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Augmenting E-ship power system evaluation and converter controller design by means of real-time hardware-in-loop simulation

机译:通过实时硬件在环仿真增强电子船电力系统评估和转换器控制器设计

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This paper evaluates the performance of an industrial power electronic building block (PEBB) controller in a large scale all electric ship power system by means of real-time hardware in the loop (RT-HIL) simulation. As an example relevant to future all electric navy ships, transients originating from the charging circuit of a pulse power load integrated with the prolusion motor drive and its impact on the system are studied. Different solutions to mitigate the impact by coordinating the power sharing between the pulse load's energy storage system and the ship propulsion motor drive are proposed and evaluated. The second part of the paper discusses how the RT-HTL tool can be used for system-wide performance optimization. Experimental results show the effectiveness of this method in finding the optimal parameter setting for the voltage loop control. It is concluded that due to distinct advantages of the RT-HTL method over conventional (off-line) simulations for system response analysis as well as for performance optimization, RT-HTL shall be employed more rigorously for electric ship system designs in the future.
机译:本文通过实时硬件在环仿真(RT-HIL)评估了工业电力电子积木(PEBB)控制器在大规模全电力船舶电力系统中的性能。作为与未来所有海军舰船有关的示例,研究了与脉冲电动机负载集成的脉冲电动机负载驱动电路产生的瞬变及其对系统的影响。提出并评估了通过协调脉冲负载的储能系统和船舶推进电动机驱动器之间的功率共享来减轻影响的不同解决方案。本文的第二部分讨论了如何将RT-HTL工具用于系统范围的性能优化。实验结果表明,该方法在寻找电压环路控制的最佳参数设置方面是有效的。结论是,由于RT-HTL方法相对于常规(离线)仿真在系统响应分析和性能优化方面具有明显优势,因此将来在电气船系统设计中将更加严格地使用RT-HTL。

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