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DTSTAMP:20230126T222948Z
UID:2BB776B7-7833-4074-8D37-ECA2F60A9E54
DTSTART;TZID=America/New_York:20230126T153000
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DESCRIPTION:Technology Development for Grids with 100% Inverter-Based Resou
 rces – Challenges and Success Stories\n\nModern wind\, solar\, and batte
 ry systems have been designed to operate in grids with high penetration of
  conventional synchronous generation. In the coming years\, applications o
 f these technologies may require periods of operation with scarce penetrat
 ion of conventional generation\, requiring the development of newer “gri
 d-forming” capabilities from these historically “grid-following” res
 ources. This presentation will include a summary of the technology gaps wi
 th inverter-based (power electronics) resources\, recent grid-forming batt
 ery technology deployment in microgrid/blackstart applications\, and recen
 t technology developments on applying grid-forming capabilities to wind. F
 ree food will be provided!\n\nDustin Howard graduated from Georgia Tech wi
 th a PhD in Electrical Engineering in 2013. He joined GE Energy Consulting
  in 2013\, where he presently leads aspects of grid interconnection studie
 s for wind projects\, new technology development\, converter control desig
 n\, and intellectual property development. He presently leads new technolo
 gy development efforts related to grid-forming.\n\nCo-sponsored by: Genera
 l Electric\n\nRoom: C241\, Bldg: Van Leer\, 777 Atlantic Dr NW\, Atlanta\,
  Georgia\, United States\, 30313
LOCATION:Room: C241\, Bldg: Van Leer\, 777 Atlantic Dr NW\, Atlanta\, Georg
 ia\, United States\, 30313
ORGANIZER:kagarwal37@gatech.edu
SEQUENCE:1
SUMMARY:IEEE PES @ GT - GE
URL;VALUE=URI:https://events.vtools.ieee.org/m/344765
X-ALT-DESC:Description: &lt;br /&gt;&lt;p&gt;&lt;strong&gt;Technology Development for Grids w
 ith 100% Inverter-Based Resources &amp;ndash\; Challenges and Success Stories&lt;
 /strong&gt;&lt;/p&gt;\n&lt;p aria-hidden=&quot;true&quot;&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;p&gt;Modern wind\, solar\, 
 and battery systems have been designed to operate in grids with high penet
 ration of conventional synchronous generation.&amp;nbsp\; In the coming years\
 , applications of these technologies may require periods of operation with
  scarce penetration of conventional generation\, requiring the development
  of newer &amp;ldquo\;grid-forming&amp;rdquo\; capabilities from these historicall
 y &amp;ldquo\;grid-following&amp;rdquo\; resources.&amp;nbsp\; This presentation will 
 include a summary of the technology gaps with inverter-based (power electr
 onics) resources\, recent grid-forming battery technology deployment in mi
 crogrid/blackstart applications\, and recent technology developments on ap
 plying grid-forming capabilities to wind. Free food will be provided!&lt;/p&gt;\
 n&lt;p aria-hidden=&quot;true&quot;&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;p&gt;&lt;strong&gt;Dustin Howard&amp;nbsp\;&lt;/stron
 g&gt;graduated from Georgia Tech with a PhD in Electrical Engineering in 2013
 &lt;strong&gt;.&amp;nbsp\;&amp;nbsp\;&lt;/strong&gt;He&lt;strong&gt;&amp;nbsp\;&lt;/strong&gt;joined GE Energy
  Consulting in 2013\, where he presently leads aspects of grid interconnec
 tion studies for wind projects\, new technology development\, converter co
 ntrol design\, and intellectual property development.&amp;nbsp\; He presently 
 leads new technology development efforts related to grid-forming.&lt;/p&gt;
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