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Sensor Platform Management Strategies in a Multi-Threat Environment

机译:多威胁环境中的传感器平台管理策略

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The objective of a Ballistic Missile Defense System (BMDS) is to defend the United States, friends and allies, and deployed forces from ballistic missile attack. While effectively intercepting the threat missiles is the ultimate measure of a successful system, the ability to accurately track incoming threats is a key prerequisite. In a BMDS, missile-tracking is the activity of coordinating and managing multiple sensor and computing resources to detect and track threat missiles. Development of specialized and highly capable sensor, computing, and network resources creates a multitude of functional allocation possibilities that promise to increase the effectiveness of the missile-tracking task. This paper presents a taxonomy for the description of missile-tracking architectures and an enterprise-level Agent-Based Modeling and Simulation framework for their evaluation. We find that highly centralized architectures outperform decentralized ones. The dimension of centralization, however, plays an important role in the performance of an architecture; centralized situational awareness coupled with decentralized sensor tasking can still provide quality solutions while presenting the possibility for reduced communication requirements.
机译:弹道导弹防御系统(BMDS)的目的是保护美国,朋友和盟国以及已部署的部队免受弹道导弹的攻击。有效拦截威胁导弹是成功系统的最终措施,而准确跟踪即将到来的威胁的能力是关键前提。在BMDS中,导弹跟踪是协调和管理多个传感器和计算资源以检测和跟踪威胁导弹的活动。专门的,功能强大的传感器,计算和网络资源的开发创造了多种功能分配可能性,有望提高导弹跟踪任务的效率。本文提出了一种用于描述导弹跟踪体系结构的分类法,以及一种用于评估它们的企业级基于Agent的建模和仿真框架。我们发现高度集中化的架构胜过分散式架构。但是,集中化的维度在体系结构的性能中起着重要的作用。集中的态势感知以及分散的传感器任务分配仍然可以提供高质量的解决方案,同时提供降低通信需求的可能性。

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