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Autonomous Aero-Visual and Sensor Based Inspection Network for Asset Monitoring

机译:基于AUST-VITES和SENSOR基于传感器的资产监控检查网络

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This article introduces a theoretical and experimental program to develop the inspection and fault detection technology needed to integrate MAVs for persistent intelligence, reconnaissance, maintenance and surveillance for obscured or logistically challenging assets in non-urban environments. The design is explained using a context of heterogeneous deployment of wireless sensors for real-time asset monitoring by anticipating exceptional conditions and building the system to cope with them. The system converges towards an error-free state with self-stabilization, the ability to fall back to a safe mode in a financially feasible manner. This sophisticated mechanism requires a real-time capacity estimation capability to sustain the quality-of-service, which can be achieved by a distributed sensor network. We discuss issues in design and information propagation in such sensor clustered topology, optimization for power-aware networking, and link and node capacity assignment to achieve the desired goals.
机译:本文介绍了一个理论和实验计划,开发了在非城市环境中为持久性智能,侦察,维护和监测集成了MAV的检验和故障检测技术,以便在非城市环境中遮挡或逻辑上具有挑战性的资产。通过对无线传感器的异构部署的背景来解释设计,以通过预测特殊条件并建立系统来应对它们来进行实时资产监控。该系统通过自稳定地收敛于无差错状态,以经济可行的方式返回安全模式的能力。这种复杂的机制需要实时容量估计能力来维持服务质量,这可以通过分布式传感器网络实现。我们在这种传感器集群拓扑中讨论了设计和信息传播中的问题,优化了电源感知网络,以及链接和节点容量分配,以实现所需的目标。

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