路实时仿真的可行性研究。与首先开发数学模型的传统模拟模拟,然后通过使用OP-AMPS开发数学模型,所提出的方法直接通过模拟设备和组件模拟电力电子电路。电容器和开关显示在适当的缩放后可用于直接IC实现;电感器和二极管由有源电路模拟,以便于IC实现。这种模拟模拟在应用于电力电子电路时,避免了在模拟时间和收敛问题方面的局限性。通过数值模拟测试了整体概念。所提出的方法的可能应用包括仿真大型电力电子系统,快速控制原型和硬件环路仿真,模型引用的自适应控制和在线诊断和预后。

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