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dSPACE implementation for a proportional-integral-based root mean square voltage controller used in stand-alone wind energy conversion systems

机译:dSPACE用于独立风能转换系统中使用的基于比例积分的均方根电压控制器

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摘要

The induction machine and the synchronous machine are very promising in renewable energy production for uses in wind turbines to produce energy in remote areas, and we note that self-excited induction generator is more adapted due to difficult geographical conditions and best cost; on the other hand, permanent magnet synchronous generator works without any excitation system; all of these have a major problem in use which is the stability of voltage. To solve this problem, we propose in this article the examination of a control plot for keeping the produced root mean square voltage steady. This article presents an experimental comparative study of performances in terms of root mean square voltage on two possible small wind turbine systems. One of the systems is based on permanent magnet synchronous generator and the other is based on self-excited induction generator. Taking into account the parameters of load and wind speed, experimental test benches for both systems are implemented using the dSPACE card for controlling the pulse width modulation inverter to impose the V_(rms) value of the desired output voltage.
机译:感应电机和同步电机在可再生能源生产中非常有前途,可用于风力涡轮机以在偏远地区生产能量。我们注意到,由于地理位置困难和成本最佳,自励式感应发电机更加适应。另一方面,永磁同步发电机工作时没有任何励磁系统。所有这些在使用中都有一个主要问题,即电压的稳定性。为了解决这个问题,我们在本文中建议检查控制图,以保持产生的均方根电压稳定。本文就两个可能的小型风力发电机系统的均方根电压进行了性能的实验比较研究。其中一个系统基于永磁同步发电机,另一个系统基于自励感应发电机。考虑到负载和风速的参数,使用dSPACE卡实现了两个系统的实验测试台,以控制脉冲宽度调制逆变器施加所需输出电压的V_(rms)值。

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