LPED: Channel diagnostics in WSN through channel coding and symbol error statistics

Filip Barac, M. Gidlund, Tingting Zhang
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引用次数: 6

Abstract

Three major obstacles to wireless communication are electromagnetic interference, multipath fading and signal attenuation. The former stems mainly from collocated wireless systems operating in the same frequency band, while the latter two originate from physical properties of the environment. Identifying the source of packet corruption and loss is crucial, since the adequate countermeasures for different types of threats are essentially different. This problem is especially pronounced in industrial monitoring and control applications, where IEEE 802.15.4 communication is expected to deliver data within tight deadlines, with minimal packet loss. This work presents the Lightweight Packet Error Discriminator (LPED) that distinguishes between errors caused by multipath fading and attenuation, and those inflicted by IEEE 802.11 interference. LPED uses Forward Error Correction to determine the symbol error positions inside erroneously received packets and calculates the error density, which is then fed to a discriminator for error source classification. The statistical constituents of LPED are obtained from an extensive measurement campaign in two different types of industrial environments. The classifier incurs no overhead and in ≥90% of cases a single packet is sufficient for a correct channel diagnosis. Experiments show that LPED accelerates link diagnostics by at least 190%, compared to the relevant state-of-the-art approaches.
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LPED:通过信道编码和符号错误统计在WSN中进行信道诊断
无线通信的三大障碍是电磁干扰、多径衰落和信号衰减。前者主要源于在同一频带内工作的并置无线系统,而后两者则源于环境的物理特性。确定数据包损坏和丢失的来源至关重要,因为针对不同类型威胁的适当对策本质上是不同的。这个问题在工业监测和控制应用中尤其明显,因为IEEE 802.15.4通信期望在严格的期限内传输数据,并且数据包丢失最少。这项工作提出了轻量级分组错误鉴别器(LPED),它可以区分由多径衰落和衰减引起的错误,以及由IEEE 802.11干扰造成的错误。LPED使用前向纠错来确定错误接收数据包中的符号错误位置,并计算错误密度,然后将其提供给鉴别器进行错误源分类。LPED的统计成分是通过在两种不同类型的工业环境中进行广泛的测量活动获得的。分类器不会产生开销,并且在≥90%的情况下,单个数据包足以进行正确的通道诊断。实验表明,与相关的最新方法相比,LPED将链路诊断速度提高了至少190%。
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