Lawrence Lee

dblp:82/9923 · DBLP profile ↗
← Back
7ranked-venue papers
0as first author
6since 2021 · last 2026
0000-0002-1336-9136ORCID · reported

Domains — the database's venue-derived domains; a paper can count in several

Graphics, computer vision, multimedia, augmented reality and games · 4 · 4 since 2021Human-computer interaction and ubiquitous computing · 3 · 3 since 2021Artificial intelligence and machine learning · 1Computer networks · 1 · 1 since 2021Applied, interdisciplinary, general and emerging computing · 1

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer architecture, parallel and distributed computing, and storage systems
1 paper
Cloud and datacenter computing · 100%
Computer graphics and multimedia
1 paper
Visualization and visual analytics · 100%
Computer networks
1 paper
Software-defined and programmable networks · 100%
Human-computer interaction and pervasive computing
1 paper
Usability and user experience research · 100%

Topics — the 6 heaviest of 6, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Software-defined and programmable networks › programmable data plane
programmable switch
1.012026
Offloading Cloud Network Services at Production Scale with SONiC DASH SmartSwitch · NSDI 2026
Cloud and datacenter computing › cloud networking
cloud network services
1.012026
Offloading Cloud Network Services at Production Scale with SONiC DASH SmartSwitch · NSDI 2026
Cloud and datacenter computing › computation offloading
network function offloading
1.012026
Offloading Cloud Network Services at Production Scale with SONiC DASH SmartSwitch · NSDI 2026
Visualization and visual analytics
graph visualization
0.512021
Scalability of Network Visualisation from a Cognitive Load Perspective · IEEE Trans. Vis. Comput. Graph. 2021
Visualization and visual analytics › graph visualization
node-link diagram
0.512021
Scalability of Network Visualisation from a Cognitive Load Perspective · IEEE Trans. Vis. Comput. Graph. 2021
Usability and user experience research
cognitive load
0.112021
Scalability of Network Visualisation from a Cognitive Load Perspective · IEEE Trans. Vis. Comput. Graph. 2021

Methods — techniques the papers use, named apart from their topics

pupillometry · 1.0heart rate variability · 1.0controlled user study · 1.0EEG · 1.0
YearPublicationVenuePosition
2026 Offloading Cloud Network Services at Production Scale with SONiC DASH SmartSwitch
Shaofeng Wu, Zhixiong Niu, Riff Jiang, Lawrence Lee, Junhua Zhai, Ze Gan, Vasundhara Volam, Prabhat Aravind, Prince Sunny, Prince George, Evan Langlais, Soumya Tiwari, Venkat Satish Katta, Weixi Chen, Rishiraj Hazarika, Sachin Jain, Deven Jagasia, Michal Zygmunt, Avijit Gupta, Neeraj Motwani, Pranjal Shrivastava, Anil Reddy Pannala, Kristina Moore, James Grantham, Anupam Pandey, Guohan Lu, Gerald DeGrace, Rishabh Tewari, Erica Lan, Deepak Bansal, David A. Maltz, Yongqiang Xiong, Hong Xu 0001
NSDI4
2026 Integrating Visual Analytics into Eye Tracking Workflows: A Longitudinal Field Study
Kun-Ting Chen, Arnaud Prouzeau, Christophe Hurter, Joshua Langmead, Lawrence Lee, Tim Dwyer, Michael Sedlmair, Daniel Weiskopf, Sarah Goodwin
PacificVis5
2025 Streamlining Eye-Tracking and Observational Data for Field Study Visual Analysis
abstract
Wearable eye-tracking in field studies presents challenges in synchronising gaze data with dynamic stimuli and integrating observational notes from multiple observers. Existing tools often struggle to visualise eye-tracking patterns in complex, real-world environments with frequently changing areas of interest (AOIs). To address this, we propose a streamlined workflow that simplifies analysis preparation by integrating real-time observer notes with eye-tracking data with enhanced timestamp-based synchronisation, improving data mapping, and automating AOI detection with an energy control room use case. This workflow makes eye-tracking tools like Gazealytics more practical for complex field studies. By streamlining data preparation and automation, our method enhances the scalability and usability of eye-tracking analysis in complex environments, enabling more efficient and accurate visual analysis of real-world decision-making.
Yidan Zhang 0003, Nethara Athukorala, Ziying Liang, Yidan Qiao, Simran 0001, Yu Xuan Yio, Lawrence Lee, Benjamin Tag, Mor Vered, Michael Wybrow, Sarah Goodwin
ETRA7
2023 Gazealytics: A Unified and Flexible Visual Toolkit for Exploratory and Comparative Gaze Analysis
abstract
We present a novel, web-based visual eye-tracking analytics tool called Gazealytics. Our open-source toolkit features a unified combination of gaze analytics features that support flexible exploratory analysis, along with annotation of areas of interest (AOI) and filter options based on multiple criteria to visually analyse eye tracking data across time and space. Gazealytics features coordinated views unifying spatiotemporal exploration of fixations and scanpaths for various analytical tasks. A novel matrix representation allows analysis of relationships between such spatial or temporal features. Data can be grouped across samples, user-defined AOIs or time windows of interest (TWIs) to support aggregate or filtered analysis of gaze activity. This approach exceeds the capabilities of existing systems by supporting flexible comparison between and within subjects, hypothesis generation, data analysis and communication of insights. We demonstrate in a walkthrough that Gazealytics supports multiple types of eye tracking datasets and analytical tasks.
Kun-Ting Chen, Arnaud Prouzeau, Joshua Langmead, Ryan Whitelock-Jones, Lawrence Lee, Tim Dwyer, Christophe Hurter, Daniel Weiskopf, Sarah Goodwin
ETRA5
2022 VETA: Visual eye-tracking analytics for the exploration of gaze patterns and behaviours
abstract
Eye tracking is growing in popularity for multiple application areas, yet analysing and exploring the large volume of complex data remains difficult for most users. We present a comprehensive eye tracking visual analytics system to enable the exploration and presentation of eye-tracking data across time and space in an efficient manner. The application allows the user to gain an overview of general patterns and perform deep visual analysis of local gaze exploration. The ability to link directly to the video of the underlying scene allows the visualisation insights to be verified on the fly. The system was motivated by the need to analyse eye-tracking data collected from an ‘in the wild’ study with energy network operators and has been further evaluated via interviews with 14 eye-tracking experts in multiple domains. Results suggest that, thanks to state-of-the-art visualisation techniques and by providing context with videos, our system could enable an improved analysis of eye-tracking data through interactive exploration, facilitating comparison between different participants or conditions, thus enhancing the presentation of complex data analysis to non-experts. This research paper provides four contributions: (1) analysis of a motivational use case demonstrating the need for rich visual-analytics workflow tools for eye-tracking data; (2) a highly dynamic system to visually explore and present complex eye-tracking data; (3) insights from our applied use case evaluation and interviews with experienced users demonstrating the potential for the system and visual analytics for the wider eye-tracking community.
Sarah Goodwin, Arnaud Prouzeau, Ryan Whitelock-Jones, Christophe Hurter, Lawrence Lee, Umair Afzal, Tim Dwyer
Vis. Informatics5
2021 Scalability of Network Visualisation from a Cognitive Load Perspective
abstract
Node-link diagrams are widely used to visualise networks. However, even the best network layout algorithms ultimately result in 'hairball' visualisations when the graph reaches a certain degree of complexity, requiring simplification through aggregation or interaction (such as filtering) to remain usable. Until now, there has been little data to indicate at what level of complexity node-link diagrams become ineffective or how visual complexity affects cognitive load. To this end, we conducted a controlled study to understand workload limits for a task that requires a detailed understanding of the network topology-finding the shortest path between two nodes. We tested performance on graphs with 25 to 175 nodes with varying density. We collected performance measures (accuracy and response time), subjective feedback, and physiological measures (EEG, pupil dilation, and heart rate variability). To the best of our knowledge this is the first network visualisation study to include physiological measures. Our results show that people have significant difficulty finding the shortest path in high density node-link diagrams with more than 50 nodes and even low density graphs with more than 100 nodes. From our collected EEG data we observe functional differences in brain activity between hard and easy tasks. We found that cognitive load increased up to certain level of difficulty after which it decreased, likely because participants had given up. We also explored the effects of global network layout features such as size or number of crossings, and features of the shortest path such as length or straightness on task difficulty. We found that global features generally had a greater impact than those of the shortest path.
Vahan Yoghourdjian, Yalong Yang 0001, Tim Dwyer, Lawrence Lee, Michael Wybrow, Kim Marriott
IEEE Trans. Vis. Comput. Graph.4
2011 Online Planning to Control a Packaging Infeed System
abstract
In this paper, we investigate a novel application of online planning and scheduling: controlling an automated infeeder for a packaging line of food and consumer packaged goods. In this system, products arrive continuously at high-speed from the end of the production line and need to be arranged into a specific configuration for downstream primary and secondary packaging machines. In collaboration with a domain expert from the packaging industry, we developed an innovative design for a reconfigurable parallel infeed system using a matrix of interchangeable smart belts. We also adapted our online model-based Plantrol planner to this domain. Our planner can control various configurations of the new in-feed system through simulation both in nominal planning and when runtime failures occur. We are also building a small physical prototype to validate the new design and our sofeware framework.
Minh Binh Do, Lawrence Lee, Rong Zhou 0001, Lara S. Crawford, Serdar Uckun
IAAI2