N-7IESO (PHP) RIR 1 to 15
4 passages
NON-CONFIDENTIAL 38 competitive process and the engagement was approved by the Board of Directors. In 39 September 2025, the contract was extended to continue supporting the organization 40 through March 31, 2027. The extended scope suppor...
AI summary The contract with Port Hawkesbury Paper LP was extended in September 2025 to support transition activities through March 31, 2027, including program management, change management, and planning.
Profile Experienced Managing Consultant in Energy Management and Operational Technology (OT) systems, holding a PhD in Electric Power Engineering from both Politecnico di Torino, Italy, and The University of Manchester, UK, alongside an MS...
AI summary Irinel-sorin is an experienced energy management consultant with PhDs in Electric Power Engineering from Politecnico di Torino, Italy, and the University of Manchester, UK. He has led grid solutions and power system studies for offshore wind, HVDC, and green hydrogen projects at Worley NL, and contributed to the Xlinks Morocco-UK Power Project, focusing on control systems and digital twins.
Managing Consultant – Energy Management & OT Systems IBM Oct 2025 – present Provide consultancy in projects related to AEMS/ADMS, OT systems, control centres, power grid digitalization, renewable integration for TSO, DSOs, ISOs
AI summary IBM provides consultancy services from October 2025 to present, focusing on AEMS/ADMS, OT systems, control centres, power grid digitalization, and renewable integration for TSO, DSOs, and ISOs.
Senior Researcher Institute for Energy Systems - The University of Edinburgh, United Kingdom Jun 2010 – Jun 2012 Project execution: Continuity, security and quality of power supply in future UK grid with renewables penetration, BESS and DS...
AI summary A Senior Researcher at the Institute for Energy Systems, University of Edinburgh, UK, worked on ensuring grid continuity, security, and quality with renewable integration, battery energy storage systems (BESS), and demand-side management (DSM) from 2010-2012, coordinating PhD and MSc students.
N-18Response to Undertakings - Redacted
4 passages
Various Options to Address Resource Deficiency Risks When addressing the identified risks, entities have various tools at their disposal. While the Canadian Analysis identifies additions to transfer capability as one means of addressing ex...
AI summary The document outlines various strategies to address resource deficiency risks, including internal resource development, transmission enhancements, and demand-side management. It emphasizes the need for a balanced approach, considering the impacts of each option, and highlights the importance of reliable generation, cost-allocation mechanisms, and energy storage.
Demand-Response Modeling Demand-response resources were also included in the model as a supply-side resource that could be dynamically scheduled by the model to mitigate resource deficiency events. Like storage resources, demand response w...
AI summary Demand-response resources were modeled as a supply-side resource to mitigate resource deficiency events, with constraints on capacity and energy use. They were deployed after local resources and imports were exhausted and based on LTRA Form A data submissions. Adjustments were made to align reported demand response with actual capabilities.
Resource Scheduling Method The hourly energy margin is then used to model the available energy across the entire North American BPS for all 12 weather years. This is done to consider the energy adequacy in each TPR, with and without transf...
AI summary The resource scheduling method models hourly energy margins across North American BPS for 12 weather years, focusing on energy adequacy within and between TPRs. It prioritizes reliability by scheduling resources within a TPR before relying on transfers, and uses scarcity weighting factors to drive dispatch decisions based on surplus or scarcity rather than cost.
Capacity and Load Data Section - Resource capacity is presented for 2024 and 2033 by resource type. Thermal capacity includes coal, nuclear, single-fuel gas, dual-fuel gas, oil, biomass, geothermal, and other fuels. Variable renewable reso...
AI summary The Capacity and Load Data Section outlines resource capacities for 2024 and 2033, categorizing them into thermal, variable renewable, and energy-limited resources. It provides winter capacities for thermal and hydro resources, nameplate capacities for variable renewables, and summer and winter peak demand figures, including BTM PV but excluding demand response.