Metals & Mining: engineering the electrified, autonomous mine

By 2027, the operators and equipment manufacturers who win won’t be the ones with a pilot autonomous haul truck — they’ll be the ones who embedded the electrification, controls, and digital-twin engineering to run electrified, autonomous fleets safely at full production scale. That’s the work Arrow Ways does.

Projected global mining market size in 2026
Productivity gains reported from digital and automation technologies
Critical minerals market projected to reach $17.6B, up from $11B in 2022
2027 Outlook

Electrification and autonomy are converging into one program

Electric haul trucks, autonomous drilling, and digital-twin mine planning have moved from innovation-team side projects to core capital programs. Declining ore grades and tightening margins mean operators can no longer treat electrification and automation as separate initiatives — the winning mines are the ones engineering them as a single, unified operations environment.

Ore grades are declining, high-grade deposits are harder to reach, and ESG pressure is forcing operators toward electrified fleets and lower-carbon processing. At the same time, mining is responsible for a meaningful share of global emissions, which means electrification isn’t optional positioning — it’s becoming a condition of the social license to operate. None of this is achievable without deep controls, power systems, and embedded software engineering behind the equipment.

This is where Arrow Ways’ core discipline transfers directly. The same embedded engineering model we’ve built serving Automotive & EV clients on battery systems and electrified powertrains, and Industrial Equipment clients on heavy machinery controls, applies almost one-to-one to electrified haul trucks, autonomous drilling rigs, and digital-twin process plants. A battery-electric haul truck and an EV powertrain share more engineering DNA than most people realize.

We see metals and mining as a natural extension of the client base Arrow Ways already serves, not a departure from it: power electronics, functional safety, autonomous controls, and industrial IoT are the same disciplines, applied to a different piece of equipment and a harsher environment.

Why It Matters

The most transformative trend will be the convergence of electrification and digitalization into unified, autonomous operations environments.”

Schneider Electric Canada, mining & minerals industry commentary, 2026
Where We Add Value

Embedded engineering across the modern mine site

From the equipment itself to the operations center behind it, Arrow Ways places engineers where mining equipment manufacturers and operators need bench strength most.

01

Electrified Fleet & Powertrain Systems

Embedded engineers for the battery, power electronics, and charging infrastructure behind electrified haul trucks and mining vehicles.

  • Battery system design and thermal management for heavy-duty duty cycles
  • Power electronics and motor controls for electrified fleets
  • Overhead trolley and stationary charging infrastructure integration
  • Energy management and production planning software

02

Autonomous Equipment & Controls

Engineering support for the perception, control, and safety systems behind autonomous haul trucks, drills, and loaders.

  • Sensor fusion and machine vision for autonomous navigation
  • Real-time control software for drilling, hauling, and loading systems
  • Functional safety architecture for unsupervised equipment operation
  • Remote operations center integration and teleoperation systems

03

Digital Twin & Process Engineering

Engineering for the modeling and monitoring systems that optimize ore processing and mine planning.

  • Digital twin development for mine planning and process optimization
  • Online process monitoring (XRF, particle size, ore composition)
  • Geological modeling and selective mining system integration
  • Predictive maintenance and equipment health analytics

04

Connected Operations & Traceability

Software and systems engineering for the connected, ESG-accountable mine site of 2027.

  • Fleet telematics and IoT sensor network deployment
  • Fatigue monitoring and connected-worker safety systems
  • Digital traceability platforms (IoT, blockchain, satellite) for responsible sourcing
  • Emissions tracking and ESG reporting system integration
Disciplines We Embed

The engineering bench mining is short on

Mining equipment manufacturers and operators are competing for the same scarce electrification and automation talent as automotive and industrial OEMs. Arrow Ways places it directly inside your team.

 
Why Arrow Ways

Built on the same embedded model, extended to a new site

We’re not asking mining clients to adopt an unproven approach. We’re extending the model already validated across Automotive & EV and Industrial Equipment engagements.

Talent that already speaks the language

Our bench of power electronics, controls, and functional safety engineers comes from automotive and industrial backgrounds directly transferable to electrified, autonomous mining equipment.

Placed inside your engineering org

Engineers report through your structure and your program timelines — accelerating delivery without adding a layer of outside consultants to manage.

Site-first, not lab-first

We scope for the conditions mining equipment actually operates in — dust, vibration, remote sites, and extreme duty cycles — not idealized test-bench performance.

Scalable engagement models

From a single embedded controls engineer to a full cross-functional pod for an electrification or autonomy program, engagements scale with your roadmap and capital cycle.

A note on where the market is headed

High upfront costs for electrified and automated fleets, along with permitting and regulatory pressure, remain real adoption barriers — particularly for small and mid-size operators. Arrow Ways engagements are scoped with those constraints in view from day one — the goal is systems that work on the equipment and infrastructure your operation actually has, not a reference architecture that only works in a lab.

Related Reading

From the Arrow Ways Insights desk

Electrification
What EV Battery Programs Can Teach Mine Electrification Why the battery and power electronics playbook built for electric vehicles transfers more directly to electrified haul fleets than most operators expect.
Autonomy
Designing Autonomous Controls for Remote, Harsh Sites How functional safety and teleoperation architecture close the gap between pilot autonomous equipment and full production fleets.
Talent
The Engineering Talent Gap Behind the Mining Electrification Boom Why power electronics and controls engineers are suddenly the most contested hires in mining equipment manufacturing.
Electrifying or automating your fleet?

Talk to Arrow Ways about embedding the power electronics, controls, and autonomy engineering talent your program needs.