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Optimized restoration of combined ac/dc shipboard power systems including distributed generation and islanding techniques

机译:优化的AC / DC组合舰船电源系统的恢复,包括分布式发电和孤岛技术

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摘要

Reconfiguration involves changing the status (OFF/ON) of switches, and reconfiguration for restoration involves changing the switch status to maximize the supply to loads that are left unsupplied after fault removal. Shipboard Power Systems (SPS) need automated reconfiguration for restoration schemes to restore vital loads quickly and efficiently in order to improve fight-through and survivability capabilities. The restoration in this paper is achieved using optimization with multiple objectives-maximizing the restored load and giving priority to vital loads. A restoration scheme for SPS with an integrated power system (IPS) and distributed generation (DG) involving islanding has been developed. This formulation includes a hybrid power system that has both ac and dc parts. The restoration formulation in this paper also considers the unbalanced nature of SPS operation with mutual coupling.
机译:重新配置涉及更改开关的状态(OFF / ON),而用于恢复的重新配置涉及更改开关的状态以最大程度地提供故障排除后未提供的负载的电源。舰载动力系统(SPS)需要针对恢复方案进行自动重新配置,以快速有效地恢复重要负载,从而提高抗击能力和生存能力。本文中的恢复是通过具有多个目标的优化来实现的,即最大化恢复的负载并优先考虑重要负载。已经开发出具有集成电力系统(IPS)和涉及孤岛的分布式发电(DG)的SPS修复方案。该公式包括具有交流和直流部分的混合动力系统。本文的恢复公式还考虑了具有相互耦合的SPS操作的不平衡性质。

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