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Propulsion Drive Models for Full Electric Marine Propulsion Systems

机译:全电动船用推进系统的推进驱动模型

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Integrated full electric propulsion systems are being introduced across both civil and military marine sectors. Standard power systems analysis packages cover electrical and electromagnetic components, but have limited models of mechanical subsystems and their controllers. Hence electro-mechanical system interactions between the prime movers, power network and driven loads are poorly understood. This paper reviews available models of the propulsion drive system components: the power converter, motor, propeller and ship. Due to the wide range of time-constants in the system, reduced order models of the power converter are required. A new model using state-averaged models of the inverter and a hybrid model of the rectifier is developed to give an effective solution combining accuracy with speed of simulation and an appropriate interface to the electrical network model. Simulation results for a typical ship manoeuvre are presented.
机译:集成的全电动推进系统正在民用和军用海事部门中引入。标准电源系统分析包涵盖电气和电磁组件,但机械子系统及其控制器的模型有限。因此,人们对原动机,电网和驱动负载之间的机电系统相互作用了解得很少。本文回顾了推进驱动系统组件的可用模型:功率转换器,电动机,螺旋桨和轮船。由于系统中的时间常数范围很广,因此需要功率转换器的降阶模型。开发了一种使用逆变器状态平均模型和整流器混合模型的新模型,以提供一种结合了精度和仿真速度以及与电网模型的适当接口的有效解决方案。给出了典型船舶操纵的仿真结果。

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