Planning for Inertia and Resource Adequacy in a Renewable-rich Power System
Author:
Affiliation:
1. The University of Melbourne,Electrical and Electronic Engineering,Australia
2. FTI Consulting,Melbourne,Australia
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/10372539/10372591/10372655.pdf?arnumber=10372655
Reference17 articles.
1. Planning Framework for BESSs in Microgrids (MGs) Using Linearized AC Power Flow Approach
2. Post 2025 future market program,2020
3. A bi-level model for optimal bidding of a multi-carrier technical virtual power plant in energy markets
4. Economically based Distributed Battery Energy Storage Systems Planning in Microgrids
5. Minimum Synchronous Inertia Requirement of Renewable Power Systems
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