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Mathematical model development for faults simulation in current-source PWM inverters

机译:电流源PWM逆变器故障仿真的数学模型开发

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Despite of remarkable technological achievements reached in power electronics (both for devices and circuits) faults remains inevitable, being the main cause of power systems interrupts and failures. In the last decade the fault problem in power electronics has been investigated with more attention both from theoretical and experimental point of view. Following these trends, this paper is focused to introduce a novel mathematical model specially developed for simulation of faults in current-source inverters (CSIs) operating in high reliability servo-drive applications. By approaching a generalized fault-tolerant model development, it has been designed a CSI model able to simulate both unfaulty and faulty conditions when one or more power electronic devices fails in operation. In this way the drawback of building a separately model and a separately simulation program for each operation mode (both for unfaulty and faulty states) has been eliminated. The generalized model has been validated via careful computer-aided simulations in Matlab/Simulink software environment. In order to compare the obtained results in different failure states various faulty-state power converter architectures has been considered, their operating conditions being tested in a servo-drive application.
机译:尽管电力电子技术(包括设备和电路)取得了令人瞩目的技术成就,故障仍然不可避免,这是电力系统中断和故障的主要原因。在过去的十年中,已经从理论和实验的角度对电力电子中的故障问题进行了研究,并给予了更多的关注。遵循这些趋势,本文重点介绍专门为仿真在高可靠性伺服驱动器应用中工作的电流源逆变器(CSI)中的故障而开发的新型数学模型。通过进行通用的容错模型开发,已设计出一种CSI模型,该模型能够模拟一个或多个电力电子设备发生故障时的故障状态和故障状态。这样,消除了针对每种操作模式(针对故障状态和故障状态)建立单独的模型和单独的仿真程序的缺点。通用模型已经在Matlab / Simulink软件环境中通过仔细的计算机辅助仿真进行了验证。为了比较在不同故障状态下获得的结果,已经考虑了各种故障状态功率转换器架构,并在伺服驱动器应用中测试了它们的工作条件。

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