DocumentCode :
45418
Title :
Joint Power Allocation and Path Selection for Multi-Hop Noncoherent Decode and Forward UWB Communications
Author :
Mondelli, Marco ; Qi Zhou ; Lottici, V. ; Xiaoli Ma
Author_Institution :
Sch. of Comput. & Commun. Sci., EPFL, Lausanne, Switzerland
Volume :
13
Issue :
3
fYear :
2014
fDate :
Mar-14
Firstpage :
1397
Lastpage :
1409
Abstract :
With the aim of extending the coverage and improving the performance of impulse radio ultra-wideband (UWB) systems, this paper focuses on developing a novel single differential encoded decode and forward (DF) non-cooperative relaying scheme (NCR). To favor simple receiver structures, differential noncoherent detection is employed which enables effective energy capture without any channel estimation. Putting emphasis on the general case of multi-hop relaying, we illustrate an original algorithm for the joint power allocation and path selection (JPAPS), minimizing an approximate expression of the overall bit error rate (BER). In particular, after deriving a closed-form power allocation strategy, the optimal path selection is reduced to a shortest path problem on a connected graph, which can be solved without any topology information with complexity O(N3), N being the number of available relays of the network. An approximate scheme is also presented, which reduces the complexity to O(N2) while showing a negligible performance loss, and for benchmarking purposes, an exhaustive-search based multi-hop DF cooperative strategy is derived. Simulation results for various network setups corroborate the effectiveness of the proposed low-complexity JPAPS algorithm, which favorably compares to existing AF and DF relaying methods.
Keywords :
channel estimation; decode and forward communication; graph theory; radio networks; telecommunication network topology; ultra wideband communication; BER; JPAPS; NCR; UWB systems; bit error rate; channel estimation; closed form power allocation strategy; connected graph; differential noncoherent detection; joint power allocation; joint power allocation and path selection; multihop noncoherent decode and forward UWB communications; multihop relaying; noncooperative relaying scheme; optimal path selection; path selection; radio ultrawideband systems; topology information; Bit error rate; Joining processes; Joints; Receivers; Relays; Resource management; Wireless communication; Ultra-wideband (UWB) communications; amplify and forward (AF); decode and forward (DF); multi-hop relaying; noncoherent differential detection; path selection; power allocation;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2014.020914.130669
Filename :
6776578
Link To Document :
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