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Design of Smart MVDC Power Grid Protection

机译:智能MVDC电网保护设计

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Improved reliability and safety of the medium-voltage dc power distribution systems on board of all electric ships are the objectives of this paper. The authors propose the integration of the self-healing capability against faults of the measurement system in power system fault detection and protection systems. While most of previous work in the literature focuses on either one aspect independently, here, the two are integrated. On one hand, our approach addresses also the case of concurrent power system fault and measurement system fault. On the other hand, the proposed approach must be capable of distinguishing between the two types of failure. The proposed architecture is based on exchange of information between energy conversion and measurement devices. This makes the impact of communication delays critical, so its analysis is provided for the proposed case study. The impact on the performance of the measurement validation and protection systems is derived and can provide hints on the design. The protection method used as case study consists in controlling power converters to ride through the power system fault while maintaining power supply to the vital loads. To overcome failures of the measurement system, invalid data were detected and reconstructed through their expected value.
机译:本文的目标是提高所有电力船上的中压直流配电系统的可靠性和安全性。作者提出在电力系统故障检测和保护系统中集成针对测量系统故障的自愈功能。尽管文献中以前的大多数工作都将重点放在任一方面,但在这里,两者是结合在一起的。一方面,我们的方法还解决了同时发生的电力系统故障和测量系统故障的情况。另一方面,建议的方法必须能够区分两种类型的故障。所提出的架构基于能量转换和测量设备之间的信息交换。这使得通信延迟的影响至关重要,因此为拟议的案例研究提供了分析。得出了对测量验证和保护系统性能的影响,并可以为设计提供提示。案例研究中使用的保护方法包括控制功率转换器以克服电源系统的故障,同时维持对重要负载的供电。为了克服测量系统的故障,检测到无效数据并通过其预期值进行重构。

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