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A Sound and Complete Axiomatization of Majority- Logic

机译:健全而完整的多数公理化-逻辑

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Manipulating logic functions via majority operators recently drew the attention of researchers in computer science. For example, circuit optimization based on majority operators enables superior results as compared to traditional synthesis tools. Also, the Boolean satisfiability problem finds new solution approaches when described in terms of majority decisions. To support computer logic applications based on majority, a sound and complete set of axioms is required. Most of the recent advances in majority logic deal only with ternary majority (MAJ-3) operators because the axiomatization with solely MAJ-3 and complementation operators is well understood. However, it is of interest extending such axiomatization to -ary majority operators (MAJ- ) from both the theoretical and practical perspective. In this work, we address this issue by introducing a sound and complete axiomatization of MAJ- logic. Our axiomatization naturally includes existing MAJ-3 and MAJ-5 axiomatic systems. Based on this general set of axioms, computer applications can now fully exploit the expressive power of majority logic.
机译:通过多数运算符来操纵逻辑功能最近引起了计算机科学研究人员的关注。例如,与传统的综合工具相比,基于多数算子的电路优化可实现出色的结果。同样,布尔值可满足性问题在以多数决定的方式描述时找到了新的解决方案。为了支持基于多数的计算机逻辑应用程序,需要一套完善且完整的公理。多数逻辑最近的最新进展仅涉及三元多数(MAJ-3)运算符,因为仅使用MAJ-3和补码运算符进行公理化已广为人知。然而,从理论和实践的角度来看,将这样的公理化扩展到一元多数操作员(MAJ-)是令人感兴趣的。在这项工作中,我们通过引入合理且完整的MAJ逻辑公理化解决此问题。我们的公理化自然包括现有的MAJ-3和MAJ-5公理系统。基于此一般公理,计算机应用程序现在可以充分利用多数逻辑的表达能力。

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