首页> 外文OA文献 >The realization of signal processing methods and their hardware implementation over multi-carrier modulation using FPGA technology. Validation and implementation of multi-carrier modulation on FPGA, and signal processing of the channel estimation techniques and filter bank architectures for DWT using HDL coding for mobile and wireless applications.
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The realization of signal processing methods and their hardware implementation over multi-carrier modulation using FPGA technology. Validation and implementation of multi-carrier modulation on FPGA, and signal processing of the channel estimation techniques and filter bank architectures for DWT using HDL coding for mobile and wireless applications.

机译:信号处理方法的实现及其使用FPGA技术的多载波调制的硬件实现。在移动和无线应用中使用HDL编码在DWT上验证和实现多载波调制以及DWT的信道估计技术和滤波器组架构的信号处理。

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摘要

First part of this thesis presents the design, validation, and implementation of an OrthogonaludFrequency Division Multiplexing (OFDM) transmitter and receiver on a Cyclone II FPGA chip using DSP builder and Quartus II high level design tools. The resources in terms of logical elements (LE) including combinational functions and logic registers allocated by the model have been investigated and addressed. The result shows that implementing the basic OFDM transceiver allocates about 14% (equivalent to 6% at transmitter and 8% at receiver) of the available LE resources on an Altera Cyclone II EP2C35F672C6 FPGA chip, largely taken up by the FFT, IFFT and soft decision encoder.udSecondly, a new wavelet-based OFDM system based on FDPP-DA based channel estimation is proposed as a reliable ECG Patient Monitoring System, a Personal Wireless telemedicine application. The system performance for different wavelet mothers has been investigated. The effects of AWGN and multipath Rayleigh fading channels have also been studied in the analysis. The performances of FDPP-DA and HDPP-DA-based channel estimations are compared based on both DFT-based OFDM and wavelet-based OFDM systems. The system model was studied using MATLAB software in which the average BER was addressed for randomized data. The main error differences that reflect the quality of the received ECG signals between the reconstructed and original ECG signals are established.udFinally a DA-based architecture for 1-D iDWT/DWT based on an OFDM model is implemented for an ECG-PMS wireless telemedicine application. In the portable wireless body transmitter unit at the patient site, a fully Serial-DA-based scheme for iDWT is realized to support higher hardware utilization and lower power consumption; whereas a fully Parallel-DA-based scheme for DWT is applied at the base unit of the hospital site to support a higher throughput. It should be noted that the behavioural level of HDL models of the proposed system was developed and implemented to confirm its correctness in simulation. Then, after the simulation process the design models were synthesised and implemented for the target FPGA to confirm their validation.
机译:本文的第一部分介绍了使用DSP Builder和Quartus II高级设计工具在Cyclone II FPGA芯片上设计正交,正交频分复用(OFDM)发送器和接收器的设计,验证和实现。已经研究和解决了有关逻辑元素(LE)的资源,包括组合功能和模型分配的逻辑寄存器。结果表明,实现基本的OFDM收发器在Altera Cyclone II EP2C35F672C6 FPGA芯片上分配了大约14%的可用LE资源(相当于发射器的6%,接收器的8%),这主要由FFT,IFFT和软件占用第二,提出了一种新的基于小波的OFDM系统,该系统基于基于FDPP-DA的信道估计,作为一种可靠的ECG患者监测系统,是一种个人无线远程医疗应用。已经研究了不同小波母亲的系统性能。在分析中还研究了AWGN和多径瑞利衰落信道的影响。基于基于DFT的OFDM和基于小波的OFDM系统,比较了基于FDPP-DA和基于HDPP-DA的信道估计的性能。使用MATLAB软件研究了系统模型,其中针对随机数据处理了平均BER。建立了反映已重构和原始ECG信号之间接收到的ECG信号质量的主要误差差异。 ud最后,为ECG-PMS无线实现了基于OFDM模型的基于DA的1-D iDWT / DWT体系结构远程医疗应用。在患者现场的便携式无线人体发射器单元中,实现了一种基于串行DA的iDWT方案,以支持更高的硬件利用率和更低的功耗。而用于DWT的完全基于Parallel-DA的方案则应用于医院站点的基本单元,以支持更高的吞吐量。应该注意的是,所提出系统的HDL模型的行为水平已得到开发和实施,以确认其在仿真中的正确性。然后,在仿真过程之后,针对目标FPGA合成并实施了设计模型以确认其有效性。

著录项

  • 作者

    Migdadi Hassan Saleh Okleh;

  • 作者单位
  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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