Private Network Check Readiness - TeckNexus Solutions

Nokia and Bosch set a new bar for 5G positioning and look ahead to 6G

Nokia and Bosch today announced that they have jointly developed 5G-based precision positioning technology intended for new Industry 4.0 use cases. The two have deployed the proof of concept in a Bosch production plant in Germany, where extensive tests under realistic manufacturing conditions have shown an accuracy within 50 cm in 90 percent of the factory footprint.

Nokia and Bosch announced that they have jointly developed 5G-based precision positioning technology intended for new Industry 4.0 use cases. The two have deployed the proof of concept in a Bosch production plant in Germany, where extensive tests under realistic manufacturing conditions have shown an accuracy within 50 cm in 90 percent of the factory footprint.


The positioning technology tracks mobile and portable devices connected to the 5G network, accurately determining their positions where no global navigation satellite service coverage is available, for instance, in factories, warehouses, or underground facilities. As part of the factory test, an enhanced private 5G network was able to determine the precise position of assets such as automated guided vehicles (AGVs), mobile robots, and mobile control panels – tracking their movements throughout the plant in real-time.

Traditionally, 5G positioning works by measuring the time it takes for mobile signals to travel from a mobile device to different base stations and anchor nodes in the network. As signals take longer to reach nodes that are further away, the positioning system can triangulate its source. Nokia and Bosch have built upon that foundation by equipping 5G nodes with multiple receive antennas, which enable the network to detect the incoming angles of signals. Advanced Nokia Bell Labs algorithms interpret this time delay and angle-of-arrival information to determine the most probable position of the mobile device. Their proof-of-concept achieves a level of accuracy well beyond the current cellular position state-of-the-art, providing a sneak peek at what 5G networks, both public and private, will be capable of in the future.

Precision localization is important for many applications in industrial environments, such as robot navigation, asset tracking, and worker safety. Realizing both high-performance connectivity and high-accuracy positioning within a single private network’s infrastructure also has many operational benefits, such as reducing the complexity of IT infrastructure, leading to a lower total cost of ownership (TCO) and higher returns on investments.

Andreas Mueller, Chief Expert and responsible for the 6G activities at Bosch, said: “Knowing where things are is generally very valuable information in manufacturing. While today usually separate systems are used for connecting and locating devices, this may be done via an integrated private 5G solution in the future. The proof-of-concept conducted jointly with Nokia underpins the leading role of Bosch in exploring new opportunities for our customers and developing the Factory of the Future.”

Nokia and Bosch have a long history of collaboration, announcing their first strategic collaboration in 2017 to develop industrial IoT and sensing solutions. Today’s announcement of precise positioning technology is a key milestone, but it is only one of the innovations the two companies are pursuing. Nokia and Bosch have begun conducting joint research in the next generation of networking, investigating how future 6G networks could be used for both communications and sensing when they are commercially available by the end of the decade.

While 5G has the potential to determine the location of devices connected to the network, 6G will have the ability to track the position of any object – whether connected or unconnected. This will allow 6G signals to function similarly to radar, giving users an awareness of their surroundings beyond their traditional senses.

Peter Vetter, President of Bell Labs Core Research at Nokia, said: “Bosch and Nokia Bell Labs foresee a future where networks do far more than communicate. Soon, 5G will track connected devices more precisely than satellites in places satellites can’t reach. In the next decade, 6G will be capable of sensing all objects in their coverage areas regardless of whether they contain active radios. We are creating networks to endow humans with a digital 6th sense.”

Source: Nokia Press Release


Recent Content

Many fiber rollouts stumble before trenching begins, not in the field, but in flawed planning rooms. This article uncovers why approved designs collapse under real-world conditions, how disconnected inventories and outdated GIS layers set projects up for failure, and why simulation, permitting, and collaboration must start early. Learn how telecom teams can replace static spreadsheets with live intelligence—and why VC4’s Service2Create rewrites the rules of fiber network planning.
Charter Communications warns of a 200% increase in targeted fiber attacks across Missouri in 2025, calling them acts of domestic terrorism. With 148 outages already reported, these incidents have crippled emergency services, hospitals, and financial systems—raising alarm over national infrastructure vulnerabilities and sparking legislative debate.
At the Emirates Great Britain Sail Grand Prix in Portsmouth, Ericsson and BT combined private 5G and public 5G Standalone (SA) to enable real-time boat telemetry, low-latency video for broadcast, and immersive AR/VR fan experiences. The hybrid network, featuring Ericsson Private 5G and BT’s 5G SA slicing, created a fully connected race ecosystem spanning multiple sites and the F50 fleet.
The Istanbul Expo Center (IFM) has become Türkiye’s first venue to deploy an indoor 5G Private Network, turning its 96,000 m² exhibition space into a next-gen smart venue for digital trade fairs. The Opticoms and ADSYS project integrates IoT, edge computing, and network slicing to support real-time testing, secure enterprise connectivity, and immersive AR/VR showcases.
5G-Advanced is redefining mobile networks through AI-native intelligence, sustainability, and advanced capabilities like XR support, NTN integration, and low-latency industrial IoT. Built on 3GPP Releases 18–20, it enables predictive automation, 30% energy savings, and sets the stage for 6G.
Memphis Light, Gas and Water (MLGW) and Nokia have launched the first standalone private 5G network by a U.S. municipal utility. This $31 million investment will modernize infrastructure across Memphis and Shelby County, enhancing real-time monitoring, outage response, cybersecurity, and smart grid capabilities for over 420,000 customers.
Whitepaper
Dive deep into how Radisys Corporation is navigating the dynamic landscape of Open RAN and 5G technologies. With their innovative strategies, they are making monumental strides in advancing the deployment and implementation of scalable, flexible, and efficient solutions. Get insights into how they're leveraging small cells, private networks, and strategic...
Whitepaper
This whitepaper explores seven compelling use cases of AI-infused automated service assurance solutions, encompassing anomaly detection, automated root cause analysis, service quality enhancement, customer experience improvement, network capacity planning, network monetization, and self-healing networks. Each use case explains how AI, when embedded in a tailored assurance solution powered by extensive...
Radcom Logo

It seems we can't find what you're looking for.

Download Magazine

With Subscription

Subscribe To Our Newsletter

Private Network Awards 2025 - TeckNexus
Scroll to Top

Private Network Awards

Recognizing excellence in 5G, LTE, CBRS, and connected industries. Nominate your project and gain industry-wide recognition.
Early Bird Deadline: Sept 5, 2025 | Final Deadline: Sept 30, 2025