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State space model of a modular speed-drooped system for high reliability integrated modular motor drives

机译:高可靠性集成模块化电动机驱动器的模块化速度下降系统的状态空间模型

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Future transportation challenges include a considerable reduction in pollutant emissions at a time when significant increase in demand is predicted. One of the enabling solutions is the electrification of transport systems as this should lead to improved operability, fuel savings, emission reduction and maintenance. In this framework, the electrical power drive-train is central. Whilst state-of-the-art technology has demonstrable benefits there needs to be considerable advancement to meet future transportation affordability and emission targets. Primarily, electrical drives need an improved power density, an increased reliability and a reduced specific cost. For this reason, Integrated Modular Motor Drives (IMMD) presents an attractive solution. Modularity leads to redundancy and easier integration. A novel speed-drooped control system applied to motors fed by modular converters is proposed. This control technique allows to control the speed and to share the power among different segments without any direct communication between the modules. The state space model is provided and validated with Matlab/Simulink.
机译:未来的运输挑战包括在预计需求显着增加的同时大幅减少污染物排放。可行的解决方案之一是运输系统的电气化,因为这应能改善可操作性,节省燃料,减少排放和维护。在此框架中,电力传动系统是中心。虽然最先进的技术具有明显的优势,但仍需要大力发展才能满足未来的运输负担能力和排放目标。首先,电驱动器需要改进的功率密度,提高的可靠性和降低的特定成本。因此,集成模块化电动机驱动器(IMMD)提出了一种有吸引力的解决方案。模块化导致冗余并易于集成。提出了一种新颖的速度下降控制系统,该系统应用于模块化变频器提供的电动机。这种控制技术允许控制速度并在不同段之间共享功率,而无需模块之间的任何直接通信。提供了状态空间模型并通过Matlab / Simulink进行了验证。

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