BREAKING DOWN THE VIBES OF 3D NOISE INTERPOLATION VIA 3D CITY MODELLING
Exciting News Alert! Just dropped my latest research on 3D Kriging magic for tackling urban noise chaos! Unraveling the secrets of traffic noise visualization – because who doesn’t want a quieter, cooler cityscape?
Dive into the 3D noise symphony! IDW and TIN step aside – it’s all about 3D Kriging now, paving the way for precision in noise level predictions.
Curious about the backstage dance of variograms? Swipe through my publication for the ultimate guide to picking the right beat for accurate 3D Kriging interpolation!
Let’s turn down the noise and turn up the innovation!
GLOBAL COLLABORATION IN RESEARCH – WELCOMING ANOTHER POSTDOC FROM KING FAHD UNIVERSITY TO OUR SCIENTIFIC JOURNEY
Excited to share that my second postdoctoral staff application has been approved! Thrilled to be supervising exceptional talent from King Fahd University in Saudi Arabia, but he is originally from Cairo, Egypt. Looking forward to impactful collaboration and research advancements.
Bridging Academia and Industry and The Crucial Role of MoUs between Research Universities and International Industry Leaders
In the ever-evolving landscape of innovation and progress, the synergy between research universities and international industry players is increasingly becoming a catalyst for groundbreaking advancements. At the heart of this collaboration lies the Memorandum of Understanding (MoU), a powerful tool that shapes the future of research, technology, and industry. Let’s explore why forging MoUs between research universities and main international industry players is of paramount importance.
1. Knowledge Transfer and Innovation Hub:
Research universities are hubs of knowledge and innovation. Partnering with international industry players through an MoU creates a two-way street for the exchange of ideas, cutting-edge research, and technological breakthroughs. This collaboration fosters an environment where academia and industry can coalesce, driving innovation to new heights.
2. Real-world Application of Research:
The synergy between academia and industry is where theoretical knowledge meets real-world application. An MoU facilitates the seamless integration of academic research into practical industry solutions. This bridge ensures that groundbreaking discoveries in university labs find their way into products, services, and technologies that impact society positively.
3. Access to Funding and Resources:
International industry players bring not only expertise but also substantial resources to the partnership. Through MoUs, research universities gain access to funding, state-of-the-art laboratories, and industry-specific resources. This infusion of support empowers researchers to pursue ambitious projects and push the boundaries of what’s possible.
4. Talent Development and Collaboration:
Collaboration with industry leaders opens up avenues for talent development. Students and researchers benefit from exposure to real-world challenges, industry practices, and mentorship from professionals. This dynamic interaction nurtures a skilled workforce ready to tackle the complexities of today’s global challenges.
5. Global Relevance and Impact:
An MoU with an international industry player elevates the global relevance of a research university. Collaborative projects extend the reach of research findings, enhancing the university’s impact on a global scale. This global footprint not only attracts top-tier talent but also positions the institution as a key player in shaping the future.
6. Commercialization Opportunities:
The collaboration facilitated by MoUs often leads to commercialization opportunities. Transformative research outcomes can find their way into the market, creating a pathway for industry partners to capitalize on innovative solutions. This symbiotic relationship strengthens the bond between academia and industry for mutual benefit.
7. Solving Grand Challenges:
Grand challenges facing society, from climate change to healthcare, require interdisciplinary solutions. MoUs enable research universities and industry leaders to pool their collective expertise and resources to tackle these challenges head-on. The result is a collaborative effort that transcends boundaries and addresses critical global issues.
The importance of forging MoUs between research universities and main international industry players cannot be overstated. It’s a strategic alignment that propels both entities toward shared goals of innovation, knowledge dissemination, and societal impact. As we navigate a future defined by technological advancements and global challenges, these partnerships forged through MoUs will be instrumental in shaping a world where academia and industry stand united on the forefront of progress.
SOUNDSCAPES UNVEILED: ADVANCEMENTS IN 3D CITY MODELLING FOR 3D TRAFFIC NOISE VISUALIZATION
Excited to share our latest publication in the Geomatics and Environmental Engineering journal: “Calculation of Road Traffic Noise, Development of Data, and Spatial Interpolations for Traffic Noise Visualization in Three-dimensional Space.”
Our study delves into the essentials of 3D traffic noise visualization, emphasizing the critical role of noise observation points (NOPs) and advancements in spatial interpolations. Explore how TIN noise contours prove optimal for visualizing traffic noise levels, and how advanced kriging, such as empirical Bayesian kriging (EBK), provides a significant leap in 3D noise interpolation accuracy.
Check out the full paper for insights into refining noise visualization techniques! #TrafficNoise #SpatialInterpolations #Geomatics #EnvironmentalEngineering #ResearchInsights
Link to the full paper: https://www.gaee.agh.edu.pl/gaee/article/view/523/150
BOUNDLESS COMMITMENT: A STUDENT’S DRIVE IN SPATIAL ALGORITHM AND APPLICATIONS
Thrilled to share a heartening experience with my international exchange student at UTM! She specifically chose my Spatial Algorithm and Applications course, and during the test, I was amazed to see her dedication. Not only did she buy my digital book, but she also went the extra mile—printing, binding a physical copy, and even translating it into Chinese. Truly inspired by her commitment to learning!
SPATIAL SYMPHONY: 3D CITY MODELLING OF TRAFIC NOISE DECIBELS WITH HENK DE KLUJIJVER MODEL
Exciting news! Our recent publication in the prestigious Q1 journal “Noise Mapping” explores the intricacies of visualizing road traffic noise using the Henk de Klujijver model.
Delving into the challenges of 3D noise contours, we emphasize the critical role of noise observation points (Nops) within a 3D building model. Our study reveals that Triangular Irregular Network (TIN) interpolation outshines others, offering superior accuracy in 3D noise contour visualization.
Dive into the full paper to uncover insights that contribute to refining traffic noise planning policies and spatial interpolation techniques! #TrafficNoise #SpatialVisualization #NoiseMapping #ResearchDiscoveries
UNLOCKING URBAN SPACES: A 3D SPATIAL ANALYSIS OF TEMPORAL MAINTENANCE IN MULTI-USE HIGH-RISE BUILDINGS
Exciting news to share! Kudos to my PhD students, Usman and Syahiirah, for the publication of their joint paper in the Geomatics and Environmental Engineering journal – a Scopus Q3 indexed publication. Our paper, titled “3D Spatial Analysis of Temporal Maintenance for Multi-use High-rise Buildings: Case Study,” delves into the complexities of managing and maintaining spaces in high-rise buildings amidst urbanization.
Summary: The study focuses on implementing temporal maintenance management for high-rise building parcels within a 3D spatial database. It involves 3D space segmentation to analyze ownership and usage, spatial queries for temporal maintenance, and 3D spatial relationships to identify adjacent parcels affected by maintenance. This innovative approach ensures accurate representation and identification of spaces crucial for enhancing the quality of life in multi-use high-rise buildings.
Check out the insightful paper here: https://www.gaee.agh.edu.pl/gaee/article/view/638
BIG DATA SPATIAL MODELS FOR TEMPORAL GRAPH DATABASES SPATIAL QUERIES
Exciting news! Our recent IEEE publication, “Modelling Reoccurrence of Events in an Event-Based Graph Database for Asset Management,” explores efficient ways to handle recurring maintenance events in asset management.
We introduce three temporal graph data models, assessing their performance on synthetic datasets. The findings highlight the second model’s efficiency with smaller datasets and the third model’s prowess with big data scenarios.
These models go beyond asset management, providing a foundation for event-based data management using graph databases. Dive into the full paper for insights into optimizing asset maintenance and more!
Thrilled to announce my success in securing three awards! Huge thanks to the Faculty of Built Environment and Surveying and Universiti Teknologi Malaysia for their support in achieving the following awards:
1) Staff Excellence Award 2022
2) Prolific Award for Head of Research Grant 2022
3) Indexed Journal Writing Prolific Award 2022
While not present on stage, I extend my gratitude to the event organizers for this wonderful recognition.
Thrilled to announce I’ve been awarded a Professional Development Research University grant by UTM! Grateful for this opportunity and excited to contribute to cutting-edge research. Huge thanks to UTM for the trust and support. Ready for the next chapter! #ResearchGrant #UTMOpportunity #Gratitude