Javascript must be enabled to continue!
Seamless Indoor-Outdoor Transitioning of Pedestrian Platforms
View through CrossRef
<p>The interest in indoor positioning systems has been rising in the last couple of decades. This interest was further accelerated by the availability of signals of opportunity. The introduction of signals of opportunity into the indoor environments has meant that these widely available technologies can be utilised to achieve higher levels of accuracy and precision for positioning in parking garages, airports, underground locations, large office buildings, and shopping centres. Indoor positioning can also be utilised for emergency services or for Building Information Models (BIM) for purposes such as construction sites or hospital building management. In addition to the need for indoor and outdoor positioning, there is a need to ensure seamless transitions in and out of these different environments. For example, building information from BIM could be utilised for navigation of BIM users that considers the architectural barriers (e.g., for wheelchairs, baby strollers, and transport of large equipment within the facility). For this, a positioning system capable of seamlessly transitioning in and out of buildings is needed. This paper proposes a multi-sensor and cooperative positioning method of seamless environment transition and presents the first architecture concept. For this purpose, Global Navigation Satellite System (GNSS) data are planned to be fused with Ultra Wide-Band (UWB), Inertial Measurement Unit (IMU), Wireless-Fidelity (Wi-Fi), visual camera and LiDAR (Light Detection and Ranging) data. All sensors required for such a positioning system, are already available on modern smartphones commonly used as low-cost platforms for pedestrian navigation and localisation. Newer smartphones are also equipped with LiDAR and UWB chips, which are a future signal of opportunity, just like Wi-Fi currently is. The transition to different environments will be determined based on the UWB anchors called identical anchors that will be used to transition from the global coordinate system for the outdoor environment to the local building environment for positioning in indoor environments. The proposed multi-sensor and cooperative positioning system is expected to be able to achieve decimetre-level accuracy.</p>
Title: Seamless Indoor-Outdoor Transitioning of Pedestrian Platforms
Description:
<p>The interest in indoor positioning systems has been rising in the last couple of decades.
This interest was further accelerated by the availability of signals of opportunity.
The introduction of signals of opportunity into the indoor environments has meant that these widely available technologies can be utilised to achieve higher levels of accuracy and precision for positioning in parking garages, airports, underground locations, large office buildings, and shopping centres.
Indoor positioning can also be utilised for emergency services or for Building Information Models (BIM) for purposes such as construction sites or hospital building management.
In addition to the need for indoor and outdoor positioning, there is a need to ensure seamless transitions in and out of these different environments.
For example, building information from BIM could be utilised for navigation of BIM users that considers the architectural barriers (e.
g.
, for wheelchairs, baby strollers, and transport of large equipment within the facility).
For this, a positioning system capable of seamlessly transitioning in and out of buildings is needed.
This paper proposes a multi-sensor and cooperative positioning method of seamless environment transition and presents the first architecture concept.
For this purpose, Global Navigation Satellite System (GNSS) data are planned to be fused with Ultra Wide-Band (UWB), Inertial Measurement Unit (IMU), Wireless-Fidelity (Wi-Fi), visual camera and LiDAR (Light Detection and Ranging) data.
All sensors required for such a positioning system, are already available on modern smartphones commonly used as low-cost platforms for pedestrian navigation and localisation.
Newer smartphones are also equipped with LiDAR and UWB chips, which are a future signal of opportunity, just like Wi-Fi currently is.
The transition to different environments will be determined based on the UWB anchors called identical anchors that will be used to transition from the global coordinate system for the outdoor environment to the local building environment for positioning in indoor environments.
The proposed multi-sensor and cooperative positioning system is expected to be able to achieve decimetre-level accuracy.
</p>.
Related Results
ANALYSIS OF PEDESTRIAN CHARACTERISTICS CROSSING ALONG ROADS
ANALYSIS OF PEDESTRIAN CHARACTERISTICS CROSSING ALONG ROADS
Pedestrian crossing represents a substantial problem. In Iraq, there are no spaces marked specifically for pedestrians, which causes many conflicts between vehicles and pedestrians...
EVALUASI KONSEP RAMAH PEJALAN KAKI PADA PEDESTRIAN MALIOBORO DENGAN PENDEKATAN KONSEP WALKABILITY
EVALUASI KONSEP RAMAH PEJALAN KAKI PADA PEDESTRIAN MALIOBORO DENGAN PENDEKATAN KONSEP WALKABILITY
Abstract: Malioboro Pedestrian is located in the tourist area of Malioboro, which has been arranged by the Yogyakarta Regional Government. The arrangement carried out applies the c...
Insecticide resistance in indoor and outdoor-resting Anopheles gambiae s.l. in Northern Ghana
Insecticide resistance in indoor and outdoor-resting Anopheles gambiae s.l. in Northern Ghana
Abstract
Background: Selection pressure from continued exposure to insecticides drives the development of insecticide resistance and changes in resting behavior of malaria ...
Insecticide resistance in indoor and outdoor-resting Anopheles gambiae s.l. in Northern Ghana
Insecticide resistance in indoor and outdoor-resting Anopheles gambiae s.l. in Northern Ghana
Abstract
Background Selection pressure from continued exposure to insecticides drives the development of insecticide resistance and changes in resting behavior of malaria v...
Insecticide resistance in indoor and outdoor-resting Anopheles gambiae in Northern Ghana
Insecticide resistance in indoor and outdoor-resting Anopheles gambiae in Northern Ghana
Abstract
Background Selection pressure from continued exposure to insecticides drives development of insecticide resistance and changes in resting behaviour of malaria vect...
Biting and resting preferences of malaria vectors in The Gambia
Biting and resting preferences of malaria vectors in The Gambia
Abstract
Background
The scale-up of indoor residual spraying and long-lasting insecticidal nets, together with other interventi...
Indoor and outdoor air quality relationships modelling
Indoor and outdoor air quality relationships modelling
Particulate matter (PM) related ambient pollution has emerged as one of the most significant environmental and human health issues during the last decades. Thus, ambient PM concent...
ANALISIS KINERJA FASILITAS PEDESTRIAN DALAM MENDUKUNG INTEGRASI ANTARMODA ANGKUTAN UMUM DI PERKOTAAN
ANALISIS KINERJA FASILITAS PEDESTRIAN DALAM MENDUKUNG INTEGRASI ANTARMODA ANGKUTAN UMUM DI PERKOTAAN
Pedestrian merupakan salah satu moda yang digunakan dalam pengembangan transportasi antarmoda, terutama dalam pergerakan penumpang saat melakukan perpindahan moda. Permasalahan dal...

