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Micro-grid platform based on NODE.JS architecture, implemented in electrical network instrumentation

机译:基于Node.js架构的微电网平台,在电气网络仪器中实现

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In this document, I propose a theory about the impact of systems based on micro-grids in non-industrialized countries that have the goal to improve energy exploitation through alternatives methods of a clean and renewable energy generation and the creation of the app to manage the behavior of the micro-grids based on the NodeJS, Django and IOJS technologies. The micro-grids allow the optimal way to manage energy flow by electric injection directly in electric network small urban's cells in a low cost and available way. In difference from conventional systems, micro-grids can communicate between them to carry energy to places that have higher demand in accurate moments. This system does not require energy storage, so, costs are lower than conventional systems like fuel cells, solar panels or else; even though micro-grids are independent systems, they are not isolated. The impact that this analysis will generate, is the improvement of the electrical network without having greater control than an intelligent network (SMART-GRID); this leads to move to a 20% increase in energy use in a specified network; that suggest there are others sources of energy generation; but for today's needs, we need to standardize methods and remain in place to support all future technologies and the best option are the Smart Grids and Micro-Grids.
机译:在本文件中,我提出了一个关于基于非工业化国家的微网的系统影响的理论,这些国家通过清洁和可再生能源生成的替代方法以及创建应用程序来管理的替代方法来实现能源开发基于NodeJS,Django和IOJS技术的微网格的行为。微电网允许以低成本和可用的方式直接在电网小城市的电网中通过电网进行电气喷射的最佳方式。与传统系统的差异,微电网可以在它们之间进行通信,以将能量携带到准确时刻具有更高需求的位置。该系统不需要能量存储,因此,成本低于燃料电池,太阳能电池板等的传统系统;尽管微电网是独立的系统,但它们并不隔离。该分析将产生的影响是电网的改进而不会比智能网络(智能电网)更大的控制;这导致在指定网络中的能源使用增加到20%;这表明还有其他能源产生的来源;但是对于当今的需求,我们需要标准化方法并留在适当的地方以支持所有未来的技术,最好的选择是智能电网和微网格。

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