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Saraju Mohanty

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Saraju Mohanty
Mohanty in 2012
Born
Odisha, India
EducationUniversity of South Florida (USF), Tampa
Indian Institute of Science (IISc), Bangalore
Orissa University of Agriculture and Technology (OUAT), Bhubaneswar
Occupationsprofessor, author, scientist, Editor, computer engineer
Known forHardware-assisted electronic system security, secure digital camera, mixed-signal systems, nanoelectronics systems, metamodeling, design for x, high-level synthesis, energy-efficient electronic system design
Notable workNanoelectronic Mixed-Signal System Design, McGraw-Hill, 2015, ISBN 978-0071825719
AwardsIEEE-CS-TCVLSI Distinguished Leadership Award in 2018


Glorious India Award in 2017
Society for Technical Communication (STC) Award of Merit in 2017
PROSE Award for best textbook in Physical Sciences & Mathematics in 2016
Toulouse Scholars Award from UNT in 2016–17
IEEE Distinguished Lecturer since 2017

President's Scout Award in 1988
Websitesmohanty.org

Saraju Mohanty is an Indian-American professor of the Department of Computer Science and Engineering at the University of North Texas in Denton, Texas.[1] He is the founding director of the Smart Electronic Systems Laboratory (SESL) there.[2] He has also served in leadership roles in international professional organizations and academic journals, including the IEEE Computer Society and IEEE Consumer Electronics Society. He is the founding Dean of Artificial Intelligence Technology Institute (AiTI) at the SRM University-AP.[3][4]

Mohanty is a researcher in the areas of "smart electronics for smart cities/villages", "smart healthcare", "smart agriculture", "application-Specific things for efficient edge computing", and "methodologies for digital and mixed-signal hardware".[5] He has made significant research contributions to security by design (SbD) for electronic systems, hardware-assisted security (HAS) and protection, high-level synthesis of digital signal processing (DSP) hardware, and mixed-signal integrated circuit computer-aided design and electronic design automation.

Mohanty has been the editor-in-chief (EiC) of the IEEE Consumer Electronics Magazine during 2016-2021.[6] He has held the Chair of the IEEE Computer Society's Technical Committee on Very Large Scale Integration during 2014-2018.[7][8] He holds 6 granted patents in the areas of his research, and has published 600 research articles and 5 books.[9][10][11][12] He is ranked among top 2% faculty around the world in Computer Science and Engineering discipline as per the standardized citation metric adopted by the Public Library of Science Biology journal.[13][14][15][16] Mohanty received a Glorious India Award – Rich and Famous NRIs of America in 2017 for his contributions to the discipline.[17]

Education

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Saraju Mohanty started his schooling at Lodhachua, Nayagarh, Odisha. After graduating from Badagada Government High School, Bhubaneswar in 1988, Mohanty completed a 10+2 Science degree from Rajdhani College, Bhubaneswar in 1990. He received his bachelor's degree in electrical engineering from the College of Engineering and Technology, Bhubaneswar, Orissa University of Agriculture and Technology, in 1995.[18][19]

Mohanty in a Scout Camp in 1988 with high school classmates

In 1999 Mohanty completed a master's degree in engineering in Systems Science and Automation from the Indian Institute of Science in Bangalore, India.[20] His thesis mentors at IISc were Professor K. R. Ramakrishnan and Professor Mohan Kankanhalli (IEEE Fellow)[21] with whom he co-authored his first peer-reviewed paper.[22]

Mohanty with K. R. Ramakrishnan, Mohan Kankanhalli, and Nasir Memon at the IEEE International Conference on Multimedia and Expo (ICME) 2000 at New York City[23]

Mohanty earned a PhD in computer engineering from the University of South Florida in 2003. His PhD mentor was Professor Nagarajan Ranganathan (IEEE Fellow and AAAS Fellow).[24][25]

Scientific contributions

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Smart Healthcare

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Mohanty's research in smart healthcare has focused on Internet of Medical Things (IoMT), healthcare cyber-physical systems (H-CPS), involving wearable devices, AI, and security and privacy. His work includes iKardo, an intelligent ECG device for automatic identification of critical heartbeats;[26] MyWear, a smart garment for continuous vital-sign monitoring;[27] SaYoPillow, a privacy-assured IoMT framework for stress monitoring;[28] and iGLU, a secure non-invasive glucose monitoring and automatic insulin-delivery system.[29] His research has also addressed cardiovascular disease prediction using ECG,[30] seizure detection from EEG signals,[31] and AI-based diagnosis using multi-channel EEG.[32] His work has additionally examined security and privacy in wearable and implantable medical devices and secure architectures for connected healthcare systems.[33]

Smart Agriculture

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Mohanty's research in smart agriculture has contributed to the development of Internet-of-Agro-Things (IoAT) and agriculture cyber-physical systems (A-CPS) that integrate IoT, artificial intelligence, machine learning, computer vision, edge computing, and intelligent sensing. His early work included gCrop, an Internet-of-Leaf-Things system for monitoring crop growth, and dCrop, a deep-learning framework for crop disease prediction.[34][35] His sCrop system introduced a solar-powered IoAT device for automatic plant-disease prediction, crop selection, and irrigation, combining sensor nodes, imaging, convolutional neural networks, and mobile visualization for sustainable agriculture.[36] His subsequent eCrop framework addressed automatic crop-damage estimation using a convolutional Siamese neural network and was designed to support automated agricultural insurance claim assessment.[37] More recent works have extended this research to plant-disease detection and damage estimation, identification of disease hotspots using graph-based methods, disease-severity estimation using graph neural networks, and autonomous weed management through the WeedOut framework.[38][39][40] His broader work has also examined the architecture, technologies, applications, and challenges of smart agriculture and has contributed to comprehensive frameworks for integrating IoT, AI, sensing, and intelligent automation into agricultural systems.[41]

Security by Design (SbD)

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Mohanty's research has made contributions to Security by Design (SbD) or Secure by design, a design paradigm in which security and privacy are incorporated into electronic and cyber-physical systems from the beginning of the design process rather than being retrofitted after deployment. He introduced the Secure Digital Camera (SDC) in 2004 as an early implementation of hardware-assisted security and SbD, integrating security and intellectual-property protection directly into sensing hardware. The SDC was designed to provide real-time protection of multimedia information at the point of capture and could serve as a trustworthy sensing node in Internet of Things (IoT) systems. Applications included secure video surveillance, digital video broadcasting, electronic passports, and identity-card processing. His research on secure digital cameras subsequently extended to secure multimedia systems, digital rights management, and hardware implementations of digital watermarking.

A related research direction has been digital watermarking and intellectual-property protection. Mohanty's master's research at the Indian Institute of Science focused on digital image watermarking, and his subsequent research developed hardware architectures for visible and invisible watermarking, secure JPEG encoding, real-time multimedia protection, and low-power watermarking. His work included VLSI implementations of watermarking algorithms and architectures for protecting digital media and hardware intellectual property while considering energy and implementation costs.[42][43][44][45]

Hardware-Assisted Security

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Mohanty's SbD research subsequently expanded into Hardware-Assisted Security (HAS) for electronic systems, IoT, and cyber-physical systems. His work has examined protection of hardware intellectual property, Physical unclonable function (PUFs), hardware Trojans, secure authentication, trusted hardware, and security mechanisms for resource-constrained connected devices. His works IP Core Protection and Hardware-Assisted Security for Consumer Electronics examines hardware-assisted approaches to IP-core protection and security, including watermarking, physical unclonable functions, and protection mechanisms for consumer-electronics hardware.[46]

His later work extended HAS and SbD to IoT and cyber-physical systems, including protection against hardware Trojans and security mechanisms for devices operating at the edge of IoT systems. In Eternal-Thing, his research addressed analog hardware-Trojan resilience in IoT devices, reflecting his broader approach of integrating security mechanisms into the hardware architecture of connected systems rather than relying solely on software-based protection.[47]

Another research direction has involved PUF-based hardware security and authentication. PUFs use inherent manufacturing variations in integrated circuits to generate device-specific electronic fingerprints, providing a mechanism for device authentication without permanently storing conventional secret keys. Mohanty's PUFchain research integrated PUF-based hardware authentication with distributed-ledger technologies for IoT and Internet-of-Medical-Things (IoMT) devices.[48] The subsequent PUFchain 3.0 work integrated PUFs, blockchain, and IOTA Tangle to provide device and data security for healthcare cyber-physical systems, explicitly applying a decentralized hardware-software SbD approach to IoMT security.[49]

Security and Privacy by Design

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Mohanty has also advocated Security and Privacy by Design (SPbD) for the Internet of Everything (IoE), arguing that security and privacy should be considered during the initial design cycle of cyber-physical systems rather than added later. His work has applied this principle to smart healthcare, IoT, and other connected systems in which sensing, computation, communication, and actuation are increasingly integrated. This approach combines hardware security, trustworthy sensing, authentication, privacy protection, and secure communication as architectural elements of smart electronic systems.[50]

His later research has applied these principles to healthcare cyber-physical systems. For example, PUFchain 3.0 combines PUF-based hardware identity with blockchain and distributed-ledger mechanisms to protect medical devices and sensitive healthcare data, illustrating the extension of SbD from individual hardware components to complete secure cyber-physical architectures.[51]

Contributions to high-level synthesis of digital signal processing (DSP) hardware

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Mohanty has worked to high-level synthesis (HLS) or architecture-level synthesis of digital signal processing (DSP) hardware.[52][53][54] His methods address energy consumption and power fluctuation in DSP hardware which are heart of consumer electronic systems such that battery life and battery efficiency increases.[55] His nanoelectronic-based High-level synthesis techniques addresses the issue of process variations, the primary issue of nanoelectronic technology, during the high-level synthesis itself before the digital design moves to the detailed and lower levels of design abstractions, such as logic-level or transistor-level.[56]

Contributions to analog electronics and mixed-signal circuits

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Mohanty has worked on design space exploration and optimization of analog/mixed-signal system on a chip (AMS-SoC) which is essentially the technology representation of a consumer electronics such as a smart mobile phone.[57] The key feature of these design flows is the need for only two manual layout (or physical design) iterations which saves significant design effort. These fast design flows rely on accurate metamodels of the analog and mixed-signal circuit components. This research advances the state-of-the art in Design for Excellence (DfX) or Design for X, such as Design for Variability (DfV) and Design for Cost (DfC).[58]

Selected editor and conference chair positions

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Saraju Mohanty receiving IEEE-CS-TCVLSI Distinguished Leadership Award 2018 for services to the IEEE, and to the VLSI research community at ISVLSI 2018 on July 10, 2018, at Hong Kong from ISVLSI 2018 General Chair Wei Zhang and Program Chair Hai Helen Li[59][60]
Saraju Mohanty receiving IEEE Consumer Electronics society Outstanding Service Award in 2020 leadership contributions to the IEEE Consumer Electronics society at ICCE 2020 on January 6, 2020, at Las Vegas from ICCE 2020 General Chair Wen-Chung Kao[74]

Awards

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  • Fulbright Specialist Award by U.S. Department of State's Bureau of Educational and Cultural Affairs and World Learning in 2021.[75][76]
  • IEEE Consumer Electronics Society Chester Sall Award in 2020 for the Second place best paper in the IEEE Transactions on Consumer Electronics in the year 2018.[77]
  • IEEE Consumer Electronics Society Outstanding Service Award for 2019 for leadership contributions to the IEEE Consumer Electronics society.[78][79]
  • IEEE-CS-TCVLSI Distinguished Leadership Award for outstanding services to the IEEE and to the VLSI research community in 2018.[80][81]
  • The PROSE Award for best Textbook in Physical Sciences & Mathematics category from the Association of American Publishers (AAP) in 2016.[82]
  • The UNT Toulouse Scholars Award for outstanding scholarship and teaching achievements in 2016–2017.[83]
  • Best Paper Award at the OITS/IEEE International Conference on Information Technology (OCIT), 2023.[84]

References

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  1. ↑ The University of North Texas, Dept. of Computer Science and Engineering, http://www.cse.unt.edu/site/node/91
  2. ↑ The University of North Texas, Dept. of Computer Science and Engineering, Smart Electronic Systems Laboratory (SESL), http://www.smohanty.org/SESL/index.html
  3. ↑ AI Technology Institute (AiTI), https://www.srmap.edu.in/aiti/, https://www.srmap.edu.in/aiti/
  4. ↑ SRM University AP Leadership, https://www.srmap.edu.in/about-us/leadership/, https://www.srmap.edu.in/about-us/leadership/
  5. ↑ Research Interests, Professor Mohanty, http://www.smohanty.org/Research.html
  6. 1 2 IEEE Consumer Electronics Magazine, http://cesoc.ieee.org/publications/ce-magazine.html Archived July 12, 2016, at the Wayback Machine
  7. ↑ "Faculty Success | Office of the Provost". vpaa.unt.edu. Retrieved February 16, 2024.
  8. ↑ "IEEE Computer Society". IEEE Computer Society. Retrieved February 16, 2024.
  9. ↑ ResearchGate – Saraju Mohanty, https://www.researchgate.net/profile/Saraju_Mohanty
  10. ↑ "Google Scholar". scholar.google.com. Retrieved February 16, 2024.
  11. ↑ "dblp: Saraju P. Mohanty". dblp.uni-trier.de. Retrieved February 16, 2024.
  12. ↑ "Prof. Saraju Mohanty Patents".
  13. ↑ UNT researchers among world's top 2% of scientists on Stanford University list, https://news.unt.edu/news-releases/unt-researchers-among-worlds-top-2-scientists-stanford-university-list
  14. ↑ Ioannidis, JPA; Boyack, KW; Baas, J (October 2020). "Updated science-wide author databases of standardized citation indicators". PLOS Biol. 18 (10) e3000918. doi:10.1371/journal.pbio.3000918. PMC 7567353. PMID 33064726.
  15. ↑ UNT Engineering faculty among 2024 list of world's most cited researchers, https://engineering.unt.edu/news/unt-engineering-faculty-among-list-of-most-cited-researchers, February 24, 2025.
  16. ↑ UNT faculty among top 2% from the 2024 list of the world's most cited researchers, https://www.untsystem.edu/news/unt-faculty-among-most-cited-researchers-2024-world-list.php, January 7, 2025.
  17. ↑ US-based NRI Achievers Honoured With Glorious India Awards, , The Telegraph India, June 7, 2017.
  18. ↑ CET Bhubaneswar observes Annual Alumni Meet, http://www.odishanewsinsight.com/events/cet-bhubaneswar-observes-annual-alumni-meet/, December 31, 2015.
  19. ↑ Unitary University Status For CET Demanded, The Pioneer, http://www.dailypioneer.com/state-editions/bhubaneswar/unitary-university-status-for-cet-demanded.html, Thursday, December 31, 2015.
  20. ↑ S. P. Mohanty, "Watermarking of Digital Images", Master of Engineering in System Science and Automation Thesis, Indian Institute of Science, Bangalore, January 1999, http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.10.1673&rep=rep1&type=pdf
  21. ↑ "Past Postdocs and Graduated Students". Retrieved August 8, 2016.
  22. ↑ S. P. Mohanty, K. R. Ramakrishnan, and M. S. Kanakanhalli, "A Dual Watermarking Technique for Images", in Proceedings of the 7th ACM International Multimedia Conference (ACMMM) (Vol. 2), pp.49–51, 1999.
  23. ↑ IEEE International Conference on Multimedia and Expo (ICME) 2000: New York, NY, USA, https://dblp.org/db/conf/icmcs/icme2000.html
  24. ↑ S. P. Mohanty, "Energy and Transient Power Minimization During Behavioral Synthesis", PhD Dissertation, Department of Computer Science and Engineering, University of South Florida, 2003, http://etd.fcla.edu/SF/SFE0000129/SarajuDissertationFinal.pdf
  25. ↑ Nagarajan "Ranga" Ranganathan, Department of Computer Science and Engineering, University of South Florida, Tampa, FL 33620, http://www.usf.edu/engineering/cse/documents/ranganathan-cv.pdf
  26. ↑ Maji, Subhankar; Mohanty, Saraju P. (2021). "iKardo: An Intelligent ECG Device for Automatic Critical Beat Identification for Smart Healthcare". IEEE Transactions on Consumer Electronics. 67 (4): 235–243.
  27. ↑ Sethuraman, Shanmugapriya; Mohanty, Saraju P. (2021). "MyWear: A Novel Smart Garment for Automatic Continuous Vital Monitoring". IEEE Transactions on Consumer Electronics. 67 (3): 214–222.
  28. ↑ Rachakonda, Lakshmi; Saravanan, Karthik; Mohanty, Saraju P. (2021). "SaYoPillow: Blockchain-Integrated Privacy-Assured IoMT Framework for Stress Management Considering Sleeping Habits". IEEE Transactions on Consumer Electronics. 67 (1): 20–29.
  29. ↑ Joshi, Rajat; Jain, Ankit; Mohanty, Saraju P. (2022). "iGLU 3.0: A Secure Noninvasive Glucometer and Automatic Insulin Delivery System in IoMT". IEEE Transactions on Consumer Electronics. 68 (1): 14–22.
  30. ↑ Sinha, Arindam; Joshi, Rajat; Mohanty, Saraju P. (2022). "iCardo 2.0: A Smart Healthcare Framework for Cardiovascular Disease Accurate Prediction by Using T-Wave Morphology of ECG". IEEE Transactions on Consumer Electronics.
  31. ↑ Sayeed, Md.; Mohanty, Saraju P.; Kougianos, Elias (2023). "rSeiz 2.0: A Low Latency and Energy Efficient Seizure Detector in the IoMT". IEEE International Symposium on Smart Electronic Systems.
  32. ↑ Sharma, ...; Mohanty, Saraju P. (2023). "A Smart Healthcare Framework for Accurate Detection of Schizophrenia using Multi-Channel EEG". IEEE Transactions on Instrumentation and Measurement. 72. {{cite journal}}: |first1= has numeric name (help)
  33. ↑ "Securing health care devices". University of North Texas.
  34. ↑ Kumar, Siddhant; Chowdhary, Gourav; Das, Debanjan; Udutalapally, Venkanna; Mohanty, Saraju P. (2019). "gCrop: Internet-of-Leaf-Things (IoLT) for Monitoring of the Growth of Crops in Smart Agriculture". IEEE International Symposium on Smart Electronic Systems. pp. 53–56.
  35. ↑ Pallagani, Vishal; Khandelwal, Vedant; Chandra, Bharath; Udutalapally, Venkanna; Das, Debanjan; Mohanty, Saraju P. (2019). "dCrop: A Deep-Learning Based Framework for Accurate Prediction of Diseases of Crops in Smart Agriculture". IEEE International Symposium on Smart Electronic Systems.
  36. ↑ Udutalapally, Venkanna; Mohanty, Saraju P.; Pallagani, Vishal; Khandelwal, Vedant (2021). "sCrop: A Novel Device for Sustainable Automatic Disease Prediction, Crop Selection, and Irrigation in Internet-of-Agro-Things for Smart Agriculture". IEEE Sensors Journal. 21 (16): 17525–17538. doi:10.1109/JSEN.2020.3032438.
  37. ↑ Mitra, Alakananda; Singhal, Anshuman; Mohanty, Saraju P.; Kougianos, Elias; Ray, Chittaranjan (2022). "eCrop: A Novel Framework for Automatic Crop Damage Estimation in Smart Agriculture". SN Computer Science. 3 (4): 319. doi:10.1007/s42979-022-01216-8.
  38. ↑ Kethineni, Kiran Kumar; Mohanty, Saraju P.; Kougianos, Elias (2023). "HIdentifier: A Method in Agriculture CPS Framework to Automatically Identify Disease Hotspots Using Message Passing in Graph". IEEE International Symposium on Smart Electronic Systems. pp. 212–217.
  39. ↑ Kethineni, Kiran Kumar; Mohanty, Saraju P.; Kougianos, Elias (2023). "Stimator: A Method in Agriculture CPS Framework to Estimate Severity of Plant Diseases using Graph Neural Network". OITS International Conference on Information Technology. pp. 462–467.
  40. ↑ Kethineni, Kiran Kumar; Mitra, Alakananda; Mohanty, Saraju P.; Kougianos, Elias (2023). "WeedOut: An Autonomous Weed Sprayer in Smart Agriculture Framework Using Semi-Supervised Non-CNN Annotation". IFIP International Internet of Things Conference. pp. 415–423.
  41. ↑ Mitra, Alakananda; Vangipuram, Sukrutha L. T.; Bapatla, Anand K.; Bathalapalli, Venkata K. V. V.; Mohanty, Saraju P.; Kougianos, Elias; Ray, Chittaranjan (2024). "Smart Agriculture: A Comprehensive Overview". SN Computer Science. 5 (8): 969. doi:10.1007/s42979-024-03319-w.
  42. ↑ Mohanty, Saraju P. (1999). Digital Watermarking of Images (Master's thesis). Indian Institute of Science.
  43. ↑ Mohanty, Saraju P.; Ranganathan, N.; Namballa, R. K. (2005). "A VLSI Architecture for Visible Watermarking in a Secure Still Digital Camera (S2DC) Design". IEEE Transactions on Very Large Scale Integration Systems. 13 (8): 1002–1012.
  44. ↑ Mohanty, Saraju P.; Ranganathan, N.; Namballa, R. K. (2003). "VLSI Implementation of Invisible Digital Watermarking Algorithms Towards the Development of a Secure JPEG Encoder". IEEE Workshop on Signal Processing Systems. {{cite conference}}: Unknown parameter |booktitle= ignored (|book-title= suggested) (help)
  45. ↑ Mohanty, Saraju P.; Ranganathan, N. (2005). "Design of a Low Power Image Watermarking Encoder using Dual Voltage and Frequency". IEEE International Conference on VLSI Design. {{cite conference}}: Unknown parameter |booktitle= ignored (|book-title= suggested) (help)
  46. ↑ Sengupta, Anirban; Mohanty, Saraju P. (2019). IP Core Protection and Hardware-Assisted Security for Consumer Electronics.
  47. ↑ Sahoo, Sauvagya Ranjan; Das, Banee Bandana; Mahapatra, Kamalakanta; Mohanty, Saraju P. (2021). "ETERNAL-THING 2.0: Analog-Trojan Resilient Security Architecture for IoT Devices". {{cite journal}}: Cite journal requires |journal= (help)
  48. ↑ Bathalapalli, Venkata K. V. V.; Mohanty, Saraju P.; Kougianos, Elias (2022). "PUFchain 3.0: A Hardware Assisted Robust Authentication Mechanism using Tangle". IFIP International Internet of Things Conference. {{cite conference}}: Unknown parameter |booktitle= ignored (|book-title= suggested) (help)
  49. ↑ Bathalapalli, Venkata K. V. V.; Mohanty, Saraju P.; Kougianos, Elias; Iyer, Vasanth; Rout, Bibhudutta (2024). "PUFchain 3.0: Hardware-Assisted Distributed Ledger for Robust Authentication in the Healthcare Cyber-Physical Systems". Sensors.
  50. ↑ Mohanty, Saraju P. (2020). "Security and Privacy by Design is Key in the Internet of Everything (IoE) Era". IEEE Consumer Electronics Magazine. 9 (2): 4–5.
  51. ↑ Bathalapalli, Venkata K. V. V.; Mohanty, Saraju P.; Kougianos, Elias (2024). "PUFchain 3.0: Hardware-Assisted Distributed Ledger for Robust Authentication in the Healthcare Cyber-Physical Systems". Sensors.
  52. ↑ Saraju Mohanty and Elias Kougianos, "Simultaneous Power Fluctuation and Average Power Minimization during Nano-CMOS Behavioral Synthesis", in Proceedings of the 20th International Conference on VLSI Design, pp. 577–582, 2007.
  53. ↑ Mohanty, S. P.; Gomathisankaran, M.; Kougianos, E. (2014). "Variability-Aware Architecture Level Optimization Techniques for Robust Nanoscale Chip Design". Computers and Electrical Engineering Journal. 40 (1): 168–193. doi:10.1016/j.compeleceng.2013.11.026.
  54. ↑ Chen, Y.; Wang, Y.; Takach, A.; Xie, Y. (2012). "Parametric Yield Driven Resource Binding in High-Level Synthesis with Multi-Vth Vdd Library and Device Sizing". Journal of Electrical and Computer Engineering. 2012 105250. doi:10.1155/2012/105250.
  55. ↑ S. P. Mohanty and N. Ranganathan, "A Framework for Energy and Transient Power Reduction during Behavioral Synthesis", IEEE Transactions on Very Large Scale Integration Systems, Vol. 12, No. 6, June 2004, pp. 562–572.
  56. ↑ "Unified Challenges in Nano-CMOS High-Level Synthesis", Invited Talk, 22nd IEEE International Conference on VLSI Design, 2009.
  57. ↑ S. P. Mohanty, Nanoelectronic Mixed-Signal System Design, McGraw-Hill, 2015, ISBN 978-0071825719.
  58. ↑ DFX for Nanoelectronic Embedded Systems, Keynote Address at First IEEE Sponsored International Conference on Control, Automation, Robotics and Embedded System, CARE-2013, "Welcome to Care 2013". Archived from the original on October 9, 2013. Retrieved August 3, 2014. .
  59. ↑ TCVLSI Annual Awards, https://www.computer.org/web/tcvlsi/tcvlsi-annual-awards
  60. ↑ Professor Saraju Mohanty receives IEEE Distinguished Leadership Award, https://engineering.unt.edu/news/professor-saraju-mohanty-receives-ieee-distinguished-leadership-award
  61. ↑ IEEE Consumer Electronics Magazine, https://ieeexplore.ieee.org/xpl/aboutJournal.jsp?punumber=5962380
  62. ↑ VLSI Circuits and Systems Letter (VCAL) – Editorial Board, https://www.computer.org/web/tcvlsi/editorial-board
  63. ↑ "CSDL | IEEE Computer Society". www.computer.org. Retrieved February 16, 2024.
  64. ↑ IEEE TCAD Editorial Board, http://ieee-ceda.org/publications/tcad/editorial-board
  65. ↑ "ACM JOURNAL ON EMERGING TECHNOLOGIES IN COMPUTING SYSTEMS Editorial Board | ACM Digital Library". ACM Journal on Emerging Technologies in Computing Systems. doi:10.1145/JETC (inactive July 12, 2025). Retrieved February 16, 2024.{{cite web}}: CS1 maint: DOI inactive as of July 2025 (link)
  66. ↑ Editorial Board, IEEE Transactions on Nanotechnology, https://site.ieee.org/tnano/editorial-board/saraju-mohanty/
  67. ↑ "IET Digital Library: Editorial board". digital-library.theiet.org. Retrieved February 16, 2024.
  68. ↑ IEEE International Symposium on Smart Electronic Systems (IEEE-iSES), http://www.ieee-ises.org/
  69. ↑ IEEE-CS Symposium on VLSI (ISVLSI), http://www.ieee-isvlsi.org/
  70. ↑ International Conference on Information Technology (ICIT), http://www.oits-icit.org/
  71. ↑ IEEE International Conference on Consumer Electronics (ICCE), http://www.icce.org
  72. ↑ IFIP International Internet of Things Conference (IFIP-IoT), https://ifip-iotconference.org/
  73. ↑ College hosts international IoT conference exploring global collaboration, College of Engineering News, November 28, 2023, https://engineering.unt.edu/news/college-hosts-international-iot-conference-exploring-global-collaboration
  74. ↑ Consumer Electronics Society Awards Presented in 2020, https://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=9109405
  75. ↑ Mohanty receives Fulbright for IoT security, https://engineering.unt.edu/news/mohanty-receives-fulbright-iot-security
  76. ↑ Fulbright Program awards university, faculty, students, https://www.ntdaily.com/news/fulbright-program-awards-university-faculty-students/article_4021c666-93b1-11ee-8efd-9f4f0356f6f8.html
  77. ↑ 2020 IEEE Consumer Electronics Society Chester Sall Awards for 2018 TCE Articles, https://ctsoc.ieee.org/awards/sall.html
  78. ↑ Recipients of the IEEE Consumer Electronics Society Outstanding Service Award, https://ctsoc.ieee.org/awards/outstanding-service.html
  79. ↑ Mohanty receives outstanding service award from IEEE, https://engineering.unt.edu/news/mohanty-receives-outstanding-service-award-ieee
  80. ↑ CSE Professor Saraju Mohanty Receives IEEE Distinguished Leadership Award, https://vpaa.unt.edu/mohanty-IEEE-award, 18th July, 2018.
  81. ↑ Awards - TCVLSI, https://tc.computer.org/tcvlsi/awards/
  82. ↑ "2016 Winners – R. R. Hawkins Award". Association of American Publishers. Retrieved October 9, 2020.
  83. ↑ Toulouse Scholar Award, https://vpaa.unt.edu/fs/recognition/list/toulouse
  84. ↑ CSE students, faculty receive multiple Best Paper awards for work on smart agriculture research, https://computerscience.engineering.unt.edu/news/cse-students-faculty-receive-multiple-best-paper-awards-work-smart-agriculture-research
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