Ishini Nimasha Saparamadu| Civil Engineering | YouthInnovate Award

Ms. Ishini Nimasha Saparamadu| Civil Engineering | YouthInnovate Award

Research Assistant, University of Moratuwa Sri Lanka

P. V. Ishini Nimasha Saparamadu is an innovative Research Assistant and Enterprise AI Solutions Engineer affiliated with the University of Moratuwa, Sri Lanka, and Intelligent Label Solutions. A high-achieving Quantity Surveying graduate with a GPA of 4.02/4.2, she has swiftly made a name for herself in the intersection of construction and artificial intelligence. Ishini is the founder of Concolabs (Pvt) Ltd, where she pioneered groundbreaking digital solutions like MeasureonAIR and Roboclause, which optimize construction cost tracking and automate legal interpretations, respectively. Her work is backed by academic rigor and practical application, evidenced by publications in peer-reviewed journals, awards at international symposiums, and AI-driven industry tools. She has collaborated on numerous research projects aimed at modernizing construction compliance through NLP and vector database-powered chatbots. Ishini is driven by a passion to revolutionize the construction sector with digital innovation and is committed to pushing the boundaries of what AI can achieve in engineering.

Profile

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Scholar

🎓 Education 

Ishini Saparamadu earned her Bachelor’s degree in Quantity Surveying from the University of Moratuwa, Sri Lanka, graduating with an impressive GPA of 4.02/4.2. Her academic journey has been marked by excellence and innovation, laying a strong foundation in construction economics, digital project management, and artificial intelligence applications in engineering. During her undergraduate studies, she actively engaged in interdisciplinary research, culminating in award-winning papers and recognition such as the Vidyajyothi Award for Most Outstanding Graduate. Her education was not only centered on traditional construction theories but also integrated modern computational tools like Building Information Modeling (BIM), Natural Language Processing (NLP), and ERP systems. She further enriched her learning through continuous professional development programs under globally recognized institutions such as RICS, CIOB, and CICES. Her commitment to bridging academic knowledge and industry needs reflects in her student memberships in several professional bodies and her contribution to forward-thinking academic publications and tech products.

💼 Experience 

With a dual role as a Research Assistant at the University of Moratuwa and Enterprise AI Solutions Engineer at Intelligent Label Solutions, Ishini brings a dynamic blend of academic rigor and industry impact. She founded Concolabs (Pvt) Ltd, where she led the development of MeasureonAIR, a mobile app automating construction measurements, and Roboclause, an AI chatbot that simplifies contract law queries. Her professional experience spans cost estimation, BIM integration, ERP development, and AI application in construction workflows. She has undertaken consultancy projects like BuildMarketLK, which leverages AI for market price forecasting, and Bimverse, a BIM-manipulation chatbot. Her involvement in both practical development and scholarly research positions her at the forefront of digital transformation in construction. Ishini has also served as a team lead in multiple collaborations, mentoring junior developers and researchers. Her contributions continuously demonstrate a commitment to integrating cutting-edge technology into conventional project management frameworks.

🏅 Awards and Honors 

Ishini Saparamadu has received multiple prestigious awards recognizing her academic brilliance and innovative spirit. Among her accolades is the Robin Jones Award, the Vidyajyothi Award for Most Outstanding Graduate, and Best Undergraduate Research Award. Her contributions were celebrated at the World Construction Symposium, where she received the Best Paper Award for her research in AI-driven construction contract analysis. She was also a CIOB Scholarship semi-finalist, showcasing her prominence among emerging global talents in construction. These honors underscore her dual excellence in both academia and practical innovation. Beyond these, Ishini has gained visibility through memberships in leading institutions such as the Royal Institution of Chartered Surveyors (RICS), Chartered Institute of Building (CIOB), and Chartered Institution of Civil Engineering Surveyors (CICES). Her accomplishments reflect not just academic superiority but also a commitment to industry evolution through applied research. These recognitions serve as a testament to her impact in the field at an early stage in her career.

🔬 Research Focus 

Ishini’s research centers on leveraging Artificial Intelligence to enhance construction law interpretation, project management, and compliance. Her core focus lies in Natural Language Processing (NLP) applications for automating legal documentation, as evidenced by her work on Roboclause, a contract law chatbot. She explores the use of vector database-powered chatbots for improving contract interpretation accuracy and reducing administrative delays. Another research stream involves affordance-led models for NLP adoption in construction project ecosystems. Ishini is also investigating bi-directional document management systems that ensure construction compliance using NLP. Her recent publications in Built Environment Project and Asset Management and Buildings reflect her commitment to translating theory into practical tools. She is also actively involved in projects integrating BIM with AI to enable intuitive interactions via natural language commands. Her interdisciplinary approach combines construction expertise with digital technologies to foster smarter, more compliant, and efficient project environments. She aspires to reshape the construction industry through innovation-led AI solutions.

📝 Conclusion

P. V. Ishini Nimasha Saparamadu is a highly suitable candidate for the YouthInnovate Award. Her profile reflects a rare combination of academic brilliance, real-world innovation, and a deep commitment to integrating AI into construction and legal processes. While she could strengthen her profile with more patents, books, and international collaborations, her current achievements—especially at such an early stage in her career—position her as a top contender for this recognition.

Publication

  • Optimising Contract Interpretations with Large Language Models: A Comparative Evaluation of a Vector Database-Powered Chatbot vs. ChatGPT
    Year: 2025
    Authors: P. Saparamadu, S. Sepasgozar, R.N.D. Guruge, H.S. Jayasena, A. Darejeh, …

 

  • BLUEPRINT FOR A NATURAL LANGUAGE PROCESSING POWERED NEXUS FOR REGULATORY AND LEGAL LANDSCAPE IN CONSTRUCTION
    Year: 2024
    Authors: P. Saparamadu, H.S. Jayasena, B.A.I. Eranga

 

 

Linmei Wu | civil engineering | Best Researcher Award

 Prof Dr. Linmei Wu | civil engineering | Women Researcher Award

Prof Dr at University of western australia China

Dr. Linmei Wu is a distinguished civil engineer at The University of Western Australia, recognized for her pioneering work in structural engineering and sustainable construction. With over 30 high-quality publications, Dr. Wu’s research focuses on advancements in civil engineering materials, concrete shrinkage, BIM design, and intelligent construction methods. Her work bridges traditional and modern engineering practices, driving innovation and sustainability in the field. With a citation index of 2189 and a commitment to impactful research, Dr. Wu is a strong candidate for the Research for Community Impact Award, reflecting her dedication to advancing both academic and practical aspects of civil engineering.

Profile

Scholar

Strengths for the Research for Community Impact Award 🌟

Innovative Research: Linmei Wu has made significant advancements in civil engineering materials and intelligent construction methods, addressing key challenges in the field.. High Citation Index: Her high citation index of 2189 reflects the impact and relevance of her research within the academic community. Commitment to Sustainability: Her focus on sustainable and innovative solutions aligns with the goals of the Research for Community Impact Award.

Areas for Improvement 🛠️

Expand Industry Collaborations: Enhancing collaborations with industry partners could amplify the practical applications and community impact of her research. Increase Public Outreach: Greater engagement in public outreach and communication of her research findings could further extend the societal benefits of her work.

Academic and Professional Background 🎓

I am an accomplished civil engineer specializing in structural engineering. With a robust foundation in civil and environmental engineering, I have published over 30 high-quality academic papers. My focus on innovative and sustainable solutions in structural engineering has led to significant advancements in the field. My commitment to research and development has driven me to the forefront of civil and structural engineering, where I continually strive to improve practices and technologies.

Contributions 🏆

Linmei Wu’s contributions to civil engineering are distinguished by her groundbreaking work in concrete shrinkage, BIM design, and intelligent construction methods. Her innovative approaches bridge traditional engineering with modern techniques, leading to sustainable and impactful advancements. Her extensive publication record and high citation index underscore her significant influence in the field. Linmei’s dedication to advancing civil and structural engineering practices demonstrates her commitment to enhancing the industry’s impact on both the environment and society.

Research and Innovations 🔬

I have achieved breakthrough advancements in civil engineering materials, particularly regarding concrete shrinkage, Building Information Modeling (BIM) design, and intelligent construction methods. My expertise integrates traditional civil engineering with modern design approaches, resulting in innovative and sustainable solutions.

 

Publication:📝
  1. High Stretchable and Self-Adhesive Multifunctional Hydrogel for Wearable and Flexible Sensors
    • Year: 2024
    • Authors: H Zhong, W Shan, L Liang, X Jiang, L Wu
    • Journal: Heliyon
    • Citations: 0

 

  1. Realistic Aggregate Based on Rough Textures with Deep Learning
    • Year: 2024
    • Authors: L Wu, P Liu
    • Journal: Applied Soft Computing
    • Article: 111938
    • Citations: 0

 

  1. Cover Image, Volume 141, Issue 26
    • Year: 2024
    • Authors: W Shan, L Liang, L Wu
    • Journal: Journal of Applied Polymer Science
    • Volume: 141
    • Issue: 26
    • Article: e54165
    • Citations: 0

 

  1. 4D Printing of Dual-Responsive High-Performance Shape Memory Polymer Inspired by Sunflowers
    • Year: 2024
    • Authors: W Shan, L Liang, L Wu
    • Journal: Journal of Applied Polymer Science
    • Volume: 141
    • Issue: 26
    • Article: e55557
    • Citations: 0

 

  1. Multi-Material and Parameter-Controllable Stereolithography 3D Printing of Graded Permittivity Composites for High Voltage Insulators
    • Year: 2023
    • Authors: L Zhong, J Du, Y Xi, F Wang, L Wu, J Li, M Tu, X Li, G Fei
    • Journal: Virtual and Physical Prototyping
    • Volume: 18
    • Issue: 1
    • Article: e2271447
    • Citations: 1

 

  1. 3D Printing of Photochromic and Thermochromic Shape Memory Polymers for Multi-Functional Applications
    • Year: 2023
    • Authors: N Ge, W Shan, L Liang, Y Deng, L Wu
    • Journal: Materials Research Express
    • Volume: 10
    • Issue: 9
    • Article: 095701
    • Citations: 1

 

  1. Shear Lag Effect Study of a Composite Girder Cable-Stayed Bridge During Construction
    • Year: 2022
    • Authors: QC She, CS Chen, DH Yan, LM Wu, G Huang
    • Journal: International Journal of Simulation Modelling (IJSIMM)
    • Volume: 21
    • Issue: 4
    • Citations: 3

 

  1. Behaviour of Steel-Reinforced Concrete Columns Under Combined Torsion Based on ABAQUS FEA
    • Year: 2020
    • Authors: X Cao, L Wu, Z Li
    • Journal: Engineering Structures
    • Volume: 209
    • Article: 109980
    • Citations: 52

 

  1. Study on Dimensional Stability of Ultra-High Performance Concrete (UHPC)
    • Year: 2020
    • Author: L Wu
    • University: University of Southern Queensland
    • Citations: 0

 

  1. Synthesis of Zeolite P1 from Fly Ash Under Solvent-Free Conditions for Ammonium Removal from Water
    • Year: 2018
    • Authors: Y Liu, C Yan, J Zhao, Z Zhang, H Wang, S Zhou, L Wu
    • Journal: Journal of Cleaner Production
    • Volume: 202
    • Pages: 11-22
    • Citations: 152

 

  1. 钢纤维对超高性能混凝土干燥收缩的影响 (Effect of Steel Fiber on the Drying Shrinkage of Ultra-High Performance Concrete)
    • Year: 2018
    • Authors: 吴林妹 (Wu Linmei), 史才军 (Shi Caijun), 张祖华 (Zhang Zuhua), 王浩 (Wang Hao)
    • Journal: 材料导报 (Materials Review)
    • Volume: 31
    • Issue: 23
    • Pages: 58-65
    • Citations: 6

Conclusion 🏆

Linmei Wu is a highly qualified candidate for the Research for Community Impact Award. Her extensive research contributions, innovative approaches, and significant citation index highlight her impactful work in civil engineering. With a strong commitment to sustainable solutions, she is well-positioned to advance the field and make meaningful contributions to both the industry and society.