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DTSTART:19451014T230000
TZOFFSETFROM:+0630
TZOFFSETTO:+0530
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DTSTAMP:20260902T093310Z
UID:BB7A2E5A-C303-46AE-9351-618527CD8EEF
DTSTART;TZID=Asia/Kolkata:20260905T190000
DTEND;TZID=Asia/Kolkata:20260905T203000
DESCRIPTION:IEEE Circuits and Systems Society Hyderabad Chapter presents on
 line DL titled &quot;Smale Paradox based on Chua Corsage Memristor Neurons and 
 Edge of Chaos&quot; on 5th September 2026.\n\nSpeaker: Prof. Herbert Ho-Ching I
 u\, The University of Western Australia\n\nMode: Online\n\nJoining Link: h
 ttps://bit.ly/IEEECASHYD_DL\n\nAbstract: Chua corsage memristor (CCM) is c
 haracterized by its local activity and can be used to construct neuron cir
 cuits. Edge of chaos is a subset of the locally active domain\, which is r
 esponsible for the emergence of complexity and neuromorphic behaviors. Whe
 n two identical resting “dead” CCM neurons poised on the edge of chaos
  are coupled through a linear passive resistor\, these two neurons can be 
 activated and a couple of oscillations appear. This phenomenon is referred
  to as the Smale paradox\, which has not been observed from hardware circu
 its. In this talk\, we will address this issue by proposing the stability 
 criterion of the two-port coupled system using the small-signal analysis m
 ethod and then derives an emergence condition of the Smale paradox based o
 n two coupled “dead” CCM neurons in terms of the parameter value range
 s. The experimental results confirm the reproduction of the Smale paradox 
 and reveal the effect of the coupling resistance on the dynamics of the sy
 stem.\n\n[]\n\nVirtual: https://events.vtools.ieee.org/m/575392
LOCATION:Virtual: https://events.vtools.ieee.org/m/575392
ORGANIZER:jayanthi@ieee.org
SEQUENCE:16
SUMMARY:IEEE CASS Hyderabad Chapter DL &quot;Smale Paradox based on Chua Corsage
  Memristor Neurons and Edge of Chaos&quot;
URL;VALUE=URI:https://events.vtools.ieee.org/m/575392
X-ALT-DESC:Description: &lt;br /&gt;&lt;p style=&quot;text-align: justify\;&quot;&gt;IEEE Circuit
 s and Systems Society Hyderabad Chapter presents online DL titled &quot;&lt;strong
 &gt;Smale Paradox based on Chua Corsage Memristor Neurons and Edge of Chaos&quot;&amp;
 nbsp\;&lt;/strong&gt;on 5th September 2026.&lt;/p&gt;\n&lt;p style=&quot;text-align: justify\;
 &quot;&gt;&lt;strong&gt;Speaker:&amp;nbsp\;&lt;/strong&gt;Prof. Herbert Ho-Ching Iu\, The Universi
 ty of Western Australia&lt;/p&gt;\n&lt;p&gt;&lt;strong&gt;Mode:&lt;/strong&gt; Online&lt;/p&gt;\n&lt;p&gt;&lt;str
 ong&gt;Joining Link:&amp;nbsp\;&lt;/strong&gt;https://bit.ly/IEEECASHYD_DL&lt;/p&gt;\n&lt;p styl
 e=&quot;text-align: justify\;&quot;&gt;&lt;strong&gt;Abstract:&amp;nbsp\;&lt;/strong&gt;Chua corsage me
 mristor (CCM) is characterized by its local activity and can be used to co
 nstruct neuron circuits. Edge of chaos is a subset of the locally active d
 omain\, which is responsible for the emergence of complexity and neuromorp
 hic behaviors. When two identical resting &amp;ldquo\;dead&amp;rdquo\; CCM neurons
  poised on the edge of chaos are coupled through a linear passive resistor
 \, these two neurons can be activated and a couple of oscillations appear.
  This phenomenon is referred to as the Smale paradox\, which has not been 
 observed from hardware circuits. In this talk\, we will address this issue
  by proposing the stability criterion of the two-port coupled system using
  the small-signal analysis method and then derives an emergence condition 
 of the Smale paradox based on two coupled &amp;ldquo\;dead&amp;rdquo\; CCM neurons
  in terms of the parameter value ranges. The experimental results confirm 
 the reproduction of the Smale paradox and reveal the effect of the couplin
 g resistance on the dynamics of the system.&lt;/p&gt;\n&lt;p style=&quot;text-align: jus
 tify\;&quot;&gt;&lt;img src=&quot;https://events.vtools.ieee.org/vtools_ui/media/display/f
 95dca41-2809-493c-ba88-9b7f9b140478&quot; alt=&quot;&quot; width=&quot;1080&quot; height=&quot;1080&quot;&gt;&lt;/p
 &gt;
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