Cynthia Brosque
Chief of Staff at SafeAI | Stanford PhD I Adjunct Lecturer
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Email
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Website
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LinkedIn
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Contact Form for AECO and StartUp Consulting
CEE 327 Construction Robotics
CEE 327 Construction Robotics
Lectures and Conferences
CEE 327 Intro
Introduction to Construction Robotics Class CEE 327 - Winter 2022Are you interested in construction robots for tasks like drilling, painting, layout, and bri...
ICRA 2025 Workshop on Future of Construction
ICRA 2025 Workshop on Future of Construction
Enjoy the videos and music you love, upload original content, and share it all with friends, family, and the world on YouTube.
CIFE 2024 Summer Program
CIFE 2024 Summer Program
Stanford, CIFE | 2024 Summer Program | Cynthia Brosque, Product Manager, SafeAI and Instructor of CEE327 Construction Robotics at Stanford University | CSP D...
CIFE, Stanford | ICF 2022 | Panel Moderated by Cynthia Brosque
CIFE, Stanford | ICF 2022 | Panel Moderated by Cynthia Brosque
Session 2 | "Robotics for (on-site) Industrialization" | Panel discussion of the ICF 2022 with Kevin Albert, Henning Roedel, Tessa Lau, and Tristen Magallanes.
AI and Robotics in Heavy Civil Construction
AI and Robotics in Heavy Civil Construction
Title: AI and Robotics in Heavy Civil ConstructionDescription:Presented at Virtual Summit on Infrastructure — The Future of Heavy Civil & Resilient Infrastru...
Paper 170 - ISARC 2024
Paper 170 - ISARC 2024
Title: A Safety Framework to Assess Autonomous Construction and Mining EquipmentAuthors: Cynthia Brosque, Bibhrajit HalderAbstract: Artificial intelligence i...
2022 ISARC Presentation
2022 ISARC Presentation
Project-based curriculum for teaching construction robotics
ISARC 2021 Keynote
ISARC 2021 Keynote
Authors: Cynthia Brosque, Elena Galbally, Yuxiao Chen, Ruta Joshi, Oussama Khatib and Martin Fischer
Robots in Construction Today!!!
Robots in Construction Today!!!
The AEC industry has long engaged in discussions and explorations surrounding the role of robotics and its applications such as on-site additive manufacturin...
The Robots are Coming - In this Case
Podcast
·
Podcast
The Robots are Coming - In this Case
NYU Abu Dhabi Presentation IAARC
NYU Abu Dhabi Presentation IAARC
ETH Zurich Computational Design in AEC
ETH Zurich Computational Design in AEC
Robotics Evaluation Framework (in Spanish)
Robotics Evaluation Framework (in Spanish)
Evaluation of an Autonomous Driving Dumper using a Robot Evaluation Framework – The International Association for Automation and Robotics in Construction
Evaluation of an Autonomous Driving Dumper using a Robot Evaluation Framework – The International Association for Automation and Robotics in Construction
Published Articles
BIM-driven productivity and risk management of workspacesfor manual and robotic installations
BIM-driven productivity and risk management of workspacesfor manual and robotic installations
Comparison of dusty robotics and traditional layout methods | Construction Robotics
Comparison of dusty robotics and traditional layout methods | Construction Robotics
The use of robots in construction has been rising in recent years. However, limited knowledge is available to understand how robots perform compared to exi
Evaluation of an Autonomous Driving Dumper using a Robot Evaluation Framework – The International Association for Automation and Robotics in Construction
Evaluation of an Autonomous Driving Dumper using a Robot Evaluation Framework – The International Association for Automation and Robotics in Construction
A review of Obayashi’s fleet management system
A review of Obayashi’s fleet management system
This case study examines Obayashi Corporation’s fleet management system (FMS), an advanced remote, and semi-automatic operation system for constructi
A Safety Framework to Assess Autonomous Equipment
A Safety Framework to Assess Autonomous Equipment
Exploring a Design for Robotic Construction approach
Exploring a Design for Robotic Construction approach
As robots become more flexible to operate in unstructured environments, the AEC industry needs to facilitate the deployment of robots from design perspectives. However, today’s process of deploying robots typically starts while the construction phase is underway, lacking design methods for robotic construction. This paper explores a Design for Robotic Construction approach. First, a set of metrics was defined to analyze the match between the design features of construction projects and robots. Second, a user interface was prototyped to visualize these metrics and suggest design decisions for robots and construction projects. The approach was preliminarily validated in two pilot studies.
Human-Robot Collaboration in Construction: Opportunities and Challenges
Human-Robot Collaboration in Construction: Opportunities and Challenges
Robohub
Robohub
Comparison of on-site and off-site robot solutions
Comparison of on-site and off-site robot solutions
Safety, quality, schedule, and cost impacts of robots
Safety, quality, schedule, and cost impacts of robots
A robot evaluation framework
A robot evaluation framework
Best Paper Award ISARC 2021
Best Paper Award ISARC 2021
Comparative Analysis of Manual and Robotic Concrete Drilling for Installation Hangers
Comparative Analysis of Manual and Robotic Concrete Drilling for Installation Hangers
Comparison of Construction Robots and Traditional Methods for Drilling, Drywall, and Layout Tasks
Comparison of Construction Robots and Traditional Methods for Drilling, Drywall, and Layout Tasks
IROS 2022
IROS 2022
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