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  • Nawusu, Yakubu Abdul-Wahab  (2)
  • Unknown  (2)
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  • 1
    Online Resource
    Online Resource
    Sciencedomain International ; 2022
    In:  Asian Journal of Research in Computer Science ( 2022-10-20), p. 46-65
    In: Asian Journal of Research in Computer Science, Sciencedomain International, ( 2022-10-20), p. 46-65
    Abstract: This study harnesses the useful number properties of the residue number system (RNS) to minimise energy consumption in a wireless sensor network. In a traditional cluster-based wireless sensor network, large bit representations of aggregated packets are transmitted to the base station. However, large bit patterns of packets are slower compared to smaller bits. The proposed approach splits aggregated data into a pre-specified number of transmission channels using a moduli set. Cheap energy cost routes from the cluster heads are computed to deliver the chunked aggregated data to the base station. Forward and reverse converters are proposed to encode data into RNS and decode the RNS data that reaches the base station. MATLAB simulation is used to implement the proposed data splitting method and to evaluate network performance. The experimental results suggest that the proposed method is more effective at minimising transmission energy when compared with traditional approaches in which complete packets are transmitted.
    Type of Medium: Online Resource
    ISSN: 2581-8260
    Language: Unknown
    Publisher: Sciencedomain International
    Publication Date: 2022
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  • 2
    Online Resource
    Online Resource
    Sciencedomain International ; 2021
    In:  Journal of Advances in Mathematics and Computer Science ( 2021-09-22), p. 27-43
    In: Journal of Advances in Mathematics and Computer Science, Sciencedomain International, ( 2021-09-22), p. 27-43
    Abstract: Transmission errors are commonplace in communication systems. Wireless sensor networks like many other communication systems are susceptible to various forms of errors arising from sheer noise, heat and interference in sensor circuitry and from other forms of distortions. Research efforts in WSN have attempted to guarantee reliable and accurate data transmission from a target environment in the midst of these unwanted exposures. Many techniques have appeared and employed over the years to deal with the issue of transmission errors in communication systems. In this paper we present a new approach for single and multiple error control in WSN relying on the inherent fault tolerant feature of the Redundant Residue Number System. As an off shoot of Residue Number System, RRNS's fault tolerant capabilities help in building robust systems required for reliable data transmission in WSN systems. The Chinese Remainder Theorem and the Manhattan Distance Heuristics are used during the integer recovery process when detecting and correcting error digit(s) in a transmitted data. The proposed method performs considerably better in terms of data retrieval time than similar approaches by needing a smaller number of iterations to recover an originally transmitted data from its erroneous form. The approach in this work is also less computationally intensive compared to recent techniques during the error correction steps. Evidence of utility of the technique is illustrated in numerical examples.
    Type of Medium: Online Resource
    ISSN: 2456-9968
    Language: Unknown
    Publisher: Sciencedomain International
    Publication Date: 2021
    detail.hit.zdb_id: 3146750-7
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