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Validation of the impact of architectural flaws in six machine risk estimation tools

机译:验证建筑缺陷在六台机器风险估算工具中的影响

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摘要

To address the hazards inherent in industrial machinery, machine designers and users must conduct risk assessments and use risk reduction measures. Machine risk estimation plays a crucial role in choosing and prioritizing risk reduction methods (e.g., level of performance required for the safety-related control system). A large number of machine risk estimation tools exist, and each tool has its own specific parameters and architecture. Flaws in a tool may bias risk estimation and lead to the adoption of inappropriate or insufficient risk reduction methods. An earlier study identified potential flaws in risk estimation tool parameters and architecture and proposed construction rules. In this paper, potential flaws in the architecture of six tools are tested by 25 machine safety experts. Four scenarios involving industrial machines and representing different risk levels were used for that purpose. The experimentation served to validate the potential flaws which were the impact of (i) a non-uniform distribution of risk levels, (ii) greater relative weight given to one parameter, (iii) discontinuity in risk levels and (iv) an overly sensitive risk matrix. Construction rules for machine risk estimation tools that should help improve inter- and intra-user repeatability, making the tools more reliable and robust, are proposed. The recommendations can potentially guide users of risk estimation tools when choosing, designing or using a tool. The results of this study will also help improve national and international standards in machinery risk assessment.
机译:为解决工业机械中固有的危险,机器设计师和用户必须进行风险评估并使用风险降低措施。机器风险估计在选择和优先考虑风险减少方法(例如,安全相关控制系统所需的性能水平)中起着至关重要的作用。存在大量机器风险估计工具,每个工具都有自己的特定参数和架构。工具中的缺陷可能偏离风险估计并导致采用不适当或不足的风险降低方法。早期的研究确定了风险估算工具参数和架构中的潜在缺陷以及建议的建设规则。本文通过25台机器安全专家测试了六种工具架构中的潜在缺陷。涉及工业机器并代表不同风险水平的四种情况用于此目的。实验部用于验证潜在的缺陷,这是(i)风险水平的不均匀分布的潜在缺陷,(ii)给予一个参数的相对重量,(iii)风险水平的不连续性和(iv)过度敏感风险矩阵。建设机器风险估算工具规则,应该有助于提高用户间的可重复性,使工具更可靠和强大。在选择,设计或使用工具时,该建议可能会引导风险估算工具的用户。本研究的结果还将有助于提高机械风险评估中的国家和国际标准。

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