# SiteSee

> SiteSee is a Brisbane-founded software company that builds AI-powered digital twins of telecommunications infrastructure. By combining drone capture, photogrammetry and machine-learning audit engines, it turns survey-grade imagery of cell towers and rooftops into interactive 3D models that tower companies and mobile network operators can inspect, measure and upgrade from a desk - cutting site visits, speeding colocation approvals and helping owners get more value from their assets.

- **Founded:** 2016
- **Headquarters:** Brisbane, Australia
- **Founders:** Lucio Piccoli (Co-founder), David Crane (Co-founder), Lachlan Crane (Co-founder)
- **Team size:** 17 employees
- **Products:** SiteSee Platform, TowerSee, TowerSee MAX, DroneSee Mission Planner, Cell Tower Digital Twin Editor
- **Notable:** Built and validated an AI digital twin platform used by major TowerCos across three continents, Ran an early UAV reality-capture and digital twin pilot on Australian telco towers showing major efficiency gains versus manual inspection, Delivered antenna tilt and azimuth measurement accurate to a fraction of a degree using drones plus Ground Control Points (TowerSee MAX)

## Products & services

- **SiteSee Platform** — Cloud-based digital twin and AI SaaS platform that hosts 3D reality models of towers and rooftops and layers analytics, asset inventory and revenue tooling on top for TowerCos and operators.
- **TowerSee** — Digitises telco tower assets in the cloud and applies AI Audit Engine services, letting teams inspect and manage the tower and its compound from the office through repeatable, cost-saving drone audits.
- **TowerSee MAX** — High-precision tier using Ground Control Points for accuracy beyond standard GPS drones - delivers antenna tilt, bearing and azimuth measurements to a fraction of a degree to verify and improve RF network plans.
- **DroneSee Mission Planner** — Specialised drone mission-planning app that makes cell-tower capture simple and repeatable, so field teams can be trained quickly and still produce high-quality digital deliverables.
- **Cell Tower Digital Twin Editor** — Tool that makes 3D tower digital twins editable, letting engineers annotate, correct and update the model rather than just view it.
- **AI Audit Engine** — Machine-learning services that automatically detect defects such as missing bolts and rust, and derive measurements including antenna tilt, exclusion zones and RF/EME compliance data from the 3D model.
- **Customer Self Service Portal (CSS)** — Self-service portal giving customers secure access to their digital twins, audits and asset data.
- **IEA - Independent Engineering Assessment** — Structural insight service that surfaces load and structural information earlier to accelerate tower upgrades.

## Achievements

- Built and validated an AI digital twin platform used by major TowerCos across three continents
- Ran an early UAV reality-capture and digital twin pilot on Australian telco towers showing major efficiency gains versus manual inspection
- Delivered antenna tilt and azimuth measurement accurate to a fraction of a degree using drones plus Ground Control Points (TowerSee MAX)
- Enabled UK telecoms operators to adopt digital twin workflows for tower management
- Backed by muru-D, River City Labs, Hapstone Partners, Seven West Media and Telstra

## Latest updates

- **2026-07** — CEO David Pash featured on RCR Wireless podcast discussing how decision-ready digital twins are changing wireless telecom, from 'site truth to revenue'.
- **2024** — Introduced the Cell Tower Digital Twin Editor, making 3D tower models editable rather than view-only.
- **2023** — PhilTower began digitising Globe-acquired cell towers using SiteSee's platform and QNSI field surveys.
- **2022-11** — Raised a Series A tranche (~US$580K) led by Hapstone Partners.

## Links

- Website: https://sitesee.io
- LinkedIn: http://www.linkedin.com/company/sitesee
- Twitter/X: https://twitter.com/siteseeapp

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Profile page: https://yespress.io/sitesee
Published by YesPress — https://yespress.io
Last updated: 2026-07-25
