Coordination of overcurrent and distance relays using hybrid Particle Swarm Optimization

J. Sadeh, Vahid Amintojjar, M. Bashir
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引用次数: 22

Abstract

Protection of power transmission has an important role in power systems. To have a better protection it is common to combine difference types of relays, which combination of overcurrent and distance relays is a well-known protection scheme in transmission lines. Another thing, which should be considered is defining a backup protection system that clear fault when main protection clear the fault. To achieve this aim, coordination between primary and backup protection systems should be performed. Speed, selectivity and stability are constraints, which must be satisfied by performing coordination, and sometimes it is so hard by conventional methods. Therefore, considering coordination of relays as an optimization problem and solving this problem by intelligent methods can be effective. Many intelligent methods have been suggested performing coordination between overcurrent and distance relays. In this paper, an optimal coordination of overcurrent and distance relays is proposed, which uses a hybrid Particle Swarm Optimization (PSO) with a new assumption that satisfies all constraints.
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基于混合粒子群算法的过流继电器和距离继电器协调
输电保护在电力系统中具有重要的作用。为了获得更好的保护,通常将不同类型的继电器组合起来,其中过流和距离继电器的组合是传输线中众所周知的保护方案。另一个需要考虑的问题是定义一个在主保护清除故障时也能清除故障的后备保护系统。为了实现这一目标,应该在主保护系统和备用保护系统之间进行协调。速度、选择性和稳定性是必须通过配位来满足的约束条件,而传统方法有时很难满足这些约束条件。因此,将继电器的协调作为一个优化问题来考虑,并用智能的方法来解决这个问题是有效的。人们提出了许多智能方法来实现过流继电器和距离继电器之间的协调。提出了一种基于混合粒子群算法的过流继电器和距离继电器的优化协调方法,并提出了满足所有约束条件的新假设。
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Matlab-based voltage stability analysis toolbox and its validity check Fault indicator allocation in power distribution network for improving reliability and fault section estimation Effect of monitoring and self-checking tests effectiveness index of back-up protection system on the optimum routine and self-checking test intervals of protection system A new method to prevent distance protection from operating due to power swing Coordination of overcurrent and distance relays using hybrid Particle Swarm Optimization
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