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Designing for Adaptation to Novelty and Change: Functional Information, Emergent Feature Graphics, and Higher-Level Control

机译:适应新颖性和变化的设计:功能信息,新兴特征图形和更高级别的控制

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摘要

Ecological interface design (EID) is a theoretical framework that aims to support worker adaptation to change and novelty in complex systems. Previous evaluations of EID have emphasized representativeness to enhance generalizability of results to operational settings. The research presented here is complementary, emphasizing experimental control to enhance theory building. Two experiments were conducted to test the impact of functional information and emergent feature graphics on adaptation to novelty and change in a thermal-hydraulic process control micro-world. Presenting functional information in an interface using emergent features encouraged experienced participants to become perceptually coupled to the interface and thereby to exhibit higher-level control and more successful adaptation to unanticipated events. The absence of functional information or of emergent features generally led to lower-level control and less success at adaptation, the exception being a minority of participants who compensated by relying on analytical reasoning. These findings may have practical implications for shaping coordination in complex systems and fundamental implications for the development of a general unified theory of coordination for the technical, human, and social sciences. Actual or potential applications of this research include the design of human-computer interfaces that improve safety in complex sociotechnical systems.
机译:生态界面设计(EID)是一个理论框架,旨在支持工人适应复杂系统中的变化和新颖性。先前对EID的评估强调了代表性,以增强结果对操作环境的通用性。这里提出的研究是相辅相成的,强调通过实验控制来增强理论构建。进行了两个实验,以测试功能信息和紧急特征图形对热工过程控制微型世界中新颖性和变化的适应性。使用紧急功能在界面中显示功能信息会鼓励有经验的参与者在感知上与界面耦合,从而表现出更高级别的控制力以及对意外事件的更成功适应。缺少功能性信息或新兴特征通常会导致较低级别的控制,并且在适应方面的成功率较低,但少数参与者依靠分析推理来弥补这一不足。这些发现可能对在复杂系统中形成协调具有实际意义,并且对技术,人文和社会科学的通用统一协调理论的发展也具有根本意义。这项研究的实际或潜在应用包括人机界面设计,以提高复杂社会技术系统的安全性。

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