A Novel Scheme of an Optimal Data Rate Transmission for Airborne Telemetry of Long Range Aerospace Vehicle

Pub Date : 2023-03-13 DOI:10.14429/dsj.73.17355
Sudarsana Reddy Karnati, Lakshmi Boppanna, D. R. Jahagirdar
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Abstract

Airborne telemetry data is inevitable during the development phase of an aerospace vehicle. With the availability of telemetry data the vehicle characteristics are evaluated and the vehicle objectives are achieved subsequently. During the trajectory path, the airborne telemetry system transmits vehicle data continuously and ground receiving station receives it. The availability of data at ground station is solely dependent on various parameters; primarily data rate, modulation, RF power, etc. In this paper, typical data rate of telemetry for long range aerospace vehicle is analyzed and an innovative scheme is proposed for optimal data rate transmission with multi-resolution of high speed image data for distributed telemetry system. The scheme is implemented on 25 nm ZYNQ CSOC of telemetry hardware and synthesized netlist is simulated, performance is evaluated and results verified on telemetry hardware.
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一种远程航天飞行器机载遥测最优数据速率传输新方案
机载遥测数据在航天飞行器的发展阶段是不可避免的。利用遥测数据的可用性,评估车辆特性并随后实现车辆目标。在弹道路径中,机载遥测系统连续传输车辆数据,地面接收站接收。地面站数据的可用性完全取决于各种参数;主要是数据速率,调制,射频功率等。分析了远程航天飞行器遥测的典型数据速率,提出了分布式遥测系统中高速图像数据多分辨率最优数据速率传输的创新方案。该方案在遥测硬件的25nm ZYNQ CSOC上实现,并在遥测硬件上对合成网表进行了仿真、性能评估和结果验证。
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