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An Authenticated Control Framework for Distributed Voltage Support on the Smart Grid

机译:用于智能电网上的分布式电压支持的认证控制框架

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摘要

Existing and forthcoming devices at the residential level have the ability to provide reactive power support. Inverters which connect distributed generation such as solar panels and pluggable hybrid electric vehicles (PHEVs) to the grid are an example. Such devices are not currently utilized by the power system. We investigate the integration of these end-user reactive-power-capable devices to provide voltage support to the grid via a secure communications infrastructure. We determine effective locations in the transmission system and show how reactive power resources connected at those buses can be controlled. Buses belong to reactive support groups which parallel the regions of the secure communications architecture that is presented. Ultimately, our goal is to present how the smart grid can enable the utilization of available end-user devices as a resource to mitigate power system problems such as voltage collapse.
机译:住宅级别的现有设备和即将推出的设备都能够提供无功功率支持。将诸如太阳能电池板和可插电式混合动力汽车(PHEV)等分布式发电连接到电网的逆变器就是一个例子。电力系统当前不使用这种设备。我们研究了这些最终用户无功功率设备的集成,以通过安全的通信基础架构为电网提供电压支持。我们确定传输系统中的有效位置,并说明如何控制在这些总线上连接的无功功率资源。总线属于反应性支持组,该支持组与所呈现的安全通信体系结构的区域平行。最终,我们的目标是介绍智能电网如何使可用的最终用户设备作为资源来缓解电力系统问题(例如电压崩溃)。

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