In critical infrastructures like airports, much care has to be devoted in protecting radio communication networks from external electromagnetic interference. Protection of such mission-critical radio communication networks is usually tackled by exploiting radiogoniometers: at least three suitably deployed radiogoniometers, and a gateway gathering information from them, permit to monitor and localise sources of electromagnetic emissions that are not supposed to be present in the monitored area. Typically, radiogoniometers are connected to the gateway through relay nodes. As a result, some degree of fault-tolerance for the network of relay nodes is essential in order to offer a reliable monitoring. On the other hand, deployment of relay nodes is typically quite expensive. As a result, we have two conflicting requirements: minimise costs while guaranteeing a given fault-tolerance. In this paper, we address the problem of computing a deployment for relay nodes that minimises the relay node network cost while at the same time guaranteeing proper working of the network even when some of the relay nodes (up to a given maximum number) become faulty (fault-tolerance). We show that, by means of a computation-intensive pre-processing on a HPC infrastructure, the above optimisation problem can be encoded as a 0/1 Linear Program, becoming suitable to be approached with standard Artificial Intelligence reasoners like MILP, PB-SAT, and SMT/OMT solvers. Our problem formulation enables us to present experimental results comparing the performance of these three solving technologies on a real case study of a relay node network deployment in areas of the Leonardo da Vinci Airport in Rome, Italy.
翻译:在机场等关键基础设施中,必须十分谨慎地保护无线电通信网络不受外部电磁干扰。保护这种任务关键无线电通信网络通常通过利用无线电气象计来解决:至少3个部署得当的无线电气象计,以及从中收集信息的网关,允许对监测区不应存在的电磁排放源进行监测和本地化。一般情况下,无线电气象计是通过中继节点连接到网关的。因此,对中继节点网络的某种程度的过错容忍对于提供可靠的监测至关重要。另一方面,部署中继节点通常非常昂贵。结果,我们有两个相互矛盾的要求:在保证特定过错容忍的同时,最大限度地降低从中收集的信息;在本文件中,我们处理如何计算中继节点的部署情况,以尽可能降低中继节点网络的成本;同时,即使在一些中继节点(直至一个最大数目)成为错误(错误容忍度)时,对中继节点网络网络的某种程度的过错容忍度是,通过像我们目前快速计算的PPP-P- 1 中继中继中心网络的升级技术在高端端端的轨道上,使意大利的S- ASICLL 标准化程序系统化成为了比亚化的轨道数据库数据库数据库的升级的升级程序系统化问题。