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最少的仪器设备可能会影响通过生态界面进行的故障诊断。

Minimal instrumentation may compromise failure diagnosis with an ecological interface.

作者信息

Reising Dal Vernon C, Sanderson Penelope M

机构信息

University of Illinois at Urbana-Champaign, Urbana, Illinois, USA.

出版信息

Hum Factors. 2004 Summer;46(2):316-33. doi: 10.1518/hfes.46.2.316.37338.

Abstract

Interfaces designed according to ecological interface design (EID) display higher-order relations and properties of a work domain so that adaptive operator problem solving can be better supported under unanticipated system conditions. Previous empirical studies of EID have assumed that the raw data required to derive and communicate higher-order information would be available and reliable. The present research examines the relative advantages of an EID interface over a conventional piping-and-instrumentation diagram (PID) when instrumentation is maximally or only minimally adequate. Results show an interaction between interface and the adequacy of the instrumentation. Failure diagnosis performance with the EID interface with maximally adequate instrumentation is best overall. Performance with the EID interface drops more drastically from maximally to minimally adequate instrumentation than does performance with the PID interface, to the point where the EID interface with minimally adequate instrumentation supports nonsignificantly worse performance than does the equivalent PID interface. Actual or potential applications of this research include design of instrumentation and displays for complex industrial processes.

摘要

根据生态界面设计(EID)设计的界面会显示工作领域的高阶关系和属性,以便在意外的系统条件下能更好地支持自适应操作员解决问题。先前关于EID的实证研究假定,用于推导和传达高阶信息所需的原始数据是可用且可靠的。本研究考察了在仪表设备最大程度充足或仅最低程度充足时,EID界面相对于传统管道和仪表流程图(PID)的相对优势。结果显示界面与仪表设备充足程度之间存在交互作用。在仪表设备最大程度充足的情况下,使用EID界面进行故障诊断的总体性能最佳。与PID界面相比,从最大程度充足到最低程度充足的仪表设备,EID界面的性能下降幅度更大,以至于在仪表设备最低程度充足时,EID界面所支持的性能与同等PID界面相比,差异不显著。本研究的实际或潜在应用包括复杂工业过程的仪表设备和显示设计。

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