IEEE Power & Energy Magazine - Grid Edge 2023 - 77

Reprinted from November/December 2019 issue of IEEE Power & Energy magazine
By Julia Matevosyan,
Babak Badrzadeh,
Thibault Prevost,
Eckard Quitmann,
Deepak Ramasubramanian,
Helge Urdal,
Sebastian Achilles,
Jason MacDowell,
Shun Hsien Huang,
Vijay Vital,
Jon O'Sullivan,
and Ryan Quint
©ISTOCKPHOTO.COM/JACKIE NIAM
Grid-Forming
Inverters
I
IN REGIONS SUCH AS HAWAI'I, SOUTH AUSTRALIA,
Tasmania, Texas, and Ireland, power systems are commonly
experiencing instantaneous penetration levels
of inverter-based power sources (IBPSs) such as wind,
solar photovoltaics (PV), and battery storage in excess of
50-60% relative to system demands.
New challenges arise when systems operate with fewer
synchronous generators (SGs) and more IBPSs. The penetration
level of IBPSs at which these challenges occur is
Digital Object Identifier 10.1109/MPE.2019.2933072
Date of current version: 18 October 2019
november/december 2019
Are They the Key for High
Renewable Penetration?
system specifi c and depends on the number of SGs in operation,
their location, and their rating relative to IBPS production
level, the size of the largest credible contingency, the
stability of IBPS control systems, and availability of interconnections.
Analyses by system operators (SOs) such as
1540-7977/19©2019IEEE
ieeepower & energy magazine
77
http://www.ISTOCKPHOTO.COM/JACKIE

IEEE Power & Energy Magazine - Grid Edge 2023

Table of Contents for the Digital Edition of IEEE Power & Energy Magazine - Grid Edge 2023

Contents
IEEE Power & Energy Magazine - Grid Edge 2023 - Cover1
IEEE Power & Energy Magazine - Grid Edge 2023 - Cover2
IEEE Power & Energy Magazine - Grid Edge 2023 - Contents
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IEEE Power & Energy Magazine - Grid Edge 2023 - Cover3
IEEE Power & Energy Magazine - Grid Edge 2023 - Cover4
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