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The Smart Grid: Green IT and Data Centers. February 2, 2011: 4:10 p.m. Charles O’Donnell, Vice President, Engineering Liebert AC Power Emerson Network Power. Smart Grid – Principal Characteristics. 1. Source: Interim Smart Grid Roadmap , EPRI, April, 2009. Data Center Energy Management.
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The Smart Grid: Green IT and Data Centers February 2, 2011: 4:10 p.m. Charles O’Donnell, Vice President, Engineering Liebert AC Power Emerson Network Power
Smart Grid – Principal Characteristics 1. Source: Interim Smart Grid Roadmap, EPRI, April, 2009
Data Center Energy Management Electricity In Heat Out • 1 out of 500 data centers will have a severe disastereach year1 • 40% of companies take a day or longer to bring records back online1 • A rolling blackout across Silicon Valley totaled $75 million in losses2 • The Northeast blackout of 2003 resulted in a $6 billion economic loss to the region2 Sources: 1. InformationWeek Research Business Continuity Survey; 2. Department of Energy
Data Center Energy Consumption EstimatesOn average, 1 W of IT load uses 1 W of power & cooling
Top 3 Facility / Network Concerns Source: Data Center Users Group (DCUG) Fall 2010 Survey
Optimizing Within a Layer Creates Gaps: Bridge the Gaps to Maximize Smart Grid Benefits For data centers, Smart Grid promises many benefits: greater control of power consumption, energy efficiency and cost reduction. It will also create a new layer of data to support critical decision making about energy usage. For organizations to fully realize these benefits and utilize the data provided, they must bridge the gap between IT and facilities. Source: Emerson Internal
Demand Management Overview There are two elements to demand management – demand response & demand control • Demand Response • Driven externally by a power utility provider • Responds to the condition of the power grid as signal to curtail loads (wholesale price or grid capacity) • Can be either manual or automated • Savings based on pricing incentives “economic” or “reliability” (ISO/utility dependent) • Enabled by ProAct’s ability to command & execute enterprise demand response calls • Demand Control • Driven internally by customer to avoid peak demand power surcharges • Limits peak demand by shedding loads in response to data center power meter • Savings based on reducing peak demand or demand based energy consumption • Enabled by power shedding abilities Source: Emerson Internal
Demand Response Process Demand Response System Enterprise Data Center Portfolio Management Establish Curtailment Goals & Shed Capacity Available Negotiate Utility Pricing & Demand Response Incentives Commission Data Center for Demand Response & Program Shed Logic 3 1 2 $$ Demand Curtailment Service Provider Utility Shed Event 4 6 5 Audit/Measure/Prove Demand Response Accept/Reject Shed Request Source: Emerson Internal
Data Center Load Shedding Options • Shed non-critical functions • Degrade response time • Aggregate applications on fewer servers • Put servers in power saving mode • Offload processing • Move processing load among enterprise data centers • Move processing load to cloud service provider • Local generation • Diesel or natural gas generator • Fuel cells • Wind or solar • Battery • Raise cooling set point
Preparing for a Smart Grid Five key steps data center managers can take today: • Begin talking with the local utility about their Smart Grid initiatives, plans, incentives and timelines. • Consult with an energy management specialist to evaluate current and future energy needs, consumption levels, and patterns. • Evaluate current building automation and infrastructure management systems, as well as onsite generation capacity if applicable. • Develop a strong delineation for load types (critical, essential, and non-essential) and a policy for prioritization. • Stay current with local and federal government mandates and regulations relative to the Smart Grid as well as onsite power generation.
Thanks! Be sure to check out Emerson’s Smart Grid eBook: “What Smart Grid Means to You” www.EmersonNetworkPower.com/SmartGrid