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Smart interconnection of a PV/wind DG micro grid with the utility distribution network

机译:光伏/风电DG微电网与公用事业配电网的智能互连

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Future electric grids are becoming smarter by applying intelligent control techniques. Distributed Generation (DG) systems such as Photovoltaic (PV) and wind energy systems are essential parts of the future smart grids. In this paper, a smart interconnection control strategy is proposed for a grid connected PV/fixed speed wind driven micro grid. In case of industrial inductive loads, the generation of active power from the micro grid causes power factor decrease at the Point of Common Coupling (PCC) with the main grid. With the additional reactive power needs of the squirrel cage induction generator of the windsystem, the micro grid itself becomes a VAR burden. Proposed smart control strategy of the micro grid is based on the control of the PV coupling Voltage Source Inverter (VSI). The designed controller will ensure dual active/reactive power operation of the VSI. This will provide reactive power compensation, thus improving the power factor at the PCC as seen by the utility grid. Also, the control strategy will make use of the VSI during night time, thus cost effective for the micro grid. The proposed control algorithm is in the form of current controller implemented in synchronous rotating dq-frame. This allows decoupled control of active and reactive current components. Test system and controller operation and verification are implemented using MATLAB/Simulink Simpower System Toolbox.
机译:通过应用智能控制技术,未来的电网将变得越来越智能。诸如光伏(PV)和风能系统之类的分布式发电(DG)系统是未来智能电网的重要组成部分。本文提出了一种光伏并网/风速微电网并网的智能互联控制策略。在工业感性负载的情况下,微电网产生的有功功率会导致与主电网的公共耦合点(PCC)的功率因数降低。随着风力系统的鼠笼式感应发电机的额外无功功率需求,微电网本身成为VAR负担。拟议的微电网智能控制策略基于对光伏耦合电压源逆变器(VSI)的控制。设计的控制器将确保VSI的双重有功/无功运行。如公用电网所示,这将提供无功功率补偿,从而改善PCC处的功率因数。同样,控制策略将在夜间使用VSI,因此对于微电网而言具有成本效益。所提出的控制算法采用在同步旋转dq帧中实现的电流控制器的形式。这允许对有功和无功电流分量进行解耦控制。使用MATLAB / Simulink Simpower系统工具箱可实现测试系统和控制器的运行与验证。

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