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Open Mobile Alliance (OMA) security layer: Architecture, implementation and performance evaluation of the integrity unit

机译:开放移动联盟(OMA)安全层:完整性单元的体系结构,实现和性能评估

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摘要

Security has become a very critical issue in the provision of mobile services. The Open Mobile Alliance (OMA) has specified a powerful security layer, the WTLS. In this paper, a VLSI architecture for the implementation of the WTLS integrity unit is proposed. The proposed architecture is reconfigurable in the sense that operates in three different modes: as Keyed-Hash Authentication Code (HMAC), as SHA-1 and MD5 hash functions, according to WTLS specifications. This multi-mode operation is achieved due to the reconfigurable applied design technique in the proposed architecture, which keeps the allocated area resources at a minimized level. The proposed architecture achieves high speed performance, due to the pipeline designed architecture. Especially, SHA-1 operation achieved throughput is equal to 1,7 Gbps, while MD5 operation mode bit rate is equal to 2,1 Gbps. The proposed architecture has been integrated by using VHDL and has been synthesized placed and routed in an FPGA device. Comparisons with related hash functions implementations have been done in terms of throughput, operating frequency, allocated area and Area-Delay product. The achieved performance of the SHA-1 operation mode is better at about 14-42 times compared with the other conventional works. In addition, MD5 performance is superior to the other works at about 6-18 times, in all of the cases. The proposed Integrity Unit is a very trustful and powerful solution for the WTLS layer. In addition, it can be integrated in security systems which are used for the implementation networks for wireless protocols, with special needs of integrity in data transmission.
机译:安全已成为提供移动服务中非常关键的问题。开放移动联盟(OMA)已指定了强大的安全层WTLS。本文提出了一种用于实现WTLS完整性单元的VLSI体系结构。所提出的体系结构可以在三种不同模式下进行重新配置:根据WTLS规范,作为键控哈希验证码(HMAC),SHA-1和MD5哈希函数。这种多模式操作是由于所提出的体系结构中的可重新配置的应用设计技术而实现的,该技术将分配的区域资源保持在最小级别。由于采用了流水线设计的架构,因此所提出的架构可实现高速性能。特别是,SHA-1操作实现的吞吐量等于1.7 Gbps,而MD5操作模式的比特率等于2.1 Gbps。所提出的架构已通过使用VHDL进行了集成,并已综合放置并路由至FPGA器件中。在吞吐量,工作频率,分配的区域和Area-Delay产品方面,已经与相关的哈希函数实现进行了比较。与其他常规工作相比,SHA-1操作模式的已实现性能约好14-42倍。此外,在所有情况下,MD5的性能都比其他作品高出约6到18倍。提议的完整性部门是WTLS层非常可靠且功能强大的解决方案。另外,它可以集成在安全系统中,该系统用于无线协议的实现网络,在数据传输中具有特殊的完整性需求。

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