Title :
Cognitive repeaters for flexible mobile data traffic offloading
Author :
Wieruch, Dennis ; Wirth, Thomas ; Braz, Oliver ; Dußmann, Alfons ; Mederle, Markus ; Muller, Mathias
Author_Institution :
Fraunhofer Heinrich Hertz Inst., Berlin, Germany
Abstract :
We investigate the performance of cognitive amplify-and-forward (AF) repeaters in a dense urban environment. The benefit of repeaters is twofold. First, repeaters can compensate penetration losses and serve as wireless backhauling technology to bring high data rates into shielded environments. Second, a cognitive repeater can utilize very flexible different frequency bands and adopt its wireless link to the current frequency reuse plan. In this paper, we propose a new cognitive repeater concept which utilizes multiband signal offloading. Therefore, a cognitive repeater is implemented as a real-time hardware prototype in an amplify-and-forward (AF) relay and deployed in a real LTE-A testbed. The system performance is evaluated by various measurement trials within shielded indoor hotspot environments. It is shown, that cognitive repeaters can take advantage of the signal shielding to the outside and beneficially improve system performance for indoor user hotspots.
Keywords :
Long Term Evolution; amplify and forward communication; cognitive radio; frequency allocation; radio links; radio repeaters; AF relay; AF repeaters; amplify-and-forward relay; cognitive amplify-and-forward repeaters; cognitive repeater concept; cognitive repeaters; dense urban environment; different frequency bands; flexible mobile data traffic offloading; frequency reuse plan; indoor user hotspots; multiband signal offloading; penetration losses; real LTE-A testbed; real-time hardware prototype; shielded environments; shielded indoor hotspot environments; signal shielding; system performance evaluation; wireless backhauling technology; wireless link; Antenna measurements; Buildings; Frequency measurement; MIMO; Repeaters; Throughput; Transmitting antennas; LTE-A field trials; amplify-and-forward (AF) relaying; cognitive repeaters; indoor coverage; measurements; real-time implementation;
Conference_Titel :
Cognitive Radio Oriented Wireless Networks (CROWNCOM), 2013 8th International Conference on
Conference_Location :
Washington, DC
DOI :
10.1109/CROWNCom.2013.6636820