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Network-on-Chip Xilinx Implementation of WBCDMA System and Its AWGN Performance Analysis

机译:WBCDMA系统的片上网络Xilinx实现及其AWGN性能分析

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Communication is a solution to achieve data transfer between various system components. In this paper, an efficient Walsh-code-based code division multiple access (WBCDMA) was implemented. The encoder and decoder blocks are developed using Walsh-code-based orthogonal codes. An eight-node WBCDMA network was developed and synthesized. WBCDMA Network-on-chip communication is realized by using Xilinx ISE 14.7 edition. The area requirements are obtained from the synthesis report and using Vivado estimation tool. The power requirements are analyzed. This paper also concentrates on the real-time applicability of the system that is possible with the help of mixed-signal processing. Xilinx system generator is used to analyze BER performance of the above system under AWGN channel condition. The simulation reveals that the 8-bit data can be simultaneously transferred to the corresponding nodes without the loss of information. The WBCDMA NoC data transfers latency of 20. The power requirements are also minimized (Ahmed et al. in IEEE Trans Very Large Scale Integr (VLSI) Syst 25(6), 2017). Noise impact on the data transfer between different nodes is almost negligible when SNR crosses above 20 dB. These systems can be used to validate the real-time implementation.
机译:通信是实现各种系统组件之间的数据传输的一种解决方案。在本文中,实现了一种有效的基于沃尔什码的码分多址(WBCDMA)。编码器和解码器块是使用基于Walsh码的正交码开发的。开发并合成了八节点WBCDMA网络。 WBCDMA片上网络通信是使用Xilinx ISE 14.7版实现的。面积要求可从综合报告中获取,并使用Vivado估算工具获得。分析了功率要求。本文还着重介绍了在混合信号处理的帮助下该系统的实时适用性。 Xilinx系统生成器用于分析上述系统在AWGN信道条件下的BER性能。仿真表明,可以将8位数据同时传输到相应的节点,而不会丢失信息。 WBCDMA NoC数据传输延迟为20.功率要求也已降至最低(Ahmed等人在IEEE Trans Very Large Scale Integr(VLSI)Syst 25(6),2017)。当SNR超过20 dB时,噪声对不同节点之间数据传输的影响几乎可以忽略不计。这些系统可用于验证实时实施。

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