Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Performance improvement of 5G positioning utilizing multi-antenna angle measurements

View through CrossRef
AbstractTime delay-based the 5th Generation Mobile Communication Technology (5G) positioning is a main method to perform high-precision positioning in Global Navigation Satellite System (GNSS) denied areas. However, in practical applications, the occlusion of signals in a complex environment results in few observable base stations, which affects the reliability and accuracy of positioning. The aim of this study is to improve the performance of the 5G positioning in complex environments with an insufficient number of observable base stations. First, the Angle of Departure (AOD) capability of multi-antennas is integrated into Multi-Round-Trip-Time (Multi-RTT) positioning, establishing a novel 5G RTT/AOD positioning model. Then, the influencing factors of positioning performance, including the Dilution of Precision (DOP) and the accuracy of the AOD measurements, is analyzed. The relationship between DOP and RTT/AOD positioning accuracy is deduced. Afterwards, simulation experiments are performed on 5G positioning with the Multi-RTT and RTT/AOD methods in two scenarios with good and complex environments. The theoretical analysis and experimental results show that 5G positioning with the RTT/AOD method increases the horizontal and vertical accuracies by approximately 25 and 65%, respectively, compared with the Multi-RTT method. The positioning reliability is also greatly improved. The proposed model can well solve the inefficiency of 5G positioning with the RTT method in scenarios where the number of base stations is less than three.
Title: Performance improvement of 5G positioning utilizing multi-antenna angle measurements
Description:
AbstractTime delay-based the 5th Generation Mobile Communication Technology (5G) positioning is a main method to perform high-precision positioning in Global Navigation Satellite System (GNSS) denied areas.
However, in practical applications, the occlusion of signals in a complex environment results in few observable base stations, which affects the reliability and accuracy of positioning.
The aim of this study is to improve the performance of the 5G positioning in complex environments with an insufficient number of observable base stations.
First, the Angle of Departure (AOD) capability of multi-antennas is integrated into Multi-Round-Trip-Time (Multi-RTT) positioning, establishing a novel 5G RTT/AOD positioning model.
Then, the influencing factors of positioning performance, including the Dilution of Precision (DOP) and the accuracy of the AOD measurements, is analyzed.
The relationship between DOP and RTT/AOD positioning accuracy is deduced.
Afterwards, simulation experiments are performed on 5G positioning with the Multi-RTT and RTT/AOD methods in two scenarios with good and complex environments.
The theoretical analysis and experimental results show that 5G positioning with the RTT/AOD method increases the horizontal and vertical accuracies by approximately 25 and 65%, respectively, compared with the Multi-RTT method.
The positioning reliability is also greatly improved.
The proposed model can well solve the inefficiency of 5G positioning with the RTT method in scenarios where the number of base stations is less than three.

Related Results

Magneto-Electric Antenna and Its Application in Geosteering Tool Design
Magneto-Electric Antenna and Its Application in Geosteering Tool Design
Using coil antennae as transmitter and receiver to develop a geosteering tool, one has to increase the spacing between the transmitter and receiver to detect formation boundaries f...
Optical antennas for single emitters
Optical antennas for single emitters
The interaction of light with matter is a central topic in both fundamental science and applied technology. At the heart of this interaction lies the absorption or emission of a ph...
The Effect of Clinical Knee Measurement in Children with Genu Varus
The Effect of Clinical Knee Measurement in Children with Genu Varus
Abstract Introduction Children with genu varus needs frequent assessment and follow up that may need several radiographies. This study investigates the effectiveness of the clinica...
Design and Analysis of Tri-bandsTriangular Shape Fractal Antenna for Wireless Applications
Design and Analysis of Tri-bandsTriangular Shape Fractal Antenna for Wireless Applications
Abstract In this paper fractal antenna is proposed for wide band applications. Proposed Antenna is having resonance frequency of 5 GHz and it has triangular patch with 36mm...
Design of a broadband and high-gain shared-aperture fabry-perot resonator magneto-electric microstrip antenna
Design of a broadband and high-gain shared-aperture fabry-perot resonator magneto-electric microstrip antenna
The demands for highly directive antennas are becoming more stringent, especially in microwave regions. Traditional ways to enhance the antenna gain such as reflectors, dielectric ...
A Study on Brand Positioning in Dairy Product at Villupuram, Tamil Nadu
A Study on Brand Positioning in Dairy Product at Villupuram, Tamil Nadu
Brand positioning is a core concept in marketing. Despite the importance of the concept however, there is limited research in the field of positioning clarifying to what extent var...
Gain Enhancement of Ferromagnetic Composite Tunable Antenna
Gain Enhancement of Ferromagnetic Composite Tunable Antenna
Low cost, small size, and tunable printed circuit antennas are in high demand for both civilian and military applications. The antenna tunability is a required feature in the most ...
GLONASS R720 transmit power loss
GLONASS R720 transmit power loss
<p>All GLONASS satellites transmit navigation signals in the L1 and L2 frequency band whereas newer generations (M+ and K1) also utilize the L3 band. Previous studies...

Back to Top