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Encryption and Decryption of Mobile Security Using AES and GOST Algorithms

机译:使用AES和GOST算法对移动安全进行加密和解密

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Different methodologies had been used in recent years to get out of these security issues using distributed database and distributed architecture. Encryption and decryption are the main techniques while there way of implementation is different. But one thing is being ignored that battery powered consumption vary from one way of implementation to other. In this work, we calculate the energy Consumption and other differences between different encryption decryption methodologies like DES and AES. AES-256 becomes implementable when we use block cipher properly. Block Cipher shows no issue when using AES-128 but it do when we use it improperly in AES-256 .The result shows that DES used 56 bit key size which can give 7.2 x 10
机译:近年来,已使用不同的方法来使用分布式数据库和分布式体系结构解决这些安全问题。加密和解密是主要技术,但实现方式不同。但是一件事被忽略了,即电池的功耗因一种实现方式而异。在这项工作中,我们计算能耗和其他加密解密方法(如DES和AES)之间的其他差异。当我们正确使用分组密码时,AES-256变得可以实现。 Block密码在使用AES-128时没有问题,但是在AES-256中使用不正确时却有问题。结果表明DES使用56位密钥大小,可以提供7.2 x 10

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