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Simple true random number generator for any semi-conductor technology

机译:简单的真随机数发生器,适用于任何半导体技术

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摘要

True random number generators (TRNGs) are needed in cryptography for key generation, in challenge response authentication procedures and for countermeasures against power analysis attacks. Such true randomness requires to utilise random physical hardware effects. It is the goal to make the TRNG usable for different semi-conductor technologies (including field programmable gate arrays (FPGAs)). This approach is based on ring oscillators with multiple taps in combination with a simple post processing by exclusive OR antivalence (XOR) compression. Verifications with a test chip and several FPGA implementations showed that standard digital library elements and the digital design flow can be used without any constraints for compilation and special layout rules. A proper choice of sampling frequency and compression coefficient ensures a random output with extremely low bias for different technologies which can be checked on-line easily. It was shown that for passing the on-line test with a given bias limit the generated random data passes the statistical tests.
机译:密码学中需要真正的随机数生成器(TRNG)来生成密钥,挑战响应身份验证过程以及针对功耗分析攻击的对策。这种真正的随机性需要利用随机的物理硬件效果。目的是使TRNG可用于不同的半导体技术(包括现场可编程门阵列(FPGA))。这种方法基于具有多个抽头的环形振荡器,并通过异或反价(XOR)压缩进行简单的后处理。通过测试芯片和几种FPGA实现的验证表明,可以使用标准的数字库元素和数字设计流程,而对编译和特殊布局规则没有任何限制。适当选择采样频率和压缩系数可确保对不同技术的随机输出具有极低的偏差,可以轻松在线对其进行检查。结果表明,以给定的偏差极限通过在线测试时,生成的随机数据通过了统计测试。

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