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DTSTART:20240310T030000
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DTSTART:20241103T010000
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DTSTAMP:20240525T040131Z
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DTSTART;TZID=America/New_York:20240522T173000
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DESCRIPTION:[]\n\nLearn how to model phased array systems with Phased Array
  Systems Toolbox for RF radar and sonar applications. We will show antenna
  array modeling\, mutual coupling\, array calibration\, beam pattern synth
 esis\, conventional and adaptive beamforming techniques\, and space time a
 daptive processing. At the end\, we will demonstrate the modeling Sonar Ph
 ased arrays for target detection and direction of arrival estimation.\n\nI
 n this presentation\, we will show these capabilities in MATLAB:\n\n- Phas
 ed array design and analysis\n\n- Modeling sub arrays with Sensor Array An
 alyzer App\n- Modeling array calibration\n- Beamforming and array signal p
 rocessing\n\n- Beamforming using conventional techniques\n- Pattern Synthe
 sis with Minimum Variance Optimization\n- Direction of arrival calculation
 \n- Modeling Sonar Phased array applications\n\nSpeaker(s): Darius Subaciu
 s\, \n\nVirtual: https://events.vtools.ieee.org/m/420033
LOCATION:Virtual: https://events.vtools.ieee.org/m/420033
ORGANIZER:jason.e.gaudette@ieee.org
SEQUENCE:10
SUMMARY:Phased Array System Modeling with MATLAB for SONAR Applications
URL;VALUE=URI:https://events.vtools.ieee.org/m/420033
X-ALT-DESC:Description: &lt;br /&gt;&lt;p class=&quot;MsoNormal&quot; style=&quot;text-align: justi
 fy\;&quot;&gt;&lt;img src=&quot;https://events.vtools.ieee.org/vtools_ui/media/display/d4a
 f57f2-4b19-4c7a-888c-6230dbca5a68&quot; alt=&quot;&quot; width=&quot;740&quot; height=&quot;378&quot;&gt;&lt;/p&gt;\n&lt;
 p class=&quot;MsoNormal&quot; style=&quot;text-align: justify\;&quot;&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;p class=&quot;M
 soNormal&quot; style=&quot;text-align: justify\;&quot;&gt;Learn how to model phased array sy
 stems with Phased Array Systems Toolbox for RF radar and sonar application
 s. We will show antenna array modeling\, mutual coupling\, array calibrati
 on\, beam pattern synthesis\, conventional and adaptive beamforming techni
 ques\, and space time adaptive processing. At the end\, we will demonstrat
 e the modeling Sonar Phased arrays for target detection and direction of a
 rrival estimation.&lt;/p&gt;\n&lt;p class=&quot;MsoNormal&quot;&gt;In this presentation\, we wil
 l show these capabilities in MATLAB:&lt;/p&gt;\n&lt;ul style=&quot;margin-top: 0in\;&quot; ty
 pe=&quot;disc&quot;&gt;\n&lt;li class=&quot;MsoListParagraphCxSpFirst&quot; style=&quot;margin-left: 0in\
 ; mso-add-space: auto\; mso-list: l0 level1 lfo1\;&quot;&gt;&lt;span style=&quot;mso-farea
 st-font-family: &#39;Times New Roman&#39;\;&quot;&gt;Phased array design and analysis&lt;/spa
 n&gt;&lt;/li&gt;\n&lt;ul style=&quot;margin-top: 0in\;&quot; type=&quot;circle&quot;&gt;\n&lt;li class=&quot;MsoListP
 aragraphCxSpMiddle&quot; style=&quot;margin-left: 0in\; mso-add-space: auto\; mso-li
 st: l0 level2 lfo1\;&quot;&gt;&lt;span style=&quot;mso-fareast-font-family: &#39;Times New Rom
 an&#39;\;&quot;&gt;Modeling sub arrays with Sensor Array Analyzer App&lt;/span&gt;&lt;/li&gt;\n&lt;li
  class=&quot;MsoListParagraphCxSpMiddle&quot; style=&quot;margin-left: 0in\; mso-add-spac
 e: auto\; mso-list: l0 level2 lfo1\;&quot;&gt;&lt;span style=&quot;mso-fareast-font-family
 : &#39;Times New Roman&#39;\;&quot;&gt;Modeling array calibration&lt;/span&gt;&lt;/li&gt;\n&lt;/ul&gt;\n&lt;li 
 class=&quot;MsoListParagraphCxSpMiddle&quot; style=&quot;margin-left: 0in\; mso-add-space
 : auto\; mso-list: l0 level1 lfo1\;&quot;&gt;&lt;span style=&quot;mso-fareast-font-family:
  &#39;Times New Roman&#39;\;&quot;&gt;Beamforming and array signal processing&lt;/span&gt;&lt;/li&gt;\
 n&lt;ul style=&quot;margin-top: 0in\;&quot; type=&quot;circle&quot;&gt;\n&lt;li class=&quot;MsoListParagraph
 CxSpMiddle&quot; style=&quot;margin-left: 0in\; mso-add-space: auto\; mso-list: l0 l
 evel2 lfo1\;&quot;&gt;&lt;span style=&quot;mso-fareast-font-family: &#39;Times New Roman&#39;\;&quot;&gt;B
 eamforming using conventional techniques&lt;/span&gt;&lt;/li&gt;\n&lt;li class=&quot;MsoListPa
 ragraphCxSpMiddle&quot; style=&quot;margin-left: 0in\; mso-add-space: auto\; mso-lis
 t: l0 level2 lfo1\;&quot;&gt;&lt;span style=&quot;mso-fareast-font-family: &#39;Times New Roma
 n&#39;\;&quot;&gt;Pattern Synthesis with Minimum Variance Optimization&lt;/span&gt;&lt;/li&gt;\n&lt;l
 i class=&quot;MsoListParagraphCxSpMiddle&quot; style=&quot;margin-left: 0in\; mso-add-spa
 ce: auto\; mso-list: l0 level2 lfo1\;&quot;&gt;&lt;span style=&quot;mso-fareast-font-famil
 y: &#39;Times New Roman&#39;\;&quot;&gt;Direction of arrival calculation&lt;/span&gt;&lt;/li&gt;\n&lt;/ul
 &gt;\n&lt;li class=&quot;MsoListParagraphCxSpLast&quot; style=&quot;margin-left: 0in\; mso-add-
 space: auto\; mso-list: l0 level1 lfo1\;&quot;&gt;&lt;span style=&quot;mso-fareast-font-fa
 mily: &#39;Times New Roman&#39;\;&quot;&gt;Modeling Sonar Phased array applications&lt;/span&gt;
 &lt;/li&gt;\n&lt;/ul&gt;
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