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A software-based approach in designing a rooftop bifacial PV system for the North Hall of Residence, IUT

机译:一种基于软件的方法,用于设计北部居住大厅,IUT

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Bifacial rooftop photovoltaic panels appear to be an excellent means of power generation in this era of urbanization, especially for land-limited countries like Bangladesh. This paper presents a software-based approach to design and simulate a bifacial solar-panel-based energy model on the rooftop of the North Hall of Residence of the Islamic University of Technology, Gazipur. This vertically mounted model investigates the feasibility and applicability of such an energy model in a university residence, situated in a load-shedding-prone area. Hence, three prominent software platforms, namely PVSOL, PVsyst and System Advisor Model (SAM), are brought into action and rigorous simulations are performed for three different orientations; promising outcomes are observed in terms of annual energy yield, bifacial gain (BG) and consumption coverage of the grid and PV model. The annual energy demand of the North Hall is ~444 733.5 kWh. The three orientations can generate annually 92 508.62, 94 643.48 and 86 758.94 kWh, respectively. Hence, it is evident that the proposed orientations can supply almost 19–21% of the site’s annual demand. Monthly BG analysis shows an overall increase in energy gain of 13%, 15.6% and 6% for Orientation-1, Orientation-2 and Orientation-3, respectively. A rigorous comparative analysis and deviation analysis among the software results has been accomplished to gain more insight into the feasibility of the proposed system. Thus, we have focused on a detailed software-based estimation of energy production for different orientations of the PV panels, considering several factors, which will provide prior knowledge and assessment before going for hardware implementation in the future.
机译:双翼屋顶光伏电池板似乎是在城市化时代的优秀发电方式,特别是对于像孟加拉国这样的土地有限国家。本文提出了一种基于软件的设计方法,用于设计和模拟伊斯兰理工大学北部居住区屋顶的基于双面太阳能电池板的能源模型,Gazipur。这种垂直安装的模型调查了这种能源模型在大学住宅中的可行性和适用性,位于摇摆俯卧区。因此,三个突出的软件平台,即PVSOL,PVSYST和系统顾问模型(SAM)被带到了采取的行动和严格的模拟,用于三种不同的方向;在年度能源产量,网格和光伏模型的消费覆盖率方面观察到有希望的结果。北大厅的年度能源需求是〜444 733.5千瓦时。三个取向可以分别生成92 508.62,94 643.48和86 758.94 kWh。因此,显而易见的是,拟议的方向可以提供近19-21%的网站年度需求。每月BG分析分别显示出定向-1,定向-2和定向-3的能量增益的总体增加13%,15.6%和6%。已经实现了软件结果中严谨的比较分析和偏差分析,以获得更多地深入了解所提出的系统的可行性。因此,考虑到几个因素,我们专注于对PV面板的不同方向的基于软件的能源生产估算,这将在未来进行硬件实施之前提供先验的知识和评估。

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