DocumentCode
158168
Title
Cloud-aided SDR solution for lane-specific vehicle positioning via Local Interference Compensation
Author
Niehoefer, Brian ; Schweikowski, Florian ; Lehnhausen, Sarah ; Wietfeld, Christian
Author_Institution
Dortmund TU Univ., Dortmund, Germany
fYear
2014
fDate
1-8 March 2014
Firstpage
1
Lastpage
7
Abstract
The steadily increasing traffic density is causing enormous negative effects such as jams, accidents or CO2 emissions, especially in urban areas. In Europe more than 12% of the traffic network is daily congested. Hereby a reliable and dynamic congestion forecast is the key to avoid and/or compensate such locale bottleneck situations. Hence, this contribution focuses on a cloud-aided, lane-specific position determination of vehicles using a so-called Local Interference Compensation to enable a more detailed and lane-accurate traffic prediction (e.g. detecting short-dated roadworks or car breakdowns), and by that traffic-flow manipulation in the future. Thereby, the scientific challenge is to predict, quantify and compensate the inevitable local impacts to the positioning accuracy when using ordinary GNSS receivers. Beneath the detailed explanation of the LOCATe system itself, this contribution will also provide quantitative experimental validation and performance evaluation tests using an Advanced Software-Defined GNSS Receiver solution on geo-referenced points, which fit the definition of the introduced urban canyons.
Keywords
Global Positioning System; compensation; interference suppression; radio receivers; radionavigation; road vehicles; software radio; telecommunication traffic; LOCATe system; advanced software defined GNSS receiver; cloud aided SDR; dynamic congestion forecast; georeferenced points; lane specific vehicle positioning; local interference compensation; ordinary GNSS receivers; performance evaluation tests; positioning accuracy; reliable congestion forecast; traffic density; traffic flow manipulation; traffic prediction; urban canyons; Calculators; Educational institutions; Filtering; Global Positioning System; IEC; Performance evaluation; Receivers;
fLanguage
English
Publisher
ieee
Conference_Titel
Aerospace Conference, 2014 IEEE
Conference_Location
Big Sky, MT
Print_ISBN
978-1-4799-5582-4
Type
conf
DOI
10.1109/AERO.2014.6836257
Filename
6836257
Link To Document