DocumentCode :
3238060
Title :
Spectrum Coexistence Issues: Challenges and Research Directions
Author :
Dehnie, S. ; Chakravarthy, Vasu ; Zhiqiang Wu ; Ghosh, Chittabrata ; Husheng Li
Author_Institution :
Booz Allen Hamilton, Dayton, OH, USA
fYear :
2013
fDate :
18-20 Nov. 2013
Firstpage :
1681
Lastpage :
1689
Abstract :
Spectrum congestion is a problem to both commercial and military systems. A recent Presidential Council of Advisors on Science and Technology (PCAST) study suggests that this problem is further amplified for military systems because not only demand for more bandwidth is increasing but portion of the spectrum primarily allocated to the military is recommended for commercial use. PCAST report also suggests that spectrum congestion is mainly due to inefficient use of spectrum rather than spectrum scarcity. This paper deals with challenges evolving due to coexistence of various commercial and military communications systems in wideband non-contiguous spectrum. A non-contiguous spectrum environment is characterized by spectrum holes fragmented across frequency range of interest. %This paper, in particular, focuses on different types of interference which will affect the quality of a spectrum hole and its utility for spectrum sharing application. In particular, we discuss the impact of spectrum sharing from the system perspective including hardware design, physical (PHY) layer intricacies, and medium access control (MAC) layer spectrum management. Since the number of spectrum holes required is application dependent, non-contiguous waveform design and pertinent design modifications and MAC layer improvements are also an intrinsic part of this paper.
Keywords :
access protocols; military communication; telecommunication network management; MAC layer spectrum management; PCAST; Presidential Council of Advisors on Science and Technology; commercial systems; medium access control; military communication systems; military systems; spectrum coexistence issues; spectrum congestion; spectrum sharing application; waveform design; Bandwidth; Communication systems; Interference; Phase locked loops; Phase noise; Radar; Sensors; DSA; cognitve radio; resource allocation; waveform design;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Military Communications Conference, MILCOM 2013 - 2013 IEEE
Conference_Location :
San Diego, CA
Type :
conf
DOI :
10.1109/MILCOM.2013.285
Filename :
6735867
Link To Document :
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