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28 Nanometers FPGAs Support for High Throughput and Low Power Cryptographic Applications

机译:28纳米FPGA支持高吞吐量和低功耗加密应用

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The current unprecedented advancements of communication systems and high performance computing urged for a high throughput applications with power consumption within a predefined budget. These advancements were accompanied with a crucial need for securing such systems and users critical data. Current cryptographic applications suffer from the limitations of their low throughput and extensive power consumption that severely impact the available power budget. Creating new algorithms to handle these issues will be a time consuming process. One viable solution is to use the new 28 Nanometers (nm) FPGAs devices that promise to provide less power consumption with a very competitive throughput and throughput to area ratio comparing to the older technologies. In this paper, we evaluate the 28 nm FPGAs technology and its impact in eight of the major cryptographic algorithms available today such as SHA2, SHA3, and AES. Our results revealed that using the 28 nm FPGAs reduced the power consumption to more than 50% and increase the throughput up to 100% compared to the older FPGs technologies. On the other hand, throughputs to area ratio results show about 71% improvement over other technologies.
机译:通信系统和高性能计算的当前史无前例的进步促使人们以预定义的预算内的功耗实现高吞吐量的应用。这些进步伴随着对保护此类系统和用户关键数据的迫切需求。当前的密码应用受到其低吞吐量和大量功耗的局限,这严重影响了可用功率预算。创建新算法来处理这些问题将是一个耗时的过程。一种可行的解决方案是使用新的28纳米(FPGA)器件,与较老的技术相比,这些器件有望提供更低的功耗,非常具有竞争力的吞吐量和吞吐量与面积之比。在本文中,我们评估了28 nm FPGA技术及其对当今可用的八种主要加密算法(如SHA2,SHA3和AES)的影响。我们的结果表明,与较早的FPG技术相比,使用28 nm FPGA将功耗降低了50%以上,并将吞吐量提高了100%。另一方面,吞吐量与面积之比的结果显示,与其他技术相比,提高了约71%。

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