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Relative Generic Computational Forensic Techniques

机译:相对通用计算法医技术

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Computational forensic engineering is the process of identification of the tool or algorithm that was used to produce a particular output or solution by examining the structural properties of the output. We introduce a new Relative Generic Forensic Engineering (RGFE) technique that has several advantages over the previously proposed approaches. The new RGFE technique not only performs more accurate identification of the tool used but also provides the identification with a level of confidence. Additionally, we introduce a generic formulation (integer linear programming formulation) which enables rapid application of the RGFE approach to a variety of problems that can be formulated as 0-1 integer linear programs. The key innovations of the RGFE technique include the development of a simulated annealing-based (SA) CART classification technique and a generic property formulation technique that facilitates property reuse. We introduce instance properties which enable an enhanced classification of problem instances leading to a higher accuracy of algorithm identification. Finally, the single most important innovation, property calibration, interprets the value for a given algorithm for a given property relative to the values for other algorithms. We demonstrated the effectiveness of the RGFE technique on the boolean satisfiability (SAT) and graph coloring (GC) problems.
机译:计算法医工程是通过检查输出的结构特性来产生特定输出或解决方案的工具或算法的识别过程。我们介绍了一种新的相对通用法医学工程(RGFE)技术,具有通过先前提出的方法的若干优点。新的RGFE技术不仅执行更准确的识别所用的工具,而且还提供了具有置信水平的识别。此外,我们介绍了一种通用配方(整数线性编程配方),其能够快速应用RGFE方法可以将各种问题的方法置于0-1整数线性程序。 RGFE技术的关键创新包括开发模拟的退火(SA)推车分类技术和促进财产重用的通用性质配方技术。我们介绍了实例属性,该属性使得能够增强的问题实例分类,导致算法识别的更高精度。最后,单一最重要的创新,属性校准,对给定属性的给定属性的值算法相对于其他算法的值来解释。我们展示了RGFE技术对布尔满足性(SAT)和图形着色(GC)问题的有效性。

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