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Substation area joint defensive protection strategy based on distributed cooperative all-in-one device

机译:基于分布式协同多合一设备的变电站区域联合防御保护策略

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摘要

Integration of primary and secondary devices are impelled by the development of smart grid. Based on the ideology of primary and secondary device integration, an all-in-one device and its concept, configuration and function are proposed. Then, an all-in-one device framework of distributed substation area protection is proposed. Point-topoint model and virtual local area network(VLAN) based network-to-network model are adopted in this framework.The dual redundancy on hardware and software level is realized by modularization and protection information mirroring storage/overwriting. Considering the fact that the sampling, logic judgment and information sharing processes of protection may fail in atrocious conditions, a distributed cooperative all-in-one device cluster based substation area joint defensive protection strategy is proposed. The adaptability of sectional component failure in secondary system is strengthened by reusing module function, setting value mirroring storage and dynamic load balancing computing ability to constitute strong intelligent outdoor secondary device integrated network. Finally, the simulation examples based on EPOCHS which consider various system failure conditions are presented to verify the validity and rationality of the proposed architecture and strategy.
机译:通过智能电网的开发,初级和辅助设备的集成驾驶。基于主设备集成的意识形态,提出了一体化设备及其概念,配置和功能。然后,提出了一个分布式变电站区域保护的一体化设备框架。在此框架中采用了基于点彩色局部模型和虚拟局域网(VLAN)网络到网络模型。通过模块化和保护信息镜像存储/重写来实现硬件和软件级别的双冗余。考虑到采样,逻辑判断和保护过程的保护可能在可逆条件下失效,提出了一种基于分布式的协作一体化设备集群的变电站面积联合防御保护策略。通过重用模块函数,设定值镜像存储和动态负载平衡计算能力来加强辅助系统中截面组件故障的适应性,构成强大的智能户外辅助设备集成网络。最后,提出了基于时代考虑各种系统故障条件的仿真示例,以验证所提出的架构和策略的有效性和合理性。

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