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首页> 外文期刊>E3S Web of Conferences >Networked interactive solar panels over the roof photovoltaic system (PVS) and its cost analysis at Tashkent state technical University
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Networked interactive solar panels over the roof photovoltaic system (PVS) and its cost analysis at Tashkent state technical University

机译:屋顶光伏系统(PVS)的网络交互式太阳能电池板及其在塔什干州技术大学成本分析

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There is great potential for generating solar energy using unused space on roofs and vacant lots around buildings. Small amounts of energy generated by each individual household, industrial building, commercial building, or any other type of building can be used to partially meet the needs of the building's residents, and the surplus, if any, can be fed to the grid. To use the existing roof space of buildings, SPV systems on the roof of buildings can be installed to replace DG generators installed to provide the minimum load required to operate during load shedding. TSTU has a large unused roof area from both residential and office buildings. Therefore, it has a huge potential for generating solar energy by installing a grid-connected Solar system on the roof. We can reduce a large amount of bills by implementing a solar power plant. The government has also launched various solar energy incentive schemes, this article provides a brief overview of rooftop photovoltaic and small-scale solar generation systems, and discusses various government schemes. Since TSTU has a large scope for this scheme, so the calculation of the design capacity was made for the technological College and one residential building. A method has been developed for calculating the capacity of Autonomous solar power plants and its elements, which allows us to take into account changes in the load during the day and thereby accurately determine the required capacity of the battery and eliminate unjustified overestimation of the power of power plant elements and increase the cost of the Autonomous solar power plant itself.
机译:在屋顶上使用未使用的空间产生太阳能的可能性很大,并且在建筑物周围空置。每个家庭家庭,工业建筑,商业建筑或任何其他类型的建筑物产生的少量能源可用于部分满足建筑物的居民的需求,并且可以馈送到电网的盈余。要使用建筑物的现有屋顶空间,建筑物屋顶上的SPV系统可以安装以替换安装的DG发电机,以提供在负载脱落期间操作所需的最小负载。 TSTU有一个来自住宅和办公楼的大型未使用的屋顶区域。因此,通过在屋顶上安装网格连接的太阳能系统,它具有产生太阳能的巨大潜力。我们可以通过实施太阳能发电厂来减少大量纸币。该文章还推出了各种太阳能激励计划,简要概述了屋顶光伏和小型太阳能发电系统,并讨论了各种政府计划。由于TSTU对该方案具有很大的范围,因此为技术学院和一个住宅建筑进行了设计能力的计算。已经开发了一种用于计算自主太阳能发电厂及其元素的能力的方法,这使我们能够考虑白天负载的变化,从而精确地确定电池所需的容量,并消除了不合理的高估功率发电厂元素并提高自主太阳能发电厂本身的成本。

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