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Efficient Real-Time Digital Subcarrier Cross-Connect (DSXC) Based on Distributed Arithmetic DSP Algorithm

机译:基于分布式算术DSP算法的高效实时数字子载波交叉连接(DSXC)

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摘要

Two real-time functions of digital subcarrier cross-connect (DSXC) are experimentally demonstrated for the first time using distributed arithmetic (DA) in a field programmable gate array (FPGA) platform. Both frequency translation and channel selection in DSXC are implemented using DA-based resampling filters, achieving flexible modulation format and fine data-rate granularity of many concurrent subcarrier channels. Compared with traditional resampling filters that leverage multipliers, the DA-based approach eliminates the need for DSP slices in the FPGA implementation and significantly reduces the hardware cost. By requiring only a few clock periods, the DA-based resampling filter is also significantly faster when compared to conventional FIR filters, whose overall latency is proportional to the filter order. The DA-based DSXC is therefore able to achieve improved spectral efficiency and programmability of multiple orthogonal subcarrier channels, while keeping low cross-connection latency and requiring low cost hardware resources when implemented in a FPGA platform.
机译:数字子载波交叉连接(DSXC)的两个实时函数首次使用现场可编程门阵列(FPGA)平台中的分布式算术(DA)进行实验证明。 DSXC中的频率转换和频道选择都是使用基于DA的重采样滤波器来实现的,实现许多并发子载波通道的灵活调制格式和精细数据速率粒度。与传统重采样过滤器相比,利用乘法器,基于DA的方法消除了FPGA实现中DSP切片的需求,并显着降低了硬件成本。通过仅需要几个时钟周期,与传统的FIR滤波器相比,基于DA的重采样滤波器也明显更快,其总延迟与过滤器顺序成比例。因此,基于DA的DSXC能够实现多个正交子载波通道的改进的频谱效率和可编程性,同时保持低交叉连接延迟并且在FPGA平台中实现时需要低成本的硬件资源。

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