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首页> 外文期刊>Smart Grid, IEEE Transactions on >Optimal Sizing, Siting and Operation of Custom Power Devices With STATCOM and APLC Functions for Real-Time Reactive Power and Network Voltage Quality Control of Smart Grid
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Optimal Sizing, Siting and Operation of Custom Power Devices With STATCOM and APLC Functions for Real-Time Reactive Power and Network Voltage Quality Control of Smart Grid

机译:具有STATCOM和APLC功能的定制功率设备的最佳尺寸,选址和操作,用于智能电网的实时无功功率和网络电压质量控制

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摘要

A new custom power device (CPD) is introduced for real-time control of reactive power and improving the overall network voltage quality of smart grid (SG) at fundamental and harmonic frequencies, respectively. The idea is to take advantage of the online smart meter data transmitted from each bus to the SG central control to concurrently perform the static synchronous compensator and the active power line conditioner operations by optimal compensations of fundamental reactive power and harmonic currents at selected optimal buses. The proposed strategy involves two particle swarm optimization algorithms. The first algorithm is implemented for the worse operating condition to determine the optimal locations and sizes of CPDs while the second algorithm relies on smart meter information to continuously compute fundamental and harmonic reference currents for real-time operation and control of the allocated CPDs. The objective functions are cost minimizations associated with bus voltage regulations, network total harmonic distortions voltage and custom device sizing while the constraints include upper limits for CPD sizes, fundamental, and harmonic bus voltages. Detailed simulations are performed in MATLAB/Simulink to evaluate the performances of allocated CPDs in controlling the reactive power and voltage quality of a distorted 15-bus SG with six nonlinear loads according to the IEEE-519 standard.
机译:引入了一种新的自定义功率设备(CPD),用于分别实时控制无功功率并改善智能电网(SG)在基频和谐波频率下的总体网络电压质量。这个想法是利用从每条总线传输到SG中央控制的在线智能电表数据,通过对选定的最佳总线上的基本无功功率和谐波电流进行最佳补偿,来同时执行静态同步补偿器和有功功率线路调节器操作。所提出的策略涉及两种粒子群优化算法。针对较差的工作条件实施第一种算法,以确定CPD的最佳位置和大小,而第二种算法则依靠智能电表信息来连续计算基波和谐波参考电流,以实时操作和控制分配的CPD。目标功能是与总线电压法规,网络总谐波失真电压和定制设备尺寸相关的成本最小化,而约束条件包括CPD尺寸,基波和谐波总线电压的上限。在MATLAB / Simulink中执行了详细的仿真,以评估分配的CPD在根据IEEE-519标准控制具有六个非线性负载的畸变15总线SG的无功功率和电压质量方面的性能。

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