Priyanka sahu | Processing Technique | Young Scientist Award

Dr.Priyanka sahu | Processing Technique | Young Scientist Award

Dr Priyanka sahu Rajiv Gandhi University of Knowledge of Technologies-RK Valley (AP-IIIT RK Valley), Idupulapaya, Andhra Pradesh India

Dr. Priyanka Sahu is an Assistant Professor in Computer Science and Engineering at RGIPT. She holds a PhD from IIT (ISM) Dhanbad, an MTech from IIT Guwahati, and a B.E. from Chhattisgarh Swami Vivekanand Technical University. Her research focuses on Distributed Systems, Blockchain, IoT, and Cloud Computing. Dr. Sahu has published 11 papers in international journals and conferences and contributed book chapters. With experience in academia at IIIT Sri City and SSEC Bhilai, she teaches subjects like Distributed Systems and Blockchain. She also holds certifications in Cloud Computing and has expertise in IoT and cloud platforms.

 

Publication profile

scholar

🏫 Academic Qualifications

Ph.D. in Physics & Materials Science (IIT Indore) – 2023.M.Tech in Physics & Astronomy (NIT Rourkela) – 2017.B.E. in Electronics & Telecommunication (Govt. Engineering College Bilaspur) – 2014.Diploma in Electronics & Telecommunication (Govt. Polytechnic College Ambikapur) – 2011

🎓 Research & Thesis

Ph.D.: Development & Characterization of High Entropy Soft Magnetic Alloys.M.Tech: Electrical & Magnetic Properties of Modified Strontium Hexaferrite

🛠 Technical Skills

Materials Synthesis: Ceramic materials, High Entropy Alloys (HEAs), Magnetocaloric materials.Characterization Techniques: XRD, SEM, TEM, DSC, VSM, Complex Impedance Spectroscopy.Programming & Analysis: MATLAB, COMSOL, Origin, Thermo-Calc.Software: ImageJ, Mendeley, Endnote.

📢 Conference Participation

Presented papers at several international conferences, including ICSM, ICONN, and ISPMM.Invited speaker at the International Conference on Renewable Energy and Sustainable Technology, 2024.

👩‍🏫 Experience

Assistant Professor at Rajiv Gandhi University of Knowledge Technologies (2024–Present).Teaching & Lab experience at IIT Indore and NIT Rourkela

🏆 Achievements

Best Researcher Award at Atomic, Molecular, and Optical Physics 2024.Awards for best oral presentation and poster presentations at IIT IndoreMerit scholarships and multiple academic distinctions.

 

Publication

  • Synthesis and characterization of hydrogenated novel AlCrFeMnNiW high entropy alloy
    • SK Dewangan, VK Sharma, P Sahu, V Kumar
    • 2020

 

  • Investigating the effect of multiple grain–grain interfaces on electric and magnetic properties of [50 wt% BaFe12O19–50 wt% Na0.5Bi0.5TiO3] composite system
    • R Pattanayak, R Muduli, RK Panda, T Dash, P Sahu, S Raut, S Panigrahi
    • 2016

 

  • Microstructure and magnetic behavior of FeCoNi (Mn–Si)x (x = 0.5, 0.75, 1.0) high-entropy alloys
    • P Sahu, S Solanki, S Dewangan, V Kumar
    • 2019

 

  • Dielectric, ferroelectric and impedance spectroscopic studies in TiO2-doped AgNbO3 ceramic
    • R Muduli, R Pattanayak, S Raut, P Sahu, V Senthil, S Rath, P Kumar
    • 2016

 

  • Effect of grain size on electric transport and magnetic behavior of strontium hexaferrite (SrFe12O19)
    • P Sahu, SN Tripathy, R Pattanayak, R Muduli, N Mohapatra, S Panigrahi
    • 2017

 

  • Microstructure, Non-isothermal Crystallization Kinetics and Magnetic Behaviour Study of [FeCoNi100-x(SiMn)x] High Entropy Amorphous Alloys Synthesized by Mechanical Alloying
    • P Sahu, S Samal, V Kumar
    • 2023

 

  • Investigation of the structural, electrical, and magnetic behavior of Co3+-Ti4+ doped strontium hexaferrite: validation of measured and theoretical models
    • P Sahu, PK Sahu, S Panigrahi
    • 2024

 

  • Phase Evolution and Soft Magnetic Behavior of Mechanically Alloyed Fe–Co–Ni Medium Entropy Alloy at Different Disk Angular Velocity
    • P Sahu, S Samal, V Kumar
    • 2023

 

  • An assessment of the mechanically alloyed equiatomic FeCoNiMnSi high entropy amorphous alloy for non-isothermal crystallization kinetics and magnetocaloric refrigeration
    • P Sahu, S Samal, V Kumar
    • 2024

 

conclusion

Dr. Priyanka Sahu is a strong candidate for the Young Scientist Award. Her early achievements in high entropy alloys, magnetocaloric materials, and other areas of materials science are impressive, and her recognition within the scientific community speaks to her potential. While there is room for growth in terms of expanding the real-world impact and leading independent research projects, her current trajectory suggests she is well on her way to becoming a leading figure in her field.

Ali Bagheri Bardi| Digital Signal Processing | Best Researcher Award

Assoc Prof Dr. Ali Bagheri Bardi| Digital Signal Processing | Best Researcher Award

Assoc Prof Dr.  Ali Bagheri Bardi Persian Gulf University Iran

Ali Bagheri Bardi is an accomplished mathematician with a Ph.D. from Kharazmi University, specializing in pure and applied mathematics, including functional analysis, Fourier analysis, and algebraic signal processing. He has held prestigious positions, such as a postdoctoral researcher and visiting professor at the University of Montenegro and has a significant teaching career at Persian Gulf University. Recognized for his contributions, he has received awards like the Abbas Kermani Mathematics Award. His research focuses on operator algebras, noncommutative harmonic analysis, and graph signal processing, with numerous publications in esteemed journals. He has also mentored Ph.D. students and delivered invited talks at international conferences.

Publication Profile

Scholar

Evaluation for Best Researcher Award: Ali Bagheri Bardi

Strengths for the Award:

  1. Extensive Academic and Research Background: Dr. Ali Bagheri Bardi has an impressive academic background with a Ph.D. in Mathematics from Kharazmi University and significant experience in both teaching and research at renowned institutions, including the University of Montenegro and Persian Gulf University.
  2. Diverse Research Contributions: His research spans a broad spectrum of mathematical disciplines, including pure mathematics, functional analysis, Fourier analysis, von Neumann algebras, and applied mathematics, specifically in algebraic signal processing and graph signal processing.
  3. Publication Record: Dr. Bardi has a strong publication record, with numerous papers in prestigious journals such as Signal Processing, Digital Signal Processing, and Linear Algebra and its Applications. His work is recognized for its depth and contribution to the fields of functional analysis and signal processing.
  4. International Recognition: Dr. Bardi has been invited to speak at various international conferences and universities, showcasing his expertise on a global platform. This recognition by the international community is a testament to the impact and significance of his research.
  5. Mentorship: He has supervised several Ph.D. students, guiding them through complex mathematical research, which reflects his dedication to fostering the next generation of researchers.
  6. Awards and Honors: His receipt of the Abbas Kermani Mathematics Award and an Honorable Mention in the International Mathematics Competition further highlight his excellence in research and mathematical problem-solving.

Areas for Improvement:

  1. Interdisciplinary Collaborations: While his work is strong within the realm of pure and applied mathematics, Dr. Bardi could enhance his research profile by engaging in more interdisciplinary collaborations that connect mathematics with other fields, such as computer science or engineering.
  2. Broader Impact and Outreach: Increasing public engagement through popular science articles or public lectures could help disseminate his work to a wider audience and elevate his influence beyond the academic community.
  3. Securing Larger Grants: Pursuing and securing larger-scale research grants, particularly those that support collaborative, multi-institutional projects, could further bolster his standing as a leading researcher.

🎓 Education

2004–2008  Ph.D, Kharazmi University. 2002–2004  M.Sc, Kharazmi University. 1998–2002 B.Sc, Shahid Beheshti University.

🎯 Interests

Pure Math. & Functional Analysis – Fourier Analysis – von Neumann Algebras. Applied Math. & Algebraic Signal Processing – Graph Signal Processing

💼 Working Experience

2023–2024  Postdoctoral Position, University of Montenegro, Electrical Engineering Department. 2022–2023  Visiting Professor, University of Montenegro, Electrical Engineering Department. 2020–2022  Associate Professor, Persian Gulf University. 2010–2020  Assistant Professor, Persian Gulf University.

🏆 Awards

2000  Honorable Mention, International Mathematics Competition for University Students (University College London). 2021 Abbas Kermani Mathematics Award (Shiraz University).

🎤 Invited Talks and Conferences

2009 🇪🇸 Infinite Matrices over Completely Counteractive Banach Algebras, Madrid University, Spain. 2010 🇸🇪 Operator-Valued Convolution Algebras, Chalmers University, Sweden. 2011 🇯🇵 Operator Algebras and their Applications, RIMS, Kyoto University, Japan. 2011 🇵🇱 Operator Algebras and Quantum Groups, Banach Center, Poland. 2011 🇱🇺 Noncommutative Harmonic Analysis and Representation Theory, Luxembourg University, Luxembourg. 2023 🇫🇷 Noncommutative Analysis on Groups and Quantum Groups, Université de Bourgogne Franche-Comté, France.

🎓 Ph.D. Students

Current Student
Fatemeh Zarei, Spectral Theory of Polynomial Transforms and Fourier Transform on Graphs
2021.  S. Javani, Some Analysis of K-Frames and its Dual
2019 . A. Elyaspour, An Algebraic Approach to the Structure Theory of B(H)
2018.  M. Khosheghbal, An Approach to Operator-Valued Measurable Functions

Publications

  • Wold-type decompositions in Baer⁎-rings
    GA Bagheri-Bardi, A Elyaspour, GH Esslamzadeh
    2018
  • The role of algebraic structure in the invariant subspace theory
    GA Bagheri-Bardi, A Elyaspour, GH Esslamzadeh
    2019
  • Operator-valued measurable functions
    GA Bagheri-Bardi
    2015
  • Operator-valued convolution algebras
    GA Bagheri-Bardi, AR Medghalchi, N Spronk
    2010
  • Numerical solutions of a mathematical model of plankton–oxygen dynamics using a meshless method
    A Shirzadi, S Ghayedi, M Safarpoor, G Bagheri Bardi
    2018
  • Borel structures coming from various topologies on
    GA Bagheri-Bardi, M Khosheghbal-Ghorabayi
    2017
  • Zero-padding on Connected Directed Acyclic Graphs for Spectral Processing
    L Stanković, M Daković, M Brajović, I Stanković, AB Bardi
    2023
  • Vector-valued measurable functions
    GA Bagheri-Bardi
    2019
  • An extension of Riesz dual pairing in non-commutative functional analysis
    GA Bagheri-Bardi, A Elyaspour, S Javani, M Khosheghbal-Ghorabayi
    2018
  • Fourier Analysis of Signals on Directed Acyclic Graphs (DAG) Using Graph Zero-Padding
    L Stankovic, M Dakovic, AB Bardi, M Brajovic, I Stankovic
    2023
  • Eigenvalues of Symmetric Non-normalized Discrete Trigonometric Transforms
    AB Bardi, M Dakovic, T Yazdanpanah, L Stankovic
    2023
  • The Schur decomposition of discrete Sine and Cosine transformations of type IV
    Ali Bagheri Bardi, Milos Dakovic, Taher Yazdanpanah, Fatemeh Zarei, Ljubisa Stankovic
    2023
  • Wold-type decomposition of semigroups of isometries in Baer⁎-rings
    GA Bagheri-Bardi, GH Esslamzadeh, M Sabzevari
    2021
  • Four Algorithms to Produce Approximate K-Dual Frames
    S Javani, GA Bagheri Bardi, F Takhteh
    2020

Conclusion:

The conclusion for the professional and academic profile of Ali Bagheri Bardi highlights his extensive expertise in both pure and applied mathematics, with a particular focus on functional analysis, operator algebras, and algebraic signal processing. Throughout his career, he has held prominent academic positions, contributed significantly to mathematical research, and received recognition for his scholarly achievements, including prestigious awards and invitations to international conferences. His research has led to numerous publications in high-impact journals, and his work continues to influence various fields, particularly in signal processing and noncommutative analysis. His dedication to mentoring Ph.D. students further underscores his commitment to advancing mathematical sciences.