...
首页> 外文期刊>international journal of emerging electric power systems >Identification of the best topology of delta configured three phase induction generator for distributed generation through experimental investigations
【24h】

Identification of the best topology of delta configured three phase induction generator for distributed generation through experimental investigations

机译:通过实验研究确定三角形配置三相感应发电机的最佳拓扑结构

获取原文
获取原文并翻译 | 示例

摘要

Research on Self -excited induction generator (SEIG) brings a lot of attentions in the last three decades as a promising solution in distributed generation systems with low cost investment. There are two important fixations to attend in the operation of SEIG based systems, a) excitation and b) voltage regulation. Many procedures are reported regarding selection of excitation capacitance in the literature, based on state-state analysis, dynamic modeling, empirical formulas and machine parameters which involve various levels of complexity in findings. Moreover, the voltage regulation is the main challenge in implementation of SEIG based isolated systems. To address this problem, many power electronic-based schemes are proposed in the literature and but these solutions have few demerits importantly that additional cost of equipment and troubles due to failure of protection schemes. In particular, the installation of SEIG takes place at small scale in kW range in remote/rural communities which should not face such shortcomings. Further in case of off-grid systems, the maximum loading is fixed based on connected rating of the generator. This paper presents the various methods to find excitation capacitance and illustrates an experimental investigation on different possible reactive power compensation methods of delta connected SEIG and aimed to identify a simple method for terminal voltage control without power electronics. In this experimental work, the prime-mover of the generator is a constant speed turbine, which is the emulation of a micro/pico hydro turbine. From the results, it is found that a simple delta connected excitation and delta configured reactive power compensation limits voltage regulation within +/- 6 while maintaining the frequency of +/- 1, which make feasible of the operation successfully in remote electrification systems.
机译:在过去的三十年里,自激感应发电机(SEIG)的研究引起了很多关注,因为它是分布式发电系统中一种有前途的低成本投资解决方案。在基于SEIG的系统的运行中,有两个重要的固定点需要注意,a)励磁和b)电压调节。文献中报道了许多关于激励电容选择的程序,这些程序基于状态-状态分析、动态建模、经验公式和机器参数,这些程序涉及不同程度的复杂程度。此外,电压调节是实施基于SEIG的隔离系统的主要挑战。为了解决这个问题,文献中提出了许多基于电力电子的方案,但这些方案几乎没有缺点,重要的是由于保护方案的失败而导致的设备成本增加和故障。特别是,SEIG的安装是在偏远/农村社区的小规模安装,这些社区不应该面临这样的缺点。此外,在离网系统的情况下,最大负载是根据发电机的连接额定值确定的。本文介绍了各种寻找励磁电容的方法,并对三角形连接SEIG的不同可能的无功补偿方法进行了实验研究,旨在确定一种无需电力电子器件即可实现终端电压控制的简单方法。在这项实验工作中,发电机的原动机是恒速涡轮机,它是微型/微型水轮机的模拟。结果表明,简单的三角形连接励磁和三角形配置的无功功率补偿将电压调节限制在+/- 6%以内,同时保持+/- 1%的频率,这使得在远程电气化系统中成功运行成为可能。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号