DocumentCode
2550557
Title
A scalable dynamic spectrum allocation system with interference mitigation for teams of spectrally agile software defined radios
Author
Olivieri, Marc P. ; Barnett, Greg ; Lackpour, Alex ; Davis, Albert ; Ngo, Phuong
Author_Institution
Lockheed Martin Adv. Technol. Lab., Cheery Hill, NJ
fYear
2005
fDate
8-11 Nov. 2005
Firstpage
170
Lastpage
179
Abstract
In future applications, next generation spectrally agile software defined radios (SASDR) will be equipped with advanced radio frequency (RF) sensors that will enable them to sense their environment and adaptively select the best and most stable portions of the spectrum to establish communications. This paper presents a robust method for estimating locally the unused or underutilized regions of RF spectrum to optimize dynamic spectrum usage. These adaptive algorithms are described and results of "open spectrum" estimation performed on real RF spectrum measurements illustrate the robust performance of the approach. Simulation results are shown along with results from real measurements that describe the RF resources in rural, suburban and urban areas in and around Philadelphia in the VHF and UHF bands. The measurements represent a good dynamic data set including motion and spatio-temporal diversity. The effect on reducing the risk of interference by collaborating across multiple nodes that provides increased robustness of sensing of open spectrum through spatial diversity is also discussed and quantitative values for the interference mitigation under collaborative behaviors are also presented
Keywords
adaptive signal detection; bandwidth allocation; diversity reception; frequency agility; frequency allocation; interference suppression; radiofrequency interference; software radio; spatiotemporal phenomena; Philadelphia; RF sensor; SASDR; adaptive processing; bandwidth stability; interference mitigation; motion diversity; open spectrum estimation; radio frequency resource; scalable dynamic spectrum allocation; signal detection; software defined radio; spatio-temporal diversity; spectrum agility; Adaptive algorithm; Application software; Collaboration; Interference; Optimization methods; Radio frequency; Robustness; Software radio; Spectral analysis; UHF measurements;
fLanguage
English
Publisher
ieee
Conference_Titel
New Frontiers in Dynamic Spectrum Access Networks, 2005. DySPAN 2005. 2005 First IEEE International Symposium on
Conference_Location
Baltimore, MD, USA
Print_ISBN
1-4244-0013-9
Type
conf
DOI
10.1109/DYSPAN.2005.1542632
Filename
1542632
Link To Document