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A Multi-agent Based Algorithm for Ring-structured Shipboard Power System Reconfiguration

机译:一种基于多智能体的环形船用电源系统重新配置算法

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The shipboard power system (SPS) supplies energy to electric equipment on ships. It is critical for the system to be reconfigurable for the purpose of survivability and reliability. In earlier work a de-centralized approach for a radial SPS reconfiguration is successfully developed. Each agent in this system only communicates with its immediate neighbors, which reduces the dependency on the system topology. However, the ring structure in the system leads to the problem of redundant information accumulation among the agents, making the information flow in the system unstable. In this paper, the authors propose the use of the spanning tree algorithm in IEEE 802.1d protocol for an agent system to detect and break the ring structure in the system. Then an algorithm for calculating the information flow without redundant information accumulation is put forward. Finally the proposed methodology is illustrated through a test case on a simplified SPS.
机译:船上电力系统(SPS)为船上的电气设备提供能量。为了能力和可靠性的目的,该系统将重新配置至关重要。在早期的工作中,成功开发了径向SPS重新配置的中集中方法。该系统中的每个代理只与其立即邻居通信,这会降低对系统拓扑的依赖性。然而,系统中的环形结构导致代理中的冗余信息累积问题,使得系统中的信息流不稳定。在本文中,作者提出了在IEEE 802.1d协议中使用的用于代理系统来检测和破坏系统中的环结构。然后,提出了一种计算没有冗余信息累积的信息流的算法。最后,通过在简化的SPS上通过测试用例来说明所提出的方法。

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