AVK方法的参数化共享密钥研究

IF 1.8 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS
S. Prajapat, R. S. Thakur
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引用次数: 4

摘要

“密钥”在每一个对称密钥密码系统中都起着至关重要的作用。增强任何密码系统安全性的明显方法是保持密钥尽可能大。但它可能不适合低功耗设备,因为更长的密钥将完成更高的计算,这将增加功率需求,从而降低设备的性能。为了解决前一个指定的问题,可以使用另一种方法,其中密钥的长度是固定的,并且它的值在每个会话中都是变化的。这是时变键方法或自动可变键(AVK)方法。基于AVK的密码系统通过在通信双方之间交换一些参数来代替密钥,然后使用这些参数在接收端生成所需的密钥,从而提高了系统的安全性。本章介绍上述指定机制的实现。用参数化方案对模型进行了论证,并指出了AVK方法中存在的问题。进一步,从不同的用户角度进行了分析。本章还强调了AVK模型的好处,通过描述AVK方法和仅基于参数的密钥计算估计来确保两个级别的安全性。指出了考虑按键尺寸、按键寿命和断键阈值等因素的按键设计的特点。这些特性对于设计高效的对称密钥密码系统至关重要。这种新颖的基于AVK的加密方法适用于低功耗设备,适用于交换非常大的对象或文件。该方案通过基于Fibonacci-Q矩阵和稀疏矩阵的扩散密钥信息交换程序进行了验证。这些模型已经从黑客和密码分析师的角度进行了进一步的测试,以利用固定大小动态密钥的任何弱点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards Parameterized Shared Key for AVK Approach
“Key” plays a vital role in every symmetric key cryptosystem. The obvious way of enhancing security of any cryptosystem is to keep the key as large as possible. But it may not be suitable for low power devices since higher computation will be done for longer keys and that will increase the power requirement which decreases the device's performance. In order to resolve the former specified problem an alternative approach can be used in which the length of key is fixed and its value varies in every session. This is Time Variant Key approach or Automatic Variable Key (AVK) approach. The Security of AVK based cryptosystem is enhanced by exchanging some parameters instead of keys between the communicating parties, then these parameters will be used to generate required keys at the receiver end. This chapter presents implementation of the above specified Mechanism. A model has been demonstrated with parameterized scheme and issues in AVK approach. Further, it has been analyzed from different users' perspectives. This chapter also highlights the benefits of AVK model to ensure two levels of security with characterization of methods for AVK and Estimation of key computation based on parameters only. The characteristic components of recent styles of key design with consideration of key size, life time of key and breaking threshold has also been pointed out. These characteristics are essential in the design of efficient symmetric key cryptosystem. The novel approach of AVK based cryptosystem is suitable for low power devices and useful for exchanging very large objects or files. This scheme has been demonstrated with Fibonacci-Q matrix and sparse matrix based diffused key information exchange procedures. These models have been further tested from perspective of hackers and cryptanalyst, to exploit any weakness with fixed size dynamic keys.
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来源期刊
Cryptography
Cryptography Mathematics-Applied Mathematics
CiteScore
3.80
自引率
6.20%
发文量
53
审稿时长
11 weeks
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