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Incentive compatible mechanism for coordinated temperature control in multi-occupant buildings

机译:多人建筑物协调温度控制的激励兼容机制

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Minimizing the total energy consumption (cost) and maximizing the aggregate comfort across all building occupants, are two major objectives that must be balanced for effective environmental control in multi-occupant buildings and other shared spaces. Energy cost function for a given building is generally available (or can be measured/estimated) but information on the comfort ranges/functions are held privately by the occupants. In this work we present a game-theoretic (auction) mechanism, that requires occupants to “purchase” their individualized comfort levels beyond what is provided by default by the building operator. The comfort pricing policy is incentive-compatible in the sense that it elicits truthful comfort feedback from rational occupants acting only in self-interest. The declared (or estimated) occupant comfort ranges (functions) are then utilized by the building operator (HVAC system operator) — along with the energy cost information — to set the environment controls to optimally balance the aggregate discomfort of the occupants and the energy cost of the building operator. We use realistic building model and parameters based on our test facility to demonstrate the convergence of the actual temperatures in different zones to the desired temperatures, and provide insight to the pricing structure necessary for truthful comfort feedback from the occupants.
机译:最小化总能耗(成本)并最大程度地提高所有建筑物居住者的总体舒适度,这是必须平衡的两个主要目标,以便在多居住建筑物和其他共享空间中进行有效的环境控制。给定建筑物的能源成本函数通常可用(或可以测量/估计),但是有关舒适度范围/函数的信息由居住者私下保存。在这项工作中,我们提出了一种博弈论(竞价)机制,该机制要求居住者“购买”其个性化的舒适度,而不是建筑物运营商默认提供的舒适度。舒适性定价政策是激励兼容的,即它可以从仅出于自身利益行事的理性居住者中获得真实的舒适性反馈。然后,声明的(或估计的)乘员舒适度范围(功能)将由建筑运营商(HVAC系统运营商)与能源成本信息一起使用,以设置环境控制,以最佳地平衡乘员的总体不适感和能源成本的建筑运营商。我们基于测试设施使用了逼真的建筑模型和参数,以证明不同区域中的实际温度与所需温度的收敛性,并深入了解为乘员提供真实舒适性反馈所必需的价格结构。

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