计算机科学
异步通信
数据聚合器
调度(生产过程)
分布式计算
利用
作业车间调度
计算机网络
图形着色
无线传感器网络
光学(聚焦)
算法
算法设计
动态优先级调度
响应时间
近似算法
图形
分布式算法
处理器调度
高效算法
作者
Xianlong Jiao,Wei Lou,Songtao Guo,Libin Yang,Xinxi Feng,Xiaodong Wang,Guirong Chen
标识
DOI:10.1109/tcomm.2019.2924222
摘要
Data aggregation scheduling is a critical issue in WSNs. This paper studies the Delay efficient Data Aggregation scheduling problem in multi-Channel asynchronous Duty-cycled WSNs (DDACD problem), which aims to accomplish data aggregation with minimum delay. Existing studies, nevertheless, either focus on non-sleeping scenarios or assume that nodes communicate with one single channel, and thus may have poor performance if directly applied to multi-channel asynchronous duty-cycled scenarios. We first show that the DDACD problem is NP-hard. Then, we propose two new concepts of candidate active conflict graphs (CACGs) and feasible active conflict graphs (FACGs) to depict the relationship of the data aggregation links and present two coloring methods to well separate the links at different time slots or on different channels. Based on these two new concepts and two coloring methods, we propose an efficient data aggregation scheduling algorithm called EDAS, which exploits the fewest-children-first rule to choose the forwarding nodes to benefit the link scheduling. To reduce unused time slots or channels, we further propose a novel algorithm called NDAS by making full use of the characteristics of multi-channel asynchronous duty-cycled WSNs. We prove that our algorithms can achieve provable performance guarantee. The results of extensive simulations confirm the efficiency of our algorithms.
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