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Coordinated control of distributed energy resources to support load frequency control

机译:分布式能源的协调控制以支持负载频率控制

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摘要

The control of generating resources to follow the unscheduled load changes is considered to be an essential process in the power system in order to maintain the frequency of power supply. This load frequency control (LFC) problem has been given more importance in the recent smart grid environment because of the impact from high penetration of distributed energy resources (DER) installed at the distribution level. The renewable sources are highly intermittent in nature, so it is required to coordinate and control the DER units to maintain the feeder power flow at substation bus bar which is seen by transmission system operator during the LFC process. This paper aims to identify the impact of distributed generation and its control method to reduce the deviation of feeder power flow from the scheduled value in real time operation. The error in feeder power flow with respect to scheduled value is utilized by the PI controller to estimate the change in power reference of all DER units. The power output of DER units are maintained to reference values by the individual PI controllers. The particle swarm optimization algorithm is employed to minimize the error in feeder power flow by optimally tuning the gain values of all PI controllers. The proposed method is examined on a small transmission system along with the feeder of IEEE 37 bus distribution system with balanced loading condition. The complete system along with DER units is implemented in the MATLAB based stability package named Power Analysis Toolbox (PAT) for performing time domain analysis. The impact on feeder flow and system frequency for the disturbance in load and weather condition without feeder control scheme (NFC) is compared with the feeder control scheme (WFC). (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了保持供电频率,控制发电资源以遵循计划外的负载变化被认为是电力系统中必不可少的过程。由于安装在配电级的分布式能源(DER)的高渗透率的影响,在最近的智能电网环境中,此负载频率控制(LFC)问题已变得更加重要。可再生能源本质上是高度间歇性的,因此需要协调和控制DER单元,以保持变电站母线上的馈线功率流,这是LFC过程中传输系统运营商所看到的。本文旨在确定分布式发电的影响及其控制方法,以减少实时运行中馈线潮流与计划值的偏差。 PI控制器利用馈线功率流相对于计划值的误差来估算所有DER单元的功率参考变化。各个PI控制器将DER单元的功率输出保持为参考值。通过优化调节所有PI控制器的增益值,采用了粒子群优化算法来使馈线功率流中的误差最小。在具有平衡负载条件的IEEE 37总线分配系统的馈线以及小型传输系统上对提出的方法进行了研究。完整的系统与DER单元一起在基于MATLAB的名为Power Analysis Toolbox(PAT)的稳定性软件包中实现,用于执行时域分析。将没有馈线控制方案(NFC)的负载和天气条件对扰动对馈线流量和系统频率的影响与馈线控制方案(WFC)进行了比较。 (C)2015 Elsevier Ltd.保留所有权利。

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