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Ergonomic DHM systems - limitations and trends – a systematic literature review focused on the ‘future of ergonomics’

机译:符合人体工程学的DHM系统-局限性和趋势-一份针对“人体工程学的未来”的系统文献综述

摘要

Digital Human Models (DHM) have been used for over 25 years. They have evolved from simple drawing templates, which are nowadays still used in architecture, to complex and Computer Aided Engineering (CAE) integrated design and analysis tools for various ergonomic tasks. DHM are most frequently used for applications in product design and production planning, with many successful implementations documented. DHM from other domains, as for example computer user interfaces, artificial intelligence, training and education, or the entertainment industry show that there is also an ongoing development towards a comprehensive understanding and holistic modeling of human behavior. While the development of DHM for the game sector has seen significant progress in recent years, advances of DHM in the area of ergonomics have been comparatively modest. As a consequence, we need to question if current DHM systems are fit for the design of future mobile work systems. So far it appears that DHM in Ergonomics are rather limited to some traditional applications. According to Dul et al. (2012), future characteristics of Human Factors and Ergonomics (HFE) can be assigned to six main trends: udud(1) global change of work systems, ud(2) cultural diversity, ud(3) ageing, ud(4) information and communication technology (ICT), ud(5) enhanced competiveness and the need for innovation, and; ud(6) sustainability and corporate social responsibility. ud udBased on a literature review, we systematically investigate the capabilities of current ergonomic DHM systems versus the ‘Future of Ergonomics’ requirements. ududIt is found that DHMs already provide broad functionality in support of trends (1) and (2), and more limited options in regards to trend (3). Today’s DHM provide access to a broad range of national and international databases for correct differentiation and characterization of anthropometry for global populations. Some DHM explicitly address social and cultural modeling of groups of people. In comparison, the trends of growing importance of ICT (4), the need for innovation (5) and sustainability (6) are addressed primarily from a hardware-oriented and engineering perspective and not reflected in DHM. This reflects a persistent separation between hardware design (engineering) and software design (information technology) in the view of DHM – a disconnection which needs to be urgently overcome in the era of software defined user interfaces and mobile devices. ududThe design of a mobile ICT-device is discussed to exemplify the need for a comprehensive future DHM solution. Designing such mobile devices requires an approach that includes organizational aspects as well as technical and cognitive ergonomics. Multiple interrelationships between the different aspects result in a challenging setting for future DHM. ududIn conclusion, the ‘Future of Ergonomics’ pose particular challenges for DHM in regards to the design of mobile work systems, and moreover mobile information access.
机译:数字人体模型(DHM)已使用25年以上。它们已经从当今仍在建筑中使用的简单绘图模板演变为用于各种人体工程学任务的复杂的计算机辅助工程(CAE)集成设计和分析工具。 DHM最常用于产品设计和生产计划中的应用,并记录了许多成功的实现。来自其他领域的DHM(例如计算机用户界面,人工智能,培训和教育或娱乐行业)表明,朝着对人类行为的全面理解和整体建模也正在不断发展。尽管近年来用于游戏领域的DHM的发展取得了长足的进步,但DHM在人体工程学领域的进步相对较弱。结果,我们需要质疑当前的DHM系统是否适合未来的移动工作系统的设计。到目前为止,似乎人体工程学中的DHM仅限于某些传统应用。据杜尔等。 (2012),人为因素和人机工程学(HFE)的未来特征可以归结为六个主要趋势: ud ud(1)全球工作系统变化, ud(2)文化多样性, ud(3)老龄化, ud(4)信息和通信技术(ICT), ud(5)增强了竞争力和创新需求,并且; ud(6)可持续性与企业社会责任。 ud ud基于文献综述,我们系统地研究了当前符合人体工程学的DHM系统的功能与“人体工程学的未来”要求。 ud ud发现DHM已经提供了广泛的功能来支持趋势(1)和(2),并且在趋势(3)方面的选择更为有限。如今的DHM可访问广泛的国家和国际数据库,以正确区分和表征全球人群的人体测量学。一些DHM明确处理了人群的社会和文化建模。相比之下,ICT(4),创新(5)和可持续性(6)的重要性日益增长的趋势主要是从面向硬件和工程的角度来解决的,而并未反映在DHM中。从DHM的角度来看,这反映了硬件设计(工程)和软件设计(信息技术)之间的持续分离–在软件定义的用户界面和移动设备时代迫切需要克服这种分离。 ud ud讨论了移动ICT设备的设计,以例证对未来全面DHM解决方案的需求。设计这样的移动设备需要一种方法,该方法包括组织方面以及技术和认知人体工程学。不同方面之间的多个相互关系为将来的DHM带来了挑战。 ud ud总之,“人机工程学的未来”对于DHM在移动工作系统的设计以及移动信息访问方面提出了特殊的挑战。

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