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Integrated Protection System Design for Shipboard Power System

机译:舰船动力系统综合保护系统设计

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This paper presents an advanced protection system design for the main power system of an all-electric ship. Considering the unique characteristics of shipboard power systems, current differential scheme has been chosen as the most reliable primary protection scheme. A graph-theory-based algorithm automatically assigns input currents to their proper differential protection zone. Based on these assignments, the protection scheme trips the minimal number of breakers to isolate a fault. This connection between the graph-theory algorithm and breaker assignments enables the protection system to be adaptive with different configurations. As an extension to these fast fault detection and isolation functions, the fast reconfiguration algorithm is developed to maintain the power balance of the remainder power system after a severe fault with the aim of reducing the impact of fault to the minimum.
机译:本文提出了一种用于全电气船舶主电源系统的高级保护系统设计。考虑到舰船电力系统的独特特性,电流差动方案已被选为最可靠的一次保护方案。基于图论的算法会自动将输入电流分配给其适当的差动保护区域。根据这些分配,保护方案将最少数量的断路器跳闸以隔离故障。图论算法与断路器分配之间的这种联系使保护系统能够适应不同的配置。作为对这些快速故障检测和隔离功能的扩展,开发了快速重配置算法以在发生严重故障后维持其余电力系统的功率平衡,目的是将故障的影响降至最低。

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