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FPGA Based Transmitter Design Using Adaptive Coding and Modulation Schemes for Low Earth Orbit Satellite Communications

机译:基于FPGA的发射机设计,使用适应性编码和低地球轨道卫星通信的调制方案

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In this study, a field-programmable gate array (FPGA) based high rate transmitter is developed for low earth orbit satellite communication links using adaptive coding and modulation (ACM) techniques. The developed transmitter structure is modeled in MATLAB. Then, the MATLAB model is taken as reference for developing an FPGA design. This design is implemented on Xilinx Kintex Ultrascale XCKU060 FPGA which provides high performance and whose space grade model will be on product line in December 2020. It is shown that the developed transmitter structure can reach a spectral efficiency of 7.068 bits per second per Hertz (bps/Hz) with a code rate of 0.8889 in the highest rate mode. The implemented FPGA design of the transmitter structure can support input data rates from 50.7225 megabits per second (Mbps) to 530.1 Mbps with a baud rate of 75 mega symbol per second (Msps) and a sampling rate of 300 mega sample per second (MSps) at the output.
机译:在该研究中,使用自适应编码和调制(ACM)技术为低地球轨道卫星通信链路开发了基于现场可编程门阵列(FPGA)的高速率发射器。发达的发射器结构在MATLAB中建模。然后,将MATLAB模型作为参考,用于开发FPGA设计。该设计在Xilinx Kintex UltraScale Xcku060 FPGA上实现,提供高性能,其空间等级模型将于2020年12月在产品线上进行。结果表明,发达的发射器结构可以达到每赫兹每秒7.068位的光谱效率(BPS / Hz)以最高速率模式为0.8889的码率。变送器结构的实施FPGA设计可以支持每秒50.7225兆比特(MBP)到530.1Mbps的输入数据速率,其波特率为每秒75兆符号(MSP)和每秒300兆样品的采样率(MSPS)在输出。

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