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Users could receive information indoors related to retail experiences based on their micro-location, receive better indoor navigation, and even "check in and out".
Accurate indoor navigation is currently lacking.
We examine robot experiments using the proposed method for indoor navigation and scoring soccer goals.
Numerous existing indoor navigation systems have been proposed in order to solve such problems.
The device has the potential to be used for both outdoor and indoor navigation in everyday applications.
Exploiting smartphones and tablets for indoor navigation is a great advantage when considering convenience, simplicity and low cost.
Experimental results show successful localization, which paves the way for a full scale development of an effective indoor navigation system.
We describe motor and perceptual behaviors that have proven useful for indoor navigation of an autonomous mobile robot.
In this paper, a low-cost active 3D triangulation laser scanner for indoor navigation of miniature mobile robots is presented.
Much like Google Maps, an indoor navigation could alert people to alternative routes in stores and other venues to avoid crowds.
The introduction of live data is one of the big differentiators for mapping apps along with indoor navigation and libraries of store and points of interests data.
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