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SYSTEM AND METHOD FOR COMMUNICATING DIGITAL DATA WHILE RESOLVING PHASE AMBIGUITIES

机译:解决相位模糊性时用于通信数字数据的系统和方法

摘要

A communication system includes a rotationally invariant pragmatic trellis coded modulation (PTCM) encoder (18) and decoder. The PTCM encoder (18) partitions information bits (20) into primary (42) and secondary (44) data streams. A pilot bit (56) is inserted into the secondary data stream (44) during each frame. The secondary stream (44) then receives rate one-half convolutional encoding (60) that is punctured to a rate of nine-sixteenths. The primary data stream (42) is differentially encoded (50). The encoded primary (52) and secondary (68) data streams are concurrently phase-mapped (70) using an 8-PSK constellation so that an effective code rate of five-sixths results. The PTCM decoder convolutionally decodes the secondary stream, then re-encodes secondary stream estimates using a systematic, transparent convolutional encoder. The pilot bit is evaluated in the re-encoded symbol estimate to detect and correct any secondary stream inversion that may have occurred due to phase ambiguity. After this correction, the secondary modulation is removed from phase value estimates, and the primary stream is decoded.
机译:一种通信系统,包括旋转不变的实用网格编码调制(PTCM)编码器(18)和解码器。 PTCM编码器(18)将信息位(20)划分为主要(42)和次要(44)数据流。在每个帧期间,将导频位(56)插入到辅助数据流(44)中。然后,次要流(44)接收速率二分之一卷积编码(60),该速率被打孔为百分之九十六。主数据流(42)被差分编码(50)。使用8-PSK星座图同时对编码的主数据流(52)和辅助数据流(68)进行相位映射(70),从而得到六分之五的有效编码率。 PTCM解码器对次要流进行卷积解码,然后使用系统的透明卷积编码器对次要流估计值进行重新编码。在重新编码的符号估计中评估导频比特,以检测并纠正由于相位歧义可能发生的任何辅助流反转。在该校正之后,从相位值估计中去除二次调制,并且对主要流进行解码。

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