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Identification and Estimation for Electric Water Heaters in Direct Load Control Programs

机译:直接负荷控制程序中电热水器的识别和估算

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PowerShift-Atlantic (PSA) is a pilot project lead by Canadian Maritime utilities that demonstrates direct load control strategies for up to 20 MW of commercial and residential loads for the purpose of balancing the intermittency of renewable generation and supporting demand-side management programs. On the residential side, domestic electric water heaters (DEWHs) form a significant end use class. The ability to accurately estimate and predict the state of individual end use devices allows aggregated control systems to better ensure end-use performance and comfort levels. This paper presents a methodology for estimating and predicting the state of individual DEWHs from models of their thermodynamics and water consumption that are derived under two scenarios: 1) when measurements of both power consumption and water temperature are available; and 2) when only measurements of power consumption are available. The proposed methodology was implemented as part of the PSA pilot project for the DEWH load class to simulate the behavior of the load in presence of the controller and evaluate the performance of the controller. Experimental results show that the model and water usage profile mimic the actual behavior of DEWHs, and can predict the future power consumption when the thermostatic control of a DEWH is interrupted as part of a load control strategy.
机译:PowerShift-Atlantic(PSA)是由加拿大海事公用事业公司牵头的一项试点项目,该项目展示了高达20 MW商业和住宅负载的直接负载控制策略,目的是平衡可再生能源发电的间歇性并支持需求侧管理计划。在住宅方面,家用电热水器(DEWH)构成了重要的最终使用类别。准确估计和预测各个最终用途设备状态的能力使综合控制系统可以更好地确保最终用途性能和舒适度。本文介绍了一种从两种情况下得出的DEWH的热力学和水消耗模型估算和预测状态的方法:1)可以同时测量功耗和水温;和2)仅测量功耗时。拟议的方法已作为DEWH负载类别的PSA试点项目的一部分实施,以模拟存在控制器时的负载行为并评估控制器的性能。实验结果表明,该模型和用水曲线模拟了DEWH的实际行为,并且可以预测DEWH的恒温控制中断作为负荷控制策略的一部分时的未来功耗。

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