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METHODOLOGY FOR OPTIMIZATION OF STAND-ALONE SOLAR PHOTOVOLTAIC SYSTEMS

机译:优化单机太阳能光伏系统的方法

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The concept of Net-Zero Energy in building refers to a building which has an annual balance of energy flow at the utility meter of zero. The concept implies that the building may consume energy from an external provider at times in order to satisfy the building demands, but at other times it must produce enough on-site energy to compensate for this energy. The use of renewable energy technologies is implicit as the source of energy to compensate for any energy used from an external provider. Solar photovoltaic is a proved technology for achieving Net-Zero Energy building but economic factors has limited its broad use. The design stage of a solar photovoltaic project is critical to make a project feasible. In the design stage, the equipment sizing must be optimized in order to reduce the initial capital cost and, therefore, improve the economics of the project. For houses, which is the focus of this paper, a standalone solar photovoltaic system must supply the house energy demand at all times since it is not connected to the electric grid. As a means to size the system, data of solar energy availability must be used to ensure that the system will provide enough energy to satisfy the energy demand as well as provide energy to charge the batteries that will provide the energy required when the solar energy is not available. In this paper, a methodology to optimize the size of the photovoltaic array and the battery bank is proposed. The methodology accounts for Typical Meteorological Year data (TMY3) to ensure that the system, based on accepted statistical data, will be able to satisfy the energy demand at all times. An example that uses energy demand data obtained from the simulation of a house using the software EnergyGauge is used to illustrate the implementation of the methodology.
机译:建筑物中零净能量的概念是指在公用事业电表中能量流的年度平衡为零的建筑物。该概念意味着建筑物可能有时会消耗外部供应商的能量以满足建筑物的需求,但有时建筑物必须产生足够的现场能量来补偿这种能量。隐含使用可再生能源技术作为补偿外部供应商使用的任何能源的能源。太阳能光伏是实现零净能建筑的成熟技术,但经济因素限制了其广泛应用。太阳能光伏项目的设计阶段对于使项目可行至关重要。在设计阶段,必须优化设备的尺寸,以减少初始投资成本,从而提高项目的经济性。对于房屋来说,这是本文的重点,因为独立的太阳能光伏系统未连接到电网,因此必须始终满足房屋的能源需求。作为确定系统大小的一种方法,必须使用太阳能的可用数据来确保系统将提供足够的能量以满足能源需求,并提供能量给电池充电,从而为太阳能电池提供所需的能量。无法使用。本文提出了一种优化光伏阵列和电池组尺寸的方法。该方法考虑了典型气象年数据(TMY3),以确保基于公认的统计数据的系统将始终能够满足能源需求。一个示例使用了通过使用EnergyGauge软件从房屋模拟中获得的能源需求数据来说明该方法的实现。

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