分布式发电的方法和部署。基于最先进的电磁炉系统

A. Riofrio, D. Carrión
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引用次数: 5

摘要

不断增长的人类需求导致住宅和工业使用新的电器;这些新的负荷给目前的发电方案带来了压力。缓解这个问题的另一种方法是使用分布式生成。这种模式不仅有助于生成,而且可能包括存储。分布式发电系统有助于最大限度地减少输电系统、分输电和配电的损失,并提供联产和发电的可能性。在该领域,微电网被定义为小于5千瓦的系统,可以包括与主电网的连接;此外,其更多功能的特点是在任何给定的时间内产生的存储电力的可能性。本文介绍了允许使用分布式微电网馈送同步负载的技术的最新分析。负载匹配的一个例子是大量插入电磁炉。具体来说,对标称功率、需求因子和巧合因子的分析表明,这种插入对系统初始规划之外的电源产生了大量需求,因此使用微网络可以帮助解决这一问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Approach and deployment of distributed generation. State-of-art based on induction cooker system
The always increasing human needs have led to the use of new electrical appliances for residential and industrial uses; these new loads have put pressure on the current power generation scheme. An alternative to alleviate this problem is the use of Distributed Generation. This model helps not only to the generation, but also may include storage. Distributed generation systems contribute to minimize losses in transmission systems, sub-transmission and distribution, and also offer the possibility of a combined heat production as well as electricity. Within this field, micro-grids are defined as systems smaller than 5 kW with can include connection to the main grid; moreover, its more versatile characteristic is the possibility of store electricity produced in any given period of time. This paper presents a state of the art analysis of the technologies that would allow using distributed micro-grids to feed coincident loads. An example of matching loads is a massive insertion of induction cookers. In concrete, an analysis of the nominal power, the demand factor and coincidence factor show that this insertion produces massive demands on the power supply you are outside the initial planning of the system, so that the use of micro networks can help solve this problem.
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