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Voltage sensitivity-based demand-side management to reduce voltage unbalance in islanded microgrids

机译:基于电压敏感度的需求侧管理,可减少孤岛微电网中的电压不平衡

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摘要

Microgrids (MG) provide advantages such as providing energy supply to areas far from the distribution grid, efficient use of resources by supporting demand management and having a more dynamic grid. However, if an advanced control system is not implemented in the islanded MG, problems of power quality may arise. One of these problems is the voltage unbalance. Increasing the number of single-phase roof-mounted PV plants and the number of electric vehicle charging stations in recent times may negatively affect voltage unbalance. One of the methods used to mitigate this problem is the demand-side management (DSM). Here, a solution method based on DSM is presented for the voltage unbalance problem that may occur in an islanded MG. Thermostatically controlled loads, which are often used for DSM, are preferred as controllable loads. A new and novel control algorithm based on voltage sensitivity have been developed. Effects of TCLs on different buses and phases are determined with voltage sensitivity matrix including neutral components. The proposed control algorithm reduces successfully both the voltage unbalance factor and the number of controlled TCLs. The algorithm was tested with the PSCAD/EMTDC analysis software.
机译:微电网(MG)具有以下优势,例如为远离配电网的区域提供能源供应,通过支持需求管理以及更动态的电网来有效利用资源。但是,如果在孤岛MG中未实施高级控制系统,则可能会出现电能质量问题。这些问题之一是电压不平衡。最近增加单相屋顶式光伏电站的数量和电动汽车充电站的数量可能会对电压不平衡产生负面影响。缓解此问题的方法之一是需求侧管理(DSM)。在此,针对孤岛MG中可能出现的电压不平衡问题,提出了一种基于DSM的解决方法。经常用于DSM的恒温控制负载是可控负载。开发了一种基于电压灵敏度的新型控制算法。 TCL对不同母线和相位的影响由电压灵敏度矩阵(包括中性成分)确定。所提出的控制算法可成功降低电压不平衡因子和受控TCL的数量。该算法已通过PSCAD / EMTDC分析软件进行了测试。

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