Topic/Matter Intersection

Topic:"Electricity Generation" in M09096

Matter: Approval of a Supply Agreement for Electricity Efficiency and Conservation Activities between EfficiencyOne (E1) and Nova Scotia Power Inc.(NS Power), the establishment of a final agreement between the parties, and approval of a 2020-2022 Demand Side Management (DSM) Resource Plan
13 passages 5 documents

Electricity Generation across all matters →

E-1-1Application 2 passages
Section 42 p. pp. 25-26
"> 23 David Hill Direct Evidence February 27, 2019, page 17, lines 3-5. 24 David Hill Direct Evidence February 27, 2019, page 25, lines 22-25. 25 David Hill Direct Evidence February 27, 2019, page 8, lines 19- 21. 26 supra 27 supra Scoreca...

AI summary Nova Scotia's approved annual DSM energy savings (1.2% of generation) lag behind the national average (2%), leading to missed cost savings from the IRP. The Board's approved levels are declining, denying Nova Scotians opportunities for long-term savings.

Selected Publications p. pp. 331-332
Selected Publications - 2018 Pennsylvania's Solar Future Plan: Strategies to Increase Electricity Generation from In-state Solar Energy. Pennsylvania Department of Environmental Protection, November. Led the VEIC team that conducted the sc...

AI summary Selected publications focus on energy efficiency, solar energy, and policy initiatives from 2000 to 2018. Key contributors include the American Council for an Energy-Efficient Economy (ACEEE), U.S. Department of Energy (DOE), and Vermont Energy Investment Corporation (VEIC). Topics include solar market development, renewable energy assessments, and climate policy recommendations.

E-3E1 (NSPI) RIRs to IR-1 to IR-69 6 passages
Section 52
Generator (GWh) (MW) 2020 33.1 166.9 118.0 1702.9 32.7 2.0 5.0 2021 34.2 179.7 118.9 1745.9 34.6 2.1 5.3 2022 34.7 189.0 118.0 1743.6 35.7 2.1 5.4 Total 102.1 535.6 354.9 5192.4 103.0 2.1 5.2

AI summary The table provides data on generator output in gigawatt-hours (GWh) and megawatts (MW) for the years 2020, 2021, 2022, and totals. It includes values for different categories, such as annual generation and total capacity.

Section 387
,124 MW ≈950,000 Coal, Renewables, Natural Gas Ontario Electricity 27,005 MW ≈13.8 million Nuclear, Natural Gas, Hydroelectric Union Gas N/A N/A - Hydroelectric, Thermal, Diesel- British Columbia (BC Hydro) 11,681 MW >4.4 million Generatio...

AI summary This text presents a comparison of electricity generation capacities and energy sources across various regions including Ontario, British Columbia, California, New York, Vermont, and Maine. It highlights the mix of energy sources such as nuclear, natural gas, hydroelectric, coal, and renewables.

Section 484
ny (PG&E) 3. Los Angeles Department of Water and Power (LADWP) 4. San Diego Gas & Electric (SDG&E) 5. Sacramento Municipal Utility District (SMUD) Electricity Generation Figure 1 below highlights the various forms of generation (both in-st...

AI summary The text lists several electricity providers in California, including PG&E, LADWP, SDG&E, and SMUD, and references figures and tables related to electricity generation, installed capacity, and average retail prices in 2014.

Section 568
ission)  New York State Energy Research and Development Authority (NYSERDA)  New York Independent System Operator (NY-ISO)  Electricity Utilities New York Public Service Commission The New York Public Service Commission regulates and ov...

AI summary The text outlines the regulatory framework in New York, highlighting the roles of the New York Public Service Commission, the NY-ISO, and electric utilities. The Public Service Commission oversees energy conservation programs and released the REV strategy to promote renewable energy and advanced energy management. The NY-ISO manages wholesale electricity markets and provides planning data.

Section 581
tricity generation activities, Vermont does not have a large greenhouse gas commitment from coal, oil or natural gas. The state’s only nuclear power plant closed at the end of 2014. Total Energy Production (MWh) 6,884,910 Hydroelectric 1,2...

AI summary Vermont's electricity generation is primarily from nuclear power, with significant contributions from hydroelectric, wind, and biomass. The state's only nuclear power plant closed in 2014, and Vermont experiences summer peaking with a load of 1,255 MW. Over 85% of generation comes from large-scale generators and CHP units, with most participating in ISO-NE’s forward capacity market.

Section 644
ent/uploads/ambit-energy-massachusetts-electric-map.png 181 We change the way people use energy Date Filed: March 29, 2019 NS Power IR-15 Attachment 1 Page 198 of 206 Electricity Generation Massachusetts is dominated by natural gas generat...

AI summary Massachusetts electricity generation is primarily driven by natural gas, with over 95% coming from large-scale generators and CHP units. The state experiences summer peaking with a load of 13,128 MW, and most generators participate in ISO-New England’s capacity market.

E-9NSPI Evidence 1 passage
Federal Energy Regulatory Commission p. p. 110
Federal Energy Regulatory Commission ISO-NE Exelon Mystic 8&9 Docket Nos. ER18-1509-000, ER19-1639-000 Gas Harmonization Quadrant New York City Generators (New York Independent System Operator) Docket No. ER11-2224-000 Southwest Gas Co. (E...

AI summary A list of Federal Energy Regulatory Commission (FERC) docket numbers and associated entities involved in energy regulation, including ISO-NE, Con Edison, El Paso Natural Gas, and various pipeline companies. Cases cover gas harmonization, electricity generation, and pipeline projects across multiple regions.

E-23NSPI (IG) RIR-1 to RIR-10 - Redacted 3 passages
Cumulative frequency Analysis p. p. 104
Cumulative frequency Analysis NS Power's Cumulative Frequency Analysis assessment of the ELCC of wind generation provides a second method of quantifying the capacity value of wind on the NS Power system. This technique analyzes a set of hi...

AI summary NS Power uses Cumulative Frequency Analysis (CFA) to assess the Effective Load Carrying Capability (ELCC) of wind generation, estimating it at approximately 8% with 90% confidence. This method focuses on peak demand hours and is used alongside the Loss of Load Expectation (LOLE) methodology. The report highlights that more data is needed to improve accuracy, especially with increasing wind capacity.

2020-2022 DSM IG IR-05 Attachment 1 Page 121 of 158 2018 10 Year System Outlook Report Appendix B Page 47 of 84 p. p. 119
2020-2022 DSM IG IR-05 Attachment 1 Page 121 of 158 2018 10 Year System Outlook Report Appendix B Page 47 of 84 PSS/e Load Data 2021LL Case Distri bution Ge neration (MW) Net MW at F. 1. 3.4 199056 59C-STPETERS138.00 1.02 0.21 0.00 1.0 0.2...

AI summary The document presents a table with data on PSS/e Load Data for various locations in 2021LL, including case details, distribution generation in MW, and net MW at different points. The data includes specific values for different locations and cases, indicating load and generation information.

70% p. p. 119
70% PSS/e Load Data 2021SUM Case Distri bution Ge neration (MW) Net MW at Fet Muser Bus # Bus Name MW Mvar Wind Biogas Biomass Hydro Tidal Total х% Est Mvar 199194 1H-WATER_ST 26.400 0.20 0.06 0.00 0.2 0.06 199194 1H-WATER_ST 26.400 3.46 1...

AI summary The text presents a table containing load data from PSS/e for 2021, including details on various buses, their names, and associated generation data such as wind, biogas, biomass, hydro, and tidal energy. The data includes megawatts (MW), megavolt-amperes (Mvar), and other related metrics.

E-24NSPI (NSUARB) RIR-1 to RIR-24 - Redacted 1 passage
Section 129 p. p. 58
Date Filed: May 13, 2019 & lt;sup>1 NS Power 2019 Load Forecast Report, April 30, 2019 (M09191)

AI summary The document references the NS Power 2019 Load Forecast Report, filed on April 30, 2019, as part of a regulatory proceeding. It provides context for load forecasting, which is relevant to planning and resource management in the electricity sector.

Disclaimer: These summaries were generated by AI from the filings they describe. We take care to make them accurate, but errors are possible - and they aren't advice. Only the filings themselves are the record: if you're relying on something here, confirm it against the source documents or the Nova Scotia Energy Board's own record. Full disclaimer →