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Robust anticipative energy management system: Application of a smart building platform

机译:强大的预期能源管理系统:智能建筑平台的应用

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Robust energy management in buildings is addressed in this paper. The energetic impact of buildings in the current energetic context is first presented. Then the studied optimization problem is defined as the optimal management of production and consumption activities in buildings. A scheduling problem is identified to adjust the energy consumption to both the energy cost and the user's comfort. The available flexibility of the services provided by domestic appliances is used to compute optimal energy plans. These flexibilities are associated to time windows or heating storage abilities. A constraints formulation of the energy allocation problem is given. A derived mixed linear program is used to solve this problem. The energy consumption in houses is very dependent on uncertain data such as weather forecasts and inhabitants' activities. Parametric uncertainties are introduced in the home energy management problem in order to provide robust energy allocation. Robust linear programming is implemented. A scenario-based approach is implemented to face this robust optimization problem. Practical application: Because of the increasing part of renewable energy in electricity production, which is difficult to control, consumers will have to become more involved in the grid management. This paper states the problem of energy management in buildings and describes the optimization problem defined to adjust the energy consumption of buildings to production constraints. This decision system is based on the weather forecasts and a variable cost of electricity. Parametric uncertainties on the data are taken into account in order to propose robust energy planning in which a performance is guaranteed over the expected data.
机译:本文讨论了建筑物中可靠的能源管理。首先介绍了建筑物在当前能量环境中的能量影响。然后将研究的优化问题定义为建筑物生产和消费活动的优化管理。确定调度问题以将能量消耗调整为能量成本和用户的舒适度。家用电器提供的服务的可用灵活性可用于计算最佳能源计划。这些灵活性与时间窗或储热能力有关。给出了能量分配问题的约束公式。派生的混合线性程序用于解决此问题。房屋的能耗非常依赖于不确定的数据,例如天气预报和居民活动。为了提供稳定的能源分配,在家庭能源管理问题中引入了参数不确定性。实现了鲁棒的线性编程。实现了基于方案的方法来面对这个强大的优化问题。实际应用:由于可再生能源在电力生产中所占比例越来越大,难以控制,因此消费者将不得不更多地参与电网管理。本文阐述了建筑物中的能源管理问题,并描述了为将建筑物的能耗调整至生产限制而定义的优化问题。该决策系统基于天气预报和可变的电力成本。考虑数据的参数不确定性,以便提出可靠的能源计划,其中可以保证性能优于预期数据。

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