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Modeling and simulation of all-electric propulsion system with three-closed loop control

机译:具有三闭环控制的全电推进系统建模与仿真

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Marine electric propulsion system is a complex power chain of ship-engine-propeller composed by inverter, propulsion motor and propeller. Ship power system is an independent power grid, its propulsion motor and propeller are easily affected by complex and variable sea environment and working conditions, which can easily cause shafting vibration or even malfunction and then affecting the power supply system. Its modeling is difficult. Simulation time is long. Torque fluctuations are frequent and so on. To solve these problems, a set of mathematical model of marine electric propulsion system including inverter, permanent magnet synchronous motor (PMSM), propeller and hull is established firstly. Based on the two-closed loop control of field-oriented control (FOC), a third closed-loop control, that is torque closed loop, is added to relieve torque fluctuations and the PI parameters are discussed of the controller. The anti-jamming and dynamic-static performance of the system under sudden changes by additional constant load, random fluctuating load and changing reference speed are analyzed. The experimental results show that the model can simulate the all-electric propulsion system very well. Three-closed loop control reduces the vibration of the motor shaft and makes the propulsion system to follow the reference speed quickly and keep the torque stable than the two-closed loop control when the propeller torque and the reference speed is changing.
机译:船用电动推进系统是由逆变器,推进电机和螺旋桨组成的船舶发动机推进器的复杂电源链。船舶电力系统是一个独立的电网,其推进电机和螺旋桨容易受到复杂和可变的海洋环境和工作条件的影响,这很容易引起皱折的振动甚至发生故障,然后影响电源系统。它的建模很难。模拟时间很长。扭矩波动频繁等等。为了解决这些问题,首先建立包括逆变器,永磁同步电动机(PMSM),螺旋桨和船体的船用推进系统的一组数学模型。基于面向现场控制(FOC)的双闭环控制,添加了一个是扭矩闭环的第三闭环控制以释放扭矩波动,并且讨论了控制器的PI参数。通过额外的恒定负载突然变化,随机波动负荷和改变参考速度的突然变化的抗干扰和动态静态性能。实验结果表明,该模型可以非常好地模拟全电推进系统。三闭环控制减少了电机轴的振动,使推进系统快速遵循参考速度,并在螺旋桨扭矩和参考速度变化时保持比双闭环控制的扭矩稳定。

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