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Efficient AC-DC-AC converter for operation of variable speed small scale hydro power generation schemes

机译:高效AC-DC-AC转换器,用于运行变速小规模水电发电方案

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In order to fulfill the ever increasing energy demands throughout the world, effort is being made to harness all possible energy sources. The dispersed energy sources such as wind and small hydro are no exception and they are being actively investigated for both technological feasibility and economic viability. In this paper, a fuzzy based PI controlled active front end AC-DC-AC converter is proposed to be employed for effective operation of a variable speed small scale hydro power generation scheme. With the help of the proposed controller it is possible to achieve a regulated voltage and frequency at the output terminal of the machine while the input power is variable as the water flow is not controlled. The system is observed to eliminate the complexity of civil works in tapping hydro potential thereby making the system more economical. A capacitor excited asynchronous generator (CAG) is considered for carrying out the studies owing to its numerous advantages such as easy availability, low cost, low maintenance and rugged construction of such machines. The merits of using active front end AC-DC-AC converter for small scale hydel power generation are clearly brought out and presented. The performance of the proposed system with both linear and nonlinear loads and the associated power quality issues and their remedies are detailed. A comparison of the performances of the proposed scheme with a conventional PI controller based system is also presented. The complete model of the proposed system is carried out in MATLAB/SIMULINK environment.
机译:为了满足世界各地对能源的需求不断增长,努力正在取得以利用所有可能的能源。分散的能源,例如风能和小水电也不例外,他们正在积极调查两种技术可行性和经济可行性。在本文中,一个基于模糊PI控制的有源前端AC-DC-AC转换器,提出了被用于可变速度小规模水力发电方法的有效操作。利用所提出的控制器的帮助下,可以实现在机器的输出端的稳压电压和频率,同时输入功率是可变的,因为水的流动不受控制。该系统中观察,以消除窃听水电势,从而使系统更经济的土建工程的复杂性。一种电容器,激励异步发电机(CAG)被认为是用于执行由于其许多优点的研究,例如容易获得,低成本,低维护和这种机器的坚固的结构。使用有源前端AC-DC-AC转换器,用于小规模hydel发电的优点清楚地引出并呈现。所提出的系统,线性和非线性负载及相关电能质量问题及其解决方法的性能详细介绍。的与常规的PI控制器基于系统所提出的方案的性能的比较也给出。所提出的系统的完整模型在MATLAB / Simulink环境中进行。

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