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LEED v4.1

Existing Buildings

Energy and Atmosphere
Grid Harmonization

LEED CREDIT

EBOM-v4.1 EAc2: Grid Harmonization 1 point

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Marcus Sheffer

7group / Energy Opportunities
LEED Fellow

SPECIAL REPORT

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Requirements

Evaluate building systems and equipment for participation in a demand response program. On-site electricity generation does not meet the intent of this credit.

Case 1. Demand Response Program Available and Participation (1 point)
Participate in an existing demand response (DR) program and complete the following activities.
  • Have in place a system with the capability for real-time, fully automated DR based on external initiation by a DR program provider. Semi-automated DR may be utilized in practice.
  • Enroll in a minimum one-year DR participation amount contractual commitment with a qualified DR program provider, with the intention of multiyear renewal, for at least 10% of the annual on-peak electricity demand. On-peak demand is based on electric utility bills with an on-peak demand period defined by the local utility. The on-peak demand may vary based on the utility climate and pricing structures.
  • Develop a comprehensive plan for meeting the contractual commitment during a Demand Response event.
  • Include the DR processes in the current facilities requirements and operations and maintenance plan.
  • Initiate at least one full test of the DR plan.
OR
Case 2. Demand Response Capable Building (1 point)
  • Have infrastructure in place to take advantage of future demand response programs or dynamic, real-time pricing programs and complete the following activities. Develop a comprehensive plan for shedding at least 10% of the annual on-peak electricity demand. Peak demand is based on electric utility bills.
  • Include the DR processes in the current facilities requirements and operations and maintenance plan.
  • Initiate at least one full test of the DR plan as part of the building commissioning program.
  • Contact local utility representatives to discuss participation in future DR programs.
OR
Case 3: Load Flexibility and Management Strategies (1 point)
Analyze the building’s annual load shape and peak load based as calculated for EA prerequisite Minimum Energy Performance. Review the regional grid load profile using the metric of peak load or peak carbon emissions. The U.S. Environmental Protection Agency’s (EPA) AVoided Emissions and geneRation Tool (AVERT) provides regional grid emissions data; local utilities may also provide this data.

Coordinate review of building load shape and peak load with review of the regional grid profile to identify the best value load management strategies that the building can provide.

Implement one or more of the load flexibility and management strategies described below. All projects must install interval recording meters and have equipment capable of accepting an external signal.

Load Flexibility and Management Strategies:
  • Peak Load Optimization: demonstrate that strategy reduces on-peak load by at least 10% as compared to peak electrical demand (1 point)
  • Flexible Operating Scenarios: demonstrate that strategy moves at least 10% of peak load by a time period of 2 hours (1 point)
  • On-site thermal and/or electricity storage: demonstrate that strategy reduces on-peak load by at least 10% as compared to peak electrical demand (1 point)
  • Grid resilience technologies: project served by utilities with resilience programs in place, which leverage strategies such as islanding and part-load operation, automatically achieve this credit (1 point)
Include load flexibility and management strategies and installed technologies in the Facilities Requirements and Operations Maintenance Plan.

Contact local utility representatives to discuss participation in future DR programs and to inform utility of building load flexibility and management strategies. See all forum discussions about this credit »

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Addenda

2/6/2023Updated: 2/9/2023
Rating System Correction
Description of change:
Revise Intent to read as: "To increase participation in demand response technologies and programs that make energy generation and distribution systems more affordable and more efficient, increase grid reliability, and reduce greenhouse gas emissions."

Under Case 3:
Revise the third paragraph to read as: "Implement one or more of the load flexibility and management strategies described below. All projects must install interval recording meters and have equipment capable of accepting an external signal."

Revise fourth paragraph to read as: "Include load flexibility and management strategies and installed technologies in the Facilities Requirements and Operations Maintenance Plan."

Delete duplicated language of Case 2 and Case 3 (added erroneously)
Campus Applicable
No
Internationally Applicable:
No
7/25/2019Updated: 3/1/2021
Rating System Correction
Description of change:
Add "OR" between Case 1 and Case 2.

Add "OR" between Case 2 and Case 3.

Replace Case 3 header and all subsequent requirements with the following text:

"Case 3. Load Flexibility and Management Strategies (1 point)

Analyze the building’s annual load shape and peak load based based on metered electricity use and electric utility bills. Review the regional grid load profile using the metric of peak load or peak carbon emissions. The U.S. Environmental Protection Agency’s (EPA) AVoided Emissions and geneRation Tool (AVERT) provides regional grid emissions data; local utilities may also provide this data.

Coordinate review of building load shape and peak load with review of the regional grid profile to identify the best value load management strategies that the building can provide.

Implement one or more of the load flexibility and management strategies described below. All projects must install interval recording meters with communications and the ability for the building automation system to accept an external price signal.

Load Flexibility and Management Strategies:
• Peak Load Optimization: demonstrate that strategy reduces on-peak load by at least 10% as compared to peak electrical demand (1 point)
• Flexible Operating Scenarios: demonstrate that strategy moves at least 10% of peak load by a time period of 2 hours (1 point)
• On-site thermal and/or electricity storage: demonstrate that strategy reduces on-peak load by at least 10% as compared to peak electrical demand (1 point)
• Grid resilience technologies: project served by utilities with resilience programs in place, which leverage strategies such as islanding and part-load operation, automatically achieve this credit (1 point)

Include installed technology in the Current Facilities Requirements and Operations and Maintenance Plan. Include load flexibility and management strategies and installed technologies in the building systems manual.

Contact local utility representatives to discuss participation in future DR programs and to inform utility of building load flexibility and management strategies."
Campus Applicable
No
Internationally Applicable:
No
See all forum discussions about this credit »

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LEEDuser expert

Marcus Sheffer

7group / Energy Opportunities
LEED Fellow

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USGBC logo

© Copyright U.S. Green Building Council, Inc. All rights reserved.

Requirements

Evaluate building systems and equipment for participation in a demand response program. On-site electricity generation does not meet the intent of this credit.

Case 1. Demand Response Program Available and Participation (1 point)
Participate in an existing demand response (DR) program and complete the following activities.
  • Have in place a system with the capability for real-time, fully automated DR based on external initiation by a DR program provider. Semi-automated DR may be utilized in practice.
  • Enroll in a minimum one-year DR participation amount contractual commitment with a qualified DR program provider, with the intention of multiyear renewal, for at least 10% of the annual on-peak electricity demand. On-peak demand is based on electric utility bills with an on-peak demand period defined by the local utility. The on-peak demand may vary based on the utility climate and pricing structures.
  • Develop a comprehensive plan for meeting the contractual commitment during a Demand Response event.
  • Include the DR processes in the current facilities requirements and operations and maintenance plan.
  • Initiate at least one full test of the DR plan.
OR
Case 2. Demand Response Capable Building (1 point)
  • Have infrastructure in place to take advantage of future demand response programs or dynamic, real-time pricing programs and complete the following activities. Develop a comprehensive plan for shedding at least 10% of the annual on-peak electricity demand. Peak demand is based on electric utility bills.
  • Include the DR processes in the current facilities requirements and operations and maintenance plan.
  • Initiate at least one full test of the DR plan as part of the building commissioning program.
  • Contact local utility representatives to discuss participation in future DR programs.
OR
Case 3: Load Flexibility and Management Strategies (1 point)
Analyze the building’s annual load shape and peak load based as calculated for EA prerequisite Minimum Energy Performance. Review the regional grid load profile using the metric of peak load or peak carbon emissions. The U.S. Environmental Protection Agency’s (EPA) AVoided Emissions and geneRation Tool (AVERT) provides regional grid emissions data; local utilities may also provide this data.

Coordinate review of building load shape and peak load with review of the regional grid profile to identify the best value load management strategies that the building can provide.

Implement one or more of the load flexibility and management strategies described below. All projects must install interval recording meters and have equipment capable of accepting an external signal.

Load Flexibility and Management Strategies:
  • Peak Load Optimization: demonstrate that strategy reduces on-peak load by at least 10% as compared to peak electrical demand (1 point)
  • Flexible Operating Scenarios: demonstrate that strategy moves at least 10% of peak load by a time period of 2 hours (1 point)
  • On-site thermal and/or electricity storage: demonstrate that strategy reduces on-peak load by at least 10% as compared to peak electrical demand (1 point)
  • Grid resilience technologies: project served by utilities with resilience programs in place, which leverage strategies such as islanding and part-load operation, automatically achieve this credit (1 point)
Include load flexibility and management strategies and installed technologies in the Facilities Requirements and Operations Maintenance Plan.

Contact local utility representatives to discuss participation in future DR programs and to inform utility of building load flexibility and management strategies.

In the end, LEED is all about documentation. LEEDuser’s Documentation Toolkit, for premium members only, saves you time and helps you avoid mistakes with:

  • Calculators to help assess credit compliance.
  • Tracking spreadsheets for materials purchases.
  • Spreadsheets and forms to give to subs and other team members.
  • Guidance documents on arcane LEED issues.
  • Sample templates to help guide your narratives and LEED Online submissions.
  • Examples of actual submissions from certified LEED projects.

LEEDuser expert

Marcus Sheffer

7group / Energy Opportunities
LEED Fellow

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