TY - GEN
T1 - Exact capacity study for a class of MANETs
AU - Gao, Juntao
AU - Liu, Jiajia
AU - Jiang, Xiaohong
AU - Takahashi, Osamu
AU - Shiratori, Norio
PY - 2012
Y1 - 2012
N2 - The lacking of a thorough understanding on the capacity in mobile ad hoc networks (MANETs) has been stunting their applications in the last decade. Available capacity studies focus on exploring either the order sense capacity scaling laws, the closed-form capacity under some specific routing protocols, or the exact capacity without careful consideration of wireless interference issue in MANETs. In this paper, we explore the exact network capacity for a class of MANETs, where the group-based scheduling is adopted to schedule simultaneous link transmissions. We first determine a general closed-form capacity upper bound for the considered MANETs, which holds for any possible routing protocols in such networks. We then show that for any traffic input rate within the upper bound, there exists a corresponding two-hop relay algorithm to stabilize the network, which proves that the upper bound we determined is the exact capacity for this class of MANETs. Finally, simulation studies are presented to validate our theoretical results.
AB - The lacking of a thorough understanding on the capacity in mobile ad hoc networks (MANETs) has been stunting their applications in the last decade. Available capacity studies focus on exploring either the order sense capacity scaling laws, the closed-form capacity under some specific routing protocols, or the exact capacity without careful consideration of wireless interference issue in MANETs. In this paper, we explore the exact network capacity for a class of MANETs, where the group-based scheduling is adopted to schedule simultaneous link transmissions. We first determine a general closed-form capacity upper bound for the considered MANETs, which holds for any possible routing protocols in such networks. We then show that for any traffic input rate within the upper bound, there exists a corresponding two-hop relay algorithm to stabilize the network, which proves that the upper bound we determined is the exact capacity for this class of MANETs. Finally, simulation studies are presented to validate our theoretical results.
UR - http://www.scopus.com/inward/record.url?scp=84871521660&partnerID=8YFLogxK
U2 - 10.1109/ICCChina.2012.6356873
DO - 10.1109/ICCChina.2012.6356873
M3 - 会议稿件
AN - SCOPUS:84871521660
SN - 9781467328159
T3 - 2012 1st IEEE International Conference on Communications in China, ICCC 2012
SP - 173
EP - 178
BT - 2012 1st IEEE International Conference on Communications in China, ICCC 2012
T2 - 2012 1st IEEE International Conference on Communications in China, ICCC 2012
Y2 - 15 August 2012 through 17 August 2012
ER -