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Distributed Multi-Antenna Positioning for Automatic-Guided Vehicle

Xinyuan An, Sihao Zhao, Xiaowei Cui, Qin Shi, Mingquan Lu

2020Sensors20 citationsDOIOpen Access PDF

Abstract

Radio-based positioning systems are typically utilized to provide high-precision position information for automatic-guided vehicles (AGVs). However, the presence of obstacles in harsh environments, as well as carried cargoes on the AGV, will degrade the localization performance, since they block the propagation of radio signals. In this paper, a distributed multi-antenna positioning system is proposed, where multiple synchronous antennas are equipped on corners of an AGV to improve the availability and accuracy of positioning. An estimator based on the Levenberg-Marquardt algorithm is introduced to solve the nonlinear pseudo-range equations. To obtain the global optimal solutions, we propose a coarse estimator that utilizes the displacement knowledge of the antennas to provide a rough initial guess. Simulation results show a better availability of our system compared with the single antenna positioning system. Decimeter accuracy can be obtained under a Gaussian measurement noise with a standard deviation of 0.2 m. The results also demonstrate that the proposed algorithm can achieve positioning accuracy close to the theoretical Cramer-Rao lower bound. Furthermore, given prior information of the yaw angle, the same level of accuracy can be obtained by the proposed algorithm without the coarse estimation step.

Topics & Concepts

EstimatorAntenna (radio)Computer sciencePositioning systemBlock (permutation group theory)Position (finance)Nonlinear systemAlgorithmCramér–Rao boundDisplacement (psychology)GaussianStandard deviationReal-time computingEngineeringEstimation theoryTelecommunicationsMathematicsPhysicsFinanceStatisticsEconomicsNode (physics)PsychologyStructural engineeringGeometryPsychotherapistQuantum mechanicsIndoor and Outdoor Localization TechnologiesRobotics and Sensor-Based LocalizationUnderwater Vehicles and Communication Systems
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