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HBBO-based Intelligent Setting and Coordination of Directional Overcurrent Relays Considering Different Characteristics

机译:考虑不同特性的基于HBBO的方向性过电流继电器的智能设置与协调

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Different equipment is used to protect nowadays power systems. Among these protection tools, the directional overcurrent relays (DOCRs) have significant effect in protecting power systems. A sophisticated protection scheme is expected to detect a fault and command as fast as possible, so that the primary relay should detect the fault or else, the backup relay must act after an intended delay. Thus, in such a protection scheme, coordination between the primary and backup relays is important. The conventional coordination methods are not appropriate for the new complex power systems; therefore, the optimal coordination schemes currently are getting more attention. In this paper, a human behavior-based optimal (HBBO) coordination scheme is presented for coordination of DOCRs to provide the maximum coordination between the primary and backup relays. Also, in contrast to the previous methods, different relay characteristics have been used as decision variables in the modeling process so that the optimization algorithm elects the best characteristic for the DOCRs. The proposed protection scheme has been studied and examined using a standard power system structure and it has been demonstrated that using the HBBO algorithm and considering the relay characteristics as decision variables, not only set the miscoordinations to zero but also reduce the operation time of the DOCRs in comparison to other coordination methods.
机译:如今,使用不同的设备来保护电力系统。在这些保护工具中,定向过电流继电器(DOCR)在保护电力系统方面具有重要作用。期望有一种先进的保护方案来尽可能快地检测故障和命令,以便主继电器可以检测到故障,否则备用继电器必须在预期的延迟后动作。因此,在这种保护方案中,主中继和备用中继之间的协调很重要。传统的协调方法不适用于新的复杂电力系统;因此,目前最佳的协调方案受到越来越多的关注。在本文中,提出了一种基于人类行为的最佳(HBBO)协调方案来协调DOCR,以在主继电器和备用继电器之间提供最大的协调。而且,与以前的方法相比,在建模过程中已将不同的中继特性用作决策变量,因此优化算法为DOCR选择了最佳特性。使用标准的电力系统结构对提出的保护方案进行了研究和研究,结果表明,使用HBBO算法并将继电器特性作为决策变量,不仅将失配设置为零,还减少了DOCR的工作时间与其他协调方法相比。

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