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Design and planning strategy for energy storage system in a shipboard dc hybrid power system

机译:舰载直流混合动力系统储能系统设计与规划策略

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Careful design and planning is essential for successful integration of energy storage system (ESS) in a shipboard dc hybrid power system. An optimization model for resiliency enhancement and total cost reduction is proposed in this paper. The resilience of a shipboard power system with and without ESS are evaluated by means of resiliency index values under fault conditions. Furthermore, the influence of ESS on total cost is analyzed quantitatively. A detailed design of ESS is carried out, and optimal ESS configurations with different device combinations for various requirements are determined. Both single-node static and dynamic planning strategies are evaluated and the principles of planning strategy selection are discussed. Several key results are presented from the optimization model, built on General Algebraic Modeling System (GAMS) platform. Simulation results show significant improvement from the proposed design and planning of ESS on shipboard dc hybrid power system.
机译:仔细的设计和规划对于将储能系统(ESS)成功集成到舰船直流混合动力系统中至关重要。提出了一种提高弹性和降低总成本的优化模型。带有和不带有ESS的船用电力系统的弹性通过故障条件下的弹性指数值进行评估。此外,定量分析了ESS对总成本的影响。进行了ESS的详细设计,并确定了针对各种要求具有不同设备组合的最佳ESS配置。评估了单节点静态和动态计划策略,并讨论了计划策略选择的原理。通过基于通用代数建模系统(GAMS)平台的优化模型,提出了一些关键结果。仿真结果表明,从舰船直流混合动力系统的ESS设计和计划中可以明显改善。

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