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A novel PRP based deterministic, redundant and resilient IEC 61850 substation communication architecture

机译:基于PRP的基于PRP的确定性,冗余和弹性IEC 61850变电站通信架构

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Summary A secure, reliable, redundant, resilient, time critical, efficient and interoperable substation communication network (SCN) is a prerequisite for a viable Substation Automation System (SAS). Due to emergence of IEC 61850 as a global standard for substation automation, the interoperability issues among components of substation from different vendors are resolved. The communication network must be fault tolerant and any substantial levels of disturbances should not affect the normal operation of the SAS. Due to digitization in SCN, the communication methodology is mainly focused on exchange of encrypted packet information. Failure of the communication mechanism, even for the order of milliseconds, would lead to catastrophic effects within the substation and also impacts the operation of grid, if not cleared timely. The high reliability of such a system is only possible under a redundant communication network which has a zero switchover time. Hence IEC 62439-3 based redundant protocols such as Parallel Redundancy Protocol (PRP) recommended to be used in SCNs to achieve redundancy and seamless recovery in case of a failure. PRP based SAS along with detailed analysis of underlying process for implementing PRP protocol and its comparison with existing conventional protocols based SCN reported in literature is presented.
机译:发明内容一个安全,可靠,冗余,弹性,时间关键,高效和可互操作的变电站通信网络(SCN)是可行变电站自动化系统(SAS)的先决条件。由于IEC 61850的出现作为变电站自动化的全球标准,解决了来自不同供应商的变电站组件之间的互操作性问题。通信网络必须是容错的,并且任何大量的干扰效果都不应影响SA的正常操作。由于SCN中的数字化,通信方法主要集中在加密数据包信息交换。通信机制的失败,即使为了毫秒,也会导致变电站内的灾难性影响,并影响网格的运行,如果没有及时清除。这种系统的高可靠性仅在冗余通信网络下可以具有零切换时间。因此,基于IEC 62439-3基于IEC 62439-3诸如并行冗余协议(PRP)的冗余协议,推荐用于SCNS,以实现失败的冗余和无缝恢复。基于PRP的SA以及对实施PRP协议的基础过程的详细分析及其与文献中报告的基于SCN的现有的常规协议的比较。

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