Motion Model of Floating Weather Sensing Node for Typhoon Detection

Hui Lu;Xinyu Dong;Xianbin Cao
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引用次数: 2

Abstract

To improve the accuracy of typhoon prediction, it is necessary to detect the internal structure of a typhoon. The motion model of a floating weather sensing node becomes the key to affect the channel frequency expansion performance and communication quality. This study proposes a floating weather sensing node motion modeling method based on the chaotic mapping. After the chaotic attractor is obtained by simulation, the position trajectory of the floating weather sensing node is obtained by space and coordinate conversion, and the three-dimensional velocity of each point on the position trajectory is obtained by multidimensional linear interpolation. On this basis, the established motion model is used to study the Doppler frequency shift, which is based on the software and physical platform. The software simulates the relative motion of the transceiver and calculates the Doppler frequency shift. The physical platform can add the Doppler frequency shift to the actual transmitted signal. The results show that this method can effectively reflect the influence of the floating weather sensing node motion on signal transmission. It is helpful to research the characteristics of the communication link and the design of a signal transceiver for typhoon detection to further improve the communication quality and to obtain more accurate interior structure characteristic data of a typhoon.
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用于台风探测的浮动气象传感节点运动模型
为了提高台风预报的准确性,有必要对台风的内部结构进行探测。浮动气象传感节点的运动模型是影响信道扩频性能和通信质量的关键。提出了一种基于混沌映射的浮动气象传感节点运动建模方法。仿真得到混沌吸引子后,通过空间和坐标转换得到浮动气象节点的位置轨迹,通过多维线性插值得到位置轨迹上各点的三维速度。在此基础上,利用所建立的运动模型,对多普勒频移进行了基于软件和物理平台的研究。该软件模拟了收发器的相对运动,并计算了多普勒频移。物理平台可以在实际发射信号的基础上增加多普勒频移。结果表明,该方法能有效反映浮动气象传感节点运动对信号传输的影响。研究通信链路的特性和台风探测信号收发器的设计,有助于进一步提高通信质量,获得更准确的台风内部结构特征数据。
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来源期刊
CiteScore
7.80
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Front Cover Contents Research on Digital Twin System Platform Framework and Key Technologies of Unmanned Ground Equipment Hierarchical Disturbance Propagation Mechanism and Improved Contract Net Protocol for Satellite TT&C Resource Dynamic Scheduling Modeling and Analysis of Risk Propagation and Loss Causing Capacity for Key Nodes in Cyber-Physical Coupled Power Network
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