Simulation of an induction generator for a wind farm

Ye. Honcharov, Nataliya Kriukova, Vladyslav Markov, Igor Polyakov
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Abstract

A pressing problem in the modern economy is still the problem of generating a sufficient amount of electricity. The situation is aggravated by environmental problems when using so-called carbon energy, as well as when using hydro and nuclear energy. The development of alternative sources of electricity is now impossible to imagine without the use of wind power plants. Wind energy is practically free energy, but its use involves the use of electric generators. Currently these are mainly synchronous generators, but induction (asynchronous) generators are also used. Despite the relative cheapness and reliability, however, induction generators occupy a very modest place in percentage terms among wind generators. One of the problems with using induction wind generators is that they require very significant reactive power during operation, which either comes from the network or is compensated by a capacitor bank. The latter is typical for autonomous induction generators. Computer modeling of induction wind generators is complicated by significant nonlinearity, which is caused by the magnetization curve or, what is the same, the no-load characteristics of the generator. As a rule, in computer modeling or simulation the inductive reactance of the magnetization branch is assumed to be constant, which is not entirely correct, since it is reliably known that it depends on the rotor rotation speed. A number of models of an induction generator are known, but so far there is no one most reliable mathematical model that allows computer studies of an induction generator with a squirrel-cage rotor, taking into account all its features. The MATLAB 2023b software package contains a mathematical model of an induction wind generator, which is of scientific and practical interest. The article examines the capabilities of this model, its advantages and disadvantages. The dependences of the influence of machine parameters on the generated active power and consumed reactive power were obtained, the influence of the inductive resistance of the magnetization branch and the influence of the nature of the load on the generated energy by the generator were assessed
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风电场感应发电机模拟
现代经济的一个紧迫问题仍然是如何生产足够的电力。在使用所谓的碳能源以及水能和核能时,环境问题使情况更加恶化。现在,如果不使用风力发电厂,就无法想象替代电力资源的发展。风能实际上是免费能源,但使用风能需要使用发电机。目前,这些发电机主要是同步发电机,但也使用感应(异步)发电机。尽管感应发电机相对便宜、可靠,但在风力发电机中的比例却很低。使用感应风力发电机的一个问题是,它们在运行期间需要大量无功功率,这些无功功率要么来自电网,要么由电容器组补偿。后者是自主感应发电机的典型特点。感应风力发电机的计算机建模因显著的非线性而变得复杂,非线性是由发电机的磁化曲线或空载特性引起的。通常,在计算机建模或仿真中,磁化支路的感抗被假定为常数,这并不完全正确,因为众所周知,它取决于转子的转速。目前已知的感应发电机模型有很多,但迄今为止还没有一个最可靠的数学模型,可以在考虑到所有特征的情况下,对带有鼠笼式转子的感应发电机进行计算机研究。MATLAB 2023b 软件包包含感应风力发电机的数学模型,具有科学和实用价值。文章探讨了该模型的功能及其优缺点。文章研究了机器参数对产生的有功功率和消耗的无功功率的影响,评估了磁化支路感应电阻的影响和负载性质对发电机产生的能量的影响。
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