Ericsson and MediaTek Prove Outdoor Position Accuracy with 5GEricsson, MediaTek achieve decimeter-level accuracy with 3GPP-based GNSS RTKSetting a new standard for precise positioning on a commercial 5G networkEricsson and MediaTek have successfully completed a world-first end-to-end (e2e) test of high-precision outdoor positioning. Utilizing standardized 3GPP technology for Global Navigation Satellite System (GNSS) Real-Time Kinematic (RTK), the partners demonstrated positioning accuracy down to a ten-of-centimeters directly over a commercial 5G network. This test marks a breakthrough for industrial and autonomous applications where precise location data is essential for mission-critical applications. By integrating RTK correction data into the 5G infrastructure via the LTE Positioning Protocol (LPP), the solution eliminates the need for proprietary systems or complex external hardware to achieve centimeter-level precision. Key highlights of the test
1. Observation State Representation (OSR): Delivers direct corrections. 2. State Space Representation (SSR): More advanced and scalable, providing errors related to specific GNSS components.
“This is a milestone for the 5G ecosystem,” says Johan Hultell, Head of Product RAN Software at Ericsson. “Together with MediaTek, we make high-precision location more accessible to device makers and enterprises, accelerating use in manufacturing, transport and beyond.” "The collaboration with Ericsson demonstrates how 5G Advanced technology can unlock new value for consumers and enterprises alike," adds Dr. HC Hwang, General Manager of Wireless Communication Systems and Partnerships at MediaTek. "Our modems with integrated-GNSS are ready to support these advanced positioning services, paving the way for the next generation of intelligent devices." About the technologyTraditional GNSS often has an accuracy of several meters. 3GPP-based Real-Time Kinematic (RTK) uses a network of reference stations to determine assistance data, which are distributed to devices via the cellular network with scale. The assistance data is used by the devices to correct in real-time for signal delays in the atmosphere and satellite errors, providing the extreme precision required for the digitalization and spatial awareness of today and onwards. Source: Ericsson media announcement | |