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A Novel Voltage Sensitivity Approach for the Decentralized Control of DG Plants

机译:一种新的电压灵敏度方法用于DG装置的分散控制

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摘要

Renewable distributed generation (DG) is likely to be actively controlled in future distribution networks to mitigate voltage issues resulting from high penetrations. This requires understanding the corresponding dependencies between voltage magnitudes and DG active/reactive power outputs. One approach to compute these dependencies is to use classical sensitivity methods such as those based on the Jacobian matrix inverse. However, updating the latter involves extensive remote monitoring. This paper presents a novel approach to produce voltage sensitivities applying the surface fitting technique on data based solely on the knowledge of network characteristics; making it suitable for de-centralized DG control. To assess the benefits, comparisons with classical methods are carried out using the 16-bus UK GDS test network (1-min resolution simulations) considering a decentralized voltage control algorithm that simultaneously caters for the active and reactive power outputs of a single DG plant. The robustness of the proposed approach is also investigated considering changes in network parameters. Finally, the use of coordinated time delays is proposed to cater for multiple DG plants. Comparisons with a centralized optimization demonstrate that the combined use of the proposed voltage sensitivity approach and decentralized control algorithm is an effective and implementable candidate to actively manage renewable DG plants.
机译:在未来的配电网络中,可再生分布式发电(DG)可能会受到积极控制,以缓解高渗透率所引起的电压问题。这需要了解电压幅度与DG有功/无功功率输出之间的对应依赖性。一种计算这些相关性的方法是使用经典的灵敏度方法,例如那些基于Jacobian矩阵逆的方法。但是,更新后者涉及广泛的远程监视。本文提出了一种仅基于网络特性的知识就将表面拟合技术应用于数据的电压敏感度产生的新方法。适用于分散式DG控制。为了评估其好处,考虑了分散电压控制算法,该算法同时满足单个DG工厂的有功和无功输出,使用16总线UK GDS测试网络(1分钟分辨率模拟)与经典方法进行了比较。考虑网络参数的变化,还研究了所提出方法的鲁棒性。最后,提出了使用协调时间延迟来满足多个DG工厂的需求。与集中式优化的比较表明,提出的电压灵敏度方法和分散控制算法的组合使用是主动管理可再生DG工厂的有效且可实施的候选方案。

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