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Real-time simulation of DC-DC flyback converter using FSS Mini

机译:使用FSS Mini的DC-DC反激转换器的实时仿真

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摘要

Simulation is an extremely valuable tool for designing, operating and understanding complex systems in Power systems and Power Electronics. Broadly simulation can be of two types, Off-line and Real-time Simulation. Off-line simulation uses a digital computer and real time simulation uses a dedicated high speed digital processing hardware. Real time simulation allows analysis of a physical system in real-time. Full Spectrum Simulator (FSS) provides both off-line and real-time simulation capabilities at an affordable cost, easily configurable for custom applications. FSS is useful for real-time simulation of large power systems and power electronic equipments. Applications of real-time simulation includes training and demonstration of power electronic systems, closed loop testing of power subsystem protective relays, evaluation of control hardware and software and testing of high power systems like FACTS devices, Custom Power devices, AC/DC motor drives etc. This paper deals with simulation of a DC-DC fly back converter in real-time using FSS Mini. For real-time simulation using FSS, the main objective was to create an average model of the fly back converter in CCM mode of operation. Average model was derived from the circuit equations and designed the values of the parameters used in the averaged model. Simulation using MATLAB was done first and obtained the output voltage waveform. Same equations were used for creating the library element in the real-time simulation library. Then it was simulated using FSS and obtained the real-time simulation output in a DSO.
机译:仿真是用于设计,操作和理解电力系统和电力电子中的复杂系统的极有价值的工具。广义上来说,仿真可以分为两种类型:离线仿真和实时仿真。离线仿真使用数字计算机,实时仿真使用专用的高速数字处理硬件。实时仿真可以实时分析物理系统。全频谱模拟器(FSS)以可承受的成本提供离线和实时模拟功能,可轻松地针对定制应用进行配置。 FSS对于大型电力系统和电力电子设备的实时仿真很有用。实时仿真的应用包括电力电子系统的培训和演示,电力子系统保护继电器的闭环测试,控制硬件和软件的评估以及FACTS设备,定制电力设备,AC / DC电动机驱动器等大功率系统的测试。本文使用FSS Mini实时仿真DC-DC反激转换器。对于使用FSS的实时仿真,主要目的是在CCM操作模式下创建反激式转换器的平均模型。从电路方程中得出平均模型,并设计了平均模型中使用的参数值。首先使用MATLAB进行仿真,并获得输出电压波形。使用相同的方程式在实时仿真库中创建库元素。然后使用FSS进行仿真,并在DSO中获得实时仿真输出。

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