Vu Linh Q, Kim K Han, Rajulu Sudhakar L
Human Factors Engineer, MEI Technologies, Houston, TX, USA.
Senior Human Factors Engineer, Leidos Inc., Houston, TX, USA.
IISE Trans Occup Ergon Hum Factors. 2021 Jul-Dec;9(3-4):134-142. Epub 2021 Oct 4.
OCCUPATIONAL APPLICATIONSBiomechanical risk factors associated with spacesuit manual material handling tasks were evaluated using the singular value decomposition (SVD) technique. SVD analysis decomposed each lifting tasks into primitive motion patterns called eigenposture progression (EP) that contributed to the overall task. Biomechanical metrics, such as total joint displacement, were calculated for each EP. The first EP (a simultaneous knee, hip, and waist movement) had greater biomechanical demands than other EPs. Thus, tasks such as lifting from the floor were identified as "riskier" by having a greater composition of the first EP. The results of this work can be used to improve a task as well as spacesuit design by minimizing riskier movement patterns as shown in this case study. This methodology can be applied in civilian occupational settings to analyze open-ended tasks (e.g., complex product assembly and construction) for ergonomics assessments. Using this method, worker task strategies can be evaluated quantitatively, compared, and redesigned when necessary.
职业应用
采用奇异值分解(SVD)技术评估了与航天服手动物料搬运任务相关的生物力学风险因素。SVD分析将每个提升任务分解为称为特征姿势进展(EP)的原始运动模式,这些模式构成了整个任务。针对每个EP计算生物力学指标,如关节总位移。第一个EP(同时进行膝盖、臀部和腰部运动)比其他EP具有更高的生物力学要求。因此,诸如从地面提起等任务由于第一个EP的组成比例较大而被确定为“风险更高”。如本案例研究所示,这项工作的结果可用于通过最小化风险更高的运动模式来改进任务以及航天服设计。这种方法可应用于民用职业环境,以分析开放式任务(如复杂产品组装和建筑)进行人体工程学评估。使用这种方法,可以对工人的任务策略进行定量评估、比较,并在必要时重新设计。