Burns Catherine M, Skraaning Gyrd, Jamieson Greg A, Lau Nathan, Kwok Jordanna, Welch Robin, Andresen Gisle
Systems Design Engineering, University of Waterloo, Waterloo, ON, Canada.
Hum Factors. 2008 Aug;50(4):663-79. doi: 10.1518/001872008X312305.
We determine whether an ecological interface display for nuclear power plant operations supports improved situation awareness over traditional and user-centered displays in a realistic environment.
Ecological interface design (EID) has not yet been fully evaluated with real operators facing realistic scenarios.
Ecological displays were evaluated alongside traditional and user-centered "advanced" displays in a full-scope nuclear power plant simulation. Licensed plant operators used the displays in realistic scenarios that either had procedural support or did not have procedural support. All three displays were evaluated for their ability to support operator situation awareness.
A significant three-way interaction effect was observed on two independent measures of situation awareness. For both measures, ecological displays improved situation awareness in scenarios that did not have procedural support, primarily in the detection phases of those scenarios. No other pronounced effects appeared across both measures.
The observed improvement was sufficiently large to suggest that EID could improve situation awareness in situations where procedures are unavailable. However, the EID displays did not lead to improved situation awareness in the other conditions of the evaluation, and participants using these displays occasionally underperformed on single measures of situation awareness. This suggests that the approach requires further development, particularly in integrating EID with procedural support.
This research has important findings for the ongoing development of the EID approach, the design of industrial operator displays, and design to support situation awareness.
我们要确定核电站运行的生态界面显示在现实环境中是否比传统的和以用户为中心的显示更能提高态势感知能力。
生态界面设计(EID)尚未在面对现实场景的实际操作人员中得到充分评估。
在全范围核电站模拟中,将生态显示与传统的和以用户为中心的“先进”显示一起进行评估。持照的核电站操作人员在有程序支持或无程序支持的现实场景中使用这些显示。对所有三种显示支持操作人员态势感知的能力进行评估。
在态势感知的两项独立测量中观察到显著的三向交互效应。对于这两项测量,生态显示在没有程序支持的场景中提高了态势感知能力,主要是在这些场景的检测阶段。在这两项测量中均未出现其他明显影响。
观察到的改进足够大,表明生态界面设计在没有程序可用的情况下可以提高态势感知能力。然而,生态界面设计显示在评估的其他条件下并未提高态势感知能力,并且使用这些显示的参与者在态势感知的单项测量中偶尔表现不佳。这表明该方法需要进一步发展,特别是在将生态界面设计与程序支持相结合方面。
这项研究对于生态界面设计方法的持续发展、工业操作员显示的设计以及支持态势感知的设计具有重要发现。