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A case study comparison between photovoltaic and fossil generation based on direct current hybrid microgrids to power a service building

机译:基于直流混合微电网的光伏和化石生成的案例研究比较为服务建设

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The objective of this paper is to make a minutely comparison between 3 different DC microgrids by addressing their most outstanding advantages and disadvantages not only in technical terms, but also regarding other performance related aspects, such as a) measurement of the quality of the electrical supply of the facilities, b) reliability, and c) economic and environmental impact. Results show that in the best case, for all the microgrids, the accuracy of the measurements is around 99.45%, with a weighted average of voltage applied to the load of 24.54 V. The building studied was reimagined into an autonomous and self-sustaining installation by using renewable electric power in direct current with a power distribution on 24 V. Additionally, the systems developed show a potential of greenhouse gas recovery close to 35.05 tCO(2) per year, with a return of investment of 7 years for the renewable-based microgrid and 3 years return for the traditional microgrid. The novelty of this paper relies on the performance comparison of 3 different types of direct current microgrids, one grid-powered (A) based on traditional fuel generation, and two off-grid (B & C) based on photovoltaic energy generation, when feeding a building of considerable size and low operational flexibility. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文的目的是通过涉及技术术语的最优秀优势和缺点,而是对其他性能相关方面的缺点,例如a)测量电源质量的测量设施,b)可靠性和c)经济和环境影响。结果表明,在最佳情况下,对于所有微电网,测量的准确性约为99.45%,电压的加权平均电压施加到24.54 V的负载。研究的建筑物被重新称解为自主和自我维持的安装通过在24 V的电源配电中使用可再生电力。另外,该系统开发的潜在每年接近35.05 TCO(2)的温室气体恢复,可再生的7年投资回报 - 基于微电网和3年的传统微电网回报。本文的新颖性依赖于3种不同类型的直流微电网的性能比较,基于传统燃料产生的一个网格供电(A),以及基于光伏能量产生的两种越电网(B&C)喂养时建筑面积相当大,可操作的灵活性。 (c)2019 Elsevier Ltd.保留所有权利。

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