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Enhancement of A5/1: Using variable feedback polynomials of LFSR

机译:A5 / 1的增强:使用LFSR的可变反馈多项式

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The Global System for Mobile communication, GSM is the most widely used cellular system in the world, with over a billion customers around the world. GSM was the first cellular system which seriously considered security threats. Previous cellular systems had practically no security, and they were increasingly the subject of criminal activity such as eavesdropping on cellular calls, phone cloning, and call theft. The GSM voice calls are encrypted using a family of algorithms collectively called A5. A5/1 is the stream cipher which encrypts the information transmitted from mobile user. Initially A5 algorithm was kept secret to ensure the security but as algorithm was disclosed many cryptanalytic attacks were proposed and proved the A5 algorithm cryptographically weak. In this paper the modification in A5/1 is proposed to make it robust and resistive to the attacks. Modification is done in two ways (1) feedback tapping mechanism which is enhanced by variable taps for LFSR (Linear Feedback Shift Register) and random shuffling of LFSRs, which increases the complexity of the algorithm without compromising the properties of randomness and (2) clocking rule. The modification has been proposed keeping the ease of implementation in mind. This modified algorithm has been simulated in MATLAB and tested its randomness properties by ‘Randomness test suit’ given by NIST-National Institute of Standard and Technology and obtained satisfactory results.
机译:全球移动通信系统,GSM是世界上使用最广泛的蜂窝系统,世界各地拥有超过十亿客户。 GSM是第一个认真考虑安全威胁的蜂窝系统。以前的蜂窝系统几乎没有安全性,他们越来越多地是犯罪活动的主题,如窃听蜂窝电话,电话克隆和呼叫盗窃。使用集体称为A5的算法系列加密GSM语音呼叫。 A5 / 1是加密从移动用户发送的信息的流密码。最初是A5算法保密以确保安全性,但由于算法公开了许多密码分析攻击,并证明了A5算法密码较弱。本文提出了A5 / 1的修改,使其对攻击稳健和电阻。修改以两种方式(1)反馈攻丝机制,通过可变抽头来增强LFSR(线性反馈移位寄存器)和LFSR的随机抽搐,这增加了算法的复杂性而不会影响随机性和(2)时钟的性质规则。已经提出了修改,保持易于执行。该修改的算法已经在Matlab中进行了模拟,并通过&#x2018测试其随机性属性;随机性测试套装’由NIST-NISTED标准和技术研究所给予,并获得满意的结果。

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