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Courses/Engineering/Modern Technology

AI, Data and Robotics in New Zealand AEC

Practical lessons on applying AI, data governance and robotics to lift productivity, asset value and delivery outcomes across the NZ engineering and construction sector.

Created byJon Sinclair
4.3
(3 reviews)
BeginnerUpdated Feb 27, 2026
AI, Data and Robotics in New Zealand AEC

What You'll Learn

check_circleUnderstand how AI and robotics are currently being applied on New Zealand construction sites.
check_circleAssess the productivity, cost and quality impacts of construction robotics and automation.
check_circleIdentify the role of data quality and governance in enabling effective AI outcomes.
check_circleEvaluate whole-of-life asset implications of digital and AI-enabled delivery decisions.
check_circleApply practical principles for integrating digital strategy early in project planning.

About This Course

Artificial intelligence, robotics and data-driven delivery are moving rapidly from experimentation to real-world application across New Zealand construction projects. Engineers are increasingly expected to understand how these technologies affect productivity, risk allocation, asset performance and long-term value, not just during delivery but across the full asset lifecycle.

This session examines how AI, robotics and digital data can be practically deployed on construction sites and within project teams today. Drawing on live New Zealand case experience, it explores where measurable value is being realised, why data quality and governance are critical, and how poor digital decisions compound risk over the life of an asset.

Attendees will gain a grounded understanding of how to make informed decisions about AI and construction technology adoption, how to integrate digital thinking early in projects, and how engineers can play a leadership role in shaping data-enabled, high-performance built assets.

This course provides a detailed overview of the following key topics:

  • The current state of the New Zealand AEC sector, including productivity trends and the necessity for tech-enabled leadership.
  • Core principles of digital adoption, focusing on the concept that all data has value and belongs in a continuous pipeline from design to operations.
  • Pre-construction applications, such as using handheld LiDAR for existing site capture, assessing model health, and digital build sequencing.
  • Practical use cases for robotics on-site, including drilling robots, layout printers, and autonomous capture via robot dogs and drones.
  • The role of AI in quality tracking, utilizing reality capture to verify installation accuracy against BIM models and schedules.
  • Strategies for asset operations, including the shift from Large Language Models to Small Language Models (SLMs) for industry-specific expertise and data governance.

By the end of this course, professionals will understand how to integrate digital strategies into their projects, transforming how physical assets are built and managed. Whether you are a project manager, engineer, or asset owner, this session offers the strategic framework and practical examples needed to navigate the rapidly evolving landscape of construction technology.

Your Instructor

Jon Sinclair
Jon Sinclair

Digital Services Director | Preformance Technologies

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star3 reviews

Jonathan is a highly experienced (26+ years) technology and client services leader with skills across the energy, water and construction sectors. His role is integral to building and maintaining client relationships. He has core oversight of critical services like design management, sustainability, BIM, project scanning and capture, and digital asset management. Jonathan also works closely with leadership teams and key stakeholders to manage project financials, as well as developing strategic supply chain relationships. Combining his impressive academic background with proven capabilities in the digital sphere, Jonathan is a natural problem-solver who effectively navigates broad and complex challenges. With a genuine enthusiasm for sustainability and the natural environment, Jonathan provides proven expertise on the environmental impact of designs to align outcomes with client goals.

Credit Information

What Students Are Saying

4.3
Student's Choice
3 reviews

Frequently Asked Questions

We are a registered provider with 327+ associations and regulatory bodies worldwide. We operate across 29 global markets including Canada, the US, Australia, and the UK. Every course page clearly displays its specific accreditations. Upon completion, you receive a professional certificate that can be validated online. Our certificates include all necessary accreditation details, credit hours, and completion dates, and are formatted specifically to meet the submission requirements of most global regulatory bodies.