用深度支持向量检测非合作RIS,无需知道其相位配置。
On the Detection of Non-Cooperative RISs: Scan B-Testing via Deep Support Vector Data Description
- 基于深度支持向量与扫描B检验结合的在线变化点检测。
- 在未知相位配置下仍保持高检测准确率,计算开销更低。
- 适合防范隐蔽干扰的5G/6G通信系统安全场景。
本文研究如何利用正交频分复用(OFDM)传输,在多输入多输出(MIMO)通信系统中快速检测附近存在未知特性的非合作可重构智能表面(RIS)活动。提出一种新型宽带信道模型,同时包含RIS和非可重构静止表面,能捕捉RIS切换时间对频域信道的影响,以及传输中或传输间相位配置变化的差异。针对RIS可能受第三方协调而干扰正常通信的情况,设计了一种无需了解任意非合作RIS相位分布的检测框架。利用多天线接收端的数据分布知识,构建融合深度支持向量数据描述模型与扫描B检验的在线变化点检测统计量。数值实验表明,该方法在检测精度和计算复杂度上均优于现有变化点检测方案。
原文摘要 · Abstract (English)
In this paper, we study the problem of promptly detecting the presence of non-cooperative activity from one or more Reconfigurable Intelligent Surfaces (RISs) with unknown characteristics lying in the vicinity of a Multiple-Input Multiple-Output (MIMO) communication system using Orthogonal Frequency-Division Multiplexing (OFDM) transmissions. We first present a novel wideband channel model incorporating RISs as well as non-reconfigurable stationary surfaces, which captures both the effect of the RIS actuation time on the channel in the frequency domain as well as the difference between changing phase configurations during or among transmissions. Considering that RISs may operate under the coordination of a third-party system, and thus, may negatively impact the communication of the intended MIMO OFDM system, we present a novel RIS activity detection framework that is unaware of the distribution of the phase configuration of any of the non-cooperative RISs. In particular, capitalizing on the knowledge of the data distribution at the multi-antenna receiver, we design a novel online change point detection statistic that combines a deep support vector data description model with the scan $B$-test. The presented numerical investigations demonstrate the improved detection accuracy as well as decreased computational complexity of the proposed RIS detection approach over existing change point detection schemes.
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