Communication Jamming in Body Sensor Network: A Review

R. Tiwari, A. Misra, A. Agarwal, Vikas Khullar
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Abstract

The Wireless Body Sensor Network (WBSN) surrounds and communicates with the human body. Wearable and implantable tiny sized sensor nodes placed or attached on the human body collect the physiological data to achieve the continuous monitoring of patient’s health conditions. These sensor nodes depend on open wireless medium for effective transmission of vital and confidential information. For the purpose of overcoming the interference problem, spread spectrum modulation methods such as Direct Sequence Spread Spectrum (DSSS) and Frequency Hop Spread Spectrum (FHSS) have become widely used. If you use a typical spread spectrum modulation approach in the face of a reactive jammer, it is required for the transmitter and receivers to communicate pseudo-noise (PN) codes as a secret key for data transfer. Furthermore, if a jammer is aware of the Pseudo-Noise codes, it is capable of replicating the same secret Pseudo-Noise codes and so jamming the entire system. Therefore, strict security mechanisms are essential to enable a secure WBSN from various vulnerable attacks such as reactive jammer and eavesdropper. This paper reviews diverse relevant works associated with anti-jamming in wireless communication.
人体传感器网络中的通信干扰研究进展
无线身体传感器网络(WBSN)围绕人体并与人体通信。可穿戴和可植入的微型传感器节点放置或附着在人体上,收集生理数据,实现对患者健康状况的持续监测。这些传感器节点依赖于开放的无线介质来有效传输重要和机密信息。为了克服干扰问题,直接序列扩频(DSSS)和跳频扩频(FHSS)等扩频调制方法得到了广泛的应用。如果您在面对无功干扰时使用典型的扩频调制方法,则需要发送器和接收器将伪噪声(PN)代码作为数据传输的密钥进行通信。此外,如果干扰器知道伪噪声码,它能够复制相同的秘密伪噪声码,从而干扰整个系统。因此,严格的安全机制是保证WBSN免受各种易受攻击(如被动干扰器和窃听器)的必要条件。本文综述了无线通信中抗干扰的各种相关工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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