以最佳速度控制风力系统

M. Babescu, N. Olarescu, C. Șorândaru, M. Greconici, S. Musuroi
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引用次数: 2

摘要

基于风速随时间为正弦波的风力发电机组数学模型,分析了采用P、PI和PID调节器的系统行为。我们确定系统必须工作的速度,以便在数小时或数天的时间间隔内获得最大的电量。为此,我们测量风速并了解涡轮机的机械特性,我们计算出发电机的最佳转速,例如在很长一段时间(天)内获得最大能量。建立了风力发电机(WT)和永磁同步发电机(PMSG)的非线性模型,确定了在不同风速下的机械转速,以获得风力的最大功率。所提出的方法的有效性评估了PMSG上的电力负荷,可以是微电网或蓄电池。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control of a wind system at an optimal speed
Based on the mathematical model of the wind turbine at a wind speed modeled as a sin wave in time, this paper analyses the behavior of the system with P, PI and PID regulators. We determine the speed at which the system must work in order to obtain a maximum amount of electricity in a time interval of hours and days. For this purpose, we measure the wind speed and knowing the mechanical characteristic of the turbine, we calculate the optimum speed of the generator, such as during a long period of time (days) to obtain maximum energetic. There are presented a set of non-linear equations which model the wind turbine (WT) and the permanent magnet synchronous generator (PMSG), the determination of the mechanical rotation speed at different wind speeds in order to obtain the maximum power from the wind. The effectiveness of the proposed method evaluates the electrical load at the PMSG which can be a micro grid or a battery of electrical accumulators.
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