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Delegation of signing rights for emerging 5G networks†

机译:授予新兴5G网络的签名权†

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5G mobile networks are promising to offer mobile users unrivaled experiences with infinite networking capability at any period and from anywhere. However, it appears unnecessary and impractical for the customers and servers to be connected permanently in wireless networks because battery life is a bottleneck in such kind of networks. Therefore, the authorized entity needs to delegate its right to others in order to ensure the services available. This paper aims to address the issue of delegating authentication in 5G networks by proposing a new proxy signature scheme with efficient proxy signing operations. Concretely, we present a new and efficient proxy signature algorithm whose unforgeability can be reduced to the well-known discrete logarithm assumption. In the proposal, the original signer delegates his signing right by signing an exposure-free chameleon hash value on the warrant, and the proxy signer can generate a proxy signature on a message only by calculating a chameleon hash collision between the warrant and the message. This approach is computationally cost-effective for the proxy signer. Further analysis of the new scheme demonstrates that it offers the desirable properties of delegation of signing sights. Copyright © 2015 John Wiley & Sons, Ltd.
机译:5G移动网络有望在任何时间和任何地点为移动用户提供无与伦比的无限网络能力体验。但是,在无线网络中永久连接客户和服务器似乎是不必要的,也是不切实际的,因为电池寿命是此类网络的瓶颈。因此,授权实体需要将其权利委托给他人,以确保提供可用的服务。本文旨在通过提出一种具有高效代理签名操作的新代理签名方案来解决5G网络中的委托认证问题。具体而言,我们提出了一种新的高效代理签名算法,该算法的不可伪造性可以简化为众所周知的离散对数假设。在该提案中,原始签名者通过在凭单上签名无暴露的变色龙哈希值来委派其签名权,并且代理签名者只能通过计算凭单和消息之间的变色龙哈希冲突来在消息上生成代理签名。对于代理签名者而言,此方法在计算上具有成本效益。对新方案的进一步分析表明,该方案提供了签字授权的理想属性。版权所有©2015 John Wiley&Sons,Ltd.

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