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Study of wind turbine based self-excited induction generator under nonlinear resistive loads as a step to solve the Egypt electricity crisis

机译:研究基于非线性电阻负载的风力发电机自励感应发电机作为解决埃及电力危机的一个步骤

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The crisis of electricity generation in Egypt requires the need to study the possibility of using renewable energy as a way to solve this problem. Also, renewable energy reduces pollution resulting from the use of traditional methods of electricity generation. The main objective of the paper is the dynamic study of a stand-alone wind turbine based self-excited induction generator (SEIG) under nonlinear resistive loads at fixed pitch angle and different wind speed. The approach is based on the dynamic equations for SEIG, turbine, and nonlinear resistive loads using MATLAB/SIMULINK. The dynamic study of the isolated wind turbine based SEIG under nonlinear resistive load, indicate that the system is reliable, dependable, and fulfillment. From the results the system can be used as a reflected source of the unified network as a step to solve the crisis of electricity generation in Egypt and also as a clean energy. (C) 2016 Elsevier Ltd. All rights reserved.
机译:埃及的电力危机需要研究使用可再生能源解决这一问题的可能性。同样,可再生能源减少了使用传统发电方法所造成的污染。本文的主要目的是在固定桨距角和不同风速下,在非线性电阻负载下,对基于风力发电机组的自励式感应发电机(SEIG)进行动态研究。该方法基于使用MATLAB / SIMULINK的SEIG,涡轮和非线性电阻负载的动力学方程。对基于隔离风力发电机组的SEIG在非线性电阻负载下的动态研究表明,该系统可靠,可靠且可满足要求。从结果来看,该系统可以用作统一网络的反射源,作为解决埃及电力危机的步骤,也可以用作清洁能源。 (C)2016 Elsevier Ltd.保留所有权利。

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