实时无线传感器网络中有效的误差控制方案

Ayodele Kamaldeen Raji, Idris Abiodun Aremu, A. W. Asaju-Gbolagade, K. Gbolagade
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引用次数: 0

摘要

无线传感器网络(WSNs)依靠分布在恶劣环境中的大量集线器组成的网络,用于生境监测和观测现象变化。这些集线器容易受到诸如能量耗尽、硬件故障、通信链路错误、恶意攻击等故障的影响,这些故障可能导致消息传递错误。然而,这些系统通常用于在偏远地区传递重要信息。因此,为了保持接收到的消息的准确性,需要有效的错误识别和纠正。为了提高实时无线传感器网络发送消息的准确性,本文利用冗余数系统设计了有效的错误控制码的高速反向变换器。为了获得更大的误差校正,针对模集{2n+1- 1,2n, 2n-1}设计了基于混合基数转换的反向变换器。除了这个模外,还设计了一个额外的冗余模集{2n+1+ 3,22n - 3},以提高正确性。为了校正和识别原始数据中的损坏值,使用了最大似然。结果表明,该模集具有能量利用率低、接收消息一致性好的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effective Error Control Scheme in Real-Time Wireless Sensor Networks
Wireless Sensor Networks (WSNs) subsist on network of huge numbers of hubs that are distributed in unfriendly environments used for habitat monitoring and to observe changes in phenomena. These hubs are susceptible to faults such as energy exhaustion, hardware glitches, communication link errors, malicious attacks, which may lead to errors in message delivery. However, these systems are typically utilized to convey vital information in remote places. Thus, efficient error identification and correction is thereby required in order to maintain the accuracy of the received message. This paper aimed at designing high speed reverse converter for effective error control codes using Redundant Residue Number System in order to enhance the accuracy of messages delivered for real-time WSNs. In order to attain a greater error correction, a reverse converter which was based on Mixed Radix Conversion was designed for the moduli set {2n+1-1, 2n, 2n-1}. In addition to this moduli, an extra redundant moduli set{2n+1+3, 22n - 3} is also designed for higher correctness. For correction and identification of corrupted values in the original data, maximum likelihood was used. The results obtained show that the suggested moduli set offers low energy utilization and consistency of the received message in real time WSNs.
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