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首页> 外文期刊>International Journal of Quality & Reliability Management >Cold standby renewal process integrated with environmental factor effects for reliability evaluation of multiple autonomous robot system
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Cold standby renewal process integrated with environmental factor effects for reliability evaluation of multiple autonomous robot system

机译:冷备份续订过程与环境因子效应集成,对多个自治机器人系统的可靠性评估

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摘要

Purpose - The purpose of this paper is to estimate the required number of robots consisting of some non-repairable components, by employing a renewal model. Considering the importance of the availability of standby autonomous robots for reducing and preventing down-times of advanced production systems, which imposes a considerable loss, the present research tries to introduce a practical model for the determination of the required number of autonomous robots.Design/methodology/approach - Most of the available research on the estimation of the required standby components based on the reliability characteristics of components has not considered the environmental factors influencing the reliability characteristics. Therefore, such estimations are not accurate enough. In contrast, this paper focuses on the influence of the environmental and human factors (e.g. the operators' skill) on the robot reliability characteristics.Findings - A model based on the Weibull renewal process combined with the cold standby strategy is developed for reliability evaluation of the system. The effectiveness of the proposed integrated reliability evaluation model is worked out in some cases.Originality/value - Determining a required number of robots is an important issue in availability and utilization of a complex robotic production system. In an advanced production system, while the estimation process of a required number of robots can be performed through different approaches, one of the realistic estimation methods is based on the system's reliability that takes into consideration the system operating environment. To forecast the required number of robots for an existing production system, in some cases, the assumption of a constant failure rate does not differ much from the assumption of a non-constant failure rate and can be made with an acceptable error.
机译:目的 - 本文的目的是通过采用更新模型来估算由一些不可修复组件组成的所需的机器人数量。考虑到待机自主机器人可用性的重要性减少和预防先进生产系统的逆时,这对目前的研究试图介绍确定所需数量的自主robots.design/方法/方法 - 基于组件可靠性特性估计所需备用组件的大多数可用研究尚未考虑影响可靠性特性的环境因素。因此,这种估计不够准确。相比之下,本文侧重于环境和人为因素的影响(例如,运营商的技能)对机器人可靠性特征。专用 - 基于Weibull更新过程的模型结合了冷备策略,用于可靠性评估系统。在某些情况下,建议的综合可靠性评估模型的有效性在某些情况下进行了效果。 - 确定所需数量的机器人是复杂机器人生产系统的可用性和利用率的重要问题。在先进的生产系统中,虽然可以通过不同方法执行所需数量的机器人的估计过程,但是一个现实估计方法是基于系统的可靠性,考虑到系统操作环境。为了预测现有生产系统所需的机器人数量,在某些情况下,恒定故障率的假设不会因非恒定故障率的假设而不同,并且可以用可接受的误差进行。

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