School of Business, Wenzhou University, Wenzhou 325035, China.
Comput Intell Neurosci. 2022 Apr 26;2022:8584888. doi: 10.1155/2022/8584888. eCollection 2022.
The increasing use of smart machines and devices is not only changing production principles but also reshaping the value of cocreation logic. The interaction between human and smart machine is the enabler of generating augmented intelligence. A system dynamics model is abstracted from smart manufacturing practices to represent the evolutionary processes of inertia, capability, and reliability induced by human-machine interaction. Human-machine interaction is conceptualized into two dimensions: technical and cognitive interaction. Simulation experiments illustrate how the improvement of human-machine interaction can leverage the dynamic capability and reduce the inertia in enterprises through multiple nonlinear feedbacks. There are two pathways to improve reliability and performance in enterprises by human-machine interaction: (1) to promote initiative innovation (change) from endogenous enabler by improving dynamic capability and (2) to promote transformation of knowledge and variation triggered by exogenous environmental changes to improve the dynamic capability for the flexibility and reliability.
智能机器和设备的使用日益增多,不仅改变了生产原则,还重塑了共创逻辑的价值。人机交互是产生增强智能的推动者。本文从智能制造实践中抽象出一个系统动力学模型,以表示人机交互引起的惯性、能力和可靠性的演变过程。人机交互被概念化为技术和认知交互两个维度。仿真实验说明了通过多种非线性反馈,如何通过改善人机交互来提高企业的动态能力并减少惯性。人机交互可以通过两种途径来提高企业的可靠性和绩效:(1)通过提高动态能力,从内生推动者主动创新(改变);(2)通过促进外部环境变化引发的知识和变化的转化,提高灵活性和可靠性的动态能力。