Papan Jozef, Segec Pavel, Yeremenko Oleksandra, Bridova Ivana, Hodon Michal
Department of InfoCom Networks, University of Žilina, 010 26 Žilina, Slovakia.
Department of Infocommunication Engineering, Kharkiv National University of Radio Electronics, 61166 Kharkiv, Ukraine.
Sensors (Basel). 2020 Sep 14;20(18):5230. doi: 10.3390/s20185230.
Today's IP networks are experiencing a high increase in used and connected Internet of Things (IoT) devices and related deployed critical services. This puts increased demands on the reliability of underlayer transport networks. Therefore, modern networks must meet specific qualitative and quantitative parameters to satisfy customer service demands in line with the most common requirements of network fault tolerance and minimal packet loss. After a router or link failure within the transport network, the network convergence process begins. This process can take an unpredictable amount of time, usually depending on the size, the design of the network and the routing protocol used. Several solutions have been developed to address these issues, where one of which is the group of so-called Fast ReRoute (FRR) mechanisms. A general feature of these mechanisms is the fact that the resilience to network connectivity failures is addressed by calculating a pre-prepared alternative path. The path serves as a backup in the event of a network failure. This paper presents a new Bit Repair (B-REP) FRR mechanism that uses a special BIER header field (Bit-String) to explicitly indicate an alternative path used to route the packet. B-REP calculates an alternative path in advance as a majority of existing FRR solutions. The advantage of B-REP is the ability to define an alternative hop-by-hop path with full repair coverage throughout the network, where, unlike other solutions, we propose the use of a standardized solution for this purpose. The area of the B-REP application is communication networks working on the principle of packet switching, which use some link-state routing protocol. Therefore, B-REP can be successfully used in the IoT solutions especially in the field of ensuring communication from sensors in order to guarantee a minimum packet loss during data transmission.
如今的IP网络中,物联网(IoT)设备及相关部署的关键服务的使用量和连接数正在急剧增加。这对底层传输网络的可靠性提出了更高要求。因此,现代网络必须满足特定的定性和定量参数,以符合网络容错和最小数据包丢失的最常见要求,从而满足客户服务需求。在传输网络中的路由器或链路发生故障后,网络收敛过程便开始了。这个过程可能需要不可预测的时间量,通常取决于网络的规模、设计以及所使用的路由协议。已经开发了几种解决方案来解决这些问题,其中之一就是所谓的快速重路由(FRR)机制组。这些机制的一个共同特点是,通过计算预先准备好的替代路径来解决网络连接故障的恢复能力问题。该路径在网络故障时用作备份。本文提出了一种新的比特修复(B-REP)FRR机制,它使用一个特殊的BIER报头字段(比特串)来明确指示用于路由数据包的替代路径。与大多数现有的FRR解决方案一样,B-REP预先计算替代路径。B-REP的优势在于能够定义一条逐跳的替代路径,在整个网络中实现完全修复覆盖,与其他解决方案不同的是,我们为此目的提出使用一种标准化解决方案。B-REP的应用领域是基于分组交换原理工作的通信网络,这些网络使用某种链路状态路由协议。因此,B-REP可以成功应用于物联网解决方案,特别是在确保传感器通信方面,以保证数据传输期间的最小数据包丢失。