TY - GEN
T1 - Delivery latency minimization in wireless sensor networks with mobile sink
AU - Tang, Jiqiang
AU - Guo, Songtao
AU - Yang, Yuanyuan
N1 - Publisher Copyright:
© 2015 IEEE.
PY - 2015/9/9
Y1 - 2015/9/9
N2 - Adopting mobile data gathering in wireless sensor networks (WSNs) can reduce the energy consumption on data forwarding thus achieve more uniform energy consumption among sensor nodes. However, the data delivery latency inevitable increases in mobile data gathering due to the travel of the mobile sink. In this paper, we consider a delivery latency minimization problem (DLMP) in a randomly deployed WSN. To solve this problem, we first select the traversed anchor points on the border of the communication range of sensor nodes to shorten the travel route, and then let the mobile sink move and collect data at the same time to reduce the travel time. In addition, we also employ the time division approach to traverse the sensor nodes whose signals cover the same travel segments. We formulate the DLMP as an integer programming problem which subjects to the direct access constraint, the data transmission constraint and the route traverse constraint. We prove that the DLMP is an NP-Complete (NPC) problem. To solve the NPC problem, we propose a substitution heuristic algorithm, a traveling salesman problem (TSP) heuristic algorithm and a random heuristic algorithm. We conduct extensive simulations to evaluate the performance of the proposed algorithms, and the results show that all the three algorithms can shorten the data delivery latency in mobile data gathering, with the substitution heuristic algorithm being the most effective one.
AB - Adopting mobile data gathering in wireless sensor networks (WSNs) can reduce the energy consumption on data forwarding thus achieve more uniform energy consumption among sensor nodes. However, the data delivery latency inevitable increases in mobile data gathering due to the travel of the mobile sink. In this paper, we consider a delivery latency minimization problem (DLMP) in a randomly deployed WSN. To solve this problem, we first select the traversed anchor points on the border of the communication range of sensor nodes to shorten the travel route, and then let the mobile sink move and collect data at the same time to reduce the travel time. In addition, we also employ the time division approach to traverse the sensor nodes whose signals cover the same travel segments. We formulate the DLMP as an integer programming problem which subjects to the direct access constraint, the data transmission constraint and the route traverse constraint. We prove that the DLMP is an NP-Complete (NPC) problem. To solve the NPC problem, we propose a substitution heuristic algorithm, a traveling salesman problem (TSP) heuristic algorithm and a random heuristic algorithm. We conduct extensive simulations to evaluate the performance of the proposed algorithms, and the results show that all the three algorithms can shorten the data delivery latency in mobile data gathering, with the substitution heuristic algorithm being the most effective one.
KW - delivery latency minimization
KW - mobile sink
KW - substitution heuristic algorithm
KW - Wireless sensor networks
UR - https://www.scopus.com/pages/publications/84953736899
U2 - 10.1109/ICC.2015.7249357
DO - 10.1109/ICC.2015.7249357
M3 - Conference contribution
AN - SCOPUS:84953736899
T3 - IEEE International Conference on Communications
SP - 6481
EP - 6486
BT - 2015 IEEE International Conference on Communications, ICC 2015
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - IEEE International Conference on Communications, ICC 2015
Y2 - 8 June 2015 through 12 June 2015
ER -