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Proceedings ArticleDOI

Robust Distributed Spectrum Sensing in Cognitive Radio Networks

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TLDR
This work proposes a new data fusion technique that uses a variable number of samples, and introduces a reputation-based mechanism to the Sequential Probability Ratio Test (SPRT), which is evaluated by comparing it with a variety of data fusion techniques under various network operating conditions.
Abstract
Distributed spectrum sensing (DSS) enables a Cognitive Radio (CR) network to reliably detect licensed users and avoid causing interference to licensed communications. The data fusion technique is a key component of DSS. We discuss the Byzantine failure problem in the context of data fusion, which may be caused by either malfunctioning sensing terminals or Spectrum Sensing Data Falsification (SSDF) attacks. In either case, incorrect spectrum sensing data will be reported to a data collector which can lead to the distortion of data fusion outputs. We investigate various data fusion techniques, focusing on their robustness against Byzantine failures. In contrast to existing data fusion techniques that use a fixed number of samples, we propose a new technique that uses a variable number of samples. The proposed technique, which we call Weighted Sequential Probability Ratio Test (WSPRT), introduces a reputation-based mechanism to the Sequential Probability Ratio Test (SPRT). We evaluate WSPRT by comparing it with a variety of data fusion techniques under various network operating conditions. Our simulation results indicate that WSPRT is the most robust against the Byzantine failure problem among the data fusion techniques that were considered.

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Citations
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Journal ArticleDOI

Review: Cognitive radio network security: A survey

TL;DR: A survey of CRNs and their architectures and security issues has been carried out in a broad way in this paper.
Journal ArticleDOI

Securing collaborative spectrum sensing against untrustworthy secondary users in cognitive radio networks

TL;DR: This paper analyzes the detection of untrustworthy secondary users in cognitive radio networks and proposes Defense schemes to detect malicious nodes according to their reporting histories, which can effectively differentiate malicious nodes and honest nodes.
Journal ArticleDOI

Attack Prevention for Collaborative Spectrum Sensing in Cognitive Radio Networks

TL;DR: A challenging attack scenario, where multiple attackers cooperatively maximize their aggregate spectrum utilization, is considered and it is shown that honest secondary users are unable to opportunistically transmit over the licensed spectrum and may even get penalized for collisions caused by attackers.
Journal ArticleDOI

Distributed Bayesian Detection in the Presence of Byzantine Data

TL;DR: It is shown that above a certain fraction of Byzantine attackers in the network, the detection scheme becomes completely incapable of utilizing the sensor data for detection.
Journal ArticleDOI

A survey of security issues in Cognitive Radio Networks

TL;DR: This paper considered the security threats from passive and active attacks in CRNs, and the PHY layer security is presented in the view of passive attacks, and it is a compelling idea of using the physical properties of the radio channel to help provide secure wireless communications.
References
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Book

Wireless Communications: Principles and Practice

TL;DR: WireWireless Communications: Principles and Practice, Second Edition is the definitive modern text for wireless communications technology and system design as discussed by the authors, which covers the fundamental issues impacting all wireless networks and reviews virtually every important new wireless standard and technological development, offering especially comprehensive coverage of the 3G systems and wireless local area networks (WLANs).
Journal ArticleDOI

Cognitive radio: brain-empowered wireless communications

TL;DR: Following the discussion of interference temperature as a new metric for the quantification and management of interference, the paper addresses three fundamental cognitive tasks: radio-scene analysis, channel-state estimation and predictive modeling, and the emergent behavior of cognitive radio.

Cognitive Radio An Integrated Agent Architecture for Software Defined Radio

Joseph Mitola
TL;DR: This article briefly reviews the basic concepts about cognitive radio CR, and the need for software-defined radios is underlined and the most important notions used for such.
Proceedings ArticleDOI

Implementation issues in spectrum sensing for cognitive radios

TL;DR: To improve radio sensitivity of the sensing function through processing gain, three digital signal processing techniques are investigated: matched filtering, energy detection and cyclostationary feature detection.
Proceedings ArticleDOI

Collaborative spectrum sensing for opportunistic access in fading environments

TL;DR: This paper studies spectrum-sharing between a primary licensee and a group of secondary users and suggests that collaboration may improve sensing performance significantly.
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