Profile Optimisation in Real Distribution Networks (Case Study Long MV Feeder)

Aida Pipić, A. Bosovic, M. Music
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Abstract

Abstract In the dynamic field of power systems, integrating distributed generation (DG) sources like solar photovoltaic (PV) plants is crucial for enhancing reliability and fostering sustainability. However, this integration poses voltage profile management challenges in electrical grids. This study investigates voltage profile optimization in Bosnia and Herzegovina’s Gračanica network, focusing on a medium voltage feeder with 68 buses. Using DIgSILENT PowerFactory software, six scenarios with different configurations of solar plants are analyzed for their impact on voltage profiles and power losses. Results show that while DG integration offers benefits, incorrect sizing or placement can increase power losses. Optimal DG benefits are linked to specific sizes and locations. This research emphasizes the need for balancing PV generation with load demands and provides insights for optimal PV plant size and output to minimize negative impacts. These findings aid energy planners and policymakers in implementing distributed solar PV in medium voltage networks.
实际配电网络中的曲线优化(长中压馈线案例研究)
在电力系统动态领域,集成太阳能光伏电站等分布式发电(DG)源对于提高可靠性和促进可持续性至关重要。然而,这种集成对电网的电压分布管理提出了挑战。本研究调查了波黑graanica网络的电压分布优化,重点是一个有68个母线的中压馈线。使用DIgSILENT PowerFactory软件,分析了六种不同配置的太阳能发电厂对电压分布和功率损耗的影响。结果表明,虽然DG集成提供了好处,但不正确的尺寸或放置可能会增加功率损耗。最佳的DG效益与特定的规模和位置有关。这项研究强调了平衡光伏发电与负荷需求的必要性,并提供了最佳光伏电站规模和输出的见解,以最大限度地减少负面影响。这些发现有助于能源规划者和决策者在中压电网中实施分布式太阳能光伏。
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