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Bottom-up Design Methodology for a Hybrid AC/DC Microgrid with Energy Storage and Photovoltaic Generating Units

机译:具有能量存储和光伏发电单元的混合AC / DC微电网的自下而上设计方法

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Utilization of renewable energy sources such as wind and solar photovoltaic has been increasing in the last decades due to high energy demand, elevated pollution and the continuous decrease in fuel reserves. Renewable sources are generally intermittent and variable, therefore energy storage systems have been developed to meet user needs. This scenario led to the concept of microgrid, which is related to the combination of loads, micro-sources and storage devices in a network element that is part of the complex electrical system. More recently, the idea of a hybrid AC/DC microgrid has been proposed and consists in separating AC and DC elements of the microgrid in order to reduce power losses and simplify the control strategy. In this paper, bottom-up methodology is used to design a hybrid AC/DC microgrid. It begins with a simple battery-converter-load system, and ends with a hybrid microgrid formed by two battery banks, a photovoltaic array, AC and DC loads, as well as five power converters. The converters are modeled and controlled by using well-known methods, and the design approach is validated through several simulations under changes in reference and load power.
机译:在过去的几十年中,由于高能源需求,高污染和燃料储备的持续减少,对风能和太阳能光伏等可再生能源的利用一直在增加。可再生能源通常是间歇性和可变的,因此已经开发出能量存储系统来满足用户需求。这种情况导致了微电网的概念,该概念与作为复杂电气系统一部分的网络元素中的负载,微源和存储设备的组合有关。最近,已经提出了混合式AC / DC微电网的想法,该想法在于分离微电网的AC和DC元件,以便减少功率损耗并简化控制策略。在本文中,自下而上的方法用于设计混合AC / DC微电网。它从一个简单的电池转换器负载系统开始,到以两个电池组,一个光伏阵列,一个交流和直流负载以及五个电源转换器组成的混合微电网结束。使用众所周知的方法对转换器进行建模和控制,并在参考功率和负载功率变化的情况下通过多次仿真对设计方法进行了验证。

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