Nokia & Mobile Industrial Robots (MiR) showcase real-time robot fleet management using private 5G wireless

> Nokia and MiR to show how private 5G wireless networks can deliver high-performance, low-latency and secure connectivity for Industry 4.0 digital transformation
> MiRโ€™s autonomous mobile robots will be connected to a 5G private wireless network using Nokia DAC, to showcase real-time fleet management at the event in Stuttgart
> Will be the first demonstration to use private 5G wireless to connect AMRs at an international logistics event
5G for smart manufacturing | smart factory | industry 4.0 report - TeckNexus | Auto manufacturer AD Plastik to deploy private 5G with Nokia and OIV

Nokia and Mobile Industrial Robots (MiR), a leading manufacturer of collaborative mobile robots,ย willย showcase the power of privateย 5Gย wireless for the digital transformation of industries atย LogiMatย in Germany.


The companies will demonstrate how companies like manufacturers and warehouse operators can leverage 5G to transform tasks, including real-time fleet management of industrial robots. MiR will leverage the Nokia Digital Automation Cloud (DAC) end-to-end industrial private wireless solution at its booth at the event in Stuttgart. MiRโ€™s autonomous mobile robots (AMRs) will be connected to the 5G private wireless network using Nokia Industrial dongles, equipped with their own SIM cards.

The high-performance, ultra-low latency and security enabled by private 5G wireless enables work instructions to be delivered and actioned in real time, with all data remaining securely within the network. High reliability and coverage ensures the AMRs are always connected when traversing large spaces, such as warehouses.

Sรธrenย E. Nielsen,ย Presidentย ofย MiR,ย said:ย โ€œOur AMRs address a range of workflows that allow manufacturing, warehouse and distribution centers to automate time-consuming tasks. Working with Nokia, we can showcase the benefits of 5G to enable real-time fleet management.โ€

Jochen Apel, Vice president, Digital Industries for Nokia Enterprise,ย said:ย โ€œNokia DAC allows industries to deploy private 4.9G/LTE and 5G wireless networks to digitally transform their operations. We look forward to demonstrating with MiR how high-performance enabled by 5G ensures there are no breaks in coverage so real time instructions can be delivered and actioned with autonomous mobile robots on large manufacturing floors and warehouses.โ€

Nokia DAC end-to-end platform delivers a comprehensive industrial grade private 4G/LTE and 5G wireless network solution for enterprises, comprising edge computing, radio access points and user equipment. Private edge cloud capabilities will ensure companies can seamlessly process massive amounts of video and data for real-time analysis and continuous process improvement. Nokia DAC offers a powerful web-based management portal to simplify device management. A wide range of applications are available to click and deploy to the edge from the Nokia DAC catalog.


Recent Content

Indoor 5G enables high-speed, low-latency connectivity in enclosed environments like offices, hospitals, and airports, supporting mission-critical applications and smart building operations. The market is driven by technological advancements in small cells, distributed antenna systems, and a mix of mmWave and Sub-6 GHz bands. Asia-Pacific leads in adoption due to smart city initiatives and government support. Picocells and antennas are key components, with growing demand in emerging economies fueled by subsidies and infrastructure upgrades. Recent developments include partnerships and acquisitions aimed at strengthening indoor 5G capabilities.
Twelve major European telecom providers, including Vodafone and Deutsche Telekom, have jointly urged the EU to allocate the full upper 6GHz band (6.425โ€“7.125 GHz) for mobile use, citing the spectrumโ€™s critical role in future 6G deployment. With the U.S. and China already advancing in this area, operators warn that delays could jeopardize Europeโ€™s digital leadership and hinder next-generation connectivity infrastructure.
Dirty data in data centers undermines everything from AI accuracy to energy efficiency. With poor metadata, data drift, and dark data hoarding driving up costs and emissions, organizations must adopt DataOps, metadata tools, and a strong data culture to reverse the trend. Learn how clean data fuels smarter automation, compliance, and sustainability.
The telecom industry in 2025 is undergoing a major transformation, driven by artificial intelligence (AI), cloud growth, next-gen cellular networks, and national data sovereignty. AI is reshaping cellular infrastructure, enhancing spectrum efficiency through innovations like ELAA (Extremely Large Aperture Arrays), and enabling smarter, adaptive networks.
Vodafone is expanding its role in the UK smart metering upgrade by providing fixed-line connectivity between energy suppliers and the Data Service Platform (DSP). This move complements its existing mobile network role and positions Vodafone as a critical telecom partner in the UK’s digital energy transition, helping to advance national net-zero and smart grid goals.
Whitepaper
Telecom networks are facing unprecedented complexity with 5G, IoT, and cloud services. Traditional service assurance methods are becoming obsolete, making AI-driven, real-time analytics essential for competitive advantage. This independent industry whitepaper explores how DPUs, GPUs, and Generative AI (GenAI) are enabling predictive automation, reducing operational costs, and improving service quality....
Whitepaper
Explore the collaboration between Purdue Research Foundation, Purdue University, Ericsson, and Saab at the Aviation Innovation Hub. Discover how private 5G networks, real-time analytics, and sustainable innovations are shaping the "Airport of the Future" for a smarter, safer, and greener aviation industry....
Article & Insights
This article explores the deployment of 5G NR Transparent Non-Terrestrial Networks (NTNs), detailing the architecture's advantages and challenges. It highlights how this "bent-pipe" NTN approach integrates ground-based gNodeB components with NGSO satellite constellations to expand global connectivity. Key challenges like moving beam management, interference mitigation, and latency are discussed, underscoring...

Download Magazine

With Subscription

Subscribe To Our Newsletter

Scroll to Top