A New Algorithm for Protection of Small Scale Synchronous Generators Against Transient Instability

Z. Khosravi, A. Saffarian
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Abstract

Today, installation of small generators has been increased because of their considerable benefits in distribution systems in distributed generation. One of the most important problems for transient stability is the effects of the faults of system. Small scale generators have low constant inertia and protection relays have slow performance in distribution systems. Therefore transient instability is a probable phenomenon for the systems with these generators. In this paper, dynamic response of generator has been studied in different fault conditions and then by introducing the concept of " critical fault clearing time ", the sensitivity of this time to the fault type and also fault location parameters have been studied. Then a new protection scheme has been proposed to prevent of transient instability for small scale generator. This protection scheme uses a new evolutionary algorithm based on the active power of generator and critical fault clearing time. The proposed relay can prevent of wrong and unwanted performance. Furthermore it can disconnect the generator from the system in three phase fault near of the bus-bar before its instability. Simulation results show reliable performance of the proposed relay against system transients.
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小型同步发电机暂态失稳保护新算法
目前,由于小型发电机在分布式发电的配电系统中具有相当大的优势,因此小型发电机的安装越来越多。系统暂态稳定的一个重要问题是故障对系统的影响。在配电系统中,小型发电机的恒惯性较低,保护继电器的性能较慢。因此,有这些发电机的系统很可能出现暂态不稳定现象。本文研究了发电机在不同故障条件下的动态响应,并引入“关键故障清除时间”的概念,研究了该时间对故障类型和故障定位参数的敏感性。针对小型发电机暂态失稳问题,提出了一种新的保护方案。该保护方案采用了一种基于发电机有功功率和临界故障清除时间的进化算法。所提出的继电器可以防止错误和不必要的性能。在母线附近三相故障时,在系统失稳前将发电机与系统断开。仿真结果表明,该继电器具有可靠的抗系统暂态性能。
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