Towards a next-generation production system for industrial robots: A CPS-based hybrid architecture f

来源 :机械工程前沿 | 被引量 : 0次 | 上传用户:willamshao520
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Given the multiple varieties and small batches,the production of industrial robots faces the ongoing challenges of flexibility,self-organization,self-configuration,and other smart requirements.Recently,cyber physical systems have provided a promising solution for the requirements mentioned above.Despite recent progress,some critical issues have not been fully addressed at the shop floor level,including dynamic reorganization and reconfiguration,ubiquitous networking,and time constrained computing.Toward the next generation production system for industrial robots,this study proposed a hybrid architecture for smart assembly shop floors with closed-loop dynamic cyber physical interactions.Aiming for dynamic reorganization and reconfiguration,the study also proposed modularized smart assembly units for the deployment of physical assembly processes.Enabling technologies,such as multiagent system (MAS),selforganized wireless sensor actuator networks,and edge computing,were discussed and then integrated into the proposed architecture.Furthermore,a multijoint robot assembly process was selected as a target scenario.Thus,an MAS was developed to simulate the coordination and negotiation mechanisms for the proposed architecture on the basis of the Java Agent Development Framework platform.
其他文献
磁性和铁电性对许多现代技术起着非常重要的作用,对磁电耦合效应,即多铁性材料的探索,越来越引起人们的兴趣。在非共线螺旋自旋有序系统中,铁电和磁有序耦合效应可以用Dzyaloshin
随着废旧轮胎对环境造成的影响以及能源与资源短缺的日益严重,废旧轮胎资源化的应用研究引起了人们广泛的关注,本文利用自行研制的间歇式热解反应器,对废旧轮胎热解资源化过程进
基于陶瓷透氧膜的新型02/C02燃烧技术给透氧膜材料的应用开辟了一个广阔的应用前景,该技术相比其他的C02吸收、回收方法,具有成本低、能量损失小、C02捕获完全、NOx排放量低等
学位
科学地预测新型冠状病毒肺炎疫情发展趋势对疫情防控至关重要.本文对中国疾病预防控制中心(CCDC)发布[1]的数据进行了分析,给出了关于新型冠状病毒肺炎的一些可能的统计模型:
压电陶瓷是一类广泛应用于电子领域的高技术功能材料,在国民经济和国防工业中发挥着重要的作用。随着技术的进步,电子元器件朝着高温高频领域发展,这对压电陶瓷提出了新的要
学位
本文通过对荣华二采区10
期刊
Exploring a new tuning way to facilely realize single-band red emission in trivalent rare-earth ions (RE3+) doped upconversion (UC) materials is still desirable
水源水的污染和饮用水标准的提高促进了饮用水净化工艺的发展,常规处理工艺已经不能保证良好的出水水质。为了经济、有效去除消毒副产物前驱物,保障饮用水的水质安全,本文以微污
学位
以能量密度高、性能优良和价格低廉的单质硫作为正极材料的锂硫二次电池,近年来得到了广泛关注。但由于单质硫的绝缘特性,以及其放电过程中多硫化物的高溶解性等因素阻碍了锂
学位