Simulink Models of Power Electronic Converters for DC Microgrid Simulation

P. Biczel, Lukasz Michalski
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引用次数: 17

Abstract

In the time of rapid changes in power industry the need to develop new power systems arises. The newly developed systems should aim at wide utilisation of renewable power sources and CO2-neutral technologies. This goal can be achieved by e.g. dissipated generation, or integrating DG into microgrids. The microgrids can be built using AC or DC current networks. Authors propose DC microgrid as a new idea for a small, balanced distribution power system. It has been designed to supply small towns and villages with electricity with high penetration of renewable energy resources. However, designing an optimal microgrid is not an easy task, due to the fact that primary energy carriers are changeable and uncontrollable, as is the demand. Traditional design and optimisation tools, developed for controlled power sources, cannot be employed here. Simulation methods seem to be the best solution. The microgrid consists of several devices, with most important among them - the power electronic devices.
用于直流微电网仿真的电力电子变换器Simulink模型
在电力工业快速变化的时代,对新型电力系统的开发提出了要求。新开发的系统应以广泛利用可再生能源和二氧化碳中和技术为目标。这一目标可以通过诸如耗散发电或将DG集成到微电网中来实现。微电网可以使用交流或直流电流网络来构建。作者提出直流微电网作为小型均衡配电系统的新思路。它的设计目的是为具有高可再生能源渗透率的小城镇和村庄提供电力。然而,设计一个最优的微电网并不是一件容易的事情,因为一次能源载体是可变的和不可控的,需求也是如此。传统的设计和优化工具,为控制电源开发,不能在这里使用。模拟方法似乎是最好的解决方案。微电网由几个设备组成,其中最重要的是电力电子设备。
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