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Further, by combining with Scheme 1, we can improve Scheme 2 to against wiretapping attack.
Therefore, we propose a strategy of network coding against wiretapping attack based on network segmentation.
In this paper, we study the optimal design of weakly secure linear network coding (WSLNC) against wiretapping attack.
As for this wireless network, the scheme in [9] is not efficient and secure enough against wiretapping attack.
The wiretapping attack means that some adversary can wiretap some communication signals with the purposes of curiosity or recovering the messages.
In wiretapping attack, the eavesdroppers are able to gain access to the information transmitted on these nodes, suppose the positions of malicious nodes are known.
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In this paper, we focus on wiretapping attacks, defined by Cai and Yeung in [9] and proposed a multicast network coding against wiretapping attacks in [10, 11].
Based on the attack models, there are mainly two attack models, polluting attacks (active attack) [4 8] and wiretapping attacks (passive attacks) [9 18].
So we canot obtain the same secure communication on the wireless networks if we made use of the scheme in [9] against wiretapping attacks.
This assumption is ideal but unpractical in a real-life wiretap attack since the malicious eavesdropper would not be willing to share its instantaneous CSI.
In general, secure network coding is designed against two kinds of attacks: wiretapping and Byzantine modification.
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