ROHIT PENKI | Microwave Engineering | Best Researcher Award

Mr. ROHIT PENKI | Microwave Engineering | Best Researcher Award

Mr at CHAITANYA ENGINEERING COLLEGE, VISHAKAPATNAM, India

Penki Rohit is an Assistant Professor in Electronics and Communication Engineering with extensive experience in teaching and research. He holds a Ph.D. (pre-PhD completed) from KIIT University, an M.Tech in VLSI from JNTUK, and a B.Tech in ECE from JNTUK. He has worked at St. Theressa Avanthi College of Engineering and is currently at Chaitanya Engineering College, Vishakhapatnam. His areas of expertise include RF & Antenna Engineering, Radar Signal Processing, and VLSI Design. Rohit has supervised numerous student research projects and has published several papers in reputed journals, with contributions to antenna design, IoT applications, and machine learning in various engineering contexts.

Profile

Scholar

šŸŽ“ EducationĀ 

Ph.D. (Pre-PhD completed), KIIT University, Bhubaneswar. M.Tech (VLSI), MVGR College of Engineering, JNTUK (81%). B.Tech (ECE), MVGR College of Engineering, JNTUK (60%). Intermediate, Sri Narayana Junior College (73%). SSC, Bhashyam Public School (85%)

šŸ’¼ ExperienceĀ 

Current Position: Assistant Professor, Electronics and Communication Engineering, Chaitanya Engineering College, Vishakhapatnam (Aug 2023ā€“Present). Previous Role: Assistant Professor, St. Theressa Avanthi College of Engineering, Visakhapatnam (Feb 2019ā€“July 2023). Teaching Expertise: RF and Antenna Engineering, Satellite Communication, Radar Systems, VLSI Design. Research Guidance: Directed undergraduate research projects, including the design and development of microwave antennas. Technical Expertise: Proficient in MATLAB, HFSS, Mentor Graphics, Xilinx ISE, and FPGA Boards

šŸ† Awards and Honors

Best Paper Awards for various publications in UGC Care Group I journals. DST Travel Grant in 2012 to attend an international conference at Pittsburgh, USA. Early Career Research Award from SERB in 2017. Research Excellence Award (Rs. 12,000) in 2015 from Graphic Era University. GUCOST Funding (Rs. 40,000) for a workshop on antenna design (2019). DTE Funding (Rs. 1,00,000) for organizing a workshop (2018). IEEE (SCOPUS indexed) Journal Publications

šŸ”¬ Research FocusĀ 

Antenna Design: Development of miniature antennas, CPW-fed antennas, and metasurface antennas for various applications, including IoT and wireless communications. VLSI Design: Exploring power-efficient SRAM cell architectures and optimizing delay and power consumption in VLSI circuits. Microwave Antennas: Researching antenna performance for satellite communication and radar systems. Machine Learning and AI: Investigating the integration of machine learning algorithms in the development of advanced antennas for wireless sensor networks and smart applications. Publications and Patents: Rohit has authored over 20 journal papers and several patents related to IoT, machine learning, and communication systems, including designs for high-gain antennas and systems for real-time monitoring.

Conclusion

Dr. Penki Rohit’s solid academic background, research experience, and contributions to the field of Electronics and Communication Engineering make him a deserving candidate for the Best Researcher Award. His continuous pursuit of knowledge, commitment to academic excellence, and practical research applications place him at the forefront of his discipline, and his future endeavors promise to bring even greater advancements to the field.

Publications šŸ“š

  • Design of High Gain Metasurface Antennas using Hybrid Atomic Orbital Search and Human Mental Search Algorithm for IoT Applications
    • Journal: 2023 10th International Conference on Signal Processing and Integrated Circuits
    • Year: 2023
    • Citations: 5

 

  • Design of Circular Microstrip Antenna with Metasurface Superstate for Wi-Fi Applications
    • Journal: 2024 IEEE Wireless Antenna and Microwave Symposium (WAMS)
    • Year: 2024
    • Citations: 3

 

  • Design of Circularly Polarized E-Slot Aperture Coupled Dielectric Resonator Antenna for Wideband Applications
    • Journal: 2023 International Conference on Microwave, Optical, and Communication Engineering
    • Year: 2023
    • Citations: 2

 

  • Future Trends in Design of Metamaterial Printed Antennas Using 5G Applications
    • Journal: Journal For Basic Sciences
    • Year: 2024

 

  • Construction of Advanced Child Rescue System from Open Borewells Using Robotic Claws & Raspberry Pi Module
    • Journal: International Journal for Research Trends and Innovation
    • Year: 2023

 

  • Design of UWB Fractal Monopole Antenna Using Differential Evolution Algorithm
    • Journal: KRONIKA Journal
    • Year: 2024

 

  • Improved Bank Safety Alert System Integrated with GSM Technology
    • Journal: International Journal of All Research Education and Scientific Methods
    • Year: 2024

 

  • Design of Rectangular Metasurface Antenna for Wireless Communication Devices
    • Journal: Journal of Systems Engineering and Electronics
    • Year: 2024

 

  • Design of Quasi Modified Rectangular Patch Antenna Using Ultra Wideband (UWB) Frequency for Radar Communications
    • Journal: Journal of Systems Engineering and Electronics
    • Year: 2024

Ahmed Nouainia | Electromagnetic et electronique | Best Scholar Award

Mr. Ahmed Nouainia | Electromagnetic et electronique | Best Scholar Award

Mr at UniversitƩ tunis manar, Tunisia

Nouainia Ahmed, born on August 20, 1985, is a Tunisian physicist specializing in electromagnetic shielding and radio frequency circuits. With a Ph.D. in Physics from the Faculty of Sciences of Tunisia (2019), his work has primarily focused on optimizing shielding efficiency in communication systems. He served as a Contractual Assistant Professor at various institutions including the Higher Institute of Human Sciences of Jendouba and the Higher Institute of Technology Studies of Jendouba. In addition, Nouainia has contributed significantly to postdoctoral research at the National Institute of Research and Physical and Chemical Analysis (INRAP). He is skilled in designing RF circuits, antennas, and digital signal processing, and has actively supervised master’s and doctoral students. Nouainia is fluent in Arabic and French and possesses a strong command of English.

profile

Scopus
  • šŸŽ“ EducationĀ 

    Nouainia Ahmed earned his Ph.D. in Physics in February 2019 from the Faculty of Sciences of Tunisia (FST) under the supervision of Professor Taoufik Aguili. His dissertation focused on modeling electromagnetic leakage in high-frequency systems and optimizing shielding efficiency. Earlier, in December 2012, he completed a specialized master’s degree at FST in Soft Matter Physics and Electromagnetic Modeling, where he experimentally determined the Landau coefficients of ferroelectric liquid crystals under the guidance of Professor Soltani Taoufik. In June 2010, Nouainia also received his master’s degree from FST. He has undergone various specialized formations and trainings in electromagnetic compatibility and cyber security. Nouainiaā€™s academic background reflects his expertise in applied physics, particularly within the domain of communications and shielding technologies.

    šŸ§‘ā€šŸ« ExperienceĀ 

    From 2019 to 2022, Nouainia Ahmed served as a Contractual Assistant Professor at the Higher Institute of Human Sciences of Jendouba, where he taught advanced physics courses such as Geometric Optics and Antenna Systems. In 2022-2023, he continued his role at the Higher Institute of Technology Studies of Jendouba (ISETJ), focusing on Electrical Safety, Signal Processing, and CAO labs. Simultaneously, from 2021 to 2023, Nouainia pursued postdoctoral research at the National Institute of Research and Physical and Chemical Analysis (INRAP). His areas of teaching expertise include satellite systems, antenna design, and data transmission. Additionally, Nouainia has supervised multiple students and engineers during his tenure, guiding them through master’s and doctoral programs as well as practical research projects.

    šŸ† Awards and HonorsĀ 

    Nouainia Ahmed has achieved recognition for his contributions to the field of electromagnetic shielding and wave concept modeling. Throughout his academic and research career, he has been involved in international symposiums and conferences where his work was frequently highlighted and awarded. In particular, his participation at conferences such as the International Wireless Communications & Mobile Computing Conference (IWCMC) in Morocco and the Mediterranean Microwave Symposium (MMS) in France, among others, received significant accolades. His participation in renowned international research schools and forums, such as the Spring School of Electromagnetic Compatibility and the Forum for Electromagnetic Research Methods and Application Technologies (FERMAT), further exemplify his academic and research commitment. Although specifics regarding his formal awards remain limited, his achievements across various prestigious platforms and collaborative international engagements reflect his standing in the academic and research communities.

    šŸ”¬ Research Focus

    Nouainia Ahmed’s research primarily revolves around electromagnetic compatibility, shielding optimization, and high-frequency circuit design. His Ph.D. work focused on reducing electromagnetic interference (EMI) through improved shielding techniques, using innovative approaches like the Method of Moments-Generalized Equivalent Circuit (MoM-GEC). He has extended this expertise to applications in waveguide shielding, antenna design for wireless communications, and digital signal processing. His contributions to understanding electromagnetic diffraction and interference control have practical implications in both academic and industrial settings. Throughout his career, he has collaborated with international teams, enhancing his work in reconfigurable antennas, microwave structure modeling, and wireless communications. His postdoctoral research at the National Institute of Research and Physical and Chemical Analysis (INRAP) explored new techniques in RF circuit optimization and shielding effectiveness, emphasizing the development of more efficient and sustainable communication systems.

Publications Top Notes:

 

 

 

 

 

 

 

  • Wave concept in MoM-GEC formalism
    • Authors: Nouainia, A., Hajji, M., Aguili, T.
    • Conference: 2017 International Applied Computational Electromagnetics Society Symposium – Italy (ACES 2017), 7916331