论文标题

减轻多用户mimo中的智能干扰者

Mitigating Smart Jammers in Multi-User MIMO

论文作者

Marti, Gian, Kölle, Torben, Studer, Christoph

论文摘要

无线系统必须有弹性,可抵御干扰攻击。现有基于多Antenna处理的缓解方法需要了解干扰器的传输特征,这些特征可能很难获得,尤其是对于仅通过特定瞬间传输而避免缓解缓解的智能干扰器。我们提出了一种新颖的方法,以减轻对大型多用户多输入多输出(MU-MIMO)上行链路上的智能干扰攻击,该链接不需要在任何特定的瞬间处于活动状态。通过制定统一干扰器估计和缓解,通道估计和数据检测的优化问题,我们利用干扰器不能在相干间隔内更改其子空间。我们问题提出的理论结果表明,在某些条件下,确保其解决方案可以恢复用户的数据符号。我们开发了两种有效的迭代算法,用于近似求解提出的问题公式:MAED,一种无参数的算法,它使用前向后拆分,并以盒子符号为先验,并替换了MA的先前,该算法用软输出符号估算了估计利用iNdmit transmit transmit transmine starts and thermine transmit andmine transmine and funfortim fullofformition fulofforting Algorthm amalese algorthm amalesers axamers agamerthm参数。我们使用仿真来证明所提出的算法在没有有关攻击类型的先验知识的情况下有效地减轻了广泛的智能干扰器。

Wireless systems must be resilient to jamming attacks. Existing mitigation methods based on multi-antenna processing require knowledge of the jammer's transmit characteristics that may be difficult to acquire, especially for smart jammers that evade mitigation by transmitting only at specific instants. We propose a novel method to mitigate smart jamming attacks on the massive multi-user multiple-input multiple-output (MU-MIMO) uplink which does not require the jammer to be active at any specific instant. By formulating an optimization problem that unifies jammer estimation and mitigation, channel estimation, and data detection, we exploit that a jammer cannot change its subspace within a coherence interval. Theoretical results for our problem formulation show that its solution is guaranteed to recover the users' data symbols under certain conditions. We develop two efficient iterative algorithms for approximately solving the proposed problem formulation: MAED, a parameter-free algorithm which uses forward-backward splitting with a box symbol prior, and SO-MAED, which replaces the prior of MAED with soft-output symbol estimates that exploit the discrete transmit constellation and which uses deep unfolding to optimize algorithm parameters. We use simulations to demonstrate that the proposed algorithms effectively mitigate a wide range of smart jammers without a priori knowledge about the attack type.

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