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DTSTAMP:20250522T170027Z
UID:F5FA12AF-4C3E-4E6D-8B5D-067965552B16
DTSTART;TZID=America/Denver:20250522T093000
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DESCRIPTION:The number of power electronics converters connected to electri
 cal networks has been growing exponentially as they are part of all new ge
 neration connected to the grid. While the rapid control and fast electroni
 c switching available with this technology offer flexibility in network op
 eration\, the dynamic interactions between several of them threaten the op
 erational stability of the transmission grid is a concern. It is required 
 to develop a methodology for identifying the risks associated with the sta
 bility and control interaction before a new power electronic device (e.g. 
 Windfarm\, interconnector\, STATCOM) is introduced to the network\n\nThe t
 alk will focus on an analytical framework in impedance domain to quantify 
 the interaction between the new plant and the rest of the network for sett
 ing additional grid connection study specifications which will include det
 ail technical study to check and mitigate the risks associated with new po
 wer electronics interfaced generation. The framework developed is to suppo
 rt MMC technology\, control delay\, system strength and FRT capability of 
 dynamic voltage support devices and windfarm through technical case study 
 conducted at the research group of Bikash Pal at Imperial College London. 
 Future research challenges and opportunities will be highlighted.\n\nSpeak
 er(s): Bikash\, \n\nAgenda: \n- Introduction on PES DL Program\n- Presenta
 tion by Dr. Bikash Pal\, DL speaker\n\nVirtual: https://events.vtools.ieee
 .org/m/481478
LOCATION:Virtual: https://events.vtools.ieee.org/m/481478
ORGANIZER:mi_pa2@yahoo.com
SEQUENCE:48
SUMMARY:Stability Modelling and Analysis of Converter Driven Power System 
URL;VALUE=URI:https://events.vtools.ieee.org/m/481478
X-ALT-DESC:Description: &lt;br /&gt;&lt;p class=&quot;MsoNormal&quot; style=&quot;margin-bottom: 0i
 n\; text-align: justify\; line-height: normal\;&quot;&gt;&lt;span lang=&quot;EN-GB&quot; style=
 &quot;font-family: &#39;Arial&#39;\,sans-serif\; color: black\;&quot;&gt;The number of power el
 ectronics converters connected to electrical networks has been growing exp
 onentially as they are part of all new generation connected to the grid. W
 hile the rapid control and fast electronic switching available with this t
 echnology offer flexibility in network operation\, the dynamic interaction
 s between several of them threaten the operational stability of the transm
 ission grid is a concern. It is required to develop a methodology for iden
 tifying the risks associated with the stability and control interaction be
 fore a new power electronic device (e.g. Windfarm\, interconnector\, STATC
 OM) is introduced to the network &lt;/span&gt;&lt;/p&gt;\n&lt;p class=&quot;MsoNormal&quot; style=&quot;
 margin-bottom: 0in\; text-align: justify\; line-height: normal\;&quot;&gt;&lt;span la
 ng=&quot;EN-GB&quot; style=&quot;font-family: &#39;Arial&#39;\,sans-serif\; color: black\;&quot;&gt;The t
 alk will focus on an analytical framework in impedance domain to quantify 
 the interaction between the new plant and the rest of the network for sett
 ing additional grid connection study specifications which will include det
 ail technical study to check and mitigate the risks associated with new po
 wer electronics interfaced generation. The framework developed is to suppo
 rt MMC technology\, control delay\, system strength and FRT capability of 
 dynamic voltage support devices and windfarm through technical case study 
 conducted at the research group of Bikash Pal at Imperial College London. 
 Future research challenges and opportunities will be highlighted.&lt;/span&gt;&lt;/
 p&gt;&lt;br /&gt;&lt;br /&gt;Agenda: &lt;br /&gt;&lt;ol&gt;\n&lt;li&gt;Introduction on PES DL Program&lt;/li&gt;\
 n&lt;li&gt;Presentation by Dr. Bikash Pal\, DL speaker&lt;/li&gt;\n&lt;/ol&gt;
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