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Analysis of induction generator controller techniques for Pico hydropower a case study of A 3kW Pico hydropower scheme in Kasese, Western Uganda

机译:皮科水电感应发电机控制器技术分析-以乌干达西部卡塞斯的一个3kW皮科水电计划为例

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This paper presents a comparative analysis of control techniques used on induction generators for stand-alone Pico hydropower schemes. The techniques were tested on a prototype Pico hydropower system modeled for the site developed in western Uganda by the Centre for Research in Energy and Energy Conservation. The case study scheme to date is manually operated, a process that requires constant attention due to variations in load. This demonstrated the need for an automatic load controller. The site specifications were considered when designing models using Matlab simulink employing the automatic load control techniques. These model designs are simple so that it is affordable for local practical application. The proposed designed control techniques presented in this paper are composed of logic gates, IGBT switch, uncontrolled diode rectifier, the PID controller and other semiconductor devices supplying an electrical load and a ballast load. In addition, the response of the case study site and the Matlab model to load variations is presented.
机译:本文对用于独立Pico水电计划的感应发电机的控制技术进行了比较分析。能源和节能研究中心在乌干达西部开发的场地上建立的皮可水电原型系统上对这些技术进行了测试。迄今为止,案例研究方案是手动操作的,由于负载变化,该过程需要不断关注。这表明了对自动负载控制器的需求。在使用Matlab simulink设计模型并采用自动负载控制技术时,要考虑场地规格。这些模型设计很简单,因此可以在本地实际应用中负担得起。本文提出的拟议设计控制技术由逻辑门,IGBT开关,不可控二极管整流器,PID控制器和其他提供电负载和镇流器负载的半导体器件组成。此外,还介绍了案例研究站点和Matlab模型对负载变化的响应。

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