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PRODID:IEEE vTools.Events//EN
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TZID:America/New_York
BEGIN:DAYLIGHT
DTSTART:20260308T030000
TZOFFSETFROM:-0500
TZOFFSETTO:-0400
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DTSTART:20261101T010000
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DTSTAMP:20260726T133036Z
UID:A96DC59A-8F94-4180-A016-5ED1C37F6103
DTSTART;TZID=America/New_York:20260904T130000
DTEND;TZID=America/New_York:20260904T140000
DESCRIPTION:Growing interest in DC power systems has motivated the developm
 ent of DC circuit breakers (DCCBs)\, which can selectively interrupt DC fa
 ults. State-of-the-art DCCBs can be broadly classified into three categori
 es: mechanical circuit breakers\, solid-state circuit breakers\, and hybri
 d circuit breakers. Among these\, hybrid breakers offer a promising tradeo
 ff between on-state losses and fault interruption speed. However\, open qu
 estions remain regarding the reliability\, lifetime\, and cybersecurity of
  hybrid DC breakers and their associated protection systems. This talk pre
 sents several recent advancements in hybrid breaker technology\, including
  novel tripping schemes\, degradation studies\, and intrusion detection al
 gorithms\, which together support the realization of reliable and secure D
 C power systems.\n\nSpeaker(s): Justin\, \n\nVirtual: https://events.vtool
 s.ieee.org/m/567802
LOCATION:Virtual: https://events.vtools.ieee.org/m/567802
ORGANIZER:berzoy@ieee.org
SEQUENCE:8
SUMMARY:Recent Advancements in Hybrid DC Circuit Breakers
URL;VALUE=URI:https://events.vtools.ieee.org/m/567802
X-ALT-DESC:Description: &lt;br /&gt;&lt;p&gt;&lt;span style=&quot;font-size: 11.0pt\; line-heig
 ht: 107%\; font-family: &#39;Calibri&#39;\,sans-serif\; mso-ascii-theme-font: mino
 r-latin\; mso-fareast-font-family: DengXian\; mso-fareast-theme-font: mino
 r-fareast\; mso-hansi-theme-font: minor-latin\; mso-bidi-font-family: &#39;Tim
 es New Roman&#39;\; mso-bidi-theme-font: minor-bidi\; mso-ansi-language: EN-US
 \; mso-fareast-language: ZH-CN\; mso-bidi-language: AR-SA\;&quot;&gt;Growing inter
 est in DC power systems has motivated the development of DC circuit breake
 rs (DCCBs)\, which can selectively interrupt DC faults. State-of-the-art D
 CCBs can be broadly classified into three categories: mechanical circuit b
 reakers\, solid-state circuit breakers\, and hybrid circuit breakers. Amon
 g these\, hybrid breakers offer a promising tradeoff between on-state loss
 es and fault interruption speed. However\, open questions remain regarding
  the reliability\, lifetime\, and cybersecurity of hybrid DC breakers and 
 their associated protection systems. This talk presents several recent adv
 ancements in hybrid breaker technology\, including novel tripping schemes\
 , degradation studies\, and intrusion detection algorithms\, which togethe
 r support the realization of reliable and secure DC power systems.&lt;/span&gt;&lt;
 /p&gt;
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