摘要
针对作战无人机系统中存在的认知工程问题进行了深入研究,总结了当前国内外最新研究动态,建立了地面控制系统设计的多学科优化概念模型,在综合分析相关的人的因素及若干关键技术的基础上,提出了系统面向任务的认知工程综合模型框架。
The issues in dealing with the human/system interface (HSI) for uninhabited combat air vehicle (UCAV) system are complex, varied and difficult to solve, so that no mature theory has been found presently. The purpose of our study is to employ the cognitive engineering methodology to analyze and tackle the relative problems, such as multi-agent dynamic function allocation (DFA), workload matching and situation awareness (SA), etc. We brought forward a concept model of the multidisciplinary design optimization (MDO) of the ground control system (GCS), and built an integrated framework model of cognitive engineering to meet the requirements of the UCAV system for the suppression of enemy air defense (SEAD) mission. It is shown that the cognitive-engineering-based technique can be helpful for matching relations of complicated factors in design process of the UCAV system.
出处
《西北工业大学学报》
EI
CAS
CSCD
北大核心
2005年第2期176-179,共4页
Journal of Northwestern Polytechnical University
关键词
作战无人机
认知工程
人的因素
地面控制系统
Cognitive systems
Control systems
Design
Dynamics
Functions
Mathematical models
Multi agent systems
Optimization
Relativity
Requirements engineering