Xianying Feng | Agricultural Engineering & Farm Machinery | Innovative Research Award

Innovative Research Award

Xianying Feng
Shandong University

Xianying Feng
Affiliation Shandong University
Country China
Scopus ID 7403046874
Documents 114
Citations 844
h-index 13
Subject Area Agricultural Engineering & Farm Machinery
Event Agri Scientist Awards
ORCID 0000-0002-7614-3863

Xianying Feng, affiliated with Shandong University, has established a notable academic profile within the field of Agricultural Engineering and Farm Machinery. Through sustained scholarly contributions, publication activity, and citation performance, Feng has demonstrated engagement with research addressing agricultural mechanization, engineering innovation, and technological development. The Innovative Research Award recognizes researchers whose work contributes to scientific advancement, practical implementation, and academic excellence within their respective disciplines.[1]

Abstract

Xianying Feng’s academic record reflects sustained contributions to Agricultural Engineering and Farm Machinery research through peer-reviewed publications, interdisciplinary investigations, and applied engineering studies. With more than one hundred indexed documents and a measurable citation footprint, Feng’s work contributes to understanding agricultural technologies, machinery performance, operational efficiency, and sustainable farming systems. The Innovative Research Award acknowledges scholarly achievement, research productivity, and the broader influence of scientific outputs on academic and practical agricultural applications. The award evaluation considers publication quality, citation indicators, research relevance, and the capacity to advance technological innovation within agricultural engineering disciplines.[1][2]

Keywords

Agricultural Engineering, Farm Machinery, Mechanization, Precision Agriculture, Sustainable Farming, Research Innovation, Engineering Systems, Agricultural Technology.

Introduction

Agricultural engineering continues to play a critical role in enhancing productivity, sustainability, and operational effectiveness across modern farming systems. Researchers working within this field contribute to technological solutions that support efficient resource utilization and improved agricultural outcomes. The recognition of innovative research supports the advancement of scientific knowledge and encourages continued development of practical engineering applications within agriculture.[2]

Research Profile

Xianying Feng maintains an established scholarly profile characterized by indexed publications, citation activity, and ongoing engagement with agricultural engineering research. The author’s Scopus metrics indicate consistent academic participation and measurable research visibility. Such indicators provide evidence of sustained contributions to scientific literature and demonstrate scholarly influence within specialized research communities.[1]

Research Contributions

Research contributions attributed to Feng are associated with agricultural machinery systems, engineering optimization, mechanized operations, and technological innovation for agricultural production. These studies support broader objectives related to efficiency enhancement, performance evaluation, and sustainable agricultural practices. The integration of engineering methodologies with agricultural applications illustrates the interdisciplinary character of the research portfolio.[3]

Publications

The publication portfolio comprises more than one hundred indexed documents spanning agricultural engineering and related technological disciplines. The volume of publications, combined with citation activity, reflects continuing participation in scientific communication and dissemination. Publication records contribute substantially to the evaluation of research productivity and academic recognition.[1]

Research Impact

Research impact may be evaluated through citation metrics, scholarly engagement, and the practical relevance of scientific findings. Feng’s citation record demonstrates that published work has received attention within the academic community. Such indicators, while not the sole measure of quality, provide useful evidence regarding visibility, influence, and knowledge dissemination across research networks.[1][4]

Award Suitability

Based on available scholarly indicators, publication activity, citation performance, and disciplinary engagement, Xianying Feng demonstrates characteristics commonly associated with candidates considered for research recognition programs. The Innovative Research Award emphasizes originality, scientific contribution, academic influence, and professional commitment. Feng’s documented achievements align with several evaluation criteria generally employed in academic award assessments.[5]

Conclusion

Xianying Feng’s research profile reflects sustained scholarly productivity within Agricultural Engineering and Farm Machinery. Publication records, citation metrics, and research engagement indicate meaningful participation in advancing agricultural technologies and engineering applications. Recognition through the Innovative Research Award highlights the importance of continued innovation, scientific excellence, and knowledge generation within agricultural engineering and related interdisciplinary fields.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Xianying Feng, Author ID 7403046874. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=7403046874
  2. Agriculture. (2026). Precision Fertilization of Maize Using Straight Grooved-Wheel Fertilizer Apparatus.
    https://doi.org/10.3390/agriculture16111217
  3. International Journal of Agricultural Engineering. (2026). A dynamically hybrid path planning and obstacle avoidance algorithm for mobile robots based on improved A-star and dynamic windows approach.
    https://doi.org/10.1016/j.rineng.2025.108924
  4. Xingchang Han, Xianying Feng, Yanfei Li, Yitian Sun and Qingsong Lei. (2026). Comparative Investigation on Flow Behavior and Energy Dissipation of a Novel Cylindrical Asteroid-Shaped Emitter and a Conventional Emitter.
    https://doi.org/10.3390/w18070868
  5. Agri Scientist Awards. (n.d.). Research excellence recognition and evaluation framework.
    https://agriscientist.org/

Muhammad Zakaria Hossain | Agricultural Engineering | Best Researcher Award

Dr Muhammad Zakaria Hossain |  Agricultural Engineering |  Best Researcher Award

Scientific Officer at  Bangladesh Agricultural Research Institute, Gazipur,  Bangladesh

Muhammad Zakaria Hossain has been serving as a Scientific Officer at BARI since 2012. His research focuses on precision agriculture, farm machinery, and renewable energy, with notable contributions to developing IoT-based agricultural systems and robotic mowers for orchard management. He has published 11 journal articles and a book chapter, earning recognition such as the Best Paper Award at the 63rd Annual Meeting of the Japanese Weed Society (2024). With over 12 years of experience, Zakaria has led multiple innovative projects, presented at international conferences, and completed advanced training programs, including a 7-month JICA training in Japan.

 

Publication Profile

📚 Academic and Professional Background:

Muhammad Zakaria Hossain has been a Scientific Officer at BARI since 2012, focusing on precision agricultural techniques for sustainable crop production. His PhD research explored robotic mowers for orchard floor management. With over 12 years of experience, he has published 11 journal articles and a book chapter in reputable platforms like Wiley and MDPI.

🚜 Research and Innovations:

He has led and contributed to various projects, including developing IoT-based systems, solar-powered machinery, and automated agricultural tools. Notable projects include the Farm Machinery Technology Development Project (2020–2025) and the Smallholder Agricultural Competitiveness Project (2024).

🌟 Achievements:

  • Best Paper Award at the 63rd Annual Meeting of the Japanese Weed Society (2024).
  • Presented research at 11 conferences, including ASABE AIM (2021).
  • Completed advanced training programs, including a 7-month JICA training in Japan.

🛠️ Areas of Expertise:

Precision agriculture, farm machinery, renewable energy, UAV imagery, and sensor-embedded systems.

🌐 Professional Memberships:

Member of ASABE, Bangladesh Society of Agricultural Engineers, Japanese Society of Farm Work Research, and JICA Alumni Association Bangladesh.

Publication Top Note:

  • Hanging as a method of suicide: Retrospective analysis of postmortem cases
    M Ahmad, MZ Hossain
    Journal of Armed Forces Medical College, Bangladesh, 2010
  • Design and development of solar dryer for chilli drying
    MZ Hossain, MA Hossain, MA Awal, MM Alam, A Rabbani
    International Journal of Research, 2015
  • Weed management and economic analysis of a robotic lawnmower: A case study in a Japanese pear orchard
    MZ Hossain, M Komatsuzaki
    Agriculture, 2021
  • Performance evaluation of a cabinet solar dryer for drying red pepper in Bangladesh
    MZ Hossain, MM Alam, MFB Hossain, MSH Sarker, MA Awal, N Jahan
    Journal of Agricultural Engineering, 2018
  • Design of a new beneficial single-axis automatic controlled solar tracker
    MRI Sarker, RA Beg, MZ Hossain, MT Islam
    Proceedings of the 11th APM, 2006
  • Drying and dehydration kinetics of ginger
    MM Alam, MZ Hossain, M Aktar, MS Islam, Z Hasan
    International Journal of Innovation and Applied Studies, 2014
  • Robotic lawnmower saves labor and operation costs in a pear (Pyrus pyrifolia) orchard
    MZ Hossain, K Takahashi, M Komatsuzaki
    Japanese Journal of Farm Work Research, 2020
  • Rehydration characteristics of dried summer onion
    MM Alam, MZ Hossain, MN Islam
    International Journal of Research, 2014
  • Optimization of the year‐round mowing schedule of a robotic lawnmower in a Japanese pear orchard
    MZ Hossain, S Watanabe, T Okayama, M Komatsuzaki
    Weed Biology and Management, 2022
  • Risk of High Systolic Blood Pressure among the Air Crew in Bangladesh Air Force
    MM Rahman, MA Wahab, MZ Hossain, MM Yasin, NKBG Quddus
    Journal of Armed Forces Medical College, Bangladesh, 2021
  • Osmotic development of value-added garlic products through dehydration and mechanical drying
    M Alam, MZ Hossain, W Ahmed, S Nahar
    Scientia, 2017
  • Architecture program structure in Bangladesh: A critical study
    M Ahsan, SI Raj, M Hossain, A Kundu
    International Seminar on Architecture: Education, Practice and Research, 2012
  • The need to incorporate ergonomics in smart agriculture and organic farming in agricultural and biological engineering education
    M Komatsuzaki, MZ Hossain, NS Dewi
    Agricultural, Biosystems, and Biological Engineering Education, 2024
  • RTK-UAV monitoring of oat cover crop termination by a straight-bar roller-crimper amid weeds
    MZ Hossain, M Komatsuzaki
    2021 ASABE Annual International Virtual Meeting, 2021
  • Design and development of a low-cost power tiller operated potato harvester for small farmers, Bangladesh
    MZHKKS MI Hossain
    Bangladesh Journal of Agricultural Engineering, 2016
  • Computer vision technique for optimum nitrogen application in rice
    MZ Hossain, MM Alam, MA Haque, A Rahman, MA Awal
    International Journal of Research (IJR), 2014
  • Impact study of a generation-rich island and development of auto load shedding scheme to improve service reliability
    M Hossain, MS Alam, MI Hossain, MQ Ahsan
    1st International Conference on Electrical Engineering and Information, 2014
  • Study of impacts on operation of island and frequency-based auto load shedding to improve service reliability using CYME PSAF
    M Hossain, H Rahman, MQ Ahsan
    7th International Conference on Electrical and Computer Engineering, 2012
  • Effects of gibberellic acid and indole-3-acetic acid on growth, development, and yield of Arahar plants (Cajanus Cajan (L.) millsp. cultivar 76013)
    R Parveen, SN Hossin, F Hossain, M Hossain
    Bangladesh Journal of Life Sciences, 1994
  • 日本のナシ果樹園におけるロボット芝刈り機の評価と草刈りの最適化
    MZ Hossain

 

Patrícia Ferreira da Silva | Agricultural engineering | Women Researcher Award

Prof Dr Patrícia Ferreira da Silva | Agricultural engineering | Women Researcher Award

Professor Doutor at  UFR , Women Researcher Award

Patricia Ferreira da Silva é uma especialista em Engenharia Agrícola, com uma carreira acadêmica e profissional destacada na área de Irrigação e Drenagem. Possui graduação em Agronomia pela Universidade Federal de Alagoas (2011), mestrado (2014) e doutorado (2017) em Engenharia Agrícola pela Universidade Federal de Campina Grande, e um pós-doutorado em Recursos Naturais (2018) pela mesma instituição. Sua pesquisa e atuação se concentram em temas como manejo de irrigação, hidráulica de emissores, reuso de água para fins agrícolas e resiliência em regiões semiáridas.

Profile:

🎓 Education:

PhD in Agricultural Engineering (2017), MSc in Agricultural Engineering (2014), Federal University of Campina Grande – Specializing in Irrigation and Drainage BSc in Agronomy (2011), Federal University of Alagoas

🔬 Research and Expertise:

Agricultural Engineering: Focus on irrigation, hydraulics, and drainage. Key Topics: Efficient water use, fertigation, salinity management, and sustainable agricultural practices

💼 Professional Experience:

Post-Doctorate in Natural Resources (2018), Federal University of Campina Grande. Teaching Experience: Substitute professor at Federal University of Campina Grande, teaching courses on irrigation systems, environmental chemistry, and agricultural law

📜 Notable Achievements:

Developed expertise in strategies for sustainable agriculture and improving agricultural practices in semi-arid regions

Research Focus in Agricultural Engineering 🌾

Irrigation and Drainage: Specializing in efficient irrigation systems, particularly drip and pressurized irrigation. Hydraulics: Studying the behavior and efficiency of water emitters, ensuring uniform water distribution. Water Reuse for Agricultural Purposes: Investigating methods to recycle and reuse water in agricultural practices. Soil-Water-Plant-Atmosphere Relationships: Understanding the interactions and dynamics between soil, water, plant growth, and atmospheric conditions. Water Resources in Semi-Arid Regions: Developing strategies to manage and utilize water resources effectively in semi-arid climates. Resilience and Vulnerability in Agriculture: Creating strategies to enhance resilience and reduce vulnerabilities in agricultural systems, particularly in challenging environments. Efficient Water Use: Promoting and developing practices for the optimal use of water resources in agriculture. Fertigation: Combining fertilization with irrigation to improve nutrient delivery and water use efficiency. Salinity Management: Addressing soil salinity issues to maintain crop health and productivity. Vegetable Production: Researching methods to enhance vegetable growth and yields through improved irrigation and fertigation techniques. Patricia’s work aims to optimize agricultural water use, improve irrigation practices, and enhance the sustainability and resilience of agricultural systems, particularly in semi-arid regions.

Publication Top Notes:

  1. The Importance of Using Sunscreen in Preventing Dermatological Changes in Workers Under Excessive Photoexposure
    • Year: 2017
    • Citations: 13
  2. Analysis of a School Inclusion Assessment Form
    • Year: 2011
    • Citations: 9
  3. Use of Climate Classification Systems for the Municipality of Barbalha-CE
    • Year: 2018
    • Citations: 8
  4. Growth and Productivity of Forage Cactus Under Different Irrigation Depths and Nitrogen Fertilization
    • Year: 2017
    • Citations: 8
  5. Commercial Production of Radish Fertigated with Nitrogen in a Protected Environment
    • Year: 2014
    • Citations: 8
  6. Moisture Content by Different Methods in Neosol from the Brazilian Semi-Arid
    • Year: 2017
    • Citations: 7
  7. Growth and Plant Mass of Radish Fertigated with Different Nitrogen Doses
    • Year: 2016
    • Citations: 7