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Adaptive Overcurrent Protection to Mitigate High Penetration of Distributed Generation in Weak Distribution Systems

机译:自适应过流保护可缓解弱配电系统中分布式发电的高普及率

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The Growth in penetration Distributed Generation (DG) in the Distribution Network consequently rise and become widespread practise due to the increasing demand for electric supply. Integration of DG units in the Distribution Network lead into a significant change in the characteristic and configuration of the distribution network in many aspects, and could be characterized in terms of stability and reliability, which caused by the disturbance in the protection system configuration such as distance protection over and under-reach and over-current mis-coordination, especially in high penetration conditions. This paper presents a case study for integration a relatively large amount of distributed generation (DG) into a weak medium voltage distribution network (DN), addressing the problems resulted from integrating DG units into the distribution network, in particular, the planning and operation of distribution network protection with significant penetration of DG units. The adaptive method approach presented in this paper overcome the mis-coordination problems comes from connecting DG units to a typical distribution grid based on activating the directional functions and adding multiple group settings which a feature exist in all modern numerical protective relays. The theoretical analysis will be validated using simplified power system representing the Eastern Libyan Network simulated in NEPLAN package. Simulation and results indicate that the proposed adaptive protection scheme is a viable method to effectively mitigate the impact of DG penetration on protective devices, in addition enhancing the reliability and selectivity of the protection system.
机译:因此,由于对电力供应的需求增加,配电网络中的分布式发电(DG)的普及率上升并成为一种普遍的做法。 DG单元在配电网中的集成会在许多方面导致配电网的特性和配置发生重大变化,并且可以在稳定性和可靠性方面进行表征,这是由保护系统配置中的干扰(例如距离)引起的防止过高,过低和过流误配,尤其是在高穿透条件下。本文提供了一个案例研究,将相对较大数量的分布式发电(DG)集成到弱中压配电网(DN)中,解决了将DG单元集成到配电网中而导致的问题,特别是电网的规划和运营保护配电网,并充分利用DG装置。本文提出的自适应方法解决了由于将DG单元连接到典型的配电网而引起的不协调问题,该方法是通过激活方向功能并添加所有现代数字保护继电器都具有的功能的多个组设置。理论分析将使用代表NEPLAN软件包中模拟的东部利比亚网络的简化电源系统进行验证。仿真和结果表明,所提出的自适应保护方案是有效减轻DG渗透对保护装置的影响的可行方法,同时还提高了保护系统的可靠性和选择性。

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