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Integrating Commercial Greenhouses in the Smart Grid with Demand Response based Control of Supplemental Lighting

机译:在智能电网中集成商业温室,基于需求响应的补充照明控制

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In Northern Europe the production of ornamental pot plants in greenhouses requires use of supplemental light, as light is a restricting climatic factor for growth from late autumn until early spring. By participating in demand response programs such as real-time pricing, growers can schedule electricity consumption in hours where electricity prices are low, thus achieving savings in their electricity expenses. In this context we present a novel software system for dynamic control of supplemental lighting in greenhouses that aims at decreasing the electricity costs and energy consumption without loss in productivity. The software uses weather forecasts and electricity prices together with a photosynthesis model to compute energy and cost-efficient supplemental light plans, which fulfills the productivity goal defined by the grower. Experiments with different light control strategies revealed that electricity savings about 25% was possible without noticeable reductions in plant flowering and production time.
机译:在北欧,温室的观赏盆栽植物的生产需要使用补充光,因为光线是从晚秋天到早春的增长的限制性因素。通过参加需求响应计划,如实时定价,种植者可以在电价低的几个小时内安排电力消耗,从而在其电力费用中储蓄。在这种情况下,我们提出了一种新颖的软件系统,用于动态控制温室中的补充照明,旨在降低生产率的电力成本和能量消耗。该软件使用天气预报和电价以及光合作用模型来计算能源和成本效益的补充光程,这实现了种植者所定义的生产力目标。不同光控制策略的实验表明,在植物开花和生产时间中没有明显减少的情况下,节省的电量约为25%。

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