Manajemen Inovasi Mode Hybrid Menuju Sekolah Kejuruan Mandiri Energi

Muliadi Muliadi, S. Hadi
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Abstract

The issue of new and renewable energy sources in the future will increasingly have a very important role in meeting energy needs. The use of fossil fuels for conventional power plants over a long period of time will deplete petroleum resources. Renewable Energy (RE) is increasingly in demand worldwide due to environmental concerns. The new policy requires power grids to supply a certain percentage of their load with Renewable Energy Sources (RES). The aim of writing this article is to provide an innovative management model to accelerate towards energy independent schools based on renewable energy, hybrid wind and solar energy mode. The method used in this study is a qualitative approach with document study as a data source and descriptive analysis methods. This article discusses the management model in controlling the Hybrid system towards efficiency of system input and output. In addition, there is a discussion about the school community regarding energy sources and its application in schools in protecting the environment. This study found that the renewable energy management system model using a combination of HRES technology using Homer and GA, GA-based optimization is more cost-effective than Homer with a COE of at least 0.163 $/kWh and 0% unmet load. This GA based system has more PV penetration and less co2 emissions than Homer. HRES optimization is mostly achieved using artificial methods or commercial software, the artificial methods used are based on fuzzy. This study also recommends the Home PRO and Retscreen control systems as the most widely used commercial software in optimization and MPPT as the most widely used control method to ensure stability, protection and power balance of the system. This method is often used based on practical optimization, neural networks and fuzzy logic. Artificial methods are the most widely used methods in optimization because of their higher efficiency, good accuracy, and fast convergence. The disadvantage of this method is that it requires a complicated processing program. High efficiency and speed of classical methods, accuracy. The hybrid method uses the advantages of each method by maximizing performance and minimizing optimization processing time.
面向能源独立职业学校的混合模式创新管理
未来,新能源和可再生能源将在满足能源需求方面发挥越来越重要的作用。传统发电厂长期使用化石燃料将耗尽石油资源。出于对环境的考虑,全世界对可再生能源(RE)的需求越来越大。新政策要求电网利用可再生能源(RES)提供一定比例的负荷。本文旨在提供一种创新的管理模式,以可再生能源、混合风能和太阳能模式为基础,加速实现学校能源独立。本研究采用的方法是定性方法,以文件研究作为数据来源,并采用描述性分析方法。本文讨论了控制混合能源系统的管理模式,以提高系统输入和输出的效率。此外,还讨论了学校社区对能源及其在学校中应用以保护环境的看法。本研究发现,可再生能源管理系统模型结合了使用 Homer 和 GA 的 HRES 技术,基于 GA 的优化比 Homer 更具成本效益,COE 至少为 0.163 美元/千瓦时,未满足负载为 0%。与 Homer 相比,基于 GA 的系统具有更高的光伏渗透率和更少的二氧化碳排放量。HRES 优化大多是通过人工方法或商业软件实现的,使用的人工方法是基于模糊的。本研究还推荐 Home PRO 和 Retscreen 控制系统作为优化中最广泛使用的商业软件,MPPT 作为最广泛使用的控制方法,以确保系统的稳定性、保护和功率平衡。这种方法通常是在实际优化、神经网络和模糊逻辑的基础上使用的。人工方法因其效率高、准确性好、收敛速度快而成为最广泛使用的优化方法。这种方法的缺点是需要复杂的处理程序。经典方法效率高、速度快、精度高。混合法通过最大限度地提高性能和最小化优化处理时间,利用了每种方法的优点。
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