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"sections":498},{"id":187,"description":15,"showPageHeader":72,"backgroundColor":497,"image":15},"primary",[499,513,748],{"id":500,"__component":501,"componentVariation":502,"styles":15,"header":15,"body":503},57,"content.content","Content Image Left",{"id":504,"title":505,"body":39,"containerWidth":15,"buttonGroup":506,"media":15},56,"Conference program",{"id":507,"variation":508,"button":509},18,"Buttons Center",[510],{"id":507,"label":511,"size":67,"color":68,"style":15,"icon":69,"iconPosition":70,"url":512,"newWindow":72,"downloadable":15,"shape":15},"CCTA 2025 program on Paperplaza","https://css.paperplaza.net/conferences/conferences/CCTA25/program/CCTA25_ProgramAtAGlanceWeb.html",{"id":28,"__component":514,"componentVariation":515,"contactsVariation":516,"styles":15,"header":15,"sessionsGroup":517},"content.sessions","Sessions Base","Card Contact Base",[518],{"id":28,"groupTitle":519,"sessions":520},"Plenary talks",[521,565,609,644,698],{"id":168,"session":522},{"id":28,"title":523,"teaser":524,"body":525,"createdAt":526,"updatedAt":527,"publishedAt":528,"url_path_id":529,"contacts":530,"url_path":564},"A glimpse into the automation & controls powering ASML’s EUV Light Sources - the world’s most important company you’ve never heard of","\u003Cp>\u003Cspan style=\"background-color:oklch(100);color:oklch(0.200);\">The way Extreme Ultraviolet (EUV) Light is generated is nothing short of amazing: Tin droplets about 30 micrometer in diameter are delivered into a vacuum chamber while an advanced tracking system ensures that two CO2 lasers consistently hit each droplet with sub-micrometer accuracy.\u003C/span>\u003C/p>","\u003Cp>\u003Cspan style=\"background-color:oklch(100);color:oklch(0.200);\">First, to expand the droplet into a disk-like shape to then be blasted again by a second even more powerful laser pulse to generate EUV light with a wavelength of just 13.5nm. And this process is repeated again and again at a rate of about 50,000 times per second. None of this would be possible without the deployment of numerous control loops as well as automation and setup routines to ensure position and timing accuracies on the order of nanometers and nanoseconds. In her plenary session, Liane will share her insights into the transformative role of automation and controls used in EUV Light Sources used for producing the world’s most advanced microchips, offering a glimpse into the complexity ASML’s EUV Light Sources that are pushing the boundary of real-time precision and reliability.\u003C/span>\u003C/p>","2025-01-16T22:23:57.182Z","2025-01-17T08:35:55.627Z","2025-01-17T08:35:55.617Z","34",[531],{"id":532,"name":533,"committee":15,"position":15,"affiliation":453,"email":15,"biography":534,"createdAt":535,"updatedAt":536,"url_path_id":537,"contactPhoto":538,"socialLinks":562,"url_path":563},16,"Liane Matthes","\u003Cp>Liane Matthes is a Principal System Engineer at the San Diego location of ASML, a leader in semiconductor manufacturing technology that specializes in lithography systems used for producing the world’s most advanced microchips. Central to its innovation is extreme ultraviolet (EUV) lithography, a cutting edge tool that uses light with a wavelength of just 13.5nm to etch incredibly small and precise features onto silicon wafers. EUV is essential for enabling smaller, faster and more energy efficient chips that power technologies such as smartphones, AI and high-performance computing.\u003C/p>\u003Cp>In her current role as Dose System Engineer of the EUV Light Source, Liane is responsible for leading the development of innovative solutions that optimize the stability of the EUV Light. With almost a decade of experience, she collaborates with cross-disciplinary teams focused on integrating automation techniques with controls to enable the next generation EUV Light Sources.\u003C/p>\u003Cp>Liane holds a Master’s and Ph.D. degree in Mechanical Engineering from the University of California, San Diego, where her research focused on experimental studies of the hard-disk interface from a tribological and control point of view for flying heights below 2nm, and a Bachelor’s degree in Industrial Engineering from the Technical University of Dresden, Germany. Liane is passionate about bringing value to ASML’s customers by pushing the boundary of EUV, and enjoys contributing to a collaborative and innovative engineering environment among her peers and emerging professionals.With almost a decade of experience, she collaborates with cross-disciplinary teams focused on integrating automation techniques with controls to enable next-generation EUV Light Sources.EUV is essential for enabling smaller, faster, and more energy-efficient chips that power technologies such as smartphones, AI, and high-performance computing.\u003C/p>","2024-11-27T11:01:45.510Z","2025-01-16T15:06:31.495Z","27",{"id":539,"name":540,"alternativeText":15,"caption":15,"width":461,"height":461,"formats":541,"hash":557,"ext":51,"mime":54,"size":558,"url":559,"previewUrl":15,"provider":23,"provider_metadata":15,"createdAt":560,"updatedAt":561},48,"LianeMatthes.jpeg",{"small":542,"medium":547,"thumbnail":552},{"ext":51,"url":543,"hash":544,"mime":54,"name":545,"path":15,"size":546,"width":324,"height":324},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/small_Liane_Matthes_2876e8e7ad.jpeg","small_Liane_Matthes_2876e8e7ad","small_LianeMatthes.jpeg",29.7,{"ext":51,"url":548,"hash":549,"mime":54,"name":550,"path":15,"size":551,"width":331,"height":331},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/medium_Liane_Matthes_2876e8e7ad.jpeg","medium_Liane_Matthes_2876e8e7ad","medium_LianeMatthes.jpeg",52.52,{"ext":51,"url":553,"hash":554,"mime":54,"name":555,"path":15,"size":556,"width":376,"height":376},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/thumbnail_Liane_Matthes_2876e8e7ad.jpeg","thumbnail_Liane_Matthes_2876e8e7ad","thumbnail_LianeMatthes.jpeg",5.53,"Liane_Matthes_2876e8e7ad",50.77,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/Liane_Matthes_2876e8e7ad.jpeg","2024-11-27T11:01:16.031Z","2025-01-16T10:01:13.321Z",[],"-20","-26",{"id":137,"session":566},{"id":5,"title":567,"teaser":568,"body":569,"createdAt":570,"updatedAt":571,"publishedAt":572,"url_path_id":573,"contacts":574,"url_path":608},"Industrial control systems: a retrospective and the road ahead","\u003Cp>It is about half a century since the first microcomputer-based controllers were introduced, and this year we are a quarter of a century into the new millennium. Perhaps the time is ripe to reflect on the development so far of industrial control systems, and to try to predict the future progress.\u003Cbr>&nbsp;\u003C/p>","\u003Cp>Soon after the advent of the microcontroller the first so-called distributed control systems (DCS) came into the market, which was largely based on decentralized proportional–integral–derivative (PID) controllers. The linear model predictive controller (DCS) was also introduced in the 1970s and used initially in the petrochemical industry. PID and linear MPC have since become the work horses for basic and advanced industrial control, respectively. With the recent strong development in AI and the dramatic increase in computational capacity – not least with the option of cloud computing – there is a possibility that this will change in the future.\u003C/p>\u003Cp>This talk will discuss industrial control systems with particular focus on speculating about the expected progress in the next decade. We will argue that there are many drivers motivating why new levels of industrial automation will be reached. Such drivers include lack of work force due to ageing populations, increased system complexity beyond the capability of human operators, further progress of AI and computing infrastructures, as well as improved sensor technology at more affordable cost levels. We will also discuss the role of automatic control in this new potentially AI and computing dominated scenario, and how we as control engineers still play a vital role for the future industrial development.\u003C/p>","2025-01-16T22:23:22.244Z","2025-01-17T08:36:01.289Z","2025-01-17T08:36:01.284Z","33",[575],{"id":576,"name":577,"committee":15,"position":15,"affiliation":578,"email":15,"biography":579,"createdAt":580,"updatedAt":581,"url_path_id":582,"contactPhoto":583,"socialLinks":606,"url_path":607},17,"Alf Isaksson","ABB","\u003Cp>Alf Isaksson is a Research Fellow at ABB Corporate Research in Västerås and an adjunct professor of control engineering at KTH in Stockholm. From 2012 to 2019, he served as ABB’s global research leader for control, managing more than 100 researchers across seven centres worldwide. He holds a PhD in control engineering from Linköping University, following studies in computer engineering, and spent a year at the University of Newcastle in Australia before becoming professor of control engineering at KTH in 1999. Since joining ABB in 2001, he has combined academic and industrial expertise, leading and contributing to projects in process industries, electrical power grids, and industrial robotics, while also delivering plenary lectures at major international conferences. Recognised for his contributions, he has been a member of the Royal Swedish Academy of Engineering Sciences since 2013 and was appointed Fellow of the International Federation of Automatic Control in 2023 at the World Congress in Yokohama, Japan.\u003C/p>","2024-11-27T11:02:12.396Z","2025-08-08T21:06:22.590Z","28",{"id":584,"name":585,"alternativeText":15,"caption":15,"width":461,"height":461,"formats":586,"hash":602,"ext":51,"mime":54,"size":603,"url":604,"previewUrl":15,"provider":23,"provider_metadata":15,"createdAt":605,"updatedAt":605},51,"AlfIsaksson.jpeg",{"small":587,"medium":592,"thumbnail":597},{"ext":51,"url":588,"hash":589,"mime":54,"name":590,"path":15,"size":591,"width":324,"height":324},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/small_Alf_Isaksson_667a68389d.jpeg","small_Alf_Isaksson_667a68389d","small_AlfIsaksson.jpeg",25.46,{"ext":51,"url":593,"hash":594,"mime":54,"name":595,"path":15,"size":596,"width":331,"height":331},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/medium_Alf_Isaksson_667a68389d.jpeg","medium_Alf_Isaksson_667a68389d","medium_AlfIsaksson.jpeg",58.03,{"ext":51,"url":598,"hash":599,"mime":54,"name":600,"path":15,"size":601,"width":376,"height":376},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/thumbnail_Alf_Isaksson_667a68389d.jpeg","thumbnail_Alf_Isaksson_667a68389d","thumbnail_AlfIsaksson.jpeg",3.86,"Alf_Isaksson_667a68389d",68.95,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/Alf_Isaksson_667a68389d.jpeg","2024-11-27T11:01:16.362Z",[],"-21","-25",{"id":187,"session":610},{"id":106,"title":611,"teaser":612,"body":613,"createdAt":614,"updatedAt":615,"publishedAt":616,"url_path_id":617,"contacts":618,"url_path":643},"Haptics Anywhere: Enabling Mobile Telepresence","\u003Cp>Haptic devices allow touch-based information transfer between humans and intelligent systems, enabling communication in a salient but private manner that frees other sensory channels. For such devices to be mobile, their physical and computational aspects must be intuitive and unobtrusive.\u003C/p>","\u003Cp>The amount of information that can be transmitted through touch is limited in large part by the location, distribution, and sensitivity of human mechanoreceptors. Not surprisingly, many haptic devices are designed to be held or worn at the highly sensitive fingertips, yet stimulation using a device attached to the fingertips precludes natural use of the hands. Thus, we explore the design of a wide array of haptic feedback mechanisms, ranging from devices that can be actively touched by the fingertips to multi-modal haptic actuation mounted on the arm. We demonstrate how these devices are effective in telepresence scenarios for task training, robot-assisted surgery, and social touch.\u003C/p>","2025-02-06T12:09:52.612Z","2025-02-06T12:10:50.811Z","2025-02-06T12:10:50.803Z","35",[619],{"id":507,"name":620,"committee":15,"position":15,"affiliation":621,"email":15,"biography":622,"createdAt":623,"updatedAt":624,"url_path_id":625,"contactPhoto":626,"socialLinks":641,"url_path":642},"Allison Okamura","Stanford University","\u003Cp>Allison M. Okamura is the Richard W. Weiland Professor of Engineering at Stanford University in the mechanical engineering department, with a courtesy appointment in computer science. She was previously Professor and Vice Chair of mechanical engineering at Johns Hopkins University. She is currently a deputy director of the Wu Tsai Stanford Neurosciences Institute, a Science Fellow/Senior Fellow (courtesy) at the Hoover Institution, and a founding member and executive committee member of the Stanford Robotics Center. She has been editor-in-chief of the journal IEEE Robotics and Automation Letters, associate editor of the IEEE Transactions on Haptics, editor-in-chief of the IEEE International Conference on Robotics and Automation Conference Editorial Board, an editor of the International Journal of Robotics Research, and co-chair of the IEEE Haptics Symposium. Her awards include the 2020 IEEE Engineering in Medicine and Biology Society Technical Achievement Award, 2019 IEEE Robotics and Automation Society Distinguished Service Award, 2016 Duca Family University Fellow in Undergraduate Education, 2009 IEEE Technical Committee on Haptics Early Career Award, 2005 IEEE Robotics and Automation Society Early Academic Career Award, and 2004 NSF CAREER Award. She is an IEEE Fellow. Her academic interests include haptics, teleoperation, virtual environments and simulators, medical robotics, soft robotics, neuromechanics and rehabilitation, prosthetics, and education. Outside academia, she enjoys spending time with her husband and two children, running, and playing ice hockey.&nbsp;\u003C/p>","2024-11-27T11:02:37.727Z","2025-02-06T12:10:42.207Z","29",{"id":627,"name":628,"alternativeText":15,"caption":15,"width":629,"height":629,"formats":630,"hash":636,"ext":425,"mime":54,"size":637,"url":638,"previewUrl":15,"provider":23,"provider_metadata":15,"createdAt":639,"updatedAt":640},50,"AllisonOkamura.jpg",350,{"thumbnail":631},{"ext":425,"url":632,"hash":633,"mime":54,"name":634,"path":15,"size":635,"width":376,"height":376},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/thumbnail_Allison_Okamura_2527b6797b.jpg","thumbnail_Allison_Okamura_2527b6797b","thumbnail_AllisonOkamura.jpg",5.25,"Allison_Okamura_2527b6797b",14.93,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/Allison_Okamura_2527b6797b.jpg","2024-11-27T11:01:16.065Z","2024-11-27T11:02:35.053Z",[],"-22","-27",{"id":204,"session":645},{"id":137,"title":646,"teaser":647,"body":648,"createdAt":649,"updatedAt":650,"publishedAt":651,"url_path_id":652,"contacts":653,"url_path":697},"Control challenges toward the adoption of closed-loop anesthesia and therapeutic interventions as standard of care","\u003Cp>In the last decade or so, control engineering has made several strides in healthcare and therapeutic interventions. The most striking and best-known example being the development and certification in a number of countries of hybrid closed-loop control systems of blood glucose for type-1 diabetes. However, the application of closed-loop therapeutic interventions is still rather limited and still not accepted as standard of care.\u003C/p>","\u003Cp>Before we see the widespread adoption of such systems, a number of challenges and issues have to be fully addressed, such as the handling of significant interpatient variability and uncertainty; the difficulty of modelling and the severe constraints in performing informative identification experiments; the need for safety guarantees and safe fallback; and the mostly ignored issue of emergent behaviours. In will build on my past and current work in closed-loop control of anesthesia as well as on closed-loop control of oxygen therapy to illustrate some of those issues. I will conclude my talk with a high-level discussion of some of the challenges and current approaches being explored in developing closed-loop systems to alleviate Parkinson’s Disease (PD) symptoms.\u003C/p>","2025-03-26T10:12:05.093Z","2025-03-26T10:12:08.734Z","2025-03-26T10:12:08.727Z","37",[654],{"id":655,"name":656,"committee":15,"position":15,"affiliation":657,"email":15,"biography":658,"createdAt":659,"updatedAt":660,"url_path_id":661,"contactPhoto":662,"socialLinks":695,"url_path":696},19,"Guy A. Dumont","University of British Columbia","\u003Cp>Guy A. Dumont is with the Department of Electrical and Computer Engineering, University of British Columbia, where he is a Professor and Distinguished University Scholar. &nbsp;He also is an Associate Member of the UBC Department of Anesthesiology Pharmacology and Therapeutics and a Principal Investigator at the BC Children’s Hospital Research Institute and co-founder and co-Director of the Digital Health Innovation Laboratory (DHIL). &nbsp;His current research interests include adaptive and learning control; patient monitoring; signal processing for physiological monitoring; physiological closed-loop control systems such as automated drug delivery in anesthesia; circadian rhythms; global and mobile health; non-contact patient vital sign assessment; and brain monitoring via electroencephalography and near-infrared spectrometry. Among the awards he received are the IEEE Control Systems Society 1998 Control Systems Technology Award; three NSERC Synergy Awards, the latest one in 2016 for the development of the Phone Oximeter; the 2010 Brockhouse Canada Prize for Interdisciplinary Research in Science and Engineering. the 2020 IEEE Control Systems Society Transition to Practice Award. He is a Fellow of the IEEE, &nbsp;of the International Federation of Automatic Control as well as of the Royal Society of Canada.&nbsp;\u003C/p>","2024-11-27T11:03:47.923Z","2025-03-29T09:11:51.239Z","30",{"id":504,"name":663,"alternativeText":15,"caption":15,"width":664,"height":665,"formats":666,"hash":691,"ext":425,"mime":54,"size":692,"url":693,"previewUrl":15,"provider":23,"provider_metadata":15,"createdAt":694,"updatedAt":694},"GuyADumont.jpg",1176,1292,{"large":667,"small":673,"medium":679,"thumbnail":685},{"ext":425,"url":668,"hash":669,"mime":54,"name":670,"path":15,"size":671,"width":672,"height":317},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/large_Guy_A_Dumont_d33cb789f6.jpg","large_Guy_A_Dumont_d33cb789f6","large_GuyADumont.jpg",111.42,910,{"ext":425,"url":674,"hash":675,"mime":54,"name":676,"path":15,"size":677,"width":678,"height":324},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/small_Guy_A_Dumont_d33cb789f6.jpg","small_Guy_A_Dumont_d33cb789f6","small_GuyADumont.jpg",30.3,455,{"ext":425,"url":680,"hash":681,"mime":54,"name":682,"path":15,"size":683,"width":684,"height":331},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/medium_Guy_A_Dumont_d33cb789f6.jpg","medium_Guy_A_Dumont_d33cb789f6","medium_GuyADumont.jpg",64.08,683,{"ext":425,"url":686,"hash":687,"mime":54,"name":688,"path":15,"size":689,"width":690,"height":376},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/thumbnail_Guy_A_Dumont_d33cb789f6.jpg","thumbnail_Guy_A_Dumont_d33cb789f6","thumbnail_GuyADumont.jpg",4.59,142,"Guy_A_Dumont_d33cb789f6",182.32,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/Guy_A_Dumont_d33cb789f6.jpg","2025-03-26T10:10:00.235Z",[],"-23","-29",{"id":115,"session":699},{"id":168,"title":700,"teaser":701,"body":702,"createdAt":703,"updatedAt":704,"publishedAt":705,"url_path_id":706,"contacts":707,"url_path":747},"Digital Twins for a Greener and More Resilient Future in the Metal Industry","\u003Cp>The “green transition” is vital for the sustainable future of the iron and steel industry. Energy cost accounts for 20 – 40% of steel manufacturing costs. Hence, strong incentives to save energy consumption have been put in place. Indeed, health monitoring, fault diagnosis, and fault-tolerant control are of customary importance to ensure high levels of safety, performance, reliability, dependability, and 24/7 availability – in a word – resiliency.\u003C/p>","\u003Cp style=\"text-align:justify;\">The metal industry is a paradigmatic context in which the lack of resiliency can result in off-specification production, increased operating costs, production line shutdown, dangerous conditions for human operators, and detrimental environmental impact.\u003C/p>\u003Cp style=\"text-align:justify;\">In the lecture, we will show the game-changing enabling features of designing – with the lens of systems and control – high-fidelity plant-wide hardware-in-the-loop digital twins (DT). DT platforms enable an average reduction of the commissioning time of the plant-wide automation system from 4-6 months to 2-3 weeks, with a massive decrease in commissioning costs. We will also focus on embedding a distributed and scalable minimum sharing methodology into the DT platform to transform key parts of the automation system from a rigid hierarchical topology into a networked one, enabling a distributed intelligence with significant benefits in terms of energy efficiency. We will illustrate a real industrial use case.\u003C/p>","2025-04-15T07:35:41.346Z","2025-04-15T07:36:57.746Z","2025-04-15T07:36:57.737Z","40",[708],{"id":709,"name":710,"committee":15,"position":15,"affiliation":711,"email":15,"biography":712,"createdAt":713,"updatedAt":714,"url_path_id":715,"contactPhoto":716,"socialLinks":745,"url_path":746},20,"Thomas Parisini","Imperial College London, Aalborg University & Univ. of Trieste","\u003Cp style=\"text-align:justify;\">Thomas Parisini received the Ph.D. degree in electronic engineering and computer science from the University of Genoa, Italy, in 1993. He was an Associate Professor with Politecnico di Milano, Milano, Italy. He currently holds the Chair of industrial control and is the Head of the Control and Power Research Group, Imperial College London, London, U.K. He also holds a Distinguished Professorship at Aalborg University, Denmark. Since 2001, he has been the Danieli Endowed Chair of automation engineering with the University of Trieste, Trieste, Italy, where from 2009 to 2012, he was the Deputy Rector. In 2023, he held a “Scholar-in-Residence” visiting position with Digital Futures-KTH, Stockholm, Sweden. He has authored or coauthored a research monograph in the Communication and Control Series, Springer Nature, and more than 400 research papers in archival journals, book chapters, and international conference proceedings. Dr. Parisini was the recipient of the Knighthood of the Order of Merit of the Italian Republic for scientific achievements abroad awarded by the Italian President of the Republic in 2023. In 2018 he received the Honorary Doctorate from the University of Aalborg, Denmark and in 2024, the IEEE CSS Transition to Practice Award. Moreover, he was awarded the 2007 IEEE Distinguished Member Award and was co-recipient of the IFAC Best Application Paper Prize of the Journal of Process Control, Elsevier, for the three-year period 2011-2013 and of the 2004 Outstanding Paper Award of IEEE Transactions on Neural Networks. In 2016, he was awarded as Principal Investigator with Imperial of the H2020 European Union flagship Teaming Project KIOS Research and Innovation Centre of Excellence led by the University of Cyprus with an overall budget of over 40 million Euros. He was the 2021-2022 President of the IEEE Control Systems Society, and he was the Editor-in-Chief of IEEE Transactions on Control Systems Technology (2009-2016). He was the Chair of the IEEE CSS Conference Editorial Board (2013-2019). Also, he was the associate editor of several journals including the IEEE Transactions on Automatic Control and the IEEE Transactions on Neural Networks. He is currently an Editor of Automatica and the Editor-in-Chief of the European Journal of Control. He was the Program Chair of the 2008 IEEE Conference on Decision and Control and General Co-Chair of the 2013 IEEE Conference on Decision and Control. He is a Fellow of IEEE and IFAC. He is a Member of IEEE TAB Periodicals Review and Advisory Committee.\u003C/p>","2025-01-13T10:57:04.320Z","2025-04-15T07:36:38.042Z","31",{"id":717,"name":718,"alternativeText":15,"caption":15,"width":719,"height":720,"formats":721,"hash":740,"ext":425,"mime":54,"size":741,"url":742,"previewUrl":15,"provider":23,"provider_metadata":15,"createdAt":743,"updatedAt":744},54,"parisini.jpg",772,965,{"small":722,"medium":728,"thumbnail":734},{"ext":425,"url":723,"hash":724,"mime":54,"name":725,"path":15,"size":726,"width":727,"height":324},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/small_parisini_d729d3c65f.jpg","small_parisini_d729d3c65f","small_parisini.jpg",40.51,400,{"ext":425,"url":729,"hash":730,"mime":54,"name":731,"path":15,"size":732,"width":733,"height":331},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/medium_parisini_d729d3c65f.jpg","medium_parisini_d729d3c65f","medium_parisini.jpg",84.05,600,{"ext":425,"url":735,"hash":736,"mime":54,"name":737,"path":15,"size":738,"width":739,"height":376},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/thumbnail_parisini_d729d3c65f.jpg","thumbnail_parisini_d729d3c65f","thumbnail_parisini.jpg",5.7,125,"parisini_d729d3c65f",137.02,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/ccta25/parisini_d729d3c65f.jpg","2025-01-13T10:58:03.278Z","2025-04-15T07:33:59.516Z",[],"-24","-30",{"id":749,"__component":501,"componentVariation":502,"styles":15,"header":15,"body":750},31,{"id":751,"title":151,"body":752,"containerWidth":15,"buttonGroup":753,"media":15},30,"\u003Cp>\u003Cspan style=\"background-color:transparent;color:#000000;\">Workshops will be held on \u003Cstrong>Sunday, August 24th\u003C/strong>, preceding the main conference program from August 25-27, 2025 and are limited to 60 participants. 2025 CCTA workshops will be available to all conference registrants for free. Those who do not register for the conference, but wish to participate in one or more workshops will be required to pay a fee.\u003C/span>\u003C/p>",{"id":532,"variation":508,"button":754},[755],{"id":532,"label":756,"size":67,"color":68,"style":15,"icon":69,"iconPosition":70,"url":757,"newWindow":8,"downloadable":8,"shape":15},"CCTA 2025 Workshops","https://ccta2025.ieeecss.org/workshops",{"data":759,"meta":760},{"id":137,"heading":133,"createdAt":138,"updatedAt":139,"publishedAt":140,"url_path_id":141,"url_path":134,"contentType":104},{},1778851983777]