Prof. Danping Huang | Strategic Leadership | Best Researcher Award

Prof. Danping Huang | Strategic Leadership | Best Researcher Award

sichuan university of science and engineering, China

Tianjin university, China

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Scopus

Early Academic Pursuits 🎓

Aguid Mohammed Echarif’s journey into the field of electrical engineering began with a strong academic foundation at Université M’hamed Bouguerra de Boumerdes in Algeria. He earned his bachelor’s degree in Electrical Engineering and Electronics (2012–2015), showcasing his aptitude for technical subjects and problem-solving skills. Building on this, he pursued a master’s degree in Control Engineering (2015–2018) at the same institution, where he gained expertise in automation, control systems, and advanced electrical concepts. During his university years, Aguid demonstrated a keen interest in practical learning, participating in internships that exposed him to real-world applications of electrical engineering.

His academic ambitions did not stop there. In 2020, Aguid embarked on a prestigious Ph.D. program at Tianjin University in China, delving into advanced research in power electrical systems for more electric aircraft. This pursuit reflects his commitment to addressing modern engineering challenges, particularly in sustainable and energy-efficient technologies.

Professional Endeavors and Contributions ⚡

Aguid has accumulated over four years of professional experience as an electrical engineer, with a strong focus on electrical systems design, troubleshooting, and team leadership. His career began at Agro-Film Packaging in Sétif, where he worked from October 2018 to January 2023. In this role, he was instrumental in:

  • Troubleshooting and resolving electrical faults to ensure uninterrupted operations.
  • Designing and maintaining electrical systems and equipment, ensuring their efficiency and reliability.
  • Creating and interpreting diagrams and instructions for electrical panels and equipment.
  • Programming and installing PLCs (Programmable Logic Controllers) and Variable Frequency Drives (VFDs) to optimize system performance.
  • Leading installation teams for new machinery, ensuring projects were completed on time and met quality standards.

His ability to lead teams in high-pressure environments while maintaining precision and quality underscores his strong leadership and collaborative skills.

Research Focus 🔍

As a Ph.D. candidate at Tianjin University, Aguid’s research centers on power electrical systems for more electric aircraft, a cutting-edge field aiming to revolutionize aviation through sustainable and efficient power solutions. His work involves exploring innovative designs and methodologies that reduce reliance on traditional fuel systems, paving the way for a greener and more sustainable aviation industry. This research aligns with global efforts to minimize carbon footprints and transition to cleaner energy sources.

Accolades and Recognition 🏆

Aguid’s academic and professional accomplishments have earned him recognition as a dedicated and innovative engineer. While specific awards are not listed, his admission into a prestigious Ph.D. program at one of China’s leading universities is a testament to his academic excellence and potential. His ability to balance demanding research with a successful professional career demonstrates his exceptional time management and organizational skills.

Impact and Influence 🌍

Aguid has made significant contributions to the engineering community through his practical expertise and research endeavors. At Agro-Film Packaging, his leadership in troubleshooting, system design, and team management directly impacted operational efficiency and productivity. His efforts in designing Human-Machine Interfaces (HMIs) and programming advanced control systems highlight his ability to bridge the gap between technical complexity and user-friendly solutions.

In academia, his research on electrical systems for aircraft could influence the development of more sustainable technologies in the aviation industry, potentially setting benchmarks for energy efficiency and innovation.

Legacy and Future Contributions 🌟

Looking ahead, Aguid is poised to leave a lasting legacy in both the industrial and academic spheres. His ability to combine practical engineering skills with advanced research positions him as a leader in the development of sustainable electrical systems. His work not only addresses current engineering challenges but also lays the groundwork for future innovations in aviation and beyond.

As he continues to build on his expertise, Aguid Mohammed Echarif is expected to play a pivotal role in driving technological advancements and mentoring the next generation of engineers. His journey exemplifies the fusion of academic brilliance, professional acumen, and a vision for a sustainable future.

Closing Thoughts 🌟

From his early academic achievements to his professional and research endeavors, Aguid has consistently demonstrated a passion for engineering and innovation. His ability to navigate complex challenges with creativity and technical proficiency makes him a standout figure in the field of electrical engineering.

📝Notable Publications

 Torque Ripple Suppression in the 6/4 Variable Flux Reluctance Machine with Open Winding Configuration by Using Harmonic Injection

Authors: Liu, X.; Aouiche, E.M.; Aouiche, A.; Cao, Y.; Aguida, M.E.

Journal: Energies

Year: 2024

 Technological Advancements and Future Prospects of Electrical Power Systems for Sustainable More Electric Aircraft

Authors: Aguida, M.E.; Che, Y.; Yang, J.

Journal: Propulsion and Power Research

Year: 2024

 

Assist Prof Dr. Muhammmad Punhal Sahto | Mechanical Engineering | Best Researcher Award

Assist Prof Dr. Muhammmad Punhal Sahto | Mechanical Engineering | Best Researcher Award

NFC IET Multan Pakistan, Pakistan

Profile 

Google Scholar

Early Academic Pursuits 📚🎓

Michael Natarus’s journey into healthcare innovation began with a strong academic foundation. His undergraduate studies in Health Science at The Ohio State University (2009-2013) established a solid basis in clinical knowledge and health systems. This early exposure to the health field helped him appreciate the intricacies of patient care, preventive health, and medical processes. Building upon this, he pursued a Doctor of Physical Therapy (DPT) degree at the University of Indianapolis (2013-2016), which not only honed his expertise in clinical practice but also introduced him to the operational aspects of physical therapy. Eager to deepen his understanding of the business side of healthcare, Natarus pursued an MBA at National Louis University (2021-2023) with a concentration in Design Thinking and Entrepreneurship. This combination of clinical and business education positioned him uniquely at the intersection of healthcare and innovation, equipping him with skills in management, process optimization, and patient-centered care improvements.

Professional Endeavors 💼🌐

Natarus’s professional journey reflects a dedication to clinical excellence and organizational improvement. Beginning his career as a Pediatric Physical Therapy Resident at Comer Children’s Hospital at the University of Chicago (2016-2017), he quickly became a clinical expert within high-acuity settings. His efforts here led to enhanced documentation practices, establishing the groundwork for efficiency improvements in patient care.

In September 2017, he joined Ann and Robert H. Lurie Children’s Hospital of Chicago as a Lead Pediatric Physical Therapist. Over the following four years, he championed initiatives to refine clinical pathways, ensure patient safety, and effectively manage resources. In collaboration with Northwestern University, he supervised ICU staff onboarding and trained new students, thus establishing a reputation for leadership in clinical education. Natarus later took on the role of Improvement Consultant at Lurie Children’s Hospital (2021-2023) and eventually Improvement Consulting Manager (2023-present), where he focused on scaling quality improvement frameworks, implementing Lean Six Sigma methodologies, and engaging interdisciplinary teams. These roles allowed him to bridge the gap between clinical practices and operational improvement, using data and strategic leadership to drive sustainable change.

Contributions and Research Focus 🔬📊

Throughout his career, Natarus has made substantial contributions to healthcare innovation, particularly in the realms of process improvement and safety. One of his notable projects involved the redesign of the sterile process department at Lurie Children’s Hospital, which optimized digital inventory management, yielding cost reductions and streamlined operations. He also worked closely with diagnostic imaging teams to enhance MRI throughput, helping reduce waiting times and improve patient access.

Natarus’s dedication to clinical excellence is evident in his focus on data-driven safety solutions. He employed the “5 Why’s” root cause analysis technique to identify and mitigate potential risks in patient care. Additionally, he collaborated with senior hospital leaders to review policies related to The Joint Commission’s standards for Restraint and Seclusion, ensuring compliance and elevating patient safety measures. His role as a faculty member and mentor for Lean Green Belt and Improvement Science coursework at Lurie Children’s Hospital demonstrates his commitment to fostering a culture of continuous learning and improvement within the healthcare community.

Accolades and Recognition 🏅🌟

As a healthcare leader, Natarus has earned several notable accolades and certifications. His Lean Green Belt certification, along with his anticipated Lean Six Sigma Black Belt (Fall 2024), showcases his proficiency in process improvement methodologies. His licensure as a Board-Certified Clinical Specialist in Pediatrics and as a Licensed Physical Therapist further solidifies his authority in the clinical domain. His technical skills are similarly impressive, with expertise in Microsoft Excel, Visio, and other essential tools in the healthcare management field, empowering him to effectively analyze data, design workflows, and implement complex project management strategies. These accolades highlight his commitment to excellence in both clinical and operational spheres.

Impact and Influence 🏥🤝

Natarus’s impact is evident not only in his accomplishments but also in the positive influence he has had on his colleagues, patients, and the healthcare system as a whole. As an Improvement Consulting Manager, he leads a team of six improvement consultants and has guided a larger 29-person team in strategic project management. His influence extends to high-level decision-making, as he collaborates with C-suite executives and senior leaders to advance initiatives that elevate healthcare quality and efficiency. His role in organizing department retreats focused on holistic wellness for staff underscores his dedication to supporting the physical, mental, and spiritual well-being of his colleagues. By blending clinical expertise, data analytics, and compassionate leadership, Natarus has become a role model for aspiring healthcare professionals.

Legacy and Future Contributions 🌍🚀

Looking ahead, Michael Natarus is poised to continue shaping the future of healthcare. His commitment to process improvement, innovation, and patient-centered care reflects a forward-thinking approach that addresses the evolving challenges of the healthcare landscape. With an anticipated Lean Six Sigma Black Belt certification, Natarus will expand his skillset, allowing him to further refine healthcare delivery processes and implement more efficient, data-driven solutions. His vision for healthcare combines a passion for innovation with a deep understanding of patient care, positioning him as a leader capable of transforming the industry.

Natarus’s legacy will likely be one of continuous improvement, collaboration, and compassion. His dedication to safety, efficiency, and quality sets a standard that resonates across the healthcare field. As he continues to mentor emerging professionals and implement forward-thinking strategies, Natarus’s contributions will leave an indelible mark on healthcare systems, setting new benchmarks for operational excellence and patient care.

📝Notable Publications

Modelling and Simulation of Aerostatic Thrust Bearings”

Authors: MP Sahto, W Wang, M Imran, L He, H Li, G Weiwei

Journal: IEEE Access

Year: 2020

“Dynamic Performance of Partially Orifice Porous Aerostatic Thrust Bearing”

Authors: MP Sahto, W Wang, AN Sanjrani, C Hao, SA Shah

Journal: Micromachines

Year: 2021

“Integrating Experimental and Theoretical Investigations of Porous Graphite Materials with Scanning Electron Microscope Image Processing”

Authors: MP Sahto, W Wei, MF Jamil, A Mehmood, M Sattar, A Raza, MU Rahman

Journal: Results in Engineering

Year: 2024

“Dynamic Computation Grid Based Theoretical and Experimental Investigations of Core Pressure Unit in the Stability of Aerostatic Bearings”

Authors: MP Sahto, W Wang, MF Jamil, A Mehmood, M Sattar, A Raza

Journal: SSRN (preprint)

Year: N/A

Ms. Aziza Atbir | Civil Engineering-Materials | Women Researcher Award

Ms. Aziza Atbir | Civil Engineering-Materials | Women Researcher Award

Mohammed V University Mohammadia School of Engineering Rabat Morocco,

Profile 

Orcid

Early Academic Pursuits 🎓

Aziza Atbir’s academic journey began in Morocco, where she showed an early aptitude for the sciences. She completed her secondary education at Tarik Ben Zayad high school in Azrou, earning a diploma in Experimental Sciences with a focus on Physical Sciences. This achievement was marked by high honors, paving the way for her entry into higher education. In 2013, she pursued a General University Degree in Chemistry Sciences from Moulay Smail University, followed by a Fundamental Undergraduate Degree in Chemistry Sciences at Mohamed I University in Nador in 2014. Continuing her upward trajectory, Aziza completed a Master’s degree in Materials Sciences at Ibn Tofail University, Kénitra, in 2017, where she graduated with honors. This extensive academic preparation laid a strong foundation for her future research pursuits. Currently, Aziza is completing her PhD at Mohammadia School of Engineering, focusing on Civil Engineering and Building Materials, at Mohammed V University, Rabat.

Professional Endeavors and Research Focus 🧪

Aziza’s professional experience reflects her dedication to the development of sustainable and innovative materials. Her work centers on bio-sourced materials for thermal insulation and energy efficiency in buildings, making her an important player in the fight against climate change. Her current research is focused on using sheep wool, a locally available and renewable material, as a bio-based composite for energy-efficient insulation. She has worked on optimizing the thermomechanical properties of these materials through innovative approaches such as multi-layer biomaterial designs that combine wool and clay, ensuring both thermal insulation and mechanical strength.

Her work is notable not just for its scientific merit but also for its strong environmental focus. Aziza’s research aligns with circular economy principles, as she emphasizes the importance of using locally sourced, sustainable materials to reduce the carbon footprint of the building industry. Her research projects have also explored natural anti-parasitic treatments for sheep wool, aiming to make this material more durable and resistant to moth damage, further enhancing its sustainability.

Contributions and Research Achievements 📚

Aziza has made significant contributions to the field of civil engineering and materials science through both her published works and her participation in national and international scientific events. Her research has resulted in over 10 articles published in indexed journals, including high-impact titles such as Renewable and Sustainable Energy Reviews and Scientific Reports. Her studies have ranged from the optimization of lightweight composite bricks incorporating clay, wool, and cork, to investigating the thermophysical properties of sheep wool in building insulation.

In addition to her published research, Aziza has engaged deeply with the academic community. She has served as a reviewer for multiple Scopus-indexed journals and participated in more than 322 hours of national scientific events, workshops, and conferences. These engagements not only reflect her commitment to advancing knowledge in her field but also demonstrate her role as a thought leader in sustainable material development.

Accolades and Recognition 🏅

Throughout her academic and professional journey, Aziza has been recognized for her outstanding contributions to both science and the broader community. As a student, she graduated with honors at multiple stages of her education, consistently demonstrating her academic excellence. In 2023, she was awarded the opportunity to conduct a prestigious research internship with the bioactive molecules and environment team at the Faculty of Science in Meknes, Morocco. Additionally, her research on sheep wool and energy efficiency has been published in reputable journals, garnering her recognition in the scientific community.

Aziza’s work is particularly notable for its practical applications, with her research findings contributing directly to the development of eco-friendly building materials. Her involvement in various research projects has positioned her as an emerging leader in sustainable construction, and she is a strong candidate for the Women Researcher Award, a testament to her groundbreaking work and dedication to environmental sustainability.

Impact and Influence 🌍

Aziza’s research is contributing to both the academic world and society at large by addressing some of the most pressing challenges of our time—climate change and energy efficiency. Her innovations in bio-sourced building materials represent an essential step towards reducing the environmental impact of the construction industry, which is one of the largest contributors to global carbon emissions. By focusing on renewable resources like sheep wool, Aziza’s work supports the transition to a circular economy, where materials are reused, and waste is minimized.

Moreover, Aziza’s focus on the thermomechanical properties of these bio-based materials ensures that they are not only environmentally friendly but also functional and effective. Her work bridges the gap between sustainability and practicality, ensuring that her innovations can be readily adopted by the construction industry. Through her research, Aziza has become an influential figure in the field of sustainable building materials, inspiring others to pursue similar paths in environmental engineering and material sciences.

Legacy and Future Contributions 🏛️

As she approaches the completion of her PhD, Aziza Atbir’s future is bright. Her work on bio-sourced materials has the potential to revolutionize the building industry, offering a sustainable solution to both thermal insulation and energy efficiency. She is actively seeking post-doctoral opportunities to continue her research and further explore the potential of bio-based composites in construction.

Looking ahead, Aziza’s work is likely to have a lasting impact not only in academia but also in the practical realm of sustainable development. Her contributions to the field will serve as a model for future researchers, and her commitment to using science to solve global challenges ensures that her legacy will continue to grow.

As a researcher, Aziza embodies the qualities of innovation, dedication, and leadership. She has already achieved significant milestones in her career, and her future endeavors will undoubtedly contribute to a more sustainable and energy-efficient world.

Notable Publications

Optimal mix study of sustainable lightweight composite bricks incorporating clay, wool and cork materials using circular economy approaches

Authors: Aziza Atbir, Boukhattem, Abdelhamid Khabbazi, Moha Cherkaoui, Fatima Zohra El Wardi

Journal: Renewable and Sustainable Energy Reviews

Volume: N/A

Year: 2024

Improvement of thermomechanical properties of porous plaster reinforced with a network of Morocco sheep wool skeletons for energy efficiency

Authors: Aziza Atbir, Abdelhamid Khabbazi, Moha Cherkaoui, Khalid Ibaaz, Fatima Zohra El Wardi, Samira Chebli

Journal: Building and Environment

Year: 2023

Physicochemical and thermomechanical performances study for Timahdite sheep wool fibers application in the building’s insulation

Authors: Aziza Atbir, Mhamed Taibi, Badr Aouan, Abdelhamid Khabbazi, Omar Ansari, Moha Cherkaoui, Toufik Cherradi

Journal: Scientific Reports

Year: 2023

Improvement of thermomechanical characteristics of multilayer biomaterial of sheep wool and clay

    • Authors: Aziza Atbir, Moha Cherkaoui, Fatima Zohra El Wardi, Abdelhamid Khabbaz
    • Journal: Materials Today: Proceedings
    • Volume: N/A
    • Issue: N/A
    • Pages: N/A
    • Year: 2022
    • DOI: 10.1016/j.matpr.2022.02.224
    • ISSN: 2214-7853

Study of the thermal and mechanical properties of local clay materials activated with quicklime, Sefrou (Morocco)

Authors: Fatima Zohra El Wardi, Sara Ladouy, Aziza Atbir, Abdelhamid Khabbazi

Journal: Materials Today: Proceedings

Year: 2022