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Coordination of voltage regulating devices for active distribution network management

机译:电压调节装置的协调,用于有源配电网管理

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摘要

Coo rdinat ion of voltage regulating devices for active network management can be described as a process o f co ntrolling thc network equipment and voltage regulating devices that serve in normal condition to enhance thc utilization o f network assets and minimize thc requirement of thcir reinforcement to enable deve lopment of thc system, It is important for voltage regu lation implcmcnt at ion where the voltage supplied to thc end user has to bc maintained ins ide the reg ional acceptable limit. Volta ge fluctu ation in distribution system not only interrupted the elcctricalmachi ncry funct ioning but it could cause damages and mal funct ion to the e lectrical equipment. The operat ions of voltage regulat ing dev ices at se lected points in current distribut ion systems arc co ntrolled by the system operator based on thcir cxpc ricnces. Poor decis ion in coord inating the devices may lead to poor quality of the output voltage profile and frequent action of thc devices which result s in high cost o f operation and maintenance in terms o f wear and tear. Considcring having an optimum output vo ltage with the most minimum cost and depende ncy on system operator, a method to coo rdinate the vo ltage regulating devices is bc ing enhanced. By idcnti fying the LTC transformer and mechanically sw itched capac itor 'as thc voltage regulating dev ices, this projec t research strives to iIIustratc the impact that a distr ibution system could have with di fferent sctt ing of thc devices. A modified IEEE 13 node tcst feeder has bccn used as a system modcling whi le thc s imulat ion has been carr ied out using an OpcnDSS source code interfacing with Visual Basic o f C++. The results show that proper coordinatio n of thc voltage regulating de vices resu lt in better out put voltage profile and Icss freque nt action o f thc rcgulat ing de vices.
机译:用于主动网络管理的电压调节装置的协调可描述为控制网络设备和电压调节装置的过程,这些设备和电压调节装置在正常情况下用于提高网络资产的利用率并最小化对钢筋的要求,从而能够发展对于该系统的电压调节而言,重要的是要确保向最终用户提供的电压必须保持在可接受的范围内。配电系统中的电压波动不仅中断了电气设备的功能,而且可能导致电气设备的损坏和功能异常。电流分配系统中选定点处的电压调节装置的操作由系统操作员根据控制电流来控制。协调设备的决策不当可能会导致输出电压曲线的质量较差,并导致设备频繁动作,从而导致运行和维护方面的成本高昂。考虑到以最小的成本和对系统操作员的依赖来获得最佳的输出电压,从而改进了一种确定电压调节装置的方法。通过识别LTC变压器并在电压调节器上机械切换电容器,这项项目研究力图证明分配系统可能因不同的装置设置而产生影响。经过修改的IEEE 13节点tcst馈送器已用作系统修改,并且已使用与Visual Basic和C ++接口的OpcnDSS源代码进行了仿真。结果表明,调压装置的适当协调可以改善输出电压曲线和调节装置的Icss频率作用。

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    Mat Noh Tantinoryani;

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  • 年度 2013
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