人为因素如何缩小性别数据差距?

IF 2.2 3区 工程技术 Q3 ENGINEERING, MANUFACTURING
Katie J. Parnell, Katherine L. Plant
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引用次数: 0

摘要

这篇评论文章将描述人为因素和人体工程学(HFE)学科如何帮助缩小性别数据差距,这在许多领域都很普遍,并且由于缺乏捕获女性指标和观点的数据而产生。HFE是一门独立于领域的学科,旨在了解人类参与的互动和他们所居住的环境中人类的表现和福祉。因此,HFE提供了一个了解性别如何影响人类表现、有效设计、社会互动和环境因素的机会。本文认为,在审查平等、多样性和包容性问题时,社会技术系统方法是必不可少的,没有社会技术系统方法,弥合性别数据差距的努力将远远不够。根据HFE的社会技术系统方法,对系统设计的微观、中观和宏观层面进行了审查,以缩小性别数据差距。我们通过一个碰撞测试假人的案例来讨论这些问题。提出了研究人员的清单方法,其中确定了提示在这些社会技术系统级别的研究过程中应该考虑性别的关键问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

How can human factors close the gender data gap?

How can human factors close the gender data gap?

This commentary paper will describe how the discipline of human factors and ergonomics (HFE) can help to close the gender data gap, which is prevalent across many domains and arises due to a lack of data capturing female metrics and viewpoints. HFE is a domain-independent discipline that seeks to understand human performance and well-being with respect to the interactions that humans engage in and the environments that they inhabit. HFE therefore presents an opportunity to understand how gender influences human performance, effective design, social interactions, and environmental factors. This paper argues that a sociotechnical systems approach is essential when reviewing equality, diversity, and inclusivity issues, without which attempts to close the gender data gap will not go far enough. Following the sociotechnical systems approach in HFE, the micro-, meso-, and macro-levels of system design with respect to closing the gender data gap are reviewed. We discuss these issues in relation to a case study example of a crash test dummy. A checklist approach for researchers is presented, which identifies key questions that prompt where gender should be considered in the research process across these levels of sociotechnical systems.

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来源期刊
CiteScore
5.20
自引率
8.30%
发文量
37
审稿时长
6.0 months
期刊介绍: The purpose of Human Factors and Ergonomics in Manufacturing & Service Industries is to facilitate discovery, integration, and application of scientific knowledge about human aspects of manufacturing, and to provide a forum for worldwide dissemination of such knowledge for its application and benefit to manufacturing industries. The journal covers a broad spectrum of ergonomics and human factors issues with a focus on the design, operation and management of contemporary manufacturing systems, both in the shop floor and office environments, in the quest for manufacturing agility, i.e. enhancement and integration of human skills with hardware performance for improved market competitiveness, management of change, product and process quality, and human-system reliability. The inter- and cross-disciplinary nature of the journal allows for a wide scope of issues relevant to manufacturing system design and engineering, human resource management, social, organizational, safety, and health issues. Examples of specific subject areas of interest include: implementation of advanced manufacturing technology, human aspects of computer-aided design and engineering, work design, compensation and appraisal, selection training and education, labor-management relations, agile manufacturing and virtual companies, human factors in total quality management, prevention of work-related musculoskeletal disorders, ergonomics of workplace, equipment and tool design, ergonomics programs, guides and standards for industry, automation safety and robot systems, human skills development and knowledge enhancing technologies, reliability, and safety and worker health issues.
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