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Chip Error Pattern Analysis in IEEE 802.15.4

机译:IEEE 802.15.4中的芯片错误模式分析

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摘要

IEEE 802.15.4 standard specifies physical layer (PHY) and medium access control (MAC) sublayer protocols for low-rate and low-power communication applications. In this protocol, every 4-bit symbol is encoded into a sequence of 32 chips that are actually transmitted over the air. The 32 chips as a whole is also called a pseudonoise code (PN-Code). Due to complex channel conditions such as attenuation and interference, the transmitted PN-Code will often be received with some PN-Code chips corrupted. In this paper, we conduct a systematic analysis on these errors occurring at chip level. We find that there are notable error patterns corresponding to different cases. We then show that recognizing these patterns enables us to identify the channel condition in great details. We believe that understanding what happened to the transmission in our way can potentially bring benefit to channel coding, routing, and error correction protocol design. Finally, we propose Simple Rule, a simple yet effective method based on the chip error patterns to infer the link condition with an accuracy of over 96 percent in our evaluations.
机译:IEEE 802.15.4标准为低速率和低功耗通信应用指定了物理层(PHY)和媒体访问控制(MAC)子层协议。在此协议中,每个4位符号被编码为32个码片的序列,这些序列实际上是通过空中传输的。整个32个码片也称为伪噪声码(PN-Code)。由于诸如衰减和干扰之类的复杂信道状况,经常会在某些PN码码片损坏的情况下接收发送的PN码。在本文中,我们对发生在芯片级的这些错误进行了系统的分析。我们发现存在与不同情况相对应的显着错误模式。然后,我们证明识别这些模式使我们能够非常详细地识别信道状况。我们相信,了解以我们的方式发生的传输会潜在地为信道编码,路由和纠错协议设计带来好处。最后,我们提出了简单规则,这是一种基于码片错误模式的简单而有效的方法,可以在我们的评估中以96%以上的精度推断链接条件。

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