In recent years, autonomous trucking has ceased to be a subject of futuristic predictions. The global logistics industry has faced the need for radical optimization, and the intersection of two trends – electrification and autonomy – has yielded working business models. Today, self-driving electric trucks and delivery vehicles are no longer being tested but are performing commercial routes daily in the USA and Europe.
Why the Industry Is Placing This Bet
- Global Labor Shortage. According to the International Road Transport Union (IRU), the global shortage of truck drivers numbers in the hundreds of thousands. In the USA and Europe, the staff shortage leads to idle equipment and increased freight costs. Autonomous systems do not require breaks or vacations and are not subject to employee turnover.
- Safety. Approximately 90% of road traffic accidents are caused by human factors (fatigue, loss of concentration). Autonomous systems equipped with lidars, radars, and computer vision react to threats faster than humans.
- ESG Standards Pressure. Large corporations have committed to zero carbon emissions by 2030-2040. An electric powertrain combined with optimized driving algorithms allows for a radical reduction of the carbon footprint for the “middle” and “last” mile deliveries.
Real Cases That Are Already Working
Unlike long-haul transportation, which is still undergoing complex testing on public roads, niche logistics segments have already been commercialized:
- Middle Mile: The company Gatik operates a fleet of fully autonomous, cabinless electric vans for delivering goods between distribution centers and retail stores. Their key partners include Walmart in the USA and Loblaw in Canada. The routes are strictly geo-fenced (limited by a virtual perimeter), which allows them to operate without a driver in the cabin on a regular basis.
- Closed Industrial and Warehouse Zones: The Swedish company Einride manufactures and operates self-driving, cabinless electric transport modules (Pods). They are already operating on the premises of GE Appliances in the USA and in partnership with the logistics giant DB Schenker in Europe. Control is exercised by remote operators who monitor several vehicles simultaneously and intervene only in non-standard situations.
- Last-Mile Delivery: The company Nuro has deployed commercial operations of its compact autonomous electric vehicles R2 and R3 for grocery and package delivery. Partnerships with Kroger, FedEx, and Domino’s have already resulted in hundreds of thousands of completed autonomous orders in several US states.
The Economics of the Model: Logistics as a Service (LaaS)
Global business is largely abandoning the idea of purchasing expensive autonomous equipment outright. The dominant model is becoming RaaS (Robot-as-a-Service) or “logistics on subscription.”
The client company pays not for the truck, but for a specific service: delivering cargo from point A to point B. This removes capital expenditure (CAPEX) risks, the costs of maintaining complex software, and fleet upgrades from the business. The technology provider takes full responsibility for the fleet's operation, offering the client a predictable 24/7 delivery cost.
What's Next?
The global market is moving from simple to complex. First, autonomy and electrification are conquering closed areas (ports, campuses, warehouses), then – short, predictable middle-mile routes with low travel speeds.
Long-haul autonomous transportation on public roads (autonomy level L4) remains the next frontier. Companies like Aurora and Kodiak Robotics are actively testing these solutions, but their widespread adoption will require not only a technological breakthrough but also harmonization of international legislation.
However, the main conclusion is already obvious: autonomous electric logistics is no longer an experiment. It is a working cost-reduction tool that global corporations are implementing today.

