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基于随机模型控制评估电热水缸的储能潜力。

Assessing the energy storage potential of electric hot water cylinders with stochastic model-based control.

作者信息

Williams Baxter, Bishop Daniel, Docherty Paul

机构信息

Department of Mechanical Engineering, University of Canterbury, Christchurch, New Zealand.

Department of Civil and Natural Resources Engineering, University of Canterbury, Christchurch, New Zealand.

出版信息

J R Soc N Z. 2023 Apr 5;54(2):240-256. doi: 10.1080/03036758.2023.2197241. eCollection 2024.

Abstract

As electric hot water cylinders (HWCs) have a large capacity for thermal storage, they are well-suited for Demand Side Management (DSM). This paper compares different methods of HWC temperature control and presents a methodology to assess the amount of thermal storage available in HWCs for demand side management based on use behaviour in different household types. Simple stochastic methods for domestic hot water (DHW) demand prediction were employed to design a smart controller that produced lower rates of unmet DHW demand and higher available storage than setpoint and ripple controllers. The average storage available for DSM from the use of this smart controller is predicted to be between 3.63 and 7.20 kWh per household. These results indicate the use of HWCs for thermal storage is a low-cost viable option for peak-shaving of power system load and could decrease power system greenhouse gas (GHG) emissions in countries such as Aotearoa New Zealand, where GHG-emitting electricity generation is primarily used to meet peak loads.

摘要

由于电热水箱(HWC)具有较大的蓄热能力,因此非常适合需求侧管理(DSM)。本文比较了不同的HWC温度控制方法,并提出了一种基于不同家庭类型的使用行为来评估HWC中可用于需求侧管理的蓄热总量的方法。采用简单的随机方法预测生活热水(DHW)需求,以设计一种智能控制器,该控制器产生的未满足DHW需求率更低,且可用蓄热比设定值控制器和脉动控制器更高。预计使用这种智能控制器每户可用于DSM的平均蓄热为3.63至7.20 kWh。这些结果表明,利用HWC进行蓄热是电力系统负荷削峰的一种低成本可行选择,并且在新西兰等国家,可减少电力系统的温室气体(GHG)排放,在这些国家,主要使用排放GHG的发电方式来满足高峰负荷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfd1/11459786/45af2f9220ec/TNZR_A_2197241_F0001_OC.jpg

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