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DTSTART:20260308T030000
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DTSTART:20261101T010000
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DTSTAMP:20260721T115416Z
UID:857688A3-E87B-4769-AED6-7FB558FAEA91
DTSTART;TZID=America/New_York:20260723T120000
DTEND;TZID=America/New_York:20260723T130000
DESCRIPTION:The global transition toward a carbon-neutral energy ecosystem 
 has positioned green hydrogen as a cornerstone technology for deep decarbo
 nization across industry\, transportation\, and power systems. While water
  electrolysis powered by renewable energy sources offers a sustainable hyd
 rogen pathway\, its large-scale and cost-effective deployment critically d
 epends on advanced power electronics converters capable of managing the va
 riability and intermittency of renewable energy.\n\nThis lecture examines 
 the fundamental and practical role of power electronics in enabling effici
 ent\, reliable\, and economically viable green hydrogen production. It exp
 lores converter topologies—including AC–DC rectifiers\, DC–DC conver
 ters\, and grid-interfacing inverters—and their impact on electrolyzer p
 erformance\, system efficiency\, power quality\, and reliability. Advanced
  control and modulation strategies are discussed to address grid integrati
 on challenges\, improve dynamic response\, and extend electrolyzer lifetim
 e. The lecture also evaluates techno-economic considerations\, environment
 al benefits\, and industrial case studies from large-scale green hydrogen 
 installations\, providing valuable insight into real-world\nimplementation
 .\n\nSpeaker(s): \, Sanjeet Dwivedi \n\nVirtual: https://events.vtools.iee
 e.org/m/567627
LOCATION:Virtual: https://events.vtools.ieee.org/m/567627
ORGANIZER:john.noon@ieee.org
SEQUENCE:16
SUMMARY:Power Electronics as a Key Enabler for High-Efficiency Green Hydrog
 en Production
URL;VALUE=URI:https://events.vtools.ieee.org/m/567627
X-ALT-DESC:Description: &lt;br /&gt;&lt;p&gt;The global transition toward a carbon-neut
 ral energy ecosystem has positioned green hydrogen as a cornerstone techno
 logy for deep decarbonization across industry\, transportation\, and power
  systems. While water electrolysis powered by renewable energy sources off
 ers a sustainable hydrogen pathway\, its large-scale and cost-effective de
 ployment critically depends on advanced power electronics converters capab
 le of managing the variability and intermittency of renewable energy.&amp;nbsp
 \;&lt;/p&gt;\n&lt;p&gt;This lecture examines the fundamental and practical role of pow
 er electronics in enabling efficient\, reliable\, and economically viable 
 green hydrogen production. It explores converter topologies&amp;mdash\;includi
 ng AC&amp;ndash\;DC rectifiers\, DC&amp;ndash\;DC converters\, and grid-interfacin
 g inverters&amp;mdash\;and their impact on electrolyzer performance\, system e
 fficiency\, power quality\, and reliability. Advanced control and modulati
 on strategies are discussed to address grid integration challenges\, impro
 ve dynamic response\, and extend electrolyzer lifetime. The lecture also e
 valuates techno-economic considerations\, environmental benefits\, and ind
 ustrial case studies from large-scale green hydrogen installations\, provi
 ding valuable insight into real-world&lt;br&gt;implementation.&lt;/p&gt;
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