
Teleworker AI provides a remote field presence system that uses autonomous mobile robots to perform construction progress tracking, QA/QC inspections, and facility condition assessments. The robots capture 360° imagery and LiDAR scans, which are aligned with BIM models to enable quantitative verification and objective dispute resolution. This reduces the need for manual site walks while improving documentation consistency and auditability.
Funding
Funding not disclosed
Founders
Product
Problem
Construction and facility management teams rely on manual site walks, superintendent walkthroughs, and ad hoc photo documentation to track progress, verify quality, and resolve disputes. These processes are labor-intensive, subjective, and often delayed, leaving stakeholders with outdated or fragmented information that hampers decision-making and increases legal exposure.
Solution
Teleworker AI delivers a Remote Field Presence System that uses autonomous mobile robots to perform inspections, documentation, and verification workflows on construction sites and operational facilities. The robots conduct daily or multi-daily site scans using 360° cameras and LiDAR, creating time-stamped, geo-referenced records of installed work. Captured data is aligned with BIM models and schedule milestones, enabling quantitative progress verification rather than visual estimation. The system also supports QA/QC walks, pre- and post-install documentation, issue validation, and schedule sequence verification, all without requiring additional on-site personnel.
Target Audience
Primary customers are construction firms, general contractors, and facility management teams that need continuous field presence, progress tracking, and inspection documentation across job sites and operating facilities.
Features
- Autonomous mobile robots with 360° cameras and LiDAR for consistent, repeatable site scans
- AI-powered flagging of missing elements, misalignments, incomplete finishes, and safety issues
- BIM and digital twin overlay for real-time comparison of physical conditions against design models
- Time-stamped, geo-referenced data archive for objective dispute resolution and warranty claims
- Predefined inspection routes and automated before-and-after punch verification
- Schedule and sequence verification to detect out-of-order installations before they cause delays