Orthogonal phase functions for full response noncoherent CPM systems

R. Pandey, H. Leib, S. Pasupathy
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引用次数: 4

Abstract

Continuous phase modulation (CPM) with noncoherent detection over a one-symbol interval is discussed. In order to obtain good performance with this simple demodulation strategy, the phase function of the modulation scheme has to be designed properly. An approach to shaping the purchase function to achieve noncoherent orthogonal performance for various values of the modulation index (h) is presented. Using the Gram-Schmidt orthogonality procedure, an entire family of orthogonal phase functions for h>or=0.68 is derived. All CPM schemes with these phase functions produce the same performance as noncoherent orthogonal signaling. For h=1 the phase function reduces to that of the FSK phase function. It is shown that there are CPM schemes that give the same SNR performance as noncoherent orthogonal FSK but have some spectral advantages over the FSK modulation format.<>
全响应非相干CPM系统的正交相位函数
讨论了一符号间隔内具有非相干检测的连续相位调制(CPM)。为了使这种简单的调制策略获得良好的性能,必须对调制方案的相位函数进行合理的设计。提出了一种塑造购买函数以实现不同调制指数(h)值的非相干正交性能的方法。利用Gram-Schmidt正交过程,导出了h>或=0.68时的一整套正交相函数。所有具有这些相位函数的CPM方案都产生与非相干正交信号相同的性能。当h=1时,相位函数简化为FSK相位函数。研究表明,有一些CPM方案具有与非相干正交FSK相同的信噪比性能,但比FSK调制格式具有一些频谱优势。
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