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Design of NMEA2000 CAN Bus Integrated Network System and Its Test Bed: Setting Up the PLC System in Between Bridge-Bow Room Section on a Container Ship as a Backbone System

机译:NMEA2000 CAN总线集成网络系统的设计及其测试台:在集装箱船的桥弓室段之间作为主干系统设置PLC系统

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Following the recent changes in international agreements enforced by the International Maritime Organization (IMO), and considering the Korean environment where both the safety of old ships and the IoT technology have emerged as the major issues, even the old operational ships are required to establish the Controller Area Network (CAN Bus) system to be connected with a backbone network referred as the Ship Area Network (SAN) by installing communication cables to control and monitor shipboard electronic equipments when they are newly added to the ship's system. For existing operational ships, an extensive work may be needed for the establishment of the SAN system that uses unshielded twisted pair cables (UTP) depending on the location of the system to be installed as the most parts of the ship are made of steels. Such work could generate time, space and cost-related risks (e.g., large vessels require up to millions of Korean won per day as an anchorage charge). As the result of experiment, it was possible to install the PLC system within a few hours using existing power cables and placing a PLC modem at the spot on 180 m section (approximately 2/3 of ship's length). Also, with the proposed technology, costs were reduced as much as over 70 % compared to the UTP- and STP-based ship data communication system which requires additional cable installments. Therefore, we were able to confirm both the efficient communications and the cost-reducing effects and expect that this technology will become a foundation technology for the e-Navigation system using IoT technology, as well as for the various industrial settings.
机译:继国际海事组织(IMO)实施的国际协议最近发生变化之后,并考虑了韩国环境,旧船的安全性和IoT技术已经成为主要问题,即使是旧的运营船也需要建立这种环境。控制器局域网(CAN总线)系统通过安装通讯电缆来控制和监视船上电子设备(新添加到船上系统时),从而与称为船舶区域网(SAN)的骨干网连接。对于现有的运营船舶,可能需要进行大量工作来建立使用非屏蔽双绞线电缆(UTP)的SAN系统,具体取决于要安装的系统的位置,因为船舶的大部分部件是钢制的。此类工作可能会产生与时间,空间和成本相关的风险(例如,大型船只每天需要多达数百万韩元的锚定费)。作为实验的结果,可以使用现有的电源电缆在几个小时内安装PLC系统,并将PLC调制解调器放置在180 m段(大约船长的2/3)的现场。而且,与需要基于UTP和STP的船舶数据通信系统相比,这种技术可以节省多达70%的成本,而后者需要额外的电缆安装。因此,我们能够确认有效的通信和降低成本的效果,并期望该技术将成为使用IoT技术的电子导航系统以及各种工业环境的基础技术。

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