Novel Renewable Energy Source in Standalone Microgrid Application with Island Load Management

Mustafa Teke, M. Ö. Yatak, Ethar S. Yaseen
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Abstract

Renewable energy sources, which use natural sources to generate energy, are currently replacing conventional energy sources to fulfil the world’s expanding energy demands. However, photovoltaic and wind energy, which are among these types of energy sources, are not steady and not available for 24 hours in a day. As an alternative, it is possible to extract and use hot water from the earth all the time. Therefore, this study proposes a thermoelectric generator that uses hot water from the hot spring area to generate free electricity as a new renewable energy source in a microgrid application. In this system, the microgrid is standalone without a battery storage system because the thermoelectric generator is in operation for 24 hours in a day (day and night). In this way, the cost of the battery is eliminated by removing it from the system. In this paper, a novel generation method is proposed in microgrid applications as a renewable energy source. In addition, load management system was implemented to control three types of residence loads. The main advantage of this study is to generate electricity from renewable sources like photovoltaic and thermoelectric to demand without much wasting energy by controlled loads according to the proposed load management algorithm. In this study, the microgrid and energy management control is modeled with MATLAB/Simulink. The results showed that the essential load is always active through thermos electric generator besides the absence of battery storage system.
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新型可再生能源在孤岛负荷管理下的单机微电网应用
利用自然资源生产能源的可再生能源目前正在取代传统能源,以满足世界不断扩大的能源需求。然而,其中的光伏和风能并不是稳定的,也不是一天24小时可用的。作为一种替代方案,可以随时从地球中提取和使用热水。因此,本研究提出了一种利用温泉区热水免费发电的热电发电机,作为微电网应用中的一种新的可再生能源。在这个系统中,微电网是独立的,没有电池存储系统,因为热电发电机一天24小时(白天和黑夜)运行。通过这种方式,将电池从系统中移除就可以消除电池的成本。本文提出了一种用于微电网可再生能源应用的新型发电方法。此外,还实施了负荷管理系统,对三种住宅负荷进行控制。本研究的主要优点是根据提出的负荷管理算法,通过控制负荷,将光伏、热电等可再生能源发电满足需求,而不会造成太多的能源浪费。在本研究中,利用MATLAB/Simulink对微电网和能源管理控制进行建模。结果表明,在没有蓄电池储能系统的情况下,基本负荷始终是通过热电发电机主动供电的。
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