In the framework of 5G-and-beyond Industry 4.0, jamming attacks for denial of service are a rising threat which can severely compromise the system performance. Therefore, in this paper we deal with the problem of jamming detection and mitigation in indoor factory deployments. We design two jamming detectors based on pseudo-random blanking of subcarriers with orthogonal frequency division multiplexing and consider jamming mitigation with frequency hopping and random scheduling of the user equipments. We then evaluate the performance of the system in terms of achievable BLER with ultra-reliable low-latency communications traffic and jamming missed detection probability. Simulations are performed considering a 3rd Generation Partnership Project spatial channel model for the factory floor with a jammer stationed outside the plant trying to disrupt the communication inside the factory. Numerical results show that jamming resiliency increases when using a distributed access point deployment and exploiting channel correlation among antennas for jamming detection, while frequency hopping is helpful in jamming mitigation only for strict BLER requirements.
翻译:4.0 在5G和超越工业4.0的框架内,为拒绝提供服务而进行干扰攻击是一个日益严重的威胁,可能严重损害系统性能。因此,在本文件中,我们处理室内工厂部署中的干扰探测和缓解问题。我们设计了两个干扰探测器,其基础是使用正方位频率多路分位的子容器的假随机空白,并考虑通过频率选择和随机安排用户设备来减少干扰。然后,我们从可实现的BLER(BLER)方面评价该系统的性能,该BLER具有超可信任的低纬度通信流量和干扰中断的探测概率。我们进行模拟时,考虑了第三代伙伴关系项目空间通道模型,在工厂外面设置了干扰器,试图干扰工厂内部的通信。数字结果显示,在使用分布式接入点部署和利用天线之间的频道联系以探测干扰信号时,干扰应增加的应变能力,而频率选择只有助于干扰干扰干扰频率减缓,只满足严格的BLER要求。