BEGIN:VCALENDAR
VERSION:2.0
PRODID:IEEE vTools.Events//EN
CALSCALE:GREGORIAN
BEGIN:VTIMEZONE
TZID:America/Lima
BEGIN:DAYLIGHT
DTSTART:20380118T221407
TZOFFSETFROM:-0500
TZOFFSETTO:-0500
RRULE:FREQ=YEARLY;BYDAY=3MO;BYMONTH=1
TZNAME:-05
END:DAYLIGHT
BEGIN:STANDARD
DTSTART:19940331T230000
TZOFFSETFROM:-0400
TZOFFSETTO:-0500
RRULE:FREQ=YEARLY;BYDAY=-1TH;BYMONTH=3
TZNAME:-05
END:STANDARD
END:VTIMEZONE
BEGIN:VEVENT
DTSTAMP:20200714T023400Z
UID:53DEC1F9-3525-4AFE-9284-1A5A4B4C150F
DTSTART;TZID=America/Lima:20200710T120000
DTEND;TZID=America/Lima:20200710T130000
DESCRIPTION:Tema: Frequency Control in Low Inertia Systems\n\nThe total sys
 tem inertia (H) is the primary source of electricity system robustness to 
 frequency disturbances which arise due to an imbalance of generation and d
 emand. The traditional large synchronous generators directly connected to 
 the grid are the main sources of inertia\, and they play an important role
  in limiting rate of change of frequency (ROCOF) and provide a natural res
 ponse to the system frequency changes following an unscheduled loss of gen
 eration or demand from the power system.\n\nThe transition to a low carbon
  society is the driving force pushing the traditional power system to incr
 ease the volume of non-synchronous technologies which mainly use power con
 verters (PCs) as an interface to the power network. The PCs decoupled the 
 primary source from the power network\, as a consequence are not able to c
 ontribute with “natural” inertia in the same way as classical synchron
 ous generators. During a system frequency disturbance (SFD)\, the system f
 requency will change at a rate initially determined by the total system in
 ertia (H). The inertial response of the system might be negatively affecte
 d with devastating consequences for system security and reliability.\n\nTh
 e objective of this seminar is to present the fundamental aspects about sy
 stem Frequency Control in Low Inertia Systems.\n\nThis seminar has special
  emphasis on non-synchronous technologies\, mainly using power converters 
 (PCs): (a) High Voltage DC (HVDC) and (b) Wind Power Integration and consi
 ders the implications on frequency control.\n\nCo-sponsored by: IEEE PES P
 erú\n\nSpeaker(s): Prof F Gonzalez-Longatt\, PhD\, \n\nAgenda: \nFrequenc
 y Control in Low Inertia Systems\n\nRoom:   Meeting number:         130 34
 5 2798    \, Bldg:    https://ieeemeetings.webex.com/ieeemeetings/j.php?MT
 ID=m3d808ea836316388a5e12b033df23483   \, Webex:\,      Meeting password: 
      vEcq8gupA94     \, Lima\, Lima\, Peru
LOCATION:Room:   Meeting number:         130 345 2798    \, Bldg:    https:
 //ieeemeetings.webex.com/ieeemeetings/j.php?MTID=m3d808ea836316388a5e12b03
 3df23483   \, Webex:\,      Meeting password:      vEcq8gupA94     \, Lima
 \, Lima\, Peru
ORGANIZER:lisien.leon@ieee.org
SEQUENCE:4
SUMMARY:Frequency Control in Low Inertia Systems
URL;VALUE=URI:https://events.vtools.ieee.org/m/234039
X-ALT-DESC:Description: &lt;br /&gt;&lt;p&gt;Tema: Frequency Control in Low Inertia Sys
 tems&lt;/p&gt;\n&lt;p&gt;The total system inertia (&lt;em&gt;H&lt;/em&gt;) is the primary source o
 f electricity system robustness to frequency disturbances which arise due 
 to an imbalance of generation and demand. The traditional large synchronou
 s generators directly connected to the grid are the main sources of inerti
 a\, and they play an important role in limiting rate of change of frequenc
 y (ROCOF) and provide a natural response to the system frequency changes f
 ollowing an unscheduled loss of generation or demand from the power system
 .&lt;/p&gt;\n&lt;p&gt;The transition to a low carbon society is the driving force push
 ing the traditional power system to increase the volume of &lt;em&gt;non-synchro
 nous technologies&lt;/em&gt; which mainly use power converters (PCs) as an inter
 face to the power network. The PCs decoupled the primary source from the p
 ower network\, as a consequence are not able to contribute with &amp;ldquo\;na
 tural&amp;rdquo\; inertia in the same way as classical synchronous generators.
 &amp;nbsp\; &amp;nbsp\;During a system frequency disturbance (SFD)\, the system fr
 equency will change at a rate initially determined by the total system ine
 rtia (&lt;em&gt;H&lt;/em&gt;). The inertial response of the system might be negatively
  affected with devastating consequences for system security and reliabilit
 y.&lt;/p&gt;\n&lt;p&gt;The objective of this seminar is &lt;em&gt;to present the fundamental
  aspects about system Frequency Control in Low Inertia Systems&lt;/em&gt;.&lt;/p&gt;\n
 &lt;p&gt;This seminar has special emphasis on non-synchronous technologies\, mai
 nly using power converters (PCs): (a) High Voltage DC (HVDC) and (b) Wind 
 Power Integration and considers the implications on frequency control.&lt;/p&gt;
 &lt;br /&gt;&lt;br /&gt;Agenda: &lt;br /&gt;&lt;p&gt;Frequency Control in Low Inertia Systems&lt;/p&gt;
END:VEVENT
END:VCALENDAR

