masoomeh bararzadeh Ledari | Innovation and Technology Strategy | Innovative Research Award

Innovative Research Award

Researcher: masoomeh bararzadeh Ledari
Institution: Amirkabir University of Technology

masoomeh bararzadeh Ledari
Affiliation Amirkabir University of Technology
Country Iran
Scopus ID 57221272178
Documents 30
Citations 576
h-index 12
Subject Area Energy
Event Business Global Awards
ORCID 0000-0002-8152-0264

The Innovative Research Award profile recognizes research activity associated with masoomeh bararzadeh Ledari of Amirkabir University of Technology, Iran, within the subject area of energy. The profile information supplied for this article includes a Scopus author identifier and an ORCID identifier, providing persistent mechanisms for distinguishing scholarly authors and their research records. [1] [2]

Abstract

This academic recognition profile presents the supplied research information for masoomeh bararzadeh Ledari, affiliated with Amirkabir University of Technology in Iran and associated with the subject area of energy. The profile records a Scopus Author ID and an ORCID identifier as scholarly identity references. [1] [2] The article summarizes the available research profile, potential contribution areas, publication documentation, research impact considerations, and relevance to the Innovative Research Award associated with Business Global Awards. Quantitative bibliometric indicators such as document count, citation count, and h-index have not been supplied and therefore are not independently stated as numerical values.

Keywords

Innovative Research Award; energy research; Amirkabir University of Technology; Iran; scholarly identity; Scopus Author ID; ORCID; research contributions; academic publications; research impact; innovation; Business Global Awards.

Introduction

Innovation-oriented research in the energy field encompasses the development, evaluation, integration, and application of scientific and engineering approaches addressing energy production, conversion, efficiency, sustainability, and related technological challenges. Academic recognition in this area commonly depends on evidence such as scholarly publications, documented research outputs, methodological contribution, collaboration, and demonstrable research relevance.

The present profile is based on the supplied researcher and institutional information. Scopus provides author identifiers and publication-related bibliometric records, while ORCID provides a persistent researcher identifier designed to distinguish researchers and connect them with their scholarly contributions. [1] [2]

Research Profile

masoomeh bararzadeh Ledari is identified in the supplied information as a researcher affiliated with Amirkabir University of Technology, Iran. The stated subject area is energy. The supplied scholarly identifiers are Scopus Author ID 57221272178 and ORCID 0000-0002-8152-0264. These identifiers can be used to support author disambiguation and to locate the researcher’s corresponding scholarly records. [1] [2]

The profile does not provide a verified numerical value for documents, citations, or h-index. Accordingly, those fields are explicitly marked as not specified rather than supplemented with estimates. This approach preserves bibliographic accuracy and avoids attributing unverified metrics to the researcher.

Research Contributions

Within the supplied subject classification, research contributions may be documented through original studies, engineering investigations, energy-system development, computational or experimental work, optimization approaches, sustainability-oriented research, and interdisciplinary applications. Specific contributions should be established from the researcher’s verified publications and scholarly records rather than inferred solely from the subject-area label.

  • Energy-focused research and scholarly investigation within the stated subject area.
  • Development or evaluation of research methods relevant to energy-related problems, where supported by documented publications.
  • Potential interdisciplinary contribution connecting energy research with engineering, environmental, computational, or technological applications.
  • Academic dissemination through publications and persistent researcher identifiers.

The items above describe appropriate categories for documenting an energy research portfolio; they should not be interpreted as claims about individual projects unless corroborated by the researcher’s publications or institutional records.

Publications

Publication records are an important component of academic research documentation. The supplied information identifies the researcher through Scopus Author ID 57221272178, but it does not include an individual publication list, article titles, journal names, publication dates, citation counts, or DOI identifiers. [1] Therefore, no specific publication is attributed to the researcher in this article without additional bibliographic verification.

For a complete publication portfolio, individual records should be checked against authoritative scholarly databases and the researcher’s persistent ORCID record. Where a publication has a DOI, the DOI should be retained as a permanent bibliographic identifier and linked directly to its registered DOI address.

Research Impact

Research impact can be documented through several complementary forms of evidence, including peer-reviewed publications, citations, research collaboration, adoption of methods or findings, technological applications, policy or industry relevance, and contributions to scientific knowledge. Bibliometric measures such as citations and h-index can provide quantitative indicators, but they require current database verification and appropriate disciplinary context.

For this profile, numerical impact metrics have not been supplied. Consequently, the article does not assign a citation total, h-index, ranking, or comparative performance assessment. The Scopus and ORCID identifiers provide useful starting points for further verification of scholarly output and researcher identity. [1] [2]

Award Suitability

The supplied event is Business Global Awards, and the recognition category represented by this article is the Innovative Research Award. The stated research subject, energy, provides a clear thematic context for documenting innovation-oriented academic work. Final award eligibility or selection, however, should be determined according to the official event’s current criteria, submission requirements, and evaluation process rather than inferred from affiliation or subject area alone.

A comprehensive award submission may include the following evidence, subject to the official requirements of the event:

  • A current academic biography describing the researcher’s institutional affiliation and research focus.
  • A concise research abstract explaining the purpose, methodology, findings, and significance of the relevant work.
  • Verified publication records and DOI information for relevant scholarly outputs.
  • Evidence of research outcomes, applications, collaborations, or documented impact where applicable.
  • Scopus and ORCID identifiers supporting researcher identity and bibliographic verification.

Conclusion

The Innovative Research Award profile documents masoomeh bararzadeh Ledari of Amirkabir University of Technology, Iran, with energy identified as the stated subject area. The supplied Scopus and ORCID identifiers provide established mechanisms for scholarly identity and research-record verification. [1] [2] Additional publication records, research outputs, bibliometric metrics, and award-specific documentation should be verified through authoritative sources before being presented as confirmed evidence.

References

  1. Elsevier. (n.d.). Scopus Author Details: Author ID 57221272178. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57221272178
  2. ORCID. (n.d.). ORCID record for 0000-0002-8152-0264. ORCID.
    https://orcid.org/0000-0002-8152-0264
  3. Business Global Awards. (n.d.). Business Global Awards — Official Website.
    https://businessglobalawards.com/
  4. The DOI Foundation. (n.d.). DOI System and Persistent Identification. International DOI Foundation.
    https://www.doi.org/

Jiacheng Meng | Space Laser Communication | Young Scientist Award

Young Scientist Award

Jiacheng Meng
Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences

Jiacheng Meng
Affiliation Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences
Country China
Scopus ID 57204157942
Documents 23
Citations 262
h-index 7
Subject Area Space Laser Communication
Event Business Global Awards

The Young Scientist Award article presents an academic recognition profile for Jiacheng Meng, whose supplied institutional affiliation is the Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences. The stated research subject area is Space Laser Communication, a field concerned with optical communication technologies and related systems for transmitting information through space-based or free-space optical links. The supplied Scopus author identifier provides a route for examining the researcher’s indexed scholarly record. [1]

Abstract

This academic recognition profile concerns Jiacheng Meng of the Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, with a stated specialization in Space Laser Communication. The profile records a Scopus author identifier of 57204157942 and places the researcher within an optical-communication research context. The Young Scientist Award theme is presented as recognition-oriented content rather than as an independent verification of award selection or research performance. Bibliographic indicators such as document count, citation count, h-index, and ORCID are not included in the supplied source information and are therefore not independently asserted here. [1]

Keywords

  • Space Laser Communication
  • Free-Space Optical Communication
  • Laser Communication Systems
  • Optical Wireless Communication
  • Space-Based Optical Links
  • Optical Communications Research
  • Young Scientist Award

Introduction

Space laser communication uses optical carriers to support high-capacity information transfer through free-space propagation. Compared with conventional radio-frequency approaches, optical communication research can involve narrow optical beams, laser sources, photodetectors, pointing and tracking mechanisms, atmospheric or space propagation effects, and sophisticated modulation and signal-processing techniques. These characteristics make the field relevant to satellite communications, inter-satellite links, Earth observation systems, and other space-based communication architectures.

Within this context, Jiacheng Meng is identified in the supplied information with the Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences. The institution is associated with optical and precision-engineering research, providing an institutional setting relevant to research involving laser and optical systems. The researcher’s supplied Scopus identifier offers an additional bibliographic reference point for scholarly-profile verification. [1]

Research Profile

The supplied research profile identifies Space Laser Communication as the principal subject area. Research in this domain can encompass the design, modeling, optimization, testing, and application of optical communication links intended for operation across free-space or space environments. Relevant technical considerations include laser transmitters, optical receivers, beam pointing, acquisition and tracking, link budgets, modulation schemes, atmospheric attenuation where applicable, detector performance, and communication reliability.

The available information does not provide a verified list of Jiacheng Meng’s individual research projects, publication metrics, ORCID identifier, citation count, h-index, or complete publication portfolio. Accordingly, these fields are intentionally described as unspecified rather than supplemented with inferred or unverified values.

Research Contributions

On the basis of the supplied subject-area information, the research profile can be situated within several technically relevant areas of space laser communication. These areas describe the broader research domain and should not be interpreted as a verified list of Jiacheng Meng’s individual contributions unless supported by corresponding publications or institutional records.

  • Optical link development: investigation of communication architectures based on laser transmitters and optical receivers.
  • Space communication: study of optical links applicable to satellite and other space-based communication scenarios.
  • Pointing and tracking: consideration of beam alignment and acquisition requirements associated with narrow optical beams.
  • Optical signal transmission: application of modulation, detection, and signal-processing techniques to free-space optical channels.
  • System performance: evaluation of communication reliability and link performance under relevant propagation and hardware constraints.

Publications

A complete publication list is not included in the supplied input data. The Scopus author identifier 57204157942 can be used to locate the corresponding indexed author record and review bibliographic information available through Scopus. [1]

For an academic recognition profile, publication evidence may include peer-reviewed journal articles, conference papers, technical studies, datasets, patents where relevant, and other scholarly outputs directly attributable to the researcher. Individual publications should be verified against authoritative bibliographic records before being used as evidence of a specific research contribution.

Research Impact

Research in space laser communication has potential relevance to high-capacity satellite connectivity, inter-satellite communications, space-network architectures, and optical links supporting scientific and Earth-observation missions. Its impact can be assessed through reproducible technical results, peer-reviewed publications, adoption of methods or systems, citations, collaborative research, technology demonstrations, and contributions to communication-system development.

No quantitative impact indicators for Jiacheng Meng were provided in the source information. Consequently, this article does not assign citation-based rankings, performance scores, or other unsupported measures of research influence. The Scopus profile remains the appropriate source for checking current indexed bibliometric information. [1]

Award Suitability

The stated research area of Space Laser Communication is academically aligned with recognition programs concerned with emerging scientific research, optical communications, and advanced space technologies. For an award submission or evaluation, evidence should establish the researcher’s identity, institutional affiliation, research outputs, originality, technical contribution, and documented scholarly or practical relevance.

Potential supporting evidence may include the following:

  • A current academic curriculum vitae or researcher profile.
  • Verified publication records and DOI information where applicable.
  • A research statement describing contributions to Space Laser Communication.
  • Evidence of technical projects, demonstrations, collaborations, or research outputs.
  • A Scopus author profile or other recognized bibliographic identifier for identity and publication verification.

The supplied event name is Business Global Awards. The award website should be consulted for the current eligibility requirements, submission procedure, deadlines, judging framework, and recognition terms before any application or public claim concerning award status is made. Business Global Awards

Conclusion

Jiacheng Meng is identified in the supplied profile as a researcher affiliated with the Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, with Space Laser Communication listed as the subject area. The profile includes Scopus Author ID 57204157942 and associates the recognition context with the Business Global Awards. Further claims concerning publications, citations, h-index, ORCID, specific research achievements, or award outcomes should be based on independently verifiable records rather than inferred from the supplied information.

References

  1. Elsevier. (n.d.). Scopus author details: Jiacheng Meng, Author ID 57204157942. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57204157942
  2. International Telecommunication Union. (2019). Technical and operational aspects of satellite-based optical communication systems. ITU resources.
    https://www.itu.int/
  3. Majumdar, A. K. (2015). Advanced Free Space Optics (FSO): A Systems Approach. Springer. DOI: https://doi.org/10.1007/978-1-4614-8243-6
  4. Business Global Awards. (n.d.). Official Business Global Awards website.
    https://businessglobalawards.com/