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16 QAM and 16 APSK TTCM (Turbo Trellis Coded Modulation) with minimum bandwidth efficiency of 3 bit/s/Hz using a rate 2/4 constituent encoder

机译:16 QAM和16 APSK TTCM(涡轮网格编码调制),使用速率2/4组成编码器的最小带宽效率为3 bit / s / Hz

摘要

16 QAM (Quadrature Amplitude Modulation) and 16 APSK (Asymmetric Phase Shift Keying) TTCM (Turbo Trellis Coded Modulation) with minimum bandwidth efficiency of 3 bit/s/Hz (bits per second per Hertz) using a rate 2/4 constituent encoder. Various encoder designs are presented that are operable to generate a signal whose modulation may vary as frequently as on a symbol by symbol basis while providing relatively very high throughput. Rate control sequences including RCs (Rate Controls), arranged in a period, govern the manner in which symbols of a signal are generated. The RCs correspond to various modulations that may each have a unique constellation and corresponding mapping. Different RCs may be included within a rate control sequence that correspond to 16 QAM, 16 APSK, QPSK (Quadrature Phase Shift Key), or even other modulation types. In addition, 1 or more uncoded bits may be used to generate the symbols of the coded signal.
机译:16 QAM(正交幅度调制)和16 APSK(非对称相移键控)TTCM(涡轮格子编码调制),使用2/4速率编码器,具有3位/秒/赫兹(每秒比特数/赫兹)的最小带宽效率。提出了各种编码器设计,这些编码器设计可操作来生成信号,该信号的调制可以在逐个符号的基础上频繁地变化,同时提供相对非常高的吞吐量。以周期排列的包括RC(速率控制)的速率控制序列控制着信号符号的生成方式。 RC对应于各种调制,每个调制可能具有唯一的星座图和相应的映射。可以在与16个QAM,16个APSK,QPSK(正交相移键)或什至其他调制类型相对应的速率控制序列中包括不同的RC。另外,可以使用1个或更多个未编码比特来生成编码信号的符号。

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