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Configuration Method of the Dynamic Navigation Network Based on Near Space

机译:基于近空间的动态导航网络配置方法

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This paper focuses on the optimal design of the near space navigation network configuration concerning a specific target area. Optimal design not only ensure navigation service for specific area with high accuracy and low cost; but also enable all users in the target area to obtain a controlled precision. In this design, a double-layer Y configuration is adopted as the optimal basic unit. Adaptive algo?rithm and genetic algorithm are selected to detect the boundary of the configuration to realize the synchronization optimization of cost and accuracy. Combining with the working principle of aerostat in the stratosphere airspace, we design a platform dynamic trajectory and provide an algorithm optimization of layout for the partial users' worse precision in dynamic scene. The simulation results show that the optimal design method proposed in this paper can meet the configuration design requirements of the dynamic navigation network based on near space with different size area and different precision requirement.
机译:本文侧重于有关特定目标区域的近空间导航网络配置的最佳设计。最佳设计不仅为特定区域提供高精度和低成本的特定区域的导航服务;而且还使目标区域中的所有用户能够获得受控精度。在这种设计中,采用双层Y配置作为最佳基本单元。自适应ALGO?rithm和遗传算法被选择以检测配置的边界,以实现成本和准确性的同步优化。结合了浮动层空域的空气垫的工作原理,我们设计了一个平台动态轨迹,为动态场景中的部分用户更糟糕的精度提供了一个算法优化。仿真结果表明,本文提出的最优设计方法可以满足基于近空间的动态导航网络的配置设计要求,不同尺寸区域和不同的精度要求。

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