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Cognitive Architecture Based Platform on Human Performance Evaluation for Space Manual Control Task

机译:基于认知体系结构的空间手动控制任务人力绩效评估平台

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Based on ACT-R cognitive architecture, the paper proposes an integrated research and development platform to investigate astronaut's cognitive behavior. By applying this platform, astronaut's cognitive behavior model can be bui by abstracting the parameter of astronaut's behavior, cognition and special task, the characteristic of astronaut's cognitive processing can be analyzed; by software emulation technics, the astronaut's cognition and behavior simulation platform is constructed, and the astronaut's performance for special spaceflight task can be evaluated. As a study case, spacecraft manual control rendezvous and docking (RvD) task is chosen to investigate influential factors on human performance. The results show that, both the model's simulating cognitive process and model's running result are consistent with real situation, and the model's specific parameter can map certain cognitive characteristic.
机译:根据ACT-R认知架构,本文提出了一个综合的研发平台来调查宇航员的认知行为。 通过应用这个平台,可以建立宇航员的认知行为模型; 通过抽象宇航员的行为,认知和特殊任务的参数,可以分析宇航员认知处理的特征; 通过软件仿真技术,构建了宇航员的认知和行为仿真平台,可以评估宇航员对特殊航天功能的性能。 作为一项研究案例,选择航天器手动控制会合和对接(RVD)任务,以调查人类性能的影响因素。 结果表明,模型的模拟认知过程和模型的运行结果与实际情况一致,模型的特定参数可以映射某些认知特性。

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