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Robust coordinated control for ship power systems with SVC and power thruster loads

机译:具有SVC和电力推进器负载的船舶电源系统的强大协调控制

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In this paper, a coordinated control problem of ship power system with SVC is addressed based on Hamilton function method. Firstly, a sufficient analysis for nonlinear modeling of Marine Diesel Engine Generator, SVC modeling, and propulsive motor load coupled nonlinear dynamic characteristics, secondly Hamilton realization of the modeling of the generator is obtained by a present state feedback technique, then, the controllers with SVC are designed to perform speed adjustment, excitation adjustment via Hamilton dissipation theory. The designed controllers have simple structure and tangible physical meanings. The simulation results show that the proposed control can effectively improve the transient performance of the power systems.
机译:本文基于汉密尔顿函数方法解决了SVC船舶电力系统的协调控制问题。首先,通过当前状态反馈技术获得,SVC建模和推进电动机负载耦合非线性动态特性的充分分析了船用柴油发动机发生器,SVC建模和推进电动机负载的非线性动态特性。然后,通过当前状态反馈技术获得发电机的建模的汉密尔顿实现,然后,控制器具有SVC旨在通过汉密尔顿耗散理论进行速度调整,激励调整。设计的控制器结构简单和有形的物理意义。仿真结果表明,该控制可以有效地提高电力系统的瞬态性能。

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