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首页> 外文期刊>Journal of network and computer applications >Hybrid ToF and RSSI real-time semantic tracking with an adaptive industrial internet of things architecture
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Hybrid ToF and RSSI real-time semantic tracking with an adaptive industrial internet of things architecture

机译:具有自适应工业物联网架构的混合ToF和RSSI实时语义跟踪

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摘要

Real-time asset tracking in indoor mass production manufacturing environments can reduce losses associated with pausing a production line to locate an asset. Complemented by monitored contextual information, e.g. machine power usage, it can provide smart information, such as which components have been machined by a worn or damaged tool. Although sensor based Internet of Things (IoT) positioning has been developed, there are still key challenges when benchmarked approaches concentrate on precision, using computationally expensive filtering and iterative statistical or heuristic algorithms, as a trade-off for timeliness and scalability. Precise but high-cost hardware systems and invasive infrastructures of wired devices also pose implementation issues in the Industrial IoT (IIoT). Wireless, self-powered sensors are integrated in this paper, using a novel, communication economical RSSI/ToF ranging method in a proposed semantic IIoT architecture. Annotated data collection ensures accessibility, scalable knowledge discovery and flexibility to changes in consumer and business requirements. Deployed at a working indoor industrial facility the system demonstrated comparable RMS ranging accuracy (ToF 6 m and RSSI 5.1 m with 40 m range) to existing systems tested in non-industrial environments and a 12.6-13.8 m mean positioning accuracy.
机译:室内大规模生产环境中的实时资产跟踪可以减少与暂停生产线来定位资产相关的损失。辅以受监控的上下文信息,例如机器电源使用情况,它可以提供智能信息,例如哪些零件是由磨损或损坏的工具加工而成的。尽管已经开发了基于传感器的物联网(IoT)定位,但是当基准测试方法集中在精度上时,仍然存在关键挑战,这些方法使用计算成本高昂的过滤和迭代统计或启发式算法来权衡及时性和可伸缩性。精确但成本高昂的硬件系统和有线设备的侵入式基础设施也构成了工业物联网(IIoT)的实施问题。本文将无线,自供电传感器集成在一起,在拟议的语义IIoT架构中使用一种新型,通信经济的RSSI / ToF测距方法。带注释的数据收集可确保可访问性,可扩展的知识发现以及针对消费者和业务需求变化的灵活性。该系统部署在可以正常工作的室内工业设施上,与非工业环境下测试的现有系统相比,RMS测距精度(ToF 6 m和RSSI 5.1 m,量程40 m)具有可比性,平均定位精度为12.6-13.8 m。

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