首页> 外文期刊>Latvian Journal of Physics and Technical Sciences >Satellite Communications. SDPSK Modulator for Radiation Tolerant Satellite Modem / SDPSK Modulators Radiācijas Noturīgam Satelīta Modēmam
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Satellite Communications. SDPSK Modulator for Radiation Tolerant Satellite Modem / SDPSK Modulators Radiācijas Noturīgam Satelīta Modēmam

机译:卫星通信。用于防辐射卫星调制解调器的SDPSK调制器/用于防辐射卫星调制解调器的SDPSK调制器

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After a satellite has been launched, it is impossible to reprogram the hardware modulator. Therefore, a nanoRTU FPGA-based controller (AAC Microtec) in a modified modulation scheme may be programmed as a modem backend for softwaredefined radio (SDR) in the satellite communication system in order to adjust the balance of data rate vs. link reliability, enable coding or encryption system, change communication protocols, etc. For this purpose, a low-power radiation-tolerant reprogrammable satellite modem back-end has been realized for the satellite-to-Earth communication. This paper describes realization of a low data rate modulator based on a robust and reliable symmetric differential phase shift keying (SDPSK) modulation scheme combined with a raised cosine pulse shaping filter in nanoRTU, and presents results of its testing
机译:发射卫星后,无法对硬件调制器进行重新编程。因此,经过修改的调制方案中的基于nanoRTU FPGA的控制器(AAC Microtec)可以被编程为卫星通信系统中软件定义无线电(SDR)的调制解调器后端,以便调整数据速率与链路可靠性之间的平衡,并启用为此,已经实现了一种用于卫星到地球通信的低功耗,耐辐射的可重编程卫星调制解调器后端。本文描述了一种基于鲁棒且可靠的对称差分相移键控(SDPSK)调制方案与nanoRTU中的升余弦脉冲整形滤波器相结合的低数据速率调制器的实现,并给出了其测试结果

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