Demand Response Research Center Accomplishments and Future Directions Mary Ann Piette Research Director - Demand Response Research Center State Energy.

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Demand Response Research Center Accomplishments and Future Directions Mary Ann Piette Research Director - Demand Response Research Center State Energy Advisory Board Meeting Lawrence Berkeley National Laboratory Berkeley – August 14, 2007

California is Summer Peaking

Demand Response Research Center drrc.lbl.gov Objective Scope Method Stakeholders To develop, prioritize, conduct, and disseminate multi-institutional research to facilitate DR Technologies, policies, programs, strategies and practices, emphasizing a market connection Partners Planning Committee, Annual R&D Plan  State Policy Makers  Researchers  Information and Metering System Developers  Aggregators  Program Implementers  Utilities  Industry Trade Associations  Building Owners / Operators  Building Equipment Manufacturers  End-Use customers

What Are We Trying to Achieve? Joint proceeding – CEC and CPUC (R ) Early goal for price sensitive DR: 5% of peak by 2007 Residential Default CPP Small Commercial (< 200 kW) Default CPP Medium Commercial (< 999 kW)Default CPP Large C&I (> 1 MW) 2-part RTP IOU business plans for Automated Meter Infrastructure Long term success  DR as business as usual Research needs DR value, potential, technologies, programs, policies How much DR do we need? Relation between price response and reliability?

Key Activities Recent and Ongoing Projects Evaluation of RTP for Large Users Demand Shifting with Thermal Mass Automated DR in Commercial Buildings Project 1 Project 2 Project 3 New Projects Industrial Strategies and DR Automation Rates Design for DR DR Behavior– Residential and Small Commercial Project 4 Project 5 Project 6

AutoDR Project Background AutoDR Goals Develop a low-cost, fully automated infrastructure to improve DR capability in California Evaluate “readiness” facilities to receive common signals Evaluate capability of control shed strategies and measurement of sheds to improve future buildings Motivation for Automation Improve repeatability and reliability of DR resource Reduce manual DR labor costs Harden strategies in software

Utility Owned Consumer Owned Automated DR Server and Software Client acknowledgements price signals reliability signals Utility Utility messaging and settlement system DR Program Comm Dev CLIENT Interval Meter DRAS Facility Manager HTTPS over TCP/IP (Client/Server - polling) Auto-DR EMCS Gateway BacNET LonWorks Zigbee Etc. Lighting BacNET LonWorks Zigbee DALI Etc. CLIENT Lighting Controls HVAC

 Developed and Refined Demand Response Automation Systems  Developed connection to Energy Management Control Systems (EMCS)  Field Tests – 2 to 12 events per summer 2003 – 5 sites – Internet link to Energy Information Systems (EIS) 2004 – 18 sites – Linked to EIS and EMCS 2005 – 12 sites – PG&E Critical Peak Pricing Collaboration 2006 – 25 sites – PG&E, SDG&E, Planning with SCE 2007 – PG&E goal of 200 sites (15 MW) – SCE sites, mostly industrial – SDG&E Aggregator Collaboration  Worked with over 50 sites  1 GW potential with current technology Automated Demand Response Accomplishments

2006 Auto-CPP Participants (n=24) Wide variety of building types

Results From 2007 – 7/6 CPP Event

DR Control Strategies Guide Objective: Evaluate and compare DR strategies in buildings to reduce electric use Methods Evaluated DR strategies in over 40 commercial buildings Developed DR strategies guide for commercial buildings Beginning industrial strategies evaluation with utility audits and case studies Provided global temperature adjustment strategy for incorporation in Title 24 Develop DR links to commissioning Future Work DR simulation model for DR strategy assessment Benchmarking DR response Advanced DR lighting DR industrial strategy guide

 Ideal start - good commissioning, retro-commissioning, advanced/new controls  HVAC - Direct digital control (DDC) global temperature adjustment In process for Title Closed loop  Lighting Continuum - Zone Switching, Fixture Switching, Lamp Switching, Stepped Dimming, Continuous Dimming  Maybe you “can” use a strategy every day? Linking DR and Energy Efficiency

Pre-Cooling Objectives – Evaluate capability of pre-cooling to improve comfort and DR capabilities in commercial buildings Team – UC Berkeley, Purdue University, SCE, and LBNL Findings – Field tests, simulations, and surveys in 6 large and 1 small building shows good opportunity in many buildings Future Work– Expand simulation tools to broad DR strategy assessment tools for DR audits

Project Outline 1.Develop a research paper on issues in rate design a)Historical perspective b)Describe existing rate design process c)Evaluate impact California policy on EE and DR objectives 2.Participate in a CPUC rate design workshop a)Two workshops b)Discuss reactions to Rate Issues Paper (above) c)Four topics: Costing, rate design, legislative and political adjustments, consumer rate experience 3.Prepare “straw man” rates Illustrate how new design principles can simultaneously achieve state DR and EE objectives while meeting other CPUC regulatory guidelines Rate Design for Capturing Efficiency and Demand Response

Customer Choice Economic Response Reliability Response Sustainable Cost Direct Control Price Response Top rated performance, proven, sustainable effectiveness Moderate performance, limited but acceptable effectiveness Limited performance, variable, uncertain effectiveness Evaluation Criteria Today – DR is A Limited Resource Today’s Focus

POLICY The Vision – Two Components Policy and Technology Integrated Advance d Metering Rates Building Standards Obligatio n to Serve TECHNOLOGY System Integration Hardware