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Radar Coordination and Resource Management in a Distributed Sensor Network Using Emergent Control

机译:使用紧急控制的分布式传感器网络中的雷达协调和资源管理

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As the list of anti-air warfare and ballistic missile defense missions grows, there is an increasing need to coordinate and optimize usage of radar resources across the netted force. Early attempts at this optimization involved top-down control mechanisms whereby sensors accept resource tasking orders from networked tracking elements. These approaches rely heavily on uncertain knowledge of sensor constraints and capabilities. Furthermore, advanced sensor systems may support self-defense missions of the host platform and are therefore unable to relinquish control to an external function.To surmount these issues, the use of bottom-up emergent control techniques is proposed. The information necessary to make quality, network-wide resource allocations is readily available to sensor nodes with access to a netted track picture. By assessing resource priorities relative to the network (versus local) track picture, sensors can understand the contribution of their resources to the netted force. This allows the sensors to apply resources where most needed and remove waste. Furthermore, simple local rules for resource usage, when properly constructed, allow sensors to obtain a globally optimal resource allocation without direct coordination (emergence). These results are robust to partial implementation (i.e., not all nodes upgraded at once) and failures on individual nodes (whether from casualty or reallocation to other sensor missions), and they leave resource control decisions in the hands of the sensor systems instead of an external function.This paper presents independent research and development work on emergent control of sensor resources and the impact to resource allocation and tracking performance.
机译:随着反空战和弹道导弹防御任务列表的增加,越来越需要协调和优化整个联网部队的雷达资源使用。这种优化的早期尝试涉及自上而下的控制机制,传感器通过这种机制接受来自网络跟踪元素的资源任务订单。这些方法严重依赖于不确定的传感器约束和功能知识。此外,先进的传感器系统可能支持主机平台的自卫任务,因此无法放弃对外部功能的控制。 为了克服这些问题,提出了使用自下而上的紧急控制技术的建议。进行访问网络轨迹图片的传感器节点可以轻松获得进行高质量的全网络资源分配所必需的信息。通过评估相对于网络(相对于本地)轨迹图的资源优先级,传感器可以了解其资源对净部队的贡献。这使传感器可以在最需要的地方使用资源并消除浪费。此外,如果正确构造了简单的资源使用本地规则,则传感器可以在没有直接协调(紧急状态)的情况下获得全局最佳的资源分配。这些结果对于部分实施(即不是所有节点都立即升级)和单个节点上的故障(无论是从伤亡还是重新分配到其他传感器任务)来说都是稳健的,并且它们将资源控制决策交在传感器系统的手中,而不是由制造商决定。外部功能。 本文介绍了传感器资源紧急控制及其对资源分配和跟踪性能的影响的独立研究和开发工作。

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