• DocumentCode
    1454165
  • Title

    In-Network Computation in Random Wireless Networks: A PAC Approach to Constant Refresh Rates with Lower Energy Costs

  • Author

    Iyer, Srikanth K. ; Manjunath, D. ; Sundaresan, Rajesh

  • Author_Institution
    Dept. of Math., Indian Inst. of Sci., Bangalore, India
  • Volume
    10
  • Issue
    1
  • fYear
    2011
  • Firstpage
    146
  • Lastpage
    155
  • Abstract
    We propose a method to compute a probably approximately correct (PAC) normalized histogram of observations with a refresh rate of Θ(1) time units per histogram sample on a random geometric graph with noise-free links. The delay in computation is Θ(√n) time units. We further extend our approach to a network with noisy links. While the refresh rate remains Θ(1) time units per sample, the delay increases to Θ(√n log n). The number of transmissions in both cases is Θ(n) per histogram sample. The achieved Θ(1) refresh rate for PAC histogram computation is a significant improvement over the refresh rate of Θ(1/log n) for histogram computation in noiseless networks. We achieve this by operating in the supercritical thermodynamic regime where large pathways for communication build up, but the network may have more than one component. The largest component however will have an arbitrarily large fraction of nodes in order to enable approximate computation of the histogram to the desired level of accuracy. Operation in the supercritical thermodynamic regime also reduces energy consumption. A key step in the proof of our achievability result is the construction of a connected component having bounded degree and any desired fraction of nodes. This construction may also prove useful in other communication settings on the random geometric graph.
  • Keywords
    graph theory; radio networks; constant refresh rates; energy consumption; in-network computation; noise-free links; noiseless networks; probably approximately correct normalized histogram; random geometric graph; random wireless networks; supercritical thermodynamic regime; Computer networks; Costs; Delay effects; Distributed computing; Histograms; Interference constraints; Thermodynamics; User-generated content; Wireless networks; Wireless sensor networks; Ad hoc network; PAC computation; function computation; percolation.; wireless sensor network;
  • fLanguage
    English
  • Journal_Title
    Mobile Computing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1536-1233
  • Type

    jour

  • DOI
    10.1109/TMC.2010.59
  • Filename
    5439003