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Parallel Prefix Network Based DQPSK Precoder for High-Speed Optical Transmission

机译:基于并行前缀网络的DQPSK预编码器,用于高速光传输

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This paper introduced the principle of parallel prefix network (PPN) and proved the feasibility of applying PPN to differential quadrature phase-shift keying (DQPSK) precoder. Kogge Stone (KS) adder is a typical parallel algorithm of PPN. A ameliorated KS adder was proposed to implement the precoder. With 78Mb/s and 128 parallel channels, 20Gb/s DQPSK precoder was achieved in ML523 (Xilinx Virtex V FPGA). Results presented that the clock minimum period was 1.154 ns and the maximum frequency was 866.551 MHz. About 2% of slice logic resource was employed in the implementation.
机译:本文介绍了并行前缀网络(PPN)的原理,并证明了将PPN应用于差分正交相移键控(DQPSK)预编码器的可行性。 Kogge Stone(KS)加法器是一种典型的PPN并行算法。提出了一种改进的KS加法器来实现预编码器。 ML523(Xilinx Virtex V FPGA)具有78Mb / s和128个并行通道,可实现20Gb / s DQPSK预编码器。结果表明,时钟最小周期为1.154 ns,最大频率为866.551 MHz。在实现中使用了大约2%的片逻辑资源。

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