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A Polynomial-Time Algorithm for Solving a Class of Underdetermined Multivariate Quadratic Equations over Fields of Odd Characteristics

机译:一种求解奇数特征领域的一类未确定多变量二次方程的多项式 - 时间算法

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Following up a series of works by Kipnis-Patarin-Goubin, Oourtois-(;oubin-Meier-Tacier, and Thomae-Wolf, in PQCrypto 2013 Miura, Hashimoto, and Takagi proposed an efficient algorithm for solving a class of underdetermined multivariate quadratic equations. Their algorithm does not use any generic Grobner-basis solving techniques and asymptotically requires the least degree of underdeterminedness among all similar algorithms in the current literature. Building on top of their work, in this paper we focus on solving polynomially underdetermined multivariate quadratic equations over fields of odd characteristics. We show that we can further improve the applicable range of the Miura-Hashimoto-Takagi algorithm essentially for free. Furthermore, we show how to allow a. certain degree of trade-off between applicable range and running time. Last but not least, we show that the running time of the improved algorithm is actually polynomial in number of equations and variables. To the best of our knowledge, this is the first result showing that this class of polynomially underdetermined multivariate quadratic equations over fields of odd characteristics can be solved in polynomial time.
机译:通过Kipnis-Patarin-Goubin,Oourois - (; Oubin-Meier-Tacier,和Thomae-Wolf,PQCrypto 2013,Hashimoto和Takagi的一系列作品提出了一种求解一类未确定的多变量二次方程式的有效算法。它们的算法不使用任何通用的Grobner基础求解技术,并且渐近地需要当前文献中所有类似算法中的最小程度的未定程度。在他们的工作之上,在本文中,我们专注于求解多项式的多变量二次方程奇数特征的领域。我们展示我们可以进一步为免费改善Miura-Hashimoto-Takagi算法的适用范围。此外,我们展示了如何允许A.适用范围和运行时间之间的某些程度的权衡。最后但并非最不重要的是,我们表明改进算法的运行时间实际上是方程数和变量的多项式。据我们所知知识,这是第一个结果,表明在多项式时间中可以求解在奇数特征领域的这类多项多变量多变量二次方程。

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