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DTSTART:20200308T030000
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DTSTART:20201101T010000
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BEGIN:VEVENT
DTSTAMP:20200929T184743Z
UID:2E027008-4509-4D2E-B84C-B53B3D68985E
DTSTART;TZID=Canada/Eastern:20200707T180000
DTEND;TZID=Canada/Eastern:20200707T193000
DESCRIPTION:A novel Maximum Power Point Tracking (MPPT) technique for photo
 voltaic (PV) solar panels will be presented. Originally\, current sensing 
 is used for MPPY\, however current sensors are costly components. They als
 o require a signal conditioning circuitry to reduce the noise and conditio
 n the signal to be sampled and used by the controller. This method takes a
 dvantage of the non-linearity of the I-V curve of the solar panel to find 
 the MPP. By injecting high-frequency perturbation signals and monitoring t
 he system behavior current sensing used for controlling of MPPT is elimina
 ted. This elimination can reduce the cost of MPPT circuitry. The proposed 
 method also shows a very fast tracking response due to the use of high-fre
 quency signals instead of relying on low frequency and DC signals which ar
 e used in the traditional methods. Numerical analysis\, simulation results
 \, and experimental results verify the feasibility of the proposed techniq
 ue will be shown.\n\nCo-sponsored by: IEEE Ottawa Section PES Chapter\n\nS
 peaker(s): Mr. Mahdi Tude Ranjbar\, \n\nOnline webinar. All registered att
 endees will receive an email notice on how to sign in to the webinar one d
 ay prior\, Ottawa\, Ontario\, Canada
LOCATION:Online webinar. All registered attendees will receive an email not
 ice on how to sign in to the webinar one day prior\, Ottawa\, Ontario\, Ca
 nada
ORGANIZER:ottawapels@gmail.com
SEQUENCE:9
SUMMARY:Webinar: A Novel Maximum Power Point Tracking (MPPT) Technique for 
 Photovoltaic Solar Panels
URL;VALUE=URI:https://events.vtools.ieee.org/m/233724
X-ALT-DESC:Description: &lt;br /&gt;&lt;p&gt;&lt;span style=&quot;font-weight: 400\;&quot;&gt;A novel M
 aximum Power Point Tracking (MPPT) technique for photovoltaic (PV) solar p
 anels will be presented. Originally\, current sensing is used for MPPY\, h
 owever current sensors are costly components. They also require a signal c
 onditioning circuitry to reduce the noise and condition the signal to be s
 ampled and used by the controller.&amp;nbsp\; This method takes advantage of t
 he non-linearity of the I-V curve of the solar panel to find the MPP. By i
 njecting high-frequency perturbation signals and monitoring the system beh
 avior current sensing used for controlling of MPPT is eliminated. This eli
 mination can reduce the cost of MPPT circuitry. The proposed method also s
 hows a very fast tracking response due to the use of high-frequency signal
 s instead of relying on low frequency and DC signals which are used in the
  traditional methods. Numerical analysis\, simulation results\, and experi
 mental results verify the feasibility of the proposed technique will be sh
 own.&lt;/span&gt;&lt;/p&gt;
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