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    Please use this identifier to cite or link to this item: http://ir.lib.ncu.edu.tw/handle/987654321/75307


    Title: 多通道現場總線網路閘道器硬體加速器設計與實作;Design and Implementation of Hardware Accelerator for Multi-Channel Fieldbus Gateway
    Authors: 陳軍宏;Chen, Jun-Hong
    Contributors: 資訊工程學系
    Keywords: 工業物聯網;現場總線閘道器;硬體加速器;Modbus;周邊擴充;fieldbus gateway;Hardware Accelerator;Modbus;Multi-Channel
    Date: 2017-12-21
    Issue Date: 2018-01-16 11:04:10 (UTC+8)
    Publisher: 國立中央大學
    Abstract: 在工業物聯網的潮流下,工廠的控制裝置與設備聯網成為迫切需求,然而目前現場總線閘道器在系統擴充性及通訊頻寬上,難以滿足大量裝置在工業環境傳輸的即時性、大量資料收集、管理等需求。因此本研究提出多通道現場總線網路閘道器的硬體架構,以微控制器為核心,結合FPGA的八通道高速串列Modbus控制器以及上層可平行管理八通道的感測網路控制器,構成一個支援八通道主控端的現場總線網路閘道器。此系統可支援Modbus大量周邊裝置擴充,以及即時資料收集的功能。論文最後,我們以相同實驗環境下,模擬傳統Modbus現場總線並與本系統進行比較,實驗結果顯示本系統具有明顯的性能優勢,並以即時資料收集應用,驗證本系統有較佳的即時資料收集能力。;In Industrial Internet of Things, networking has become increasingly necessary for device controllers and factory equipment. However, current fieldbus gateways generally cannot meet the requirements for real-time transmission between numerous devices and substantial data collection and management in an industrial environment because of system peripheral expansion and insufficient communication bandwidth. Therefore, in this paper, we propose a hardware accelerator architecture for multichannel fieldbus gateways. The proposed system was combined with a microcontroller and hardware accelerator. The system core relies on a microcontroller to perform fieldbus gateway management. Additionally, we used a field-programmable gate array to implement a hardware accelerator, combining an eight-channel high-speed serial Modbus controller; the sensor network controller facilitates parallel management of the eight-channel Modbus controller. This system can support increases in the number of Modbus slave devices connected to the gateway, and it also provides functionality for real-time data collection. We simulated the conventional Modbus fieldbus and compared it with the proposed system in the same experimental environment. The results showed that the proposed system had a faster response time. We used a real-time data collection application to verify the proposed system’s performance and found that its capabilities were superior to those of the conventional system.
    Appears in Collections:[Graduate Institute of Computer Science and Information Engineering] Electronic Thesis & Dissertation

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