TY - GEN
T1 - Efficient and fast distributed top-k query protocol in wireless sensor networks
AU - Tang, Shao Jie
AU - Mao, Xufei
AU - Li, Xiang Yang
PY - 2011
Y1 - 2011
N2 - In this paper, we focus on designing efficient query of top-k data produced by sensor nodes in a wireless sensor network (WSN). Assume that we are given a connected WSN of diameter D, consisting of n nodes with maximum node degree Δ. Two different models are studied. In the first model, each node holds a numeric element, the goal is to determine the top-k smallest (or biggest) of these elements from all nodes. In the second model, there are m objects in set L, each node vi, 1 ≤ i ≤ n holds a numeric value S j(vi) for each object Lj ∈ L,1 ≤ j ≤ m, the goal is to find the k objects in L with the k smallest (or biggest) aggregated values /(sj(u1), Sj(v2), ·, Sj(vn)), where f is an aggregation function given in advance. We propose both fast and message efficient methods for conducting top-k queries in the two aforementioned models. Following that we study the minimum delay and messages required by any distributed method for top-k queries in both models. Our analysis shows that our methods are almost optimum. We conducted extensive experiments in both testbed and simulations to study the practical performances of our methods.
AB - In this paper, we focus on designing efficient query of top-k data produced by sensor nodes in a wireless sensor network (WSN). Assume that we are given a connected WSN of diameter D, consisting of n nodes with maximum node degree Δ. Two different models are studied. In the first model, each node holds a numeric element, the goal is to determine the top-k smallest (or biggest) of these elements from all nodes. In the second model, there are m objects in set L, each node vi, 1 ≤ i ≤ n holds a numeric value S j(vi) for each object Lj ∈ L,1 ≤ j ≤ m, the goal is to find the k objects in L with the k smallest (or biggest) aggregated values /(sj(u1), Sj(v2), ·, Sj(vn)), where f is an aggregation function given in advance. We propose both fast and message efficient methods for conducting top-k queries in the two aforementioned models. Following that we study the minimum delay and messages required by any distributed method for top-k queries in both models. Our analysis shows that our methods are almost optimum. We conducted extensive experiments in both testbed and simulations to study the practical performances of our methods.
KW - Wireless networks
KW - aggregation
KW - scheduling
KW - top-k query
UR - https://www.scopus.com/pages/publications/84055187726
U2 - 10.1109/ICNP.2011.6089087
DO - 10.1109/ICNP.2011.6089087
M3 - Conference contribution
AN - SCOPUS:84055187726
SN - 9781457713941
T3 - Proceedings - International Conference on Network Protocols, ICNP
SP - 99
EP - 108
BT - 2011 19th IEEE International Conference on Network Protocols, ICNP 2011
PB - IEEE Computer Society
T2 - 19th IEEE International Conference on Network Protocols, ICNP 2011
Y2 - 17 October 2011 through 20 October 2011
ER -