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Evolution of Quantum-like Modeling in Decision Making Processes

机译:决策过程中量子型建模的演变

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The application of the mathematical formalism of quantum mechanics to model behavioral patterns in social science and economics is a novel and constantly emerging field. The aim of the so called 'quantum like' models is to model the decision making processes in a macroscopic setting, capturing the particular 'context' in which the decisions are taken. Several subsequent empirical findings proved that when making a decision people tend to violate the axioms of expected utility theory and Savage's Sure Thing principle, thus violating the law of total probability. A quantum probability formula was devised to describe more accurately the decision making processes. A next step in the development of QL-modeling in decision making was the application of Schrodinger equation to describe the evolution of people's mental states. A shortcoming of Schrodinger equation is its inability to capture dynamics of an open system; the brain of the decision maker can be regarded as such, actively interacting with the external environment. Recently the master equation, by which quantum physics describes the process of decoherence as the result of interaction of the mental state with the environmental 'bath', was introduced for modeling the human decision making. The external environment and memory can be referred to as a complex 'context' influencing the final decision outcomes. The master equation can be considered as a pioneering and promising apparatus for modeling the dynamics of decision making in different contexts.
机译:量子力学数学形式主义在社会科学与经济学模范行为模式的应用是一种新颖且不断的新兴领域。所谓的“Quantum like”模型的目的是在宏观设置中模拟决策过程,捕获所拍摄决策的特定“上下文”。几个后续的经验结果证明,在做出决定时,人们倾向于违反预期效用理论和野蛮的原则的原则,因此违反了总概率的法律。设计了量子概率公式,以更准确地描述决策过程。在决策中发展QL建模的下一步是Schrodinger方程描述人们精神状态的演变。 Schrodinger方程的缺点是它无法捕获开放系统的动态;决策者的大脑可以视为这样,积极与外部环境互动。最近,母版物理学描述了作为对环境“浴室”与环境“浴的相互作用的结果描述了变形过程的过程,以建立人为决策。外部环境和内存可以称为影响最终决策结果的复杂的“上下文”。主等式可以被认为是用于在不同背景下建模决策制定的动态的开创性和有希望的装置。

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