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A Maximum Power Point Tracking For a PMSG Based Variable Speed Wind Energy Conversion System

机译:基于PMSG的变速风能转换系统的最大功率点跟踪

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Due to varying atmospheric conditions, it is difficult to track maximum power point in wind energy conversion systems. As a remedy of this problem, a new MPPT technique is explored in this paper. At the wind turbine in order to sense the instantaneously change in wind speed, a MPPT controller is connected which controls the duty ratio of interleaved boost converter for tracking maximum power point . The MPPT proposed is easy to implement and is efficient to track the maximum power point accurately. The algorithm works through continuously investigating the rate of change of power with respect to the change in rotor speed. The proposed system consist of wind turbine, permanent magnet synchronous generator, MPPT controller and energy storage system. DC-DC interleaved boost converter is used which minimizes the ripples existing in the output and input current. The storage system used here provides an additional power support during the scenario of heavy load. Also it increases the flexibility, reliability and robustness of the system. The proposed algorithm is investigated in MATLAB/SIMULINK and results demonstrated that the proposed MPPT intelligently tracks the maximum power point.
机译:由于大气条件的变化,在风能转换系统中很难跟踪最大功率点。为解决此问题,本文探索了一种新的MPPT技术。为了检测风速的瞬时变化,在风力涡轮机上连接了MPPT控制器,该控制器控制交错式升压转换器的占空比以跟踪最大功率点。提出的MPPT易于实施,并且可以有效地准确跟踪最大功率点。该算法通过不断研究相对于转子速度变化的功率变化率来工作。拟议的系统包括风力发电机,永磁同步发电机,MPPT控制器和能量存储系统。使用DC-DC交错式升压转换器,可将输出和输入电流中存在的纹波降至最低。在重负载的情况下,此处使用的存储系统提供了额外的电源支持。它还增加了系统的灵活性,可靠性和鲁棒性。在MATLAB / SIMULINK中对提出的算法进行了研究,结果表明,提出的MPPT可智能地跟踪最大功率点。

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