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Evaluation of new voltage operating strategies for integration of distributed generation into distribution networks

机译:评估将分布式发电整合到配电网中的新电压运行策略

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With the increasing number of distributed generation connections to distribution networks, the need for better understanding of the distribution network constraints becomes crucial. As distribution networks have not been traditionally designed for two-way power flow, the reverse power flows due to the integration of distributed generation changes voltage profiles and can create significant network management issues related to both thermal and voltage limits. Whilst a large body of theory exists on the management of voltage profiles and the integration of distributed generation into voltage-constrained feeders, there has been limited real world application of these methods to date, in part because network operators are reluctant to undertake significant changes that may affect the reliability of their network. This paper provides a case study of three adjustments to existing management of an 11kV feeder that are simple and feasible to implement and evaluates their impact on connection capacity for distributed generation including the importance of location. These adjustments are: increased operational upper-voltage levels, simple demand-management, and non-firm connections to manage local voltage constraints.
机译:随着与配电网的分布式发电连接数量的增加,对配电网约束条件的更好了解变得至关重要。由于配电网络传统上并未设计用于双向功率流,因此,由于分布式发电的集成而产生的反向功率流会改变电压曲线,并可能产生与热和电压限制相关的重大网络管理问题。尽管存在关于电压曲线管理和将分布式发电集成到电压受限馈线中的大量理论,但迄今为止,这些方法在现实世界中的应用受到了限制,部分原因是网络运营商不愿进行重大更改,可能会影响其网络的可靠性。本文提供了对11kV馈线的现有管理进行三项调整的案例研究,这些调整很容易实现,并评估了它们对分布式发电的连接能力的影响,包括位置的重要性。这些调整包括:提高操作高压水平,简单的需求管理以及管理本地电压约束的非牢固连接。

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