With conventional anti-jamming solutions like frequency hopping or spread spectrum, legitimate transceivers often tend to “escape” or “hide” themselves from jammers. These reactive anti-jamming approaches are constrained by the lack of timely knowledge of jamming attacks (especially from smart jammers). Bringing together the latest advances in neural network architectures and ambient backscattering communications, this work allows wireless nodes to effectively “face” the jammer (instead of escaping) by first learning its jamming strategy, then adapting the rate or transmitting information right on the jamming signals (i.e., backscattering modulated information on the jamming signals). Specifically, to deal with unknown jamming attacks (e.g....
For wireless networks under jamming attacks, suppressing the jammer is essential to guarantee a reha...
In this article, we introduce a novel deception strategy which is inspired by the "Borrowing Arrows...
In this paper, we present a novel unified framework to protect multi-function wireless systems from ...
With conventional anti-jamming solutions like frequency hopping or spread spectrum, legitimate trans...
© 2019 IEEE. With conventional anti-jamming solutions like frequency hopping or spread spectrum, leg...
© 2012 IEEE. This letter introduces a novel idea to defend jamming attacks for wireless communicatio...
In this paper, we introduce DeepFake, a novel deep reinforcement learning-based deception strategy t...
Conventional anti-jamming solutions like frequency hopping and rate adaptation that are more suitabl...
In this paper, we introduce DeepFake, a novel deep reinforcement learning-based deception strategy t...
peer reviewedThis paper develops a novel framework to defeat a super-reactive jammer, one of the mos...
This paper aims to develop a novel framework to defeat a super-reactive jammer, one of the mostdiffi...
In this paper, we develop a framework to optimize the trade-off between radar sensing and data trans...
In this paper, we present a novel unified framework to protect multi-function wireless systems from ...
The threat of a malicious user interfering with network traffic so as to deny access to resources is...
Can an intelligent jammer learn and adapt to unknown environments in an electronic warfare-type scen...
For wireless networks under jamming attacks, suppressing the jammer is essential to guarantee a reha...
In this article, we introduce a novel deception strategy which is inspired by the "Borrowing Arrows...
In this paper, we present a novel unified framework to protect multi-function wireless systems from ...
With conventional anti-jamming solutions like frequency hopping or spread spectrum, legitimate trans...
© 2019 IEEE. With conventional anti-jamming solutions like frequency hopping or spread spectrum, leg...
© 2012 IEEE. This letter introduces a novel idea to defend jamming attacks for wireless communicatio...
In this paper, we introduce DeepFake, a novel deep reinforcement learning-based deception strategy t...
Conventional anti-jamming solutions like frequency hopping and rate adaptation that are more suitabl...
In this paper, we introduce DeepFake, a novel deep reinforcement learning-based deception strategy t...
peer reviewedThis paper develops a novel framework to defeat a super-reactive jammer, one of the mos...
This paper aims to develop a novel framework to defeat a super-reactive jammer, one of the mostdiffi...
In this paper, we develop a framework to optimize the trade-off between radar sensing and data trans...
In this paper, we present a novel unified framework to protect multi-function wireless systems from ...
The threat of a malicious user interfering with network traffic so as to deny access to resources is...
Can an intelligent jammer learn and adapt to unknown environments in an electronic warfare-type scen...
For wireless networks under jamming attacks, suppressing the jammer is essential to guarantee a reha...
In this article, we introduce a novel deception strategy which is inspired by the "Borrowing Arrows...
In this paper, we present a novel unified framework to protect multi-function wireless systems from ...