A New Accelerated RC4 Scheme Using “Ultra Gridsec” and “HIMAN” and use this Scheme to Secure “HIMAN” Data

H. Kholidy, K. Alghathbar
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引用次数: 10

Abstract

in most applications, security attributes are pretty difficult to meet but security becomes even a bigger challenge when talking about Grid Computing. Providing secure communication between elements of a computational Grid, by encrypting data passes between them using enhanced encryption algorithms that do not affect the Performance of the grid middleware completely comparable to the actual execution time.In this paper we will cover two points. First, accelerating RC4 encryption algorithm using our developed Grid Security Scheme "ULTRA GRIDSEC" and our developed "HIMAN" middleware and show that RC4 was accelerated by about 873.52% comparable to that accelerated by "GRIDCRYPT" Scheme that applied by "Alchemi" middleware developed by Melbourne University. Second, using the accelerated RC4 scheme to secure communication between elements of "HIMAN", the stream ciphering algorithms like RC4 are the most suitable encryption algorithms for applying inside "HIMAN" as we will show.
一种新的基于“超网格”和“HIMAN”的加速RC4方案,并使用该方案保护“HIMAN”数据
在大多数应用程序中,安全属性很难满足,但是在讨论网格计算时,安全性就变成了一个更大的挑战。通过使用增强的加密算法加密它们之间的数据传递,提供计算网格元素之间的安全通信,这些加密算法不会影响网格中间件的性能,完全与实际执行时间相当。在本文中,我们将讨论两点。首先,利用我们开发的网格安全方案“ULTRA GRIDSEC”和我们开发的“HIMAN”中间件对RC4加密算法进行了加速,结果表明,与墨尔本大学开发的“Alchemi”中间件应用的“GRIDCRYPT”方案相比,RC4的加速速度约为873.52%。其次,使用加速的RC4方案来保护“HIMAN”元素之间的通信,像RC4这样的流加密算法是最适合在“HIMAN”内部应用的加密算法,我们将展示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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