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A Local measurement based protection technique for distribution system with photovoltaic plants

机译:基于局部测量基于光伏植物的分配系统保护技术

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Inverter interfaced distributed generation units contribute limited fault current and thereby the current magnitude-based protection schemes find limitation for such situations. Change in penetration level of renewable energy sources with time makes available protection schemes more challenging. The distinction between load and fault current is an issue and with high resistance fault, level of fault current and load current becomes comparable. In this paper, local measurement-based protection technique is proposed that uses current and voltage signals to derive accurate protection decision for a distribution system in the presence of distributed generation units. The method uses real and reactive power calculated at the relay point for the decision. The performance of the algorithm is tested for a 33 bus distribution system simulated using DIgSILENT PowerFactory. Considering such units, the method is tested for both islanded and grid-connected modes, the varying level of distributed generation penetration and for different fault resistances. The results demonstrate the strength of the proposed method over available techniques. The proposed method is also validated using hardware-in-loop testing using Arduino NANO microcontroller and OPAL-RT simulator in real-time.
机译:逆变器接口分布生成单位有限有限的故障电流,从而有关基于幅度的保护方案对这种情况的限制。随着时间的推移,可再生能源渗透水平的变化使得可用的保护计划更具挑战性。负载和故障电流之间的区别是一个问题,并且具有高电阻故障,故障电流水平和负载电流变得可比。在本文中,提出了基于局部测量的保护技术,其使用电流和电压信号在存在分布式发电单元的存在下导出分配系统的准确保护决策。该方法使用在中继点处计算的实际和无功功率进行决定。使用DigSilent PowerFactory模拟的33总线分配系统测试算法的性能。考虑到这样的单位,该方法是针对孤岛连接的方式测试的方法,分布式的分布式渗透水平和不同的故障电阻。结果证明了所提出的方法对可用技术的强度。还使用Arduino Nano Micrococtroller和Opal-RT模拟器实时使用硬件环路测试来验证所提出的方法。

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