卫星数据微波传输接近每秒8千兆位的系统方法和技术

F. Chethik, F. J. Smith, R. Koralek
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摘要

本文描述了一种将数字卫星传输吞吐量数据率提高2倍的方法(从每赫兹带通1.5比特扩展到每秒3比特),同时通过明智地应用前向纠错码来减少高阶(每符号3和4比特)调制波形所支付的(E/sub bN/sub o/)罚款。这种方法允许卫星发射机在饱和或接近饱和时被驱动到它们的高效率工作区域。高带宽效率是通过使用高阶调制(8-ary和16-ary)、信号的预补偿以诱导与信道下游预期的失真互补、前向纠错编码和接收器中的自适应均衡来实现的。对于通道错误率在8 × 10/sup -3/之间的情况,推荐的FEC产生大约10%的开销,可以产生大约10/sup -8/的错误率。误差率在10/sup -8/到10/sup -9/范围内,通道误差率为4x10 /sup -3/是实用的。在高错误率下工作允许信道在一个区域内工作,在这个区域中,小到中等的失真在低错误率下可能是致命的,是可以容忍的。这与非线性效应的预补偿一起,允许TWTA在饱和或接近饱和时运行。
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System approaches and technologies for satellite data microwave transmission approaching 8 gigabits per second
The paper describes a methodology for increasing digital satellite transmission throughput data rate by a factor of 2 over current practice (expanding from 1.5 to 3 bits per second per hertz of bandpass) and at the same time lessening the (E/sub bN/sub o/) penalty paid for higher order (3 and 4 bit per symbol) modulation waveforms by judicious application of forward error correction codes. This approach allows satellite transmitters to be driven into their high efficiency operating region at or near saturation. The high bandwidth efficiency is achieved by using higher order modulations (8-ary and 16-ary), precompensation of the signal to induce distortion complementary to that anticipated downstream in the channel, forward error correction coding, and adaptive equalization in the receiver. The recommended FEC, incurring about 10% overhead, can yield error rates on the order of 10/sup -8/ for channel error rate between 8x10/sup -3/. Error rates in the range of 10/sup -8/ to 10/sup -9/ are practical with channel error rates of 4xl0/sup -3/. Operating at high error rates allows the channel to be operated in a region where small to medium distortions, which could be fatal at low error rates, are tolerable. This, along with precompensation for the nonlinear effects, allows the TWTA to be operated at or near saturation.<>
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