分布式电子负荷控制器的实验研究:一种将多余电力转移到家用热水器的微型水电系统电压调节的新概念

B. N. Roodsari, E. Nowicki, P. Freere
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引用次数: 7

摘要

当用电负荷由电子负荷控制器(ELC)保持恒定时,由固定转速低水头水轮机驱动的独立自励感应发电机(SEIG)可以产生恒定的电压和频率。然而,对于一个传统的电力集输电站(C-ELC),如果村庄负荷较低,大部分产生的电能可以在倾卸负荷中耗散。因此,本研究的目的是为每个家庭设计一个简化的ELC,除了为发电机提供电压调节外,还可以将多余的电力转移到家庭消费。发电机现场仍应安装可能降低额定功率的常规ELC。同时,每个家庭都安装了一个简化和廉价的ELC。拟议的控制器,安装在每个家庭,被称为分布式电子负载控制器(DELC)。MATLAB仿真结果验证了所提方法的可行性。在MSP-430 LaunchPad微控制器上的实验结果验证了所提出的DELC方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An experimental investigation of the Distributed Electronic Load Controller: A new concept for voltage regulation in microhydro systems with transfer of excess power to household water heaters
Constant voltage and frequency can be generated by a stand-alone Self-Excited Induction Generator (SEIG) driven with a fixed-speed low-head hydro-turbine when the electrical load is maintained constant by an Electronic Load Controller (ELC). However for a Conventional-ELC (C-ELC) most of the generated electrical energy can be dissipated in the dump load if the village load is low. So, the objective of this research is designing a simplified ELC for each household to transfer the excess power for domestic consumption in addition to providing voltage regulation for the generator. A regular ELC, possibly of reduced rated power, should still be installed at the generator site. At the same time, a simplified and inexpensive ELC is installed at each household. The proposed controller, installed in each household, is referred to as the Distributed Electronic Load Controller (DELC). MATLAB simulation results verify the feasibility of the proposed approach. Experimental results using the MSP-430 LaunchPad microcontroller are also presented to verify the validity of the proposed DELC approach.
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