Nontargeted vs. Targeted vs. Smart Load Shifting Using Heat Pump Water Heaters

Author:

Obi ManassehORCID,Metzger Cheryn,Mayhorn Ebony,Ashley Travis,Hunt Walter

Abstract

Deployment of CTA-2045–enabled devices is increasing in the U.S. market. These devices allow utilities or third-party aggregators to control appliance energy use in homes, and could also be applied to end uses in small commercial buildings. This study focuses on a field study using CTA-2045–enabled water heaters to shift electric load off the peak and toward periods when renewable resources are more prevalent (e.g., near noon for solar resources and near midnight for wind resources). The following load shifting strategies were compared to understand effects on the aggregate load-shifting capabilities of Heat Pump Water Heaters (HPWHs) and on consumer hot water supply: non-targeted (traditional), targeted (grouped, with different shifting schedules) and “smart” (adaptive control commands). The results of this study show that targeted and smart control strategies yield significantly more load-shifting potential from a population of water heaters than the non-targeted approach without sacrificing hot water supply to occupants. However, as control commands become more aggressive, aggregators may face challenges in meeting consumer hot water demand. The findings and lessons learned can benefit electric utilities and inform updates to manufacturer controls and communications standards. The data collected may also be useful for developing and validating HPWH models.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference30 articles.

1. State Renewable Portfolio Standards and Goals, National Conference of State Legislatures, 17 April 2020 https://www.ncsl.org/research/energy/renewable-portfolio-standards.aspx#ca

2. CTA-2045-A: Modular Communication Interface for Energy Management,2018

3. Aggregation of Residential Water Heaters for Peak Shifting and Frequency Response Services

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