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首页> 外文期刊>ETRI journal >Flexible Prime-Field Genus 2 Hyperelliptic Curve Cryptography Processor with Low Power Consumption and Uniform Power Draw
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Flexible Prime-Field Genus 2 Hyperelliptic Curve Cryptography Processor with Low Power Consumption and Uniform Power Draw

机译:具有低功耗和均匀功率消耗的灵活质数场Gens 2超椭圆曲线密码处理器

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摘要

This paper presents an energy-efficient (low power) prime-field hyperelliptic curve cryptography (HECC) processor with uniform power draw. The HECC processor performs divisor scalar multiplication on the Jacobian of genus 2 hyperelliptic curves defined over prime fields for arbitrary field and curve parameters. It supports the most frequent case of divisor doubling and addition. The optimized implementation, which is synthesized in a 0.13 μm standard CMOS technology, performs an 81-bit divisor multiplication in 503 ms consuming only 6.55 μJ of energy (average power consumption is 12.76 μW). In addition, we present a technique to make the power consumption of the HECC processor more uniform and lower the peaks of its power consumption.
机译:本文提出了一种具有均匀功耗的高能效(低功耗)素场超椭圆曲线密码学(HECC)处理器。 HECC处理器对在任意字段和曲线参数的素数字段上定义的属2超椭圆曲线的雅可比行列执行除数标量乘法。它支持除数加倍的最常见情况。经过优化的实现是在0.13μm标准CMOS技术中合成的,它在503毫秒内执行了81位除数乘法,仅消耗6.55μJ能量(平均功耗为12.76μW)。此外,我们提出了一种使HECC处理器的功耗更加均匀并降低其功耗峰值的技术。

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