Ms. Priyanka : Leading Researcher in Neuromorphic Computing
Ms. Priyanka, Rajkiya Engineering College, India
👨🏫 Ms. Priyanka, a dedicated researcher and educator, is currently immersed in the realm of electronics and semiconductor technology, pursuing a Ph.D. in the Department of Electronics Engineering at NIT Patna. With a Master’s degree in Technology from NIT Rourkela and a Bachelor’s degree from Ajay Kumar Garg Engineering College, Ms. Priyanka boasts an impressive academic journey. With over 6 years of teaching experience, Ms. Priyanka has become a respected figure in the field, holding various positions such as Cultural and Literary Club Coordinator and serving as a Girl Hostel Warden at REC Mainpuri. Notably, Ms. Priyanka has excelled as a Library In-charge for the Department of Applied Sciences and Humanities and as Lab Incharge for Electronics, ADE, Communication, and Microprocessor Lab at Rajkiya Engineering College, Mainpuri. 🎓🔬
🌟 In addition to academic and administrative roles, Ms. Priyanka has received numerous accolades, including the prestigious Best Young Scientist Award at the “17th International Conference on Optics, Lasers & Photonics” in 2021. With a passion for knowledge dissemination, Dr. [Name] has been recognized as a distinguished speaker at five international conferences and has earned NPTEL Online Certifications in CMOS Digital VLSI Design, Fundamentals of Semiconductor Devices, and Microelectronics Devices To Circuits. This accomplished individual also holds a Translator Certificate from IIT Delhi for translating course files into Hindi. The recipient of the Institute Medal for Branch Topper at NIT Rourkela, Ms. Priyanka continues to contribute significantly to the fields of Leaky Integrate and Fire Neuron, Neuromorphic Computing, VLSI Design, and more. 🎓💡🔬
Profiles : Scopus
🏆 Awards:
- 🔬 Best Young Scientist Award in “17th International Conference on Optics, Lasers & Photonics” (June 26-27, 2021)
- 🌍 Best Speaker Award for completing 5 International conferences
- 💬 NPTEL Translator Certificate (Hindi) by IIT Delhi for Electrical Machines course (2020)
- 💻 NPTEL Online Certification (Elite+Silver: Top 1%) in CMOS Digital VLSI Design (Feb-April 2019)
- 🏆 NPTEL Online Certification (Elite+Silver: Top 1%) in Fundamentals of Semiconductor Devices (Jan-April 2019)
- 🌐 NPTEL Online Certification (Elite+Silver) in Microelectronics Devices To Circuits (July-Oct 2019)
- 🎓 Institute Medal for Branch Topper at NIT Rourkela (Jan 21, 2017)
- 🥇 Certificate of Excellence for Holding First Position in M.Tech in Electrical Engineering at NIT Rourkela (Jan 21, 2017)
🌐 Research Interests : 📖
- 🔍 Leaky Integrate and Fire Neuron
- 💻 Neuromorphic Computing
- 🔬 Nano Electronics
- 🛠️ VLSI Design
- 📏 Semiconductor Devices
- ⚙️ Microelectronics
- ☀️ Perovskite Solar Cells
- 🚇 Tunnel Field Effect Transistors (TFET)
- 🔄 Ferro TFET
- 🚫 Junctionless and Doping-less MOS Devices
- 🔄 Charge Plasma Bipolar Devices
- 🔧 FinFETs
📚 Publication Impact and Citations:
- 📝 Publications: 31 documents indexed in Scopus.
- 📊 Citations: A total of 88 citations for his publications, reflecting the widespread impact and recognition of Ms. Priyanka’s research within the academic community.
Publications ( Top Note ) :
1. Emulation of Neuro-mimetic Dynamics via GaSb/Si Heterojunction V-DGTFET Leaky-Integrate-Fire Silicon Neuron
2. Analysis of full reference quality metrics for image transmission over a MIMO OWC channel under varying turbulent conditions
3. Design and Simulation-Based Analysis of Triple Metal Gate with Ferroelectric-SiGe Heterojunction Based Vertical TFET for Performance Enhancement
4. Simulation Study of Linearly Graded Binary Metal Alloy Pα Q1-α Gate TFET Device for Realization of Boolean Functions
5. Quality assessment for terrestrial digital video broadcast over optical wireless communication-passive optical network under moderately turbulent regime with spatial diversity
6. Design of electro-optic Mach–Zehnder interferometer based all-optical binary half adder and half subtractor
7. Modeling of intensity fluctuations in the turbid underwater wireless optical communication links
8. Performance estimation of image transmission in indoor visible light communication system based on variable pulse position modulation
9. Statistical channel model to characterize turbulence-induced fluctuations in the underwater wireless optical communication links
10. Modeling of laser beam deviation and estimation of link outage due to the presence of air bubbles in the underwater wireless optical communication system