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Noncoherent digital network coding using multi-tone CPFSK modulation

机译:使用多音调CPFSK调制的非相干数字网络编码

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Digital network coding is a relaying technique that increases throughput in two-way relay networks. In contrast with analog network coding, which relays received analog signals plus noise, digital network coding relays digital codewords. The digital codewords are created by demodulation, channel decoding, and re-encoding at the relay. By using FSK and noncoherent reception, the relay may operate without knowledge of the phases of the signals transmitted by the two source terminals. In this paper, previous work on binary FSK is extended to multi-tone FSK, where the number of tones may be any power of 2. The relay receiver is formulated for any number of tones that is a power of two. Binary FSK is compared against quaternary FSK, which requires no expansion of bandwidth compared with binary FSK. The comparison is made using two metrics: the simulated bit-error rate (both with and without an outer turbo code), and the binary information rate between the sources and relay. The results illustrate that the energy-efficiency advantage of quaternary FSK on a point-to-point link is magnified when it is applied to digital network coding.
机译:数字网络编码是一种中继技术,可增加双向中继网络中的吞吐量。与中继接收到的模拟信号和噪声的模拟网络编码相反,数字网络编码中继数字代码字。通过在中继站进行解调,通道解码和重新编码来创建数字代码字。通过使用FSK和非相干接收,中继器可能会在不知道两个源终端发送的信号相位的情况下运行。在本文中,以前对二进制FSK的工作扩展到了多音FSK,其中音调数目可以是2的幂。任何大小的音调都是2的幂。将二进制FSK与四进制FSK进行比较,四进制FSK与二进制FSK相比不需要扩展带宽。比较使用两个指标进行:模拟的误码率(有和没有外部turbo码),以及源和中继之间的二进制信息率。结果表明,将四元FSK应用于数字网络编码时,在点对点链路上的能效优势得到了放大。

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