Design of Smart Resource Flow Wireless Platform for Flexible Factory Communication

T. Osuga, Taketoshi Nakajima, Fumiko Ohori, K. Maruhashi, S. Itaya, F. Kojima
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引用次数: 2

Abstract

Recently, utilizing wireless communication becomes essential for manufacturing because improving productivity and factory automation with Internet of Things (IoT) and robots become important in order to alleviate shortage of human resources. When many wireless apparatuses are introduced without elaborate configuration of wireless network, communication performance is degraded due to interference resulting in low productivity. To mitigate this problem, we are developing Smart Resource Flow (SRF) wireless platform which adaptively coordinates wireless resources for each traffic. In this paper, we propose Automatic Channel Switching Control (ACSC) and Adaptive Data Flow Control (ADFC) as functions of SRF wireless platform. Performance evaluations in actual environment show that ACSC increases throughput and decreases Round Trip Time (RTT), and ADFC decreases Medium Access Control (MAC) frame retransmission ratio.
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面向柔性工厂通信的智能资源流无线平台设计
最近,为了缓解人力资源短缺,利用物联网(IoT)和机器人提高生产力和工厂自动化变得重要,因此利用无线通信对制造业来说变得必不可少。当许多无线设备在没有详细配置无线网络的情况下引入时,由于干扰导致通信性能下降,从而导致生产力低下。为了缓解这一问题,我们正在开发智能资源流(SRF)无线平台,该平台可以自适应地协调每个流量的无线资源。本文提出了自动信道交换控制(ACSC)和自适应数据流控制(ADFC)作为SRF无线平台的功能。实际环境下的性能评估表明,ACSC提高了吞吐量,降低了RTT (Round Trip Time), ADFC降低了MAC (Medium Access Control)帧重传率。
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