Staniec Kamil, Kowal Michał
Department of Telecommunications and Teleinformatics, Wroclaw University of Science and Technology, 50-370 Wrocław, Poland.
Sensors (Basel). 2020 Oct 29;20(21):6152. doi: 10.3390/s20216152.
Weightless and SigFox are both narrowband communication systems designed for the Internet of Things, along with some other counterparts such as LoRa (Long Range) and narrowband Internet of Things (NB-IoT). As systems dedicated specifically for long-range operations, they possess considerable processing gain for energetic link budget improvement and a remarkable immunity to interference. The paper describes outcomes of a measurement campaign during which the Weightless and SigFox performance was tested against variable interference, generated in an anechoic chamber. Results allow the quantitative appraisal of the system behavior under these harsh conditions with respect to different operational modes of the two investigated IoT systems. The outcomes are then investigated with respect to an intentional radio jammer attempting to block a base station (BS) operation by directly radiating an interfering signal towards it. An Interference Margin is proposed for a quantitative expression of a system's resilience to jamming. This margin, calculated for all available configuration settings, allows the clear assessment of which combination of a system's operational parameters does and which does not provide immunity to this type of radio attack.
Weightless和SigFox都是为物联网设计的窄带通信系统,还有一些其他同类系统,如LoRa(远距离)和窄带物联网(NB-IoT)。作为专门用于远程操作的系统,它们在提高能量链路预算方面具有可观的处理增益,并且对干扰具有显著的免疫力。本文描述了一项测量活动的结果,在此期间,在消声室中对Weightless和SigFox的性能进行了针对可变干扰的测试。结果允许对这两个被研究的物联网系统在这些恶劣条件下相对于不同操作模式的系统行为进行定量评估。然后针对一个试图通过直接向基站(BS)辐射干扰信号来阻断其运行的故意无线电干扰器对结果进行研究。提出了干扰余量,用于定量表达系统对干扰的恢复能力。针对所有可用配置设置计算出的这个余量,能够清晰评估系统的哪些操作参数组合能提供对这类无线电攻击的免疫力,哪些不能。