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Advanced economic control of electricity-based space heating systems in domestic coalitions with shared intermittent energy resources

机译:具有共享间歇性能源的国内联盟中基于电的空间供暖系统的高级经济控制

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摘要

Over the past few years, domestic heating automation systems (DHASs) that optimize the domestic space heating control process with minimum user-input, utilizing appropriate occupancy prediction technology, have emerged as commercial products (e.g, the smart thermostats from Nest and Honeywell). At the same time, many houses are being equipped with, potentially grid-connected, intermittent energy resources (IERs), such as rooftop photovoltaic systems and/or small wind turbine generators. Now, in many regions of the world, such houses can sell energy to the grid but at a lower price than the price of buying it. In this context, and given the anticipated increase in electrification of heating, the next generation DHASs need to incorporate advanced economic control (AEC). Such AEC can exploit the energy buffer that heating loads provide, in order to shift the consumption of electricity-based heating systems to follow the intermittent energy generation of the house. By so doing, the energy imported from the grid can be minimized and considerable monetary gains for the household can be achieved, without affecting the occupants’ schedule. These benefits can be amplified still further in domestic coalitions, where a number of houses come together and share their IER generation to minimize their cumulative grid energy import. Given the above, in this work we extend a state-of-the-art DHAS, to propose AdaHeat+, a practical DHAS, that, for the first time, incorporates AEC. Our work is applicable to both individual houses and domestic coalitions and comes complete with an allocation mechanism to share the coalition gains. Importantly, we propose an effective heuristic heating schedule planning approach for collective AEC which: (i) has a complexity that scales in a linear and parallelizable manner with the coalition size, and (ii) enables AdaHeat+ to handle the distinct preferences, in balancing heating cost and thermal discomfort, of the households. Our approach relies on stochastic IER power output predictions. In this context, we propose a simple and effective formulation for the site-specific calibration of such predictions based on adaptive Gaussian process modeling. Finally, we demonstrate the effectiveness of AdaHeat+ through real data evaluation, to show that collective AEC can improve heating cost-efficiency by up to 60%, compared to independent AEC (and even more when compared to no-AEC).
机译:在过去的几年中,家用供热自动化系统(DHAS)出现了商业产品(例如Nest和Honeywell的智能恒温器),它利用适当的占用预测技术以最少的用户输入来优化家用空间供暖控制过程。同时,许多房屋都配备有可能并网的间歇性能源(IER),例如屋顶光伏系统和/或小型风力发电机。现在,在世界许多地区,此类房屋可以向电网出售能源,但价格要低于购买能源的价格。在这种情况下,考虑到供暖电气化的预期增长,下一代DHAS需要纳入先进的经济控制(AEC)。这样的AEC可以利用供暖负荷提供的能量缓冲器,以改变基于电的供暖系统的能耗,以跟随房屋的间歇性发电。这样一来,可以最大程度地减少从电网输入的能量,并为家庭带来可观的货币收益,而不会影响居住者的日程安排。这些好处可以在国内联盟中进一步扩大,在该联盟中,许多房屋汇聚在一起并共享其IER发电量,以最大程度地减少其累计电网能源进口。鉴于上述情况,在这项工作中,我们扩展了最新的DHAS,以提出AdaHeat +,这是一种实用的DHAS,它首次包含AEC。我们的工作适用于个人住宅和家庭联盟,并配有分配机制以分享联盟收益。重要的是,我们为集体AEC提出了一种有效的启发式供热计划计划方法:(i)具有根据联盟规模以线性且可并行方式扩展的复杂度,并且(ii)使AdaHeat +在平衡供热时能够处理不同的偏好家庭的成本和热不适。我们的方法依赖于随机IER功率输出预测。在这种情况下,我们提出了一种基于自适应高斯过程建模的简单有效的公式,用于此类预测的特定于站点的校准。最后,我们通过真实数据评估证明了AdaHeat +的有效性,表明与独立的AEC相比,集体AEC可以将供热成本效率提高多达60%(与无AEC相比甚至更高)。

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