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Four-Dimensional Signal Constellations Based on Binary Frequency-Shift Keying and M-ary Amplitude-Phase-Shift Keying

机译:基于二进制移位键控的四维信号星座和M-ary幅度相移键控

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摘要

In this article, we give the construction of new four-dimensional signal constellations in the Euclidean space, which represent a certain combination of binary frequency-shift keying (BFSK) and M-ary amplitude-phase-shift keying (MAPSK). Description of such signals and the formulas for calculating the minimum squared Euclidean distance are presented. We have developed an analytic building method for even and odd values of M. Hence, no computer search and no heuristic methods are required. The new optimized BFSK-MAPSK (M = 5,6,···,16) signal constructions are built for the values of modulation indexes h =0.1,0.15,···,0.5 and their parameters are given. The results of computer simulations are also provided. Based on the obtained results we can conclude, that BFSK-MAPSK systems outperform similar four-dimensional systems both in terms of minimum squared Euclidean distance and simulated symbol error rate.
机译:在本文中,我们提供了欧几里德空间中新的四维信号星座的构造,其代表二进制移位键控(BFSK)和M-ARY幅度相移键控(MAPSK)的某种组合。呈现了这种信号的描述和用于计算最小平方欧几里德距离的公式。我们已经开发了一个偶数和奇数值的分析构建方法,因此,无需计算机搜索,并且不需要启发式方法。新的优化BFSK-MAPSK(M = 5,6,...,16)信号结构是为调制索引H = 0.1,0.15,···,0.5及其参数的调制索引H = 0.1,0.15的值而构建的信号结构。还提供了计算机模拟的结果。基于所获得的结果,我们可以得出结论,BFSK-MAPSK系统在最小平方欧几里德距离和模拟符号误差率方面都优于相似的四维系统。

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