The Better Buildings Breakfast Ronald J. Zimmer CAE President & CEO Continental Automated Buildings Association www.CABA.org Bright Green Buildings: The.

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Presentation transcript:

The Better Buildings Breakfast Ronald J. Zimmer CAE President & CEO Continental Automated Buildings Association Bright Green Buildings: The Convergence of Green and Intelligent Buildings

CABA Vision “CABA is the authoritative knowledge-based forum advancing the application and integration of automation in the residential and commercial building industry.”

CABA BOARD OF DIRECTORS

Source: CABA’s Convergence of Green and Intelligent Buildings Report

Source: CABA’s 2011 Smart Grid Impact on Intelligent Buildings 14 Making the Grid Smart Smart grid features expand energy efficiency beyond the grid into buildings by coordinating low priority energy consuming devices to take advantage of the most desirable energy sources Smart grids coordinate power production from lots of small power producers - otherwise problematic for power systems operators at local utilities

15 Smart Grid Impact on Intelligent Buildings Research Study 2011 The Continental Automated Buildings Association (CABA) CABA and the following CABA Members funded this Research Project: Ruby Sponsor: Emerald Sponsors Diamond Sponsors

Source: CABA’s 2011 Smart Grid Impact on Intelligent Buildings Smart Grid - Definition An advanced power grid for the 21st century... adding and integrating many varieties of digital computing and communication technologies and services with the power-delivery infrastructure. Bi-directional flows of energy and two-way communication and control capabilities will enable an array of new functionalities and applications that go well beyond “smart” meters for homes and business Source: NIST Framework and Roadmap for Smart Grid Interoperability Standards Release 1.0 (Draft), September Source: CABA’s 2011 Smart Grid Impact on Intelligent Buildings

17 Building Management System (BMS) A computer-based control system - controls and monitors building HVAC and electrical equipment - commonly also systems for lighting, power, security, fire detection and alarm Comprises central computers, workstations, PCs, direct digital control (DDC) controllers, display panels, communication elements such as routers, switches, sensors for temperature, humidity, CO2, pressure etc., meters/data loggers Outputs typically connect to hydraulic control valve and actuator assemblies, air damper actuator assemblies and variable speed drives. Software for monitoring, control and management usually configured hierarchically and use manufacturers’ proprietary communications protocols or Internet protocols and open standards such as BACnet, LonWorks, Modbus, XML, SOAP, DeviceNet etc. Source: BSRIA

Source: CABA’s 2011 Smart Grid Impact on Intelligent Buildings 18 Non-Residential Building Stock - North America (USA & Canada) 6.5 Million Buildings Source: Various including U.S. Energy Information Administration, National Resources Canada, US DOE, Department of Defense Base Structure Report FY 2009 Baseline (Note: Excludes 26% Department of Defense buildings which are used for housing, or troop housing and mess facilities), and BSRIA estimates.

Source: CABA’s 2011 Smart Grid Impact on Intelligent Buildings 19 BMS Penetration by Number of Buildings – by Commercial Building Size Category

Source: CABA’s 2011 Smart Grid Impact on Intelligent Buildings 20 Number of Utilities in North America 3,100 Utilities in the USA (approx) About 100 Investor owned companies (produce 70% of the electricity) About 1000 Rural cooperatives About 2000 Municipal power companies 380 Utilities in Canada (approx) 16 major electric utilities: 8 provincially owned 7 investor-owned 2 municipally owned 2 are territorial Crown Corporations Additional 4 privately-owned in Ontario About 364 smaller utilities across Canada (87% located in Ontario) Most owned by municipalities. Do not own generating capacity; usually purchase power from the major utility in their province. Several small investor-owned with own generating capacity.

Source: CABA’s 2011 Smart Grid Impact on Intelligent Buildings Why do we Need a Smart Grid? 21  Shave the peaks  Increase grid stability and reliability  Improve efficiency – energy, consumption data management  Save on energy costs  Buy at optimal price  Empower customers

Source: CABA’s 2011 Smart Grid Impact on Intelligent Buildings 22 Blackout Areas 2010 California508 New York176 Texas145 Ohio135 Washington125 New Jersey121 Pennsylvania120 Florida118 Michigan116 Wisconsin Ontario – 64Ontario – 80 British Columbia – 43British Columbia – 23 Alberta – 22Saskatchewan – 8 Saskatchewan – 20Alberta – 6 (tie) Nova Scotia – 12Nova Scotia – 6 (tie) Quebec – 11Quebec – 6 (tie) Manitoba – 9 (tie)Manitoba – 4 (tie) New Brunswick – 9 (tie)New Brunswick – 4 (tie) Newfoundland – 2Prince Edward Island – 4 (tie) Prince Edward Island – 1(tie)Northwest Territories – 1 Northwest Territories – 1 (tie) Canada Provinces and territories ranked by number of reported outages: USA The top 10 blackout states include some of the states that house the most data centers: Source: Eaton Blackout Report 2010 Source: Eaton Annual Report 2010

Source: CABA’s 2011 Smart Grid Impact on Intelligent Buildings Main Components of the Smart Grid Market (US$ bn) 23 Source: BSRIA

Source: CABA’s 2011 Smart Grid Impact on Intelligent Buildings 24 Smart Meter Installations ResidentialCommercialIndustrialTotal USA 6,564,949738,29423,7707,327,013 Canada (Assumes segmentation proportions similar to USA) 4,479,963503,81616,2215,000,000 Total North America 11,044,9121,242,11039,99112,327, %10.1%0.3%100.0%

Source: CABA’s 2011 Smart Grid Impact on Intelligent Buildings How will the Smart Grid impact buildings? 25 DR 1 Saving electricity bill: 3 – 5% DR 2 Saving electricity bill: 15-20% Energy usage per equipment/zone and fault finding Plan electricity consumption: reduce when high, use when low Buy and sell electricity. Produce and store Energy efficiency -Smart metering -Energy profile -Energy date available On-site generation / energy efficiency

Source: CABA’s 2011 Smart Grid Impact on Intelligent Buildings 26 Potential Energy Savings in Non-Residential Buildings 30% US$ bn Source: Energy Information Administration. “2003 CBECS Detailed Tables. Table C4A. Expenditures for Sum of Major Fuels for All Buildings, 2003.” December June 2007 and “2002 Energy Consumption by Manufacturers--Data Tables. Table 7.9 Expenditures for Purchased Energy Sources, 2002.” June U.S. Environmental Protection Agency, ENERGY STAR program. “Useful Facts and Figures.” 1 June 2007.

Source: CABA’s 2011 Smart Grid Impact on Intelligent Buildings 27 Barriers and drivers Barriers -No capital to invest in upgrades -Lack of awareness -Lack of knowledge / training -Outdated technology -Low penetration of advanced metering Drivers -Increasing awareness -Electricity cost anticipated to continue to increase -Political focus and increasing incentives -Deregulation in states and utilities -Increase in number of providers -Various options to avoid upfront cost

Source: CABA’s 2011 Smart Grid Impact on Intelligent Buildings How will the Smart Grid impact buildings? - Intelligent / Converged building 28 Information collected and analysed: Energy consumption Overview of cost per energy supplier Building occupancy Building usage Overview of operational cost (by section, building) Bench mark data (property cost per sq. metre, energy cost per sq metre) The information management system optimises the decision Building management & investment decisions Outsourcing strategies Space allocation Choice of suppliers Implementation of demand response strategies

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