Innovative Research Award
Nantong University, China
| Xinhao Ding | |
|---|---|
| Affiliation | Nantong University |
| Country | China |
| Scholar ID | P75mmNMAAAAJ |
| Documents | 29 |
| Citations | 547 |
| h-index | 11 |
| Subject Area | Microwave Antenna |
| Event | International Research Awards on Network Science & Graph Analytics |
Xinhao Ding is a researcher affiliated with Nantong University, China, whose stated subject area is microwave antenna research. The recognition profile records 29 documents, 547 citations, and an h-index of 11. This page presents the research profile and award context in a neutral academic format, with emphasis on documented scholarly activity and antenna-related research.
Abstract
The Innovative Research Award profile recognizes the research activities of Xinhao Ding of Nantong University, China, in the field of microwave antennas. The available research record indicates scholarly activity involving antenna design and related wireless communication applications. One documented publication involving Ding presents a compact broadband planar inverted-F antenna with dual-resonant modes for 5G applications, illustrating the relevance of compact and broadband antenna engineering to contemporary wireless systems. [1]
The supplied academic metrics associated with this profile comprise 29 documents, 547 citations, and an h-index of 11. These indicators provide quantitative context for the research record but do not, by themselves, constitute a complete assessment of research quality or significance.
Keywords
- Microwave antenna
- Antenna design
- Planar inverted-F antenna
- Broadband wireless communication
- 5G antenna technology
- Dual-resonant modes
Introduction
Microwave antenna research is an important component of modern wireless communication engineering. Antenna structures must increasingly address requirements involving compact form factors, operating bandwidth, radiation characteristics, impedance matching, and compatibility with evolving communication platforms. Research into planar and broadband antenna configurations therefore contributes to the engineering knowledge needed for wireless devices and communication infrastructure.
Within this broader field, Xinhao Ding’s documented publication record includes work on a compact broadband planar inverted-F antenna. The reported design uses dual-resonant modes to support broadband operation, with the study considering an antenna configuration intended for 5G applications. [1] Such work places antenna geometry, resonant behavior, and frequency coverage within the context of practical wireless-system requirements.
Research Profile
Xinhao Ding is identified in the supplied profile as being affiliated with Nantong University in China, with microwave antenna listed as the principal subject area. The profile reports 29 documents, 547 citations, and an h-index of 11. These figures describe the supplied bibliometric record and may change as databases update publication and citation information.
Research Contributions
A documented contribution associated with Xinhao Ding concerns the development of a compact broadband planar inverted-F antenna with dual-resonant modes. The published study describes the use of horizontal slots to modify the resonant behavior of the antenna and combine operating modes, providing a mechanism for broadband operation in a compact structure. [1]
The research is relevant to several recurring engineering considerations in microwave antenna development, including miniaturization, bandwidth enhancement, resonant-mode control, and application-oriented antenna design. The documented 5G orientation further connects the work to the requirements of contemporary wireless communication systems. [1]
- Investigation of compact planar antenna configurations.
- Exploration of dual-resonant behavior for broadband operation.
- Application-oriented antenna development for 5G wireless communication.
- Design approaches addressing antenna size and operating-band requirements.
Publications
The supplied profile records 29 documents. A publicly indexed publication provides a verifiable example of research associated with Xinhao Ding in the microwave antenna domain:
- Qi, Z.; Ding, X.; Yang, W.; Chen, J. “A Compact Broadband Planar Inverted-F Antenna with Dual-Resonant Modes.” Applied Sciences, 2022, 12(17), 8915. The article reports a compact broadband planar inverted-F antenna with dual-resonant modes for 5G applications. DOI:
https://doi.org/10.3390/app12178915. [1]
Research Impact
The supplied bibliometric record of 547 citations and an h-index of 11 indicates that the research profile has accumulated measurable scholarly attention. Citation counts and h-index values are indicators of research visibility, although they should be interpreted alongside publication quality, authorship contributions, methodological rigor, reproducibility, and broader disciplinary context.
The documented antenna research also has an application-oriented dimension. Work on compact broadband antenna structures can contribute to the engineering literature surrounding wireless devices and communication systems, particularly where antenna size, bandwidth, and resonant performance must be considered together. The published 5G antenna study provides a specific example of this research direction. [1]
Award Suitability
The Innovative Research Award profile is supported by the supplied record of research activity in microwave antenna technology, together with the documented publication on compact broadband planar inverted-F antenna design. [1] The reported publication and bibliometric indicators provide identifiable evidence for consideration within a research-recognition framework.
Relevant evidence for an academic award assessment may include the originality of research methods, technical contribution, publication record, scholarly influence, practical relevance, and sustained contribution to the field. The available information supports consideration of these dimensions, while a complete award assessment would require the full nomination materials and the specific evaluation criteria established by the awarding organization.
Conclusion
Xinhao Ding’s supplied research profile is centered on microwave antenna technology and is associated with Nantong University, China. The record lists 29 documents, 547 citations, and an h-index of 11. A documented publication on a compact broadband planar inverted-F antenna with dual-resonant modes provides a specific example of research addressing antenna design for 5G applications. [1] Together, these materials establish a scholarly profile relevant to the stated Innovative Research Award category, subject to verification against the complete nomination and evaluation record.
External Links.
- Scholar Author Profile:
Google Scholar Profile - Award Website:
International Research Awards on Network Science & Graph Analytics
References
- A broadside shared aperture antenna for (3.5, 26) GHz mobile terminals with steerable beam in millimeter-waveband
https://scholar.google.com/citations?view_op=view_citation&hl=en&user=P75mmNMAAAAJ&citation_for_view=P75mmNMAAAAJ:u5HHmVD_uO8C