用于飞轮储能系统的开关磁阻电机的建模与控制

L. A. Almeida, G. L. Ferreira, Thomás M. G. Vieira, G. Sotelo, J. G. Oliveira
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引用次数: 1

摘要

在一些国家,替代能源正变得越来越重要,因此在电力流动和电压稳定性方面产生了新的挑战。在这种情况下,储能设备的相关性增长,以保持对能源质量的标准要求。在现有的几种存储能量的方法中,飞轮可以在短时间内要求高功率密度的应用中提供良好的性能。本文研究了一种开关磁阻电机在飞轮储能系统上的运行,并给出了充电过程中作为电动机运行的初步结果。给出了数学模型和非线性仿真模型。提出了一种迟滞电流控制器和线性PI速度控制器,并给出了仿真结果。此外,还建立了一个实验系统来验证所提出的控制器的模型和性能。
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Modelling and control of a switched reluctance machine for application in a flywheel energy storage system
Alternative sources of energy are becoming more relevant in several countries, thus creating new challenges in terms of power flows and voltage stability. In this scenario, energy storage devices grow in relevance, in order to maintain standard requirements of energy quality. Among several existing methods to store energy, flywheels can deliver a good performance in applications demanding high power density for short periods of time. In this paper, a switched reluctance machine is investigated in order to operate on a flywheel energy storage system, presenting the preliminary results for operation as a motor, during the charging. Mathematical and nonlinear simulation model are presented. A hysteresis current controller and a linear PI speed controller are proposed, and simulation results are presented. Also, an experimental system is described, built to validate the model and performance of proposed controllers.
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