Toward Community Generation: Energy Simulation and Performance Evaluation of Multi-family Solar PV Settings for Energy-efficient Homes in Edmonton, Canada

Hadia Awad, M. Gul, M. Al-Hussein
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Abstract

The integration of renewable micro-generation systems into residential buildings, particularly solar photovoltaic (PV) distributed energy generation, is emerging rapidly as an effective method of mitigating the housing impact on greenhouse gas emissions. However, the application of solar PV micro-generation is confronted with several challenges: (a) the average system self-consumption does not exceed 25% in cold-climate regions; (b) most of the energy generated during daytime, peaking in the summer, is exported to the grid; and (c) rebates from the surplus generated energy exported to the grid are at a lesser rate than that of the imported energy. Due to relatively poor economics paralleled with the solar PV application, governments and policy makers envision the value of considering the integration of renewable energy sources at the community level rather than individual behind-the-meter applications, since this strategy can leverage the system self-consumption and increase its social impacts and economics. In this regard, this research aims to simulate and compare the overall performance of two scenarios of a sustainable community of 42 townhouse units. In the first scenario, each unit is connected to a behind-the-meter solar PV system of 3.3-kWp. In the second scenario, all units are connected to a large 140-kWp solar PV system. Historical data from one typical house has been collected (ongoing since 2015). Monte Carlo simulation technique is applied to ensure the stochasticity of the diverse household users. The hourly energy consumption and generation data is simulated using Simphony.NET® simulation engine based on the real-time data collected in Edmonton, Canada. Then, the load-match is identified as well as grid interaction indicators and system economics resulting from both scenarios. Results indicate that the application of community generation can significantly mitigate the imported and exported energy compared with individual behind-the-meter system generation due to the improved system self-consumption.
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面向社区发电:加拿大埃德蒙顿节能住宅多户太阳能光伏设置的能源模拟和性能评估
将可再生微型发电系统集成到住宅建筑中,特别是太阳能光伏(PV)分布式能源发电,正迅速成为减轻住房对温室气体排放影响的有效方法。然而,太阳能光伏微型发电的应用面临着几个挑战:(a)在寒冷气候地区,系统平均自用电量不超过25%;(b)白天产生的大部分能量在夏季达到峰值,输出到电网;(c)出口到电网的剩余发电的返利率低于进口能源的返利率。由于太阳能光伏应用的经济性相对较差,政府和政策制定者认为,考虑在社区层面整合可再生能源的价值,而不是个人在电表后的应用,因为这种策略可以利用系统的自我消耗,增加其社会影响和经济效益。在这方面,本研究旨在模拟和比较42个联排别墅单元的可持续社区的两种方案的整体性能。在第一种情况下,每个机组都连接到3.3 kwp的太阳能光伏系统。在第二种情况下,所有单元都连接到一个大型140千瓦时的太阳能光伏系统。收集了一个典型房屋的历史数据(自2015年以来一直在进行)。采用蒙特卡罗模拟技术保证了不同家庭用户的随机性。利用Simphony软件模拟了每小时的能耗和发电量数据。. NET®仿真引擎基于在加拿大埃德蒙顿收集的实时数据。然后,确定了负荷匹配,以及两种情况下的电网交互指标和系统经济性。结果表明,由于系统自用电量的提高,社区发电相对于个别表后系统发电可以显著减少输入和输出能源。
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