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QPSK-Modulation Modem Invariant to the Rotation of the Signal Constellation Plane

机译:QPSK调制调制解调器不依赖于信号星座平面的旋转

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摘要

In order to increase the efficiency of dedicated frequency channels, i.e. to increase the specific data transfer rate, multipositional quadrature phase shift keying (QPSK, aka 4-PSK) should be used. The problems with QPSK signal demodulation is a rotation of the signal constellation plane by an angle multiple of 90° and a slow response of the carrier oscillation recovery scheme. The study considers the existing methods for eliminating the phase ambiguity of the recovered carrier frequency in typical QPSK modems, and identifies the shortcoming of a low-speed response oscillation recovery circuit. The authors propose a QPSK demodulator circuit with a fast adjustment of the reference oscillator, which is due to the fact that no loop filter is used in the feedback and that a digital calculator of the required phase shift is used. An algorithm for the frame synchronization restoration with the simultaneous elimination of the phase ambiguity multiple of 90° was also developed using synthesized binary sequences with an ideal non-periodic autocorrelation function (NACF) at even shifts that do not have the rotary symmetry property. The phase ambiguity elimination algorithm proposed in the article can be used as an alternative to standard modems with differential coding.
机译:为了提高专用频道的效率,即为了提高特定的数据传输速率,应该使用多位置正交相移键控(QPSK,又称4-PSK)。 QPSK信号解调的问题是信号星座平面旋转了90°的角度倍数,并且载波振荡恢复方案的响应缓慢。该研究考虑了用于消除典型QPSK调制解调器中恢复的载波频率的相位模糊性的现有方法,并确定了低速响应振荡恢复电路的缺点。作者提出了一种可快速调节参考振荡器的QPSK解调器电路,这是由于以下事实:反馈中未使用环路滤波器,并且使用了所需相移的数字计算器。还开发了一种算法,该算法使用具有理想非周期自相关函数(NACF)且不具有旋转对称特性的偶数移位的合成二进制序列,同时消除了90°的相位模糊度倍数,从而恢复了帧同步。本文提出的相位模糊消除算法可以用作具有差分编码的标准调制解调器的替代方案。

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