Determining the routing path for in-network aggregation

被引:0
|
作者
Zhao, Xiwei [1 ]
Makki, S. Kami [2 ]
Pissinou, Niki [1 ]
机构
[1] Florida Int Univ, Inst Telecommun & Informat Technol, Miami, FL 33199 USA
[2] Univ Toledo, Dept Elect Engn & Comp Engn, Toledo, OH USA
关键词
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The wireless sensor network (WSN), is a type of self-organized distribution system without complex infrastructure requirement. However, WSN's independence and un-attended usage limit its power supply and life expectancy. These become a critical issue for any WSN implementation. The in-network processing which, intends to minify data volume locally can greatly reduce the energy consumption of data delivery over a long distance to the sink However, open problems are still remain with in-network processing, such as how to carry out in-network processing, and how to combine routing scheme to the sink (e.g. the long distance delivery). For any WSN application, the following preassumption is vital. There exists a physical signal field which bridges physical events to the sensors of WSN, otherwise WSN does not work. In fact, the physical signal field can be depicted by sensory data of. all the nodes, and can even be used for data local convergence (e.g. in-network processing). An immediate solution which we propose is that, sensory data of the nodes can be converged to local extremes of the physical signal field along its gradient direction. Furthermore, the physical signal field is integrated with the cost field routing scheme [(2) (,3)]. The cost field routing is in charge of delivering data to the sink. During the in-network processing, the delivery direction is derived by combining linearly the gradient directions of the cost field and physical signal field. Also simulation results show that the proposed schemes are robust, adaptable, and reliable to the variation of physical events.
引用
收藏
页码:318 / +
页数:3
相关论文
共 50 条
  • [1] In-network event routing approach based on aggregation ring
    School of Software, Central South University, Changsha
    410083, China
    不详
    410083, China
    [J]. Zhongnan Daxue Xuebao (Ziran Kexue Ban), 11 (4100-4107):
  • [2] Fuzzy routing for in-network aggregation in wireless sensor networks
    Maivizhi, Radhakrishnan
    Yogesh, Palanichamy
    [J]. PEER-TO-PEER NETWORKING AND APPLICATIONS, 2022, 15 (01) : 592 - 611
  • [3] GRID: Gradient Routing With In-Network Aggregation for Distributed Training
    Fang, Jin
    Zhao, Gongming
    Xu, Hongli
    Wu, Changbo
    Yu, Zhuolong
    [J]. IEEE-ACM TRANSACTIONS ON NETWORKING, 2023, 31 (05) : 2267 - 2280
  • [4] Fuzzy routing for in-network aggregation in wireless sensor networks
    Radhakrishnan Maivizhi
    Palanichamy Yogesh
    [J]. Peer-to-Peer Networking and Applications, 2022, 15 : 592 - 611
  • [5] Collaborative in-network caching for multi-path routing
    Miyoshi, Yuta
    Wada, Takuya
    Hirata, Kouji
    [J]. 2017 IEEE INTERNATIONAL CONFERENCE ON CONSUMER ELECTRONICS - TAIWAN (ICCE-TW), 2017,
  • [6] A Study On Routing Approach For In-Network Aggregation In Wireless Sensor Networks
    Sudha, S.
    Manimegalai, B.
    Thirumoorthy, P.
    [J]. 2014 INTERNATIONAL CONFERENCE ON COMPUTER COMMUNICATION AND INFORMATICS (ICCCI), 2014,
  • [7] Releasing the Power of In-Network Aggregation With Aggregator-Aware Routing Optimization
    Luo, Shouxi
    Yu, Xiaoyu
    Li, Ke
    Xing, Huanlai
    [J]. IEEE-ACM TRANSACTIONS ON NETWORKING, 2024,
  • [8] PARING: Joint Task Placement and Routing for Distributed Training With In-Network Aggregation
    Qiu, Yuhang
    Zhao, Gongming
    Xu, Hongli
    Huang, He
    Qiao, Chunming
    [J]. IEEE-ACM TRANSACTIONS ON NETWORKING, 2024, : 4317 - 4332
  • [9] Q-learning based routing for in-network aggregation in wireless sensor networks
    Radhakrishnan Maivizhi
    Palanichamy Yogesh
    [J]. Wireless Networks, 2021, 27 : 2231 - 2250
  • [10] Opportunistic routing with in-network aggregation for duty-cycled WSNs with delay requirements
    Jungmin So
    Heejung Byun
    [J]. EURASIP Journal on Wireless Communications and Networking, 2014