Innovative Research Award
Penglong Wang
Shenzhen University, China, in the subject area of vibration test.
| Penglong Wang | |
|---|---|
| Affiliation | Shenzhen University |
| Country | China |
| Scopus ID | 59152620700 |
| Documents | 4 |
| Citations | 22 |
| h-index | 3 |
| Subject Area | Vibration test |
| Event | Global Cad Awards |
| ORCID | 0000-0003-1036-3801 |
Penglong Wang is affiliated with Shenzhen University in China and is identified in the supplied research profile with a subject specialization in vibration test. The profile records 4 documents, 22 citations, and an h-index of 3. These bibliometric figures provide a quantitative snapshot of the research record represented in the supplied profile and may change as indexing databases are updated.
The Innovative Research Award profile recognizes research activity associated with the development, evaluation, or application of innovative approaches within a defined scholarly field. In the present profile, vibration testing provides the principal subject context for describing the researcher’s academic focus.
Abstract
This article presents an academic recognition profile for Penglong Wang of Shenzhen University, China, associated with the Innovative Research Award at the Global Cad Awards. The supplied profile identifies vibration test as the research subject area and records 4 documents, 22 citations, and an h-index of 3. Bibliometric indicators are commonly used to describe aspects of scholarly publication and citation activity, although they represent only selected dimensions of research performance and should be interpreted in the context of discipline, career stage, publication practices, and database coverage. [1]
Vibration testing is an established experimental approach for examining the dynamic response, structural behavior, reliability, and performance of engineered systems under controlled or representative excitation. Its application can involve measurement, signal acquisition, modal characterization, response analysis, and comparison between experimental observations and analytical or computational models. [2]
Keywords
- Innovative Research Award
- Penglong Wang
- Shenzhen University
- Vibration test
- Vibration analysis
- Experimental mechanics
- Dynamic response
- Global Cad Awards
Introduction
Vibration testing forms part of experimental engineering research concerned with the behavior of mechanical and structural systems under dynamic excitation. Experimental vibration methods can be used to characterize resonant behavior, frequency response, damping, modal properties, and other dynamic characteristics. Standardized procedures and instrumentation are important for obtaining measurements that can be interpreted consistently and compared across test conditions. [2]
Modern vibration research frequently combines experimental measurement with numerical simulation and data-processing methods. Techniques such as modal testing, frequency-domain analysis, time-domain measurement, and digital signal processing can support the identification and interpretation of dynamic system behavior. [3]
Within this context, the supplied profile places Penglong Wang’s research subject area under vibration test. The available bibliometric information establishes the scope of the recognition profile but does not provide a complete publication list, individual paper titles, journal information, or detailed descriptions of specific experiments. Accordingly, this article limits its substantive claims to the information supplied and general characteristics of the stated research field.
Research Profile
The supplied research profile identifies Penglong Wang as a researcher affiliated with Shenzhen University, China. The subject area associated with the profile is vibration test. The profile records 4 documents, 22 citations, and an h-index of 3. These figures describe the supplied bibliometric record and should not be interpreted independently of database indexing practices or the date on which the metrics were collected.
| Profile indicator | Supplied information |
|---|---|
| Researcher | Penglong Wang |
| Institution | Shenzhen University |
| Country | China |
| Subject area | Vibration test |
| Documents | 4 |
| Citations | 22 |
| h-index | 3 |
Research Contributions
The supplied information associates Penglong Wang’s research profile with vibration testing. Within this broad field, research contributions may involve experimental characterization of dynamic systems, evaluation of vibration responses, measurement methodology, data interpretation, and the integration of experimental observations with engineering models. Specific contributions attributable to individual publications cannot be established from the supplied profile alone.
Vibration-test research can encompass several interconnected activities:
- Design and execution of controlled vibration experiments.
- Measurement of dynamic response using appropriate sensors and acquisition systems.
- Analysis of frequency- and time-domain vibration data.
- Experimental validation of analytical or numerical engineering models.
- Assessment of structural or mechanical behavior under dynamic loading.
These activities illustrate the methodological context of vibration-test research rather than constituting claims about particular projects undertaken by the researcher. Experimental vibration analysis is commonly used to investigate system dynamics and to compare observed behavior with theoretical or computational predictions. [2] [3]
Publications
The supplied research record reports 4 documents associated with the profile. The available input does not provide publication titles, authorship order, journals, publication years, abstracts, or individual DOI identifiers. For this reason, no publication-specific bibliographic details are added here without an underlying source record.
For scholarly evaluation, publication information is normally considered together with bibliographic metadata, citation activity, research field, publication venue, authorship contribution, and the substantive content of individual studies. Bibliometric indicators can assist with describing research activity, but they do not by themselves provide a complete assessment of scholarly contribution. [1]
Research Impact
The supplied profile records 22 citations across 4 documents and an h-index of 3. These indicators provide quantitative information about the citation record represented by the supplied profile. Citation counts and h-index values are database-dependent and may vary over time as new publications are indexed and additional citations are recorded.
In research assessment, citation indicators are generally most informative when interpreted alongside qualitative evidence, field-specific publication patterns, research outputs, collaboration, methodological contribution, and broader scholarly or practical influence. The Leiden Manifesto, for example, emphasizes responsible use of quantitative indicators and cautions against reducing research assessment to a single numerical measure. [1]
| Metric | Supplied value | Interpretation |
|---|---|---|
| Documents | 4 | Number of documents reported in the supplied profile. |
| Citations | 22 | Citation count reported in the supplied profile. |
| h-index | 3 | An author-level bibliometric indicator reported in the supplied profile. |
Award Suitability
The supplied information associates Penglong Wang with the Innovative Research Award at the Global Cad Awards. The stated research subject, vibration test, falls within a technical research area involving experimental investigation of dynamic engineering systems. This subject-area alignment provides the academic context for the recognition profile.
The available profile also supplies measurable bibliometric information, including 4 documents, 22 citations, and an h-index of 3. Such information can form part of an award documentation record, while a comprehensive award assessment would ordinarily require additional evidence concerning the nature and originality of the research, publication record, methodological contributions, and other criteria established by the relevant award process.
Accordingly, this page documents the supplied recognition information without assigning an independent ranking or comparative assessment to the researcher.
Conclusion
Penglong Wang of Shenzhen University, China, is presented in the supplied profile as a researcher associated with the subject area of vibration test and the Innovative Research Award at the Global Cad Awards. The profile records 4 documents, 22 citations, and an h-index of 3. These indicators provide a concise bibliometric description of the supplied record, while the broader significance of research contributions requires consideration of publication content, methodological quality, scholarly context, and other appropriate evidence. [1]
The research context described on this page emphasizes vibration testing as an experimental engineering discipline concerned with measuring and interpreting dynamic system behavior. Further publication-level information would be required to document specific research findings, applications, and individual contributions in greater detail.
External Links
References
- Hicks, D., Wouters, P., Waltman, L., de Rijcke, S., & Rafols, I. (2015). Bibliometrics: The Leiden Manifesto for research metrics. Nature, 520, 429–431.
https://doi.org/10.1038/520429a - International Organization for Standardization. ISO 7626: Mechanical vibration and shock — Experimental determination of mechanical mobility. ISO standards for vibration measurement and testing provide a framework for experimental characterization of mechanical systems.
ISO official website - Ewins, D. J. (2000). Modal Testing: Theory, Practice and Application. Research Studies Press. The work provides foundational treatment of experimental modal analysis, measurement, excitation, and interpretation of dynamic structural behavior.