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An efficient water flow control approach for water heaters in direct load control

机译:直接负荷控制中热水器的有效水流控制方法

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摘要

Tank water heaters (WHs) are present in a prevailing number of European households. Serving as energy buffers WHs have come under the spotlight of various direct load control (DLC) programs over the last few decades. Although DLC has proven to be an efficient measure towards daily peak demand shaving, the payback effect might lead to a new peak in the grid. This payback phenomenon takes place every time a group of WHs under DLC is permitted to catch up. If not handled properly. This paper presents a novel real-time water flow control approach for domestic water heating systems aiming at decreasing the payback effect of DLC actions. We identify possible control strategies based on an analysis of the water system's thermal dynamics. We formulate the problem of optimal water flow control in terms of minimum WH payback demand and maximum user comfort satisfaction. User comfort is formalized by an integral energy characteristic. Simulations show that water flow control can significantly mitigate the DLC payback effect by reaching the fair compromise between energy savings and discomfort of an end-user.
机译:储水式热水器(WH)存在于欧洲许多家庭中。在过去的几十年中,用作能量缓冲的WH受到各种直接负载控制(DLC)程序的关注。尽管已证明DLC是减少每日高峰需求的有效措施,但投资回收期可能会导致电网出现新的高峰。每当DLC下的一组WH被追赶时,就会发生这种回报现象。如果处理不当。本文提出了一种新颖的用于家用热水系统的实时水流量控制方法,旨在降低DLC行为的投资回报。我们基于对水系统热动力学的分析确定可能的控制策略。我们根据最小的WH回收需求和最大的用户舒适度来制定最佳的水流控制问题。整体的能量特性使用户舒适感正式化。仿真表明,水流控制通过在节能与最终用户的不适感之间达成合理的折衷,可以显着减轻DLC的回报效应。

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