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Titlebook: Cryptology and Network Security; 7th International Co Matthew K. Franklin,Lucas Chi Kwong Hui,Duncan S. Conference proceedings 2008 Spring

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A Killer Application for Pairings: Authenticated Key Establishment in Underwater Wireless Sensor Nete pairing computation is very demanding. Still, pairing-based non-interactive key establishment requires minimal communication and at the same time enjoys excellent properties when used for key distribution.
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0302-9743 ng-Kong, China, in December 2008. The 27 revised full papers presented were carefully reviewed and selected from 73 submissions. The papers are organized in topical sections on cryptosystems, signatures, identification, authentication and key management, cryptographic algorithms and protocols, strea
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https://doi.org/10.1007/b138960ent scenarios. The aim of this paper is twofold. Firstly, we summarize different properties in the literature and gives some generic conversions between them. We propose a security model to capture most of these properties. Secondly, we present the . concrete construction of sanitizable signatures which is proven secure in the standard model.
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Presenting components on the weber provides a distinguishing attack on the MV3 stream cipher. We will show that the key stream generated in MV3 is distinguishable from random sequences after observing approximately 2. bits. That is, in the MV3 cipher with keys of length larger than 63 bits, it is possible to design a key search attack faster than the exhaustive search.
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Efficient Dynamic Broadcast Encryption and Its Extension to Authenticated Dynamic Broadcast Encrypti that enables receivers to verify the producer of broadcasted content. In ., we adopt the signature scheme proposed by Barreto et al. [3]. To our knowledge, . is the first scheme that achieves provable security for broadcast encryption and signature with common parameters and keys.
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Cryptanalysis of EC-RAC, a RFID Identification Protocolely eavesdropped three times..We propose a new scheme based on a modification of the Schnorr scheme as efficient as the initial scheme. We prove that this scheme is zero-knowledge, sound against active adversaries. Moreover, our proposal is private under the Decisional Diffie-Hellman assumption.
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