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We realize the Neural Networks algorithm by exploring FPGA and MicroBlaze embedded hardware design. In this way, we can improve the arithmetic speed, realize the specific function in the chip, and diminish the system size.

神经网络评级算法采用FPGA和MicroBlaze嵌入式硬件实现,加快了该算法的运算速度,实现了专用芯片的功能,大大缩小了系统的体积,便于系统实现小型化、集成化。

The study has focused on: 1 The research background and the current state of the power measurement were analyzed systematically, and then wavelet-based power measurement algorithm was certified feasible for astable signals; 2 We developed a new method of RMS and power measurement based on Dmeyer wavelet. After that three other wavelet measurement approaches were compared with Dmeyer wavelet-based measurement approach. Then the impact on measurement errors of amplitude frequency property and energy leakage of wavelet filter banks were deeply researched, and some measures were proposed to reduce it; 3 We developed a new strategy of power measurement algorithm based on lifting wavelet, which had calculation advantage compared with the first wavelet, so that it was more suitable for the realization of hardware; 4 The running system of wavelet-based power measurement algorithm based on DSP was proposed, and then it was realized on ICETEK-VC5416-A EVM board; 5 Existing problems and the further research direction of wavelet-based power sub-band measurement algorithm was discussed.

本文对基于小波变换的功率测量算法展开深入的分析研究,主要内容有:1)系统地分析了功率分解测量的研究背景、国内外的研究现状,并从能量守恒的角度验证了小波功率分频带测量算法在非平稳信号条件下的可行性;2)首次提出了Dmeyer小波变换有效值与功率的测量方法,进而通过对该方法与3种已经提出的小波测量方法的对比分析,深入研究了小波滤波器组的幅频特性和能量泄漏特性对测量误差的影响,并针对电网谐波的特点提出了减小影响的相关措施;3)首次提出了二代小波功率测量算法,对比一代小波功率分频带测量算法,它大大减少了算法实现的运算量及内存的需求量,从而更适合于硬件的实时实现;4)提出了小波功率分频带测量算法的DSP实现方案,并在ICETEK-VC5416-A EVM板上进行了实现;5)探讨了小波功率分频带测量算法目前仍存在的问题,并提出了进一步的研究方向。

First of all, we talk about embedded systems and digital radios basic concepts and features. Secondly, the system described in detail the overall function and functions of various modules. On the third, described in detail the hardware system design, and mainly focused on the core hardware system board and the expansion of all parts of circuit board design. Fourth, described in detail the Custom embedded WinCE operating systems, their main task is to reduce, modify Bootloader.

首先,介绍嵌入式系统的基本概念和特点以及本文所论述的结构;其次,详细介绍了系统的硬件的总体设计以及软件的总体设计;第三,详细介绍了系统的各个硬件模块的设计,主要是对硬件系统的核心板和扩展板的各部分电路的设计进行了介绍;第四,详细介绍了嵌入式WinCE操作系统的定制方法,主要工作是对其进行裁减,编写Bootloader;并通过中断和流接口开发基于嵌入式系统的驱动程序,通过修改编写驱动程序让嵌入式系统能够满足当前的项目的需要,实现最小化同时又是最完全的系统;第五,详细介绍了服务器端,嵌入式控制端,采集端3大部分的软件以及自己定制的通讯协议。

We innovatively promote an overall hardware design method and finish the RTL code and final hardware implementation.

基于以上改进算法,提出了整体硬件设计方案,并完成了代码的编写和最终的硬件实现。

An optimized structure based on polyphase decomposition is introduced after discussing the implementation structure of the correlator.

通过探讨相关器的实现结构,提出了一种基于多相分解的优化结构,它通过获取系统工作速率与实现并行度之间的平衡,极大地降低了硬件实现复杂度。

Studied the expansion of the Dual-port Data Cache, designed a Sixteen-ported Data Cache, The simulation results showed that on the average, access time is decreased 20% over Single-port RAM based Data Cache.

对双端口数据Cache进行扩展研究,设计了一个16端口数据Cache,与单端口实现的16端口数据Cache相比,数据Cache平均访问时间降低了20%左右,且硬件实现相对简单,占用芯片面积少。

In addition, the new compression method is simple, and the memory requirement in the operation process is lower, and it is fit for parallel optimizing progress. The compression speed can be advanced by using DSP, and it also can be implement image real time compression with little information loses.

另外,该压缩方法运算过程中所需存储量小和算法简单的特点,适宜硬件实现,而且便于并行处理,如果用数字信号处理器实现压缩算法,可进一步提高压缩速度,实现用于图像数据在高保真情况下的实时压缩。

it is a crucial research field to realize the smart home remote control through the internet.hence,this paper analyses the composition and structure of the smart home,proposes remote monitoring program through internet for smart home,gives the smart home control terminal hardware design and implementation methods based on the microcontroller sx52,introduces the principles and processes of the control terminal software,and based on the tcp / ip protocol analysis,describes the principle and method of protocol dispose in the terminal control.this principle and method have an important reference value for the smart home system design.

摘 要:通过internet实现对智能家居的远程监控是当前技术研究的热点。为此分析智能家居系统的组成和结构,提出通过internet对智能家居系统进行远程监控的方案,给出基于微控制器sx52的智能家居控制终端的硬件设计方案和实现方法,介绍控制终端软件实现的原理和流程,在对tcp/ip协议分析的基础上,阐述控制终端中协议处理的原理和实现方法。这些原理和方法对智能家居系统的设计具有参考价值。

In this thesis, the principles and realization methods of evolvable hardware have been systematically introduced. Evolvable algorithms are mainly discussed and many deep researches have been done on the basic application of evolvable hardware.

本文系统介绍了硬件演化技术的原理和实现方法,重点分析了硬件演化的演化算法,对其应用基础技术进行了深入的研究。

And stressfully research computer graphics processing together with give part realization.

对计算机图形处理进行了较为详尽的研究并给出了部分实现;详细阐述了基于OpenGL的图形处理的特点,给出OpenGL的三种实现方式:软件实现、硬件实现和三维图形加速模式,并对OpenGL的体系结构进行了深入探讨。

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