Object Oriented Approach to the Simulation of Shipboard Electric Power Systems

N. Doerry, J. Amy, M. Tolikas, J. Kirtley, M. Ilić
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Abstract

An object oriented approach for time domain simulations of shipboard electric power systems is proposed. It offers a flexible, user friendly alternative to conventional simulators, allowing design and operation analysis under a variety of operating conditions and topologies. The most general model of an electric power system consists of a set of nonlinear differential equations subject to algebraic constraints, which describes the evolution of the System, following certain contingencies. The algorithm presented adopts an object oriented approach by decomposing the system into its underlying components/devices, developed and maintained independent of one another. The differential equations are solved on the device level using a waveform representation of variables, which exploit both partitioning and parallel processing features. The ideas presented are tested on different test cases and conclusions are drawn.
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舰船电力系统仿真的面向对象方法
提出了一种面向对象的舰船电力系统时域仿真方法。它提供了一种灵活的、用户友好的替代传统模拟器,允许在各种操作条件和拓扑结构下进行设计和操作分析。电力系统的最一般模型由一组受代数约束的非线性微分方程组成,它描述了系统在某些偶然事件之后的演变。该算法采用面向对象的方法,将系统分解为其底层组件/设备,并相互独立地开发和维护。微分方程在设备级上使用变量的波形表示来求解,该波形表示利用了分区和并行处理的特征。在不同的测试用例上对所提出的思想进行了测试,并得出了结论。
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