Entropy (May 2022)

Transition Probability Test for an RO-Based Generator and the Relevance between the Randomness and the Number of ROs

  • Yuta Kodera,
  • Ryoichi Sato,
  • Md. Arshad Ali,
  • Takuya Kusaka,
  • Yasuyuki Nogami

DOI
https://doi.org/10.3390/e24060780
Journal volume & issue
Vol. 24, no. 6
p. 780

Abstract

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A ring oscillator is a well-known circuit used for generating random numbers, and interested readers can find many research results concerning the evaluation of the randomness with a packaged test suit. However, the authors think there is room for evaluating the unpredictability of a sequence from another viewpoint. In this paper, the authors focus on Wold’s RO-based generator and propose a statistical test to numerically evaluate the randomness of the RO-based generator. The test adopts the state transition probabilities in a Markov process and is designed to check the uniformity of the probabilities based on hypothesis testing. As a result, it is found that the RO-based generator yields a biased output from the viewpoint of the transition probability if the number of ROs is small. More precisely, the transitions 01→01 and 11→11 happen frequently when the number l of ROs is less than or equal to 10. In this sense, l>10 is recommended for use in any application, though a packaged test suit is passed. Thus, the authors believe that the proposed test contributes to evaluating the unpredictability of a sequence when used together with available statistical test suits, such as NIST SP800-22.

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