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Quantification of comprehensive work flow using time-series primitive static states for human-operated work machine

机译:使用时间序列原始静态对人员操作的工作机器进行全面工作流程的量化

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This paper proposes a quantification method for a comprehensive work flow in construction work for describing work states in more detail on the basis of analyzing state transitions of primitive static states (PSS), which consist of 16 symbolic work states defined by using on-off state of the lever operations and joint loads for the manipulator and end-effector. On the basis of the state transition rules derived from a transition-condition analysis, practical state transitions (PST), which are common and frequent transitions in arbitrary construction work, are defined. PST can be classified into essential (EST) or nonessential state transitions (NST). EST extracts common phases of work progress and estimates positional relations between a manipulator and an object. NST reveals wasted movements that degrade the efficiency and quality of work. To evaluate comprehensive work flows modeled by combing EST and NST, work-analysis experiments using our instrumented setup were conducted. Results indicate that all the PSS definitely changes on the basis of PST under various work conditions, and work analysis using EST and NST easily reveals work characteristics and untrained tasks related to wasted movements.
机译:本文在分析原始静态状态转换的基础上,提出了一种用于建筑工程中全面工作流程的量化方法,以更详细地描述工作状态,该状态转换包括通过使用开关状态定义的16个符号工作状态。机械手和末端执行器的杠杆操作和关节负载。根据从过渡条件分析得出的状态过渡规则,定义了实际状态过渡(PST),这是任意建筑工作中常见的和频繁的过渡。 PST可以分为基本(EST)或非必要状态转换(NST)。 EST提取工作进度的常见阶段,并估计机械手和对象之间的位置关系。 NST揭示了浪费的动作,这些动作降低了工作效率和质量。为了评估通过结合EST和NST建模的综合工作流程,使用我们的仪器设置进行了工作分析实验。结果表明,在各种工作条件下,所有PSS均会在PST的基础上发生绝对变化,并且使用EST和NST进行的工作分析很容易揭示出工作特征以及与浪费的运动有关的未经培训的任务。

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