Aziza Ibrahim Hussein | Electrified Transportation | Innovative Research Award

Innovative Research Award

Aziza Ibrahim Hussein
Effat University

     Aziza Ibrahim Hussein
Affiliation Effat University
Country Saudi Arabia
Scopus ID 35588439400
Documents 127
Citations 944
h-index 16
Subject Area Electrified Transportation
Event World Green Energy Awards
ORCID 0000-0001-9610-395X

Aziza Ibrahim Hussein is a researcher affiliated with Effat University, Saudi Arabia, whose academic contributions focus on electrified transportation and sustainable energy technologies. Her research profile reflects interdisciplinary engagement in advanced transportation systems, energy efficiency, and innovative approaches supporting the transition toward cleaner mobility solutions.

Abstract

Aziza Ibrahim Hussein is recognized for research contributions in the field of electrified transportation, addressing emerging challenges associated with sustainable mobility, energy optimization, and advanced transportation technologies. Her scholarly work explores innovative solutions that support efficient energy utilization and environmentally responsible transportation systems. Through academic publications and research activities, she contributes to the development of knowledge related to electrification strategies and future mobility frameworks. Her research profile demonstrates engagement with interdisciplinary approaches combining engineering, sustainability, and energy technologies. The Innovative Research Award recognizes her scientific contributions and commitment to advancing research-driven solutions within green energy and transportation domains. [1]

Keywords

Electrified Transportation, Green Energy, Sustainable Mobility, Energy Efficiency and Transportation Innovation

Introduction

Electrified transportation has become a significant research area due to increasing global interest in reducing emissions and improving energy sustainability. Researchers in this field investigate technologies including electric vehicles, energy management systems, charging infrastructure, and integrated renewable energy solutions. These developments contribute to the transformation of modern transportation networks. [2]

Research Profile

Aziza Ibrahim Hussein’s research profile is indexed through Scopus with Author ID 35588439400. The profile includes 127 scholarly documents, 944 citations, and an h-index of 16, reflecting academic contributions within the research community. Her primary subject area is electrified transportation, with emphasis on sustainable engineering applications. [1]

Research Contributions

The research contributions of Aziza Ibrahim Hussein focus on advancing understanding of electrified transportation systems and their role in sustainable energy transitions. Her work supports technological development by examining efficient transportation solutions, energy utilization methods, and engineering approaches for future mobility applications. [3]

Publications

Her publications represent research activities related to energy systems, transportation technologies, and sustainable engineering. The scholarly outputs contribute to discussions surrounding electrification strategies, technological innovation, and environmentally conscious transportation development. Selected publications are available through academic indexing platforms and digital research databases. [3]

Research Impact

The impact of her research is reflected through citation records, publication activity, and contributions to the field of electrified transportation. Her work supports ongoing academic efforts toward cleaner energy systems and sustainable transportation models aligned with global environmental objectives. [1]

Award Suitability

The Innovative Research Award recognizes researchers demonstrating meaningful contributions through scientific advancement and innovative approaches. Aziza Ibrahim Hussein’s research activities in electrified transportation align with the objectives of the World Green Energy Awards by supporting sustainable technology development and future-oriented energy solutions. [4]

Conclusion

Aziza Ibrahim Hussein represents an academic researcher contributing to the advancement of electrified transportation research. Her publication record, citation impact, and focus on sustainable mobility demonstrate continued engagement with innovative engineering solutions supporting the global transition toward cleaner energy systems. [5]

References

  1. Elsevier. (n.d.). Scopus author details: Aziza Ibrahim Hussein, Author ID 35588439400. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=35588439400
  2. Abdel Wahab, O. F., Khalaf, A. A. M., Hussein, A. I., & Hamed, H. F. A. (2021). Hiding data using efficient combination of RSA cryptography, and compression steganography techniques. IEEE Access, 9, 31805–31815.
    https://doi.org/10.1109/ACCESS.2021.3060317
  3. Donkol, A. A. E.-B., Hafez, A. G., Hussein, A. I., & Mabrook, M. M. (2023). Optimization of intrusion detection using likely point PSO and enhanced LSTM-RNN hybrid technique in communication networks. IEEE Access, 11, 9469–9482.
    https://doi.org/10.1109/ACCESS.2023.3240109
  4. AbdelWahab, O. F., Hussein, A. I., Hamed, H. F. A., Kelash, H. M., Khalaf, A. A. M., & Ali, H. M. (2019). Hiding data in images using steganography techniques with compression algorithms. TELKOMNIKA (Telecommunication Computing, Electronics and Control), 17(3), 1168–1175. https://doi.org/10.12928/TELKOMNIKA.v17i3.12230
  5. Hussein, A. I., & Kuhn, W. B. (2000). Bandpass ΣΔ modulator employing undersampling of RF signals for wireless communication. IEEE Transactions on Circuits and Systems II: Analog and Digital Signal Processing, 47(7), 614–620.
    https://doi.org/10.1109/82.850420

Ahmed Nabih Zaki Rashed | Energy Storage | Best Researcher Award

Best Researcher Award

           Ahmed Nabih Zaki Rashed
Researcher Ahmed Nabih Zaki Rashed
Affiliation Menoufiya University
Country Egypt
Scopus ID 36118361900
Documents 403
Citations 13,378
h-index 65
Subject Area Energy Storage
Event World Green Energy Awards
ORCID 0000-0002-5338-1623

Ahmed Nabih Zaki Rashed of Menoufiya University, Egypt, is an academic researcher whose scholarly record demonstrates sustained productivity and measurable influence within the broader field of energy-related technologies and associated engineering disciplines. According to available bibliometric indicators, the researcher has authored 403 indexed publications that have collectively received 13,378 citations and achieved an h-index of 65, reflecting substantial visibility and citation impact within the scientific community.[1]

Abstract

This article presents an academic assessment of Ahmed Nabih Zaki Rashed in relation to consideration for the Best Researcher Award at the World Green Energy Awards. The evaluation is based on publicly available bibliometric indicators, publication productivity, citation performance, scholarly influence, and relevance to energy-related research activities. With 403 indexed documents, 13,378 citations, and an h-index of 65, the researcher demonstrates sustained scientific output and recognized academic visibility. These indicators suggest a significant contribution to research advancement and knowledge dissemination, supporting consideration for professional recognition within an international academic and scientific framework.[1]

Keywords

Ahmed Nabih Zaki Rashed; Energy Storage; Bibliometric Assessment; Research Impact; Scientific Productivity; Citation Analysis; h-index; Academic Excellence; Research Recognition; World Green Energy Awards.

Introduction

Academic recognition awards frequently evaluate candidates through a combination of research productivity, citation influence, scholarly visibility, and contribution to scientific advancement. Bibliometric indicators provide a standardized mechanism for assessing research performance across institutions and disciplines. In this context, Ahmed Nabih Zaki Rashed has established a substantial publication portfolio supported by extensive citation activity and a high h-index, indicating that a significant number of publications have achieved notable scholarly attention within the international research community.[1]

Research Profile

The research profile of Ahmed Nabih Zaki Rashed is characterized by sustained publication activity and broad scholarly engagement. Available bibliometric records indicate 403 indexed documents and 13,378 citations, resulting in an h-index of 65. These indicators suggest both long-term productivity and measurable research influence, demonstrating that numerous publications have been cited repeatedly by subsequent studies and have contributed to ongoing scientific discourse.[1]

Research Contributions

Research contributions associated with Ahmed Nabih Zaki Rashed have supported knowledge development in energy-related technologies and engineering applications. The volume of published work and the resulting citation record indicate continued engagement with topics of scientific and technological relevance. Through peer-reviewed dissemination, the researcher has participated in the advancement of academic understanding and has contributed to the accumulation of evidence that supports innovation and further investigation within related research domains.[1][2]

Publications

The publication portfolio includes a substantial body of scholarly literature indexed in major academic databases. A publication count exceeding four hundred documents reflects continuous participation in scientific communication and peer-reviewed dissemination. Such productivity is frequently regarded as evidence of long-term research engagement and sustained contribution to the scholarly record, particularly when accompanied by strong citation performance and consistent academic visibility.[1]

Research Impact

Research impact may be evaluated through citation metrics, influence on subsequent investigations, and integration into the broader scientific literature. The citation total of 13,378 and h-index of 65 indicate that the researcher’s publications have achieved substantial scholarly recognition. These metrics suggest enduring academic relevance and demonstrate that multiple studies have contributed meaningfully to scientific discussions, thereby strengthening the researcher’s overall impact profile.[1][3]

Award Suitability

Assessment for the Best Researcher Award commonly considers productivity, impact, visibility, and contribution to scientific advancement. Based on the available bibliometric evidence, Ahmed Nabih Zaki Rashed demonstrates a combination of extensive publication output, strong citation performance, and recognized scholarly influence. These characteristics align with widely accepted criteria used by academic award committees when evaluating candidates for distinguished research recognition within international scientific forums.[1][4]

Conclusion

Ahmed Nabih Zaki Rashed presents a research profile characterized by extensive publication activity, substantial citation influence, and a strong h-index. Collectively, these indicators demonstrate measurable academic impact and sustained engagement in scholarly research. Based on available evidence, the researcher represents a credible candidate for consideration in professional recognition programs such as the Best Researcher Award presented within the framework of the World Green Energy Awards.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Ahmed Nabih Zaki Rashed, Author ID 36118361900. Scopus.
    https://www.scopus.com/authid/detail.uri?origin=resultslist&authorId=36118361900&zone=
  2. ORCID. (n.d.). ORCID profile: Ahmed Nabih Zaki Rashed, ORCID iD 0000-0002-5338-1623. ORCID Registry.
    https://orcid.org/0000-0002-5338-1623
  3. World Green Energy Awards. (n.d.). Award evaluation and recognition framework.
    https://greenenergyaward.com/
  4. Megalan Leo, L., Mohanadoss, P., Selvam, A. K., Balamurugan, K., Gunasekaran, R., Divya, N., Kumar, C. R., Ferdous, A. H. M. I., & Rashed, A. N. Z. (2024). High modulation depth and high modulated power with low noise figure for high speed modulation optical communication system performance signature. Journal of Optics, 55(4), 175–185.
    https://doi.org/10.1007/s12596-024-02104-5
  5. Lingaraj, V., Neelamegam, N., Selvaraju, M., Prahalathan, G., Narayanan, D. B., Anvar, J., Ramkumar, G., Rashed, A. N. Z., & Ferdous, A. H. M. I. (2024). Different conventional commercial glass optical fibers composites physical parameters performance signature in short range optical transceiver systems. Journal of Optics, 55, 1612–1622.
    https://doi.org/10.1007/s12596-024-02197-y