Indoor Positioning and Navigation Using Time-Of-Flight Cameras
نویسندگان
چکیده
The development of indoor positioning techniques is booming. There is a significant demand for systems that have the capability to determine the 3D location of objects in indoor environments for automation, warehousing and logistics. Tracking of people in indoor environments has become vital during firefighting operations, in hospitals and in homes for vulnerable people and particularly for vision impaired or elderly people [1]. Along with the implementation of innovative methods to increase the capabilities in indoor positioning, the number of application areas is growing significantly. The search for alternative indoor positioning methods is driven by the poor performance of Global Navigation Satellite Systems (GNSS) within buildings. Geodetic methods such as total stations or rotational lasers can reach millimeter level of accuracy, but are not economical for most applications. In recent years, network based methods which obtain range or time of flight measurements between network nodes have become a significant alternative for applications at decimeter level accuracy. The measured distances can be used to determine the 3D position of a device by spatial resection or multilateration. Wireless devices enjoy widespread use in numerous diverse applications including sensor networks, which can consist of countless embedded devices, equipped with sensing capabilities, deployed in all environments and organizing themselves in an ad-hoc fashion [2]. However, knowing the correct positions of network nodes and their deployment is an essential precondition. There are a large number of alternative positioning technologies
منابع مشابه
GPS Jamming Detection in UAV Navigation Using Visual Odometry and HOD Trajectory Descriptor
Auto-navigating of unmanned aerial vehicles (UAV) in the outdoor environment is performed by using the Global positioning system (GPS) receiver. The power of the GPS signal on the earth surface is very low. This can affect the performance of GPS receivers in the environments contaminated with the other source of radio frequency interference (RFI). GPS jamming and spoofing are the most serious a...
متن کاملVision-Based Real-Time Positioning and Autonomous Navigation System Using Mobile Robot in Indoor Environments
Corresponding Author: Diop Mamadou Faculty of Engineering and Technology, Multimedia University, Melaka, Malaysia Email: [email protected] Abstract: Research toward unmanned mobile robot navigation has gained significant importance in the last decade due to its potential applications in the location-based services industry. The increase in construction of large space indoor buildings has made d...
متن کاملUsing Cameras to Improve Wi-Fi Based Indoor Positioning
Indoor positioning systems are increasingly being deployed to enable indoor navigation and other indoor location-based services. Systems based on Wi-Fi and video cameras rely on different technologies and techniques and have so far been developed independently by different research communities; we show that integrating information provided by a video system into a Wi-Fi based system increases i...
متن کامل3D Indoor Positioning of UAVs with Spread Spectrum Ultrasound and Time-of-Flight Cameras
This work proposes the use of a hybrid acoustic and optical indoor positioning system for the accurate 3D positioning of Unmanned Aerial Vehicles (UAVs). The acoustic module of this system is based on a Time-Code Division Multiple Access (T-CDMA) scheme, where the sequential emission of five spread spectrum ultrasonic codes is performed to compute the horizontal vehicle position following a 2D ...
متن کاملThe Development of WLAN-based Indoor Positioning Systems for Aerospace Engineering Education Improvement Programs
Aerospace engineering education improvement program sponsored by Advisor Office, Ministry of Education in Taiwan aims to improve the capability of undergraduate students to design and conduct experiments as well as to obtain hands-on experience in a variety of aerospace engineering such as flight dynamics, control, navigation, global positioning, and wireless communication. In a four-year aeros...
متن کامل