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Strategies for Demand Response in Commercial BuildingsDavid Watson, Sila Kiliccote, Naoya Motegi, and Mary Ann Piette, Lawrence Berkeley National Laboratory KeywordsAbstractThis paper describes strategies that can be used in commercial buildings to temporarily reduce electric load in response to electric grid emergencies in which supplies are limited or in response to high prices that would be incurred if these strategies were not employed. The demand response strategies discussed herein are based on the results of three years of automated demand response field tests in which 28 commercial facilities with an occupied area totaling over 11 million ft.2 were tested. Although the demand response events in the field tests were initiated remotely and performed automatically, the strategies used could also be initiated by on-site building operators and performed manually, if desired. While energy efficiency measures can be used during normal building operations, demand response measures are transient; they are employed to produce a temporary reduction in demand. Demand response strategies achieve reductions in electric demand by temporarily reducing the level of service in facilities. Heating ventilating and air conditioning (HVAC) and lighting are the systems most commonly adjusted for demand response in commercial buildings. The goal of demand response strategies is to meet the electric shed savings targets while minimizing any negative impacts on the occupants of the buildings or the processes that they perform. Occupant complaints were minimal in the field tests. In some cases, “reductions” in service level actually improved occupant comfort or productivity. In other cases, permanent improvements in efficiency were discovered through the planning and implementation of “temporary” demand response strategies. The DR strategies that are available to a given facility are based on factors such as the type of HVAC, lighting and PaperDownload this paper as pdf: 081_555.pdf Panels of the 2006 ACEEE Summer Study on Energy Efficiency in BuildingsPanel 2. Residential Buildings: Program Design, Implementation, and Evaluation Panel 4. Commercial Buildings: Program Design, Implementation, and Evaluation Panel 5. Utility Regulation and Competition: Incentives, Strategies, and Policies Panel 6. Market Transformation: Designing for Lasting Change Panel 7. Human and Social Dimensions of Energy Use: Trends and Their Implications Panel 10. Roundtables and Interactive Sessions: Learning by Doing | CalendarGreen ICT for growth and sustainability? Linking science and policy 03 – 08 Jun 201238th IEEE Photovoltaic Specialist Conference 04 Jun 2012Call for papers MILEN 2012 08 Jun 2012Call for Abstracts - International workshop on energy efficiency for a more sustainable world 12 – 14 Jun 2012IEPEC - International Energy Program Evaluation Conference 15 Jun 2012Call for papers - IIASA Conference 2012. Worlds within reach: from science to policy 20 Jun 2012Energy futures and civil society in the EU - building a low carbon alliance |