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Reconfigurable Filter Bank Multicarrier Modulation for Cognitive Radio Spectrum Sharing - A SDR Implementation

机译:用于认知无线电频谱共享的可重构滤波器组多载波调制-SDR实现

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Background/Objectives: Cognitive radio is used as promising technologies for dynamic spectrum access and optimization of wireless resources. Under dynamic spectrum access to provide the ability of working any band of frequency based on need, the reconfigurable cognitive radio is designed. Methods/Statistical Analysis: Multicarrier modulation is the feasible method to share the spectrum without interference. OFDM is one of the efficient multicarrier techniques available for the system design. One of the problems in OFDM for spectral sharing is the side band leakage that will inject interference from secondary radio sub carrier to primary radio sub carrier. To avoid this, in this work a Filter Bank based Multi Carrier (FBMC) modulation is used. Findings: Few simulation works are reported for the interference free spectrum sharing by using FBMC. But this work analyzes the real time practical implementation of the interference free dynamic spectrum sharing. Reconfigurable is another important aspect of the implementation which is provided by the Kintex 7 FPGA implementation of the reconfigurable filter bank multicarrier modulation using NI USRP 2943R SDR platform. This FBMC based Transceiver is implemented by using fast Xilink IP cores of FFT and systolic array based FIR filter IP core. The transceiver is realized to produce output for every clock after a fixed latency 240 clocks or 6 microsecond for 40Mz clock rate. This performance is achieved using single clock loop architecture of LABVIEW FPGA tool and the parallel, pipelined architecture realization of IP cores and other building blocks. Applications/Improvements: Experimental study shows that the BER of primary user for the implemented system is better than the OFDM system by the factor of 10 -1 .
机译:背景/目的:认知无线电被用作用于动态频谱访问和无线资源优化的有前途的技术。在提供动态频谱访问以根据需要提供工作任何频带的能力的情况下,设计了可重构的认知无线电。方法/统计分析:多载波调制是在无干扰的情况下共享频谱的可行方法。 OFDM是可用于系统设计的有效多载波技术之一。用于频谱共享的OFDM中的问题之一是边带泄漏,这将使干扰从辅助无线电子载波注入主无线电子载波。为了避免这种情况,在这项工作中使用了基于滤波器组的多载波(FBMC)调制。研究结果:很少有关于使用FBMC进行无干扰频谱共享的仿真工作的报道。但是这项工作分析了无干扰动态频谱共享的实时实际实现。可重配置是该实现的另一个重要方面,由使用NI USRP 2943R SDR平台的可重配置滤波器组多载波调制的Kintex 7 FPGA实现提供。这种基于FBMC的收发器是通过使用FFT的快速Xilink IP核以及基于脉动阵列的FIR滤波器IP核来实现的。收发器实现为在固定的等待时间240个时钟或40Mz时钟速率的6微秒后为每个时钟产生输出。使用LABVIEW FPGA工具的单时钟环路架构以及IP内核和其他构建块的并行,流水线架构实现,可以实现此性能。应用/改进:实验研究表明,所实现系统的主要用户BER比OFDM系统好10 -1倍。

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