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Improving photovoltaics grid integration through short time forecasting and self-consumption

机译:通过短时预测和自耗改善光伏发电网格的集成

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摘要

The uncertainty associated to the forecast of photovoltaic generation is a major drawback for the widespread introduction of this technology into electricity grids. This uncertainty is a challenge in the design and operation of electrical systems that include photovoltaic generation. Demand-Side Management (DSM) techniques are widely used to modify energy consumption. If local photovoltaic generation is available, DSM techniques can use generation forecast to schedule the local consumption. On the other hand, local storage systems can be used to separate electricity availability from instantaneous generation; therefore, the effects of forecast error in the electrical system are reduced. The effects of uncertainty associated to the forecast of photovoltaic generation in a residential electrical system equipped with DSM techniques and a local storage system are analyzed in this paper. The study has been performed in a solar house that is able to displace a residential user?s load pattern, manage local storage and estimate forecasts of electricity generation. A series of real experiments and simulations have carried out on the house. The results of this experiments show that the use of Demand Side Management (DSM) and local storage reduces to 2% the uncertainty on the energy exchanged with the grid. In the case that the photovoltaic system would operate as a pure electricity generator feeding all generated electricity into grid, the uncertainty would raise to around 40%.
机译:与光伏发电的预测相关的不确定性是将该技术广泛引入电网的主要缺点。这种不确定性是包括光伏发电在内的电气系统设计和运行中的挑战。需求方管理(DSM)技术被广泛用于修改能耗。如果本地光伏发电可用,则DSM技术可以使用发电预测来计划本地消耗。另一方面,可以使用本地存储系统将电力供应与瞬时发电分开。因此,减少了电气系统中预测误差的影响。本文分析了在具有DSM技术的住宅电气系统和本地存储系统中,与光伏发电预测相关的不确定性的影响。这项研究是在能够取代居民用户的负载模式,管理本地存储并估计发电量预测的太阳能房屋中进行的。在房子上进行了一系列的实际实验和模拟。该实验的结果表明,使用需求方管理(DSM)和本地存储将与电网交换的能量的不确定性降低到2%。如果光伏系统将作为纯发电机运行,将所有产生的电力馈入电网,则不确定性将上升到40%左右。

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