DocumentCode :
1789963
Title :
Distance-aware multi-carrier (DAMC) modulation in Terahertz Band communication
Author :
Chong Han ; Akyildiz, I.F.
Author_Institution :
Broadband Wireless Networking Lab., Georgia Inst. of Technol., Atlanta, GA, USA
fYear :
2014
fDate :
10-14 June 2014
Firstpage :
5461
Lastpage :
5467
Abstract :
Terahertz Band (0.1-10 THz) communication is envisioned as a key technology to satisfy the increasing demand for ultra-broadband wireless communication. THz Band communication will alleviate the spectrum scarcity and capacity limitations of current wireless systems, and enable new applications both in classical networks and novel nanoscale networks. In this paper, a novel distance-aware multi-carrier (DAMC) modulation scheme is developed for both single-transmitter single-receiver and single-transmitter multiple-receiver cases in THz Band communication. The developed DAMC modulation scheme takes advantage of the distance- and frequency-dependent channel peculiarities, and provides adaptive utilization of the ultra-broad bandwidth in the THz Band. Furthermore, the data rates of the DAMC scheme are analytically investigated, numerically evaluated, and compared with existing single-band pulse-based modulation and fixed-bandwidth adaptive modulation. The results show that data rates can be improved by one order of magnitude by using the DAMC scheme, at the costs of design complexity for the control unit, multi-carrier modulator and channel feedback path.
Keywords :
adaptive modulation; broadband networks; pulse modulation; radio receivers; radio transmitters; wireless channels; DAMC modulation; adaptive utilization; bandwidth 0.1 THz to 10 THz; capacity limitations; current wireless systems; distance-aware multicarrier modulation; distance-dependent channel peculiarities; fixed-bandwidth adaptive modulation; frequency-dependent channel peculiarities; nanoscale networks; single-band pulse-based modulation; single-transmitter multiple-receiver; single-transmitter single-receiver; spectrum scarcity; terahertz band communication; ultra-broadband wireless communication; Bandwidth; Lead; Manganese; Modulation; Propagation losses; Receivers; Wireless communication; Modulation; Multi-carrier; Terahertz Band; Ultra-broadband communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications (ICC), 2014 IEEE International Conference on
Conference_Location :
Sydney, NSW
Type :
conf
DOI :
10.1109/ICC.2014.6884190
Filename :
6884190
Link To Document :
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