Market Framework for Energy Efficiency and Renewable Energy Clause Samples

Market Framework for Energy Efficiency and Renewable Energy. Provision of consultants’ services and Training to the Energy Agency, AD MEPSO and MBDP for: 1. The design and implementation of policies and secondary legislation on the inclusion of renewable energy in the electricity sector, and the streamlining of permitting processes; 2. the development of a sustainable pipeline of potential Renewable Energy Investments and Energy Efficiency Investments for the SEFF and development of a stakeholder management strategy for such investments; and 3. project monitoring and evaluation, information dissemination and Project administration.

Related to Market Framework for Energy Efficiency and Renewable Energy

  • Energy Efficiency The contractor shall comply with all mandatory standards and policies relating to energy efficiency which are contained in the energy conservation plan issued in compliance with the Energy Policy and Conservation Act (Pub.L. 94-163) for the State in which the work under this contract is performed.

  • Energy Cooperation shall focus on: (a) renewable energy; (b) promoting the saving of energy; (c) applied research relating to networks of databases linking the two Parties' economic and social operators; (d) backing efforts to modernise and develop energy networks and the interconnection of such networks with Community networks.

  • Logistics The Client shall arrange their own transportation and accommodation, unless Client and Performer agree otherwise. If requested, the Performer shall arrange transport within Ostrava, and provide accommodation in a hotel.

  • Financial Management System Subrecipient shall establish and maintain a sound financial management system, based upon generally accepted accounting principles. Contractor’s system shall provide fiscal control and accounting procedures that will include the following: i. Information pertaining to tuition rates, payments, and educational assistance payments; and

  • Electric Storage Resources Developer interconnecting an electric storage resource shall establish an operating range in Appendix C of its LGIA that specifies a minimum state of charge and a maximum state of charge between which the electric storage resource will be required to provide primary frequency response consistent with the conditions set forth in Articles 9.5.5, 9.5.5.1, 9.5.5.2, and 9.5.5.3 of this Agreement. Appendix C shall specify whether the operating range is static or dynamic, and shall consider (1) the expected magnitude of frequency deviations in the interconnection; (2) the expected duration that system frequency will remain outside of the deadband parameter in the interconnection; (3) the expected incidence of frequency deviations outside of the deadband parameter in the interconnection; (4) the physical capabilities of the electric storage resource; (5) operational limitations of the electric storage resources due to manufacturer specification; and (6) any other relevant factors agreed to by the NYISO, Connecting Transmission Owner, and Developer. If the operating range is dynamic, then Appendix C must establish how frequently the operating range will be reevaluated and the factors that may be considered during its reevaluation. Developer’s electric storage resource is required to provide timely and sustained primary frequency response consistent with Article 9.5.5.2 of this Agreement when it is online and dispatched to inject electricity to the New York State Transmission System and/or receive electricity from the New York State Transmission System. This excludes circumstances when the electric storage resource is not dispatched to inject electricity to the New York State Transmission System and/or dispatched to receive electricity from the New York State Transmission System. If Developer’s electric storage resource is charging at the time of a frequency deviation outside of its deadband parameter, it is to increase (for over-frequency deviations) or decrease (for under-frequency deviations) the rate at which it is charging in accordance with its droop parameter. Developer’s electric storage resource is not required to change from charging to discharging, or vice versa, unless the response necessitated by the droop and deadband settings requires it to do so and it is technically capable of making such a transition.