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Integration of Distributed Generation in the Volt/VAR Management System for Active Distribution Networks

机译:主动配电网的Volt / VAR管理系统中的分布式发电集成

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This paper investigates the use of voltage source converter interfaced distributed generators (DGs) for reactive power support in active distribution networks. Integration of DG management systems into decentralized parts of the Volt/VAR management system is proposed. The solution is designed to address issues connected to increased DG penetration, while at the same time avoiding the technical challenges and high costs related to state-of-the-art model-based Volt/VAR management. Coordination of DGs with conventional voltage regulation equipment is based on predefined control hierarchies. However, to reduce requirements for data handling capability, the distribution grid is divided into zones with individual voltage regulation and reactive support schemes. To add flexibility and scalability, these zones can be combined into larger zones with a common Volt/VAR management scheme. This is referred to as adaptive zoning. The results indicate that the control schemes successfully restore voltage to within limits after disturbance of grid conditions. Adaptive zoning effectively reduces system complexity and requirements for data handling capability, while still ensuring a grid-wide solution.
机译:本文研究了将电压源转换器接口分布式发电机(DG)用于有源配电网中的无功功率支持的情况。建议将DG管理系统集成到Volt / VAR管理系统的分散部分中。该解决方案旨在解决与增加DG渗透率有关的问题,同时避免与基于模型的最新Volt / VAR管理相关的技术挑战和高成本。 DG与常规调压设备的协调基于预定义的控制层次结构。但是,为了降低对数据处理能力的要求,配电网被划分为具有独立电压调节和无功支持方案的区域。为了增加灵活性和可伸缩性,可以使用常见的Volt / VAR管理方案将这些区域组合为更大的区域。这称为自适应分区。结果表明,该控制方案能够在电网条件发生干扰后,将电压成功恢复到一定范围内。自适应分区可有效降低系统复杂性和对数据处理能力的要求,同时仍可确保整个网格范围内的解决方案。

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