Implementasi Sistem Kontrol Manajemen Energi Hibrid Berbasis Mikrokontroller

Fithri Muliawati, Slamet Riyadi, Sarah Chairul Annisa, Yuggo Afrianto, Novita Br. Ginting
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引用次数: 1

Abstract

– Currently, world researchers are competing to find the most effective and efficient way to use renewable energy sources, namely energy from sunlight and solar and wind heat or it can be called hybrid energy. The use of this hybrid energy technology can certainly save conventional fuel and reduce the risk of ecosystem damage caused. This study aims to see the energy value resulting from the implementation of a hybrid energy management control system that has been created based on a microcontroller. With the experimental method, the results were obtained that the solar cell voltage value was highest at 11 pm with 28.87 Vdc, then for the voltage of the wind energy was the highest at 27.85 at the 3rd minute at 4 pm. For energy testing of batteries, the results were obtained that if there is only one energy source to charge the battery, it takes 9 hours while if it is a hybrid energy source, it only takes 2.5 hours. This proves that hybrid energy is very effective rather than relying solely on one of the energy sources.
采用基于微控制器的混合能源管理系统
-目前,世界上的研究人员正在竞相寻找最有效和高效的方法来使用可再生能源,即来自阳光和太阳能以及风能的能量,或者它可以被称为混合能源。这种混合能源技术的使用当然可以节省传统燃料,减少对生态系统造成破坏的风险。本研究旨在了解基于微控制器创建的混合能源管理控制系统的实施所产生的能量值。通过实验方法得到,太阳能电池电压值在11 pm时最高,为28.87 Vdc,其次为风能电压值在第3分钟时最高,为27.85 Vdc,为4 pm。对于电池的能量测试,得到的结果是,如果只有一种能量源给电池充电,充电时间为9小时,而如果是混合能量源,充电时间为2.5小时。这证明混合能源是非常有效的,而不是仅仅依赖于一种能源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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