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Distance and overcurrent relay coordination considering non standardized inverse time curves

机译:考虑非标准反时限曲线的距离和过流继电器协调

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摘要

Protective relaying comprehends several procedures and techniques focused on maintaining the power system working safely during and after undesired and abnormal network conditions, mostly caused by faulty events. Overcurrent relay is one of the oldest protective relays, its operation principle is straightforward: when the measured current is greater than a specified magnitude the protection trips; less variables are required from the system in comparison with other protections, causing the overcurrent relay to be the simplest and also the most difficult protection to coordinate; its simplicity is reflected in low implementation, operation, and maintenance cost. The counterpart consists in the increased tripping times offered by this kind of relays mostly before faults located far from their location; this problem can be particularly accentuated when standardized inverse-time curves are used or when only maximum faults are considered to carry out relay coordination. These limitations have caused overcurrent relay to be slowly relegated and replaced by more sophisticated protection principles, it is still widely applied in subtransmission, distribution, and industrial systems. In this work, the use of non standardized inverse-time curves, the model and implementation of optimization algorithms capable to carry out the coordination process, the use of different levels of short circuit currents, and the inclusion of distance relays to replace insensitive overcurrent ones are proposed methodologies focused on the overcurrent relay performance improvement. These techniques may transform the typical overcurrent relay into a more sophisticated one without changing its fundamental principles and advantages. Consequently a more secure and still economical alternative can be obtained, increasing its implementation area
机译:保护继电器包含几种过程和技术,这些过程和技术专注于在不希望的和异常的网络状况(主要是由故障事件引起)期间和之后保持电力系统的安全运行。过电流继电器是最古老的保护继电器之一,其工作原理很简单:当测得的电流大于规定值时,保护跳闸;与其他保护相比,系统所需的变量更少,从而使过电流继电器成为最简单且最难协调的保护;它的简单性体现在较低的实施,运营和维护成本上。与之相对应的是,这种继电器提供的跳闸时间增加了,这主要是在远离其位置的故障发生之前。当使用标准的逆时曲线或仅考虑最大故障来执行继电器协调时,此问题会特别突出。这些限制导致过电流继电器被缓慢降级,并被更复杂的保护原理所取代,它仍广泛应用于子输电,配电和工业系统中。在这项工作中,使用非标准的逆时曲线,能够执行协调过程的优化算法的模型和实现,使用不同水平的短路电流以及包括距离继电器来代替不敏感的过电流继电器提出了针对过电流继电器性能改进的方法。这些技术可以在不改变其基本原理和优点的情况下将典型的过电流继电器转换为更复杂的继电器。因此,可以获得更安全,更经济的替代方案,从而扩大了其实现范围

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