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Software implementation of two seamless redundant topologies in a digital protection system based on IEC 62439-3

机译:基于IEC 62439-3的数字保护系统中的两个无缝冗余拓扑的软件实现

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Substations are the junctions of any transmission and distribution network in utilities. They carry bulk power to the customers using transmission network involving high voltage (HV) apparatus. Protection of HV equipment during a fault is the primary concern of an operator. Advancement in design and manufacturing of Intelligent Electronic Devices (IEDs) and IEC 61850 are finding increased application in utilities from automation and communication perspective, which addresses few shortcomings that couldn't be resolved in a conventional system. However there are few challenges in the digital scheme such as end to end delays in the packet transfer and interoperability of devices. Utilities are able to perceive these benefits by leveraging on IEC 62439-3 which has two important topologies i.e. Parallel Redundancy Protocol (PRP) and High-availability Seamless Redundancy (HSR). It offers seamless redundancy in digital protection network without compromising the availability and downtime cost. In this paper, an Optimized Network Engineering Tool (OPNET) is used to simulate and compare the performance of these topologies with respect to delay time.
机译:变电站是任何传输和配送网络在公用事业中的结。他们使用涉及高压(HV)装置的传输网络对客户提供批量电力。在故障期间保护HV设备是运营商的主要关注点。智能电子设备(IED)和IEC 61850的设计和制造的进步正在从自动化和通信角度发现公用事业中的应用程序增加,这解决了传统系统中无法解决的几个缺点。然而,数字方案中的挑战很少,例如结束于数据包传输和设备的互操作性的结束延迟。公用事业公司能够通过利用IEC 62439-3来感知这些益处,其中有两个重要拓扑,即并行冗余协议(PRP)和高可用性无缝冗余(HSR)。它在数字保护网络中提供无缝冗余,而不会影响可用性和停机费用。在本文中,使用优化的网络工程工具(OPNET)来模拟和比较这些拓扑相对于延迟时间的性能。

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