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A safety-related transmission method for a new railway signalling system based on an IP-Network

机译:基于ip网络的新型铁路信号系统的安全相关传输方法

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We have developed a signalling system which controls signal devices through an IP-Network. This system consists of a Logic Controller (LC) and Field Controllers (FCs) connected with optical cable. The LC is a safety-related device located at the signal house. The LC generates the command data, and transmits the data to the FCs through IP-Network. The FC is a safety-related device equipped in each signal device, and controls the device based on the command data from the LC. In the railway signalling system, high level of safety and reliability are required. In this system, the transmission devices and protocol are based on the general technologies. Therefore, we need to assume all kinds of errors on the transmission devices, and the whole system must keep itself in safe status even if the worst error occurs. In order to comply with the IEC62280-1, we have developed a safety transmission protocol. Moreover, this system needs to operate for 20 years without system down. We have defined the target of the failure rate of each device less than 10~(-7)/h. We measured the traffic limitation in order to validate the reliability about the transmission between the LC and the FC, and confirmed that the traffic is much less than the traffic limitation of the transmission device. We have evaluated the safety and reliability of this system with prototype system, and put this system into practical use at Ichikawaono station on the Musashino line in February 2007.
机译:我们已经开发了一种通过IP网络控制信号设备的信号系统。该系统由与光缆连接的逻辑控制器(LC)和现场控制器(FC)组成。 LC是位于信号室的安全相关设备。 LC生成命令数据,然后通过IP网络将数据发送到FC。 FC是安装在每个信号设备中的安全相关设备,并根据来自LC的命令数据来控制设备。在铁路信号系统中,要求高度的安全性和可靠性。在该系统中,传输设备和协议基于通用技术。因此,我们需要假设传输设备上的各种错误,即使发生最严重的错误,整个系统也必须保持自身的安全状态。为了符合IEC62280-1,我们开发了安全传输协议。此外,该系统需要运行20年,而不会关闭系统。我们定义了每个设备的故障率低于10〜(-7)/ h的目标。为了验证LC和FC之间传输的可靠性,我们测量了流量限制,并确认流量远小于传输设备的流量限制。我们已经用原型系统评估了该系统的安全性和可靠性,并于2007年2月在武藏野线的市川之野站将该系统投入实际使用。

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