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Network-cognizant design of decentralized Volt/VAR controllers

机译:分散式Volt / VAR控制器的网络感知设计

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This paper considers the problem of designing decentralized Volt/VAR controllers for distributed energy resources (DERs). The voltage-reactive power characteristics of individual DERs are obtained by solving a convex optimization problem, where given performance objectives (e.g., minimization of the voltage deviations from a given profile) are specified and stability constraints are enforced. The resultant Volt/VAR characteristics are network-cognizant, in the sense that they embed information on the location of the DERs and, consequently, on the effect of reactive-power adjustments on the voltages throughout the feeder. Bounds on the maximum voltage deviation incurred by the controllers are analytically established. Numerical results are reported to corroborate the technical findings.
机译:本文考虑了为分布式能源(DER)设计分散式Volt / VAR控制器的问题。通过解决凸优化问题来获得各个DER的电压无功功率特性,其中确定了给定的性能目标(例如,最小化给定曲线的电压偏差)并强制执行了稳定性约束。所得的Volt / VAR特性在网络上是可识别的,因为它们将信息嵌入DER的位置,并因此将无功功率调整对整个馈线电压的影响嵌入信息中。通过分析确定控制器引起的最大电压偏差的界限。据报道数值结果证实了技术发现。

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