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Optimal voltage control strategies for day-ahead active distribution network operation

机译:日前主动配电网运行的最佳电压控制策略

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The aim of this study is to develop a coordinated day-ahead voltage control strategy for an active distribution network. A framework comprising a synergy of real-time dynamic thermal rating (DTR) and coordinated voltage control (CVC) is proposed for solving the voltage quality and thermal limit problems associated with a high penetration level of distributed generation (DG) in an active distribution network. The CVC scheme involves solutions such as On-Load-Tap-Changers (OLTCs), active and reactive power control of DG units, and switchable shunt VAR compensation devices (SVCs). Loss minimization and voltage penalty objective functions in the CVC optimization problem are compared. A 147 bus test distribution network planned for an actual geographical location is used to evaluate the proposed DTR-based day-ahead CVC strategy. In this study, we have showed that the reactive power absorption/injection potential of DG units can play an important role in CVC. Moreover, the study demonstrates that real-time thermal rating boosts the utilization of reactive power resources in the distribution system. Finally, the study investigates the practicality of day-ahead active distribution network operation planning for CVC. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究的目的是为有源配电网开发一种协调的日前电压控制策略。提出了一个包含实时动态热额定值(DTR)和协调电压控制(CVC)协同作用的框架,用于解决与有源配电网中分布式发电(DG)的高渗透水平相关的电压质量和热极限问题。 CVC方案涉及诸如有载分接开关(OLTC),DG单元的有功和无功功率控制以及可切换的并联VAR补偿设备(SVC)之类的解决方案。比较了CVC优化问题中的损耗最小化和电压损失目标函数。针对实际地理位置规划的147总线测试分配网络用于评估建议的基于DTR的日前CVC策略。在这项研究中,我们已经表明DG装置的无功功率吸收/注入电位可以在CVC中发挥重要作用。此外,研究表明,实时热额定值可提高配电系统中无功功率的利用率。最后,本文研究了CVC日前主动配电网运营计划的可行性。 (C)2015 Elsevier B.V.保留所有权利。

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