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A distributed anytime algorithm for maximizing occupant comfort

机译:一种分布式随时随地算法,可最大程度提高乘员的舒适度

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We propose a distributed, anytime optimization algorithm to maximize the thermal comfort of building occupants. We consider the building as a set of areas consisting of zones, which are coupled by the capacity of the HVAC equipment as well as the energy and mass balance relations that govern the building dynamics. The resulting non-convex, large-dimensional, constrained optimization formulation is decomposed into area-level subproblems that are solved by distributed agents. At each timestep, the agents cooperate to converge to an equilibrium solution that determines the optimal values of the building operational variables, such as temperature and rate of air flow, that maximizes the total comfort. Our experimental results show that the distributed algorithm (i) is more scalable than the centralized optimization algorithm; (ii) produces a locally optimal solution that is comparable to that resulting from the centralized approach; and (iii) yields a feasible solution even if pre-empted before equilibrium is attained.
机译:我们提出了一种随时随地的分布式优化算法,以最大限度地提高建筑物居住者的热舒适度。我们将建筑物视为由区域组成的一组区域,这些区域与HVAC设备的容量以及控制建筑物动态的能量和质量平衡关系相结合。所得的非凸,大尺寸,受约束的优化公式被分解为区域级子问题,这些子问题可以由分布式主体解决。在每个时间步长,代理商协同工作以收敛到一个平衡解决方案,该解决方案确定建筑物运行变量的最佳值,例如温度和气流速率,从而使总舒适度最大化。我们的实验结果表明,分布式算法(i)比集中优化算法更具可扩展性; (ii)产生一种局部最优的解决方案,该解决方案可与集中式方法产生的解决方案相提并论; (iii)即使在达到平衡之前先占也能得出可行的解决方案。

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