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FPGA implementation of QAM modems using PR for reconfigurable wireless radios

机译:使用PR的QAM调制解调器的FPGA实现可重新配置的无线电

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FPGAs are playing a very significant role in software defined Radios (SDR) and Cognitive radios (CR). The SDRs and CRs are capable of running different waveforms which may use different modulation techniques, source coding and channel coding. These reconfigurable radios have to load the waveforms into the FPGA based on their requirements without interrupting the system. The user has to load large bit files even for small changes in the waveforms. The configuration time and power consumption plays significant role in SDRs and CRs: for example, a virtex-7 FPGA takes 500ms to complete configuration. The Configuration time is around Sminutes in a secure SDR and CR platform. This configuration time and power is very critical in strategic wireless radio communications. The configuration time and the Hardware usage can be saved to a larger extent by designing the waveforms using Partial Re-configuration. The paper describes the Design and Implementation of 4/ 8/ 16/ 32/ 64 Quadrature Amplitude Modulation (QAM) and demodulation in FPGA using Partial Re-configuration (PR). The design allows the user to switch between these different modulation and demodulation techniques during runtime by configuring a control register in FPGA. The implementation of these QAMs uses a common hardware, which is called as the Static Part and there is a Dynamic part too. In the PR technique, the user has to load the bit stream for the Dynamic part only, and not the entire bit stream. The size of this bit file will be smaller in size compared to the bit file required to configure the entire FPGA. By designing the entire waveform using PR, the waveform can be made as part of the Platform and the configuration time and power consumption can be very much reduced.
机译:FPGA在软件定义无线电(SDR)和认知无线电(CR)中扮演着非常重要的角色。 SDR和CR能够运行不同的波形,这些波形可以使用不同的调制技术,源编码和信道编码。这些可重新配置的无线电必须根据其要求将波形加载到FPGA中,而不会中断系统。即使波形有微小变化,用户也必须加载大的位文件。配置时间和功耗在SDR和CR中起着重要作用:例如,一个virtex-7 FPGA需要500毫秒才能完成配置。在安全的SDR和CR平台中,配置时间约为数分钟。在战略无线通信中,这种配置时间和功率非常关键。通过使用部分重配置设计波形,可以在很大程度上节省配置时间和硬件使用量。本文介绍了使用部分重配置(PR)在FPGA中进行4/8/16/32/64正交幅度调制(QAM)和解调的设计与实现。该设计允许用户通过在FPGA中配置控制寄存器,在运行时在这些不同的调制和解调技术之间进行切换。这些QAM的实现使用通用硬件,称为静态部分,并且也有动态部分。在PR技术中,用户只需要为动态部分加载位流,而不是整个位流。与配置整个FPGA所需的位文件相比,该位文件的大小将更小。通过使用PR设计整个波形,可以将该波形作为平台的一部分,并且可以大大减少配置时间和功耗。

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