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A formulation of computational trust based on quantum decision theory

机译:基于量子决策理论的计算信任公式

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In this paper, we propose a new formulation of computational trust based on quantum decision theory (QDT). By using this new formulation, we can divide the assigned trustworthiness values to objective and subjective parts. First, we create a mapping between the QDT definitions and the trustworthiness constructions. Then, we demonstrate that it is possible for the quantum interference terms to appear in the trust decision making process. By using the interference terms, we can quantify the emotions and subjective preferences of the trustor in various contexts with different amounts of uncertainty and risk. The non-commutative nature of quantum probabilities is a valuable mathematical tool to model the relative nature of trust. In relative trust models, the evaluation of a trustee candidate is not only dependent on the trustee itself, but on the other existing competitors. In other words, the first evaluation is performed in an isolated context whereas the rest of the evaluations are performed in a comparative one. It is shown that a QDT-based model of trust can account for these order effects in the trust decision making process. Finally, based on the principles of risk and uncertainty aversion, interference alternation theorem and interference quarter law, quantitative values are assigned to interference terms. By performing empirical evaluations, we have demonstrated that various scenarios can be better explained by a quantum model of trust rather than the commonly used classical models.
机译:在本文中,我们提出了一种基于量子决策理论(QDT)的计算信任的新公式。通过使用这种新公式,我们可以将分配的可信度值划分为客观和主观部分。首先,我们在QDT定义和可信赖性构造之间创建映射。然后,我们证明了量子干扰项可能出现在信任决策过程中。通过使用干扰项,我们可以量化在各种情况下具有不同不确定性和风险的委托人的情绪和主观偏好。量子概率的非交换性质是对信任的相对性质进行建模的有价值的数学工具。在相对信任模型中,对受托人候选人的评估不仅取决于受托人本身,还取决于其他现有竞争对手。换句话说,第一次评估是在孤立的环境中执行的,而其余的评估则是在比较中进行的。结果表明,基于QDT的信任模型可以解决信任决策过程中的这些顺序影响。最后,根据风险和不确定性规避,干扰交替定理和干扰四分之一定律的原理,将定量值分配给干扰项。通过执行经验评估,我们已经证明,可以通过信任的量子模型而不是常用的经典模型更好地解释各种情况。

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