ADSP
- 网络数字信号处理器;数字信号处理;无水磷酸氢二钠;高级数字信号处理;数字信号处理技术
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Realization of Wavelet Image Manipulation Enhanced Algorithm Based on ADSP
基于ADSP的小波图像增强算法实现
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Design of the Target Auto-tracking System based on Double Digital Signal Processor ADSP
基于ADSP的坦克目标自动跟踪系统设计
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Video SoC verification scheme based on ADSP and the design of its interface
基于ADSP的视频SoC验证方案及其接口的设计
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Hardware Design of Dedicated Short-Range Communication Protocol Based on ADSP
基于ADSP的专用短程通信协议的硬件设计
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This paper discusses the latest technical trend of DSP , especially the ADSP .
分析了DSP最新技术动向,特别是ADSP最新的32位浮点DSP芯片的最新技术。
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A Dual Tone Multi frequency Receiver Using ADSP 2100 Family
采用ADSP-2100系列的双音多频信号接收器
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Application of Altitude Measurement in VHF Radar Based on ADSP
基于ADSP的米波雷达测高算法实现
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Realizing Raw Data Compression Algorithm of Multi-polarized SAR using ADSP
用ADSP实现多极化SAR原始数据压缩算法
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ADSP Realization of Wavelet Image Fusion Algorithm
小波变换图像融合算法的ADSP实现
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Application of Subsection Pulse Compression Based on ADSP
基于ADSP的分段脉冲压缩应用
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An Adaptive Multi - dimensional Dynamic Compensating Device Based on ADSP for Wrist Force Sensor
基于ADSP的腕力传感器自适应多维动态补偿器
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Hardware Realization of the Integer Wavelet Transformation in ADSP
整数小波变换在ADSP硬件中的实现
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This paper describes the specification and the application of I2S bus basing on ADSP .
文章介绍了基于ADSP的I2S总线的特点及其应用。
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Considering the control requirements of parallel experiment platform , develop the CNC system of 3-DOF parallel experiment platform based on ADSP .
考虑并联数控实验台的控制要求,开发基于ADSP三自由度并联实验台的数控系统。
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In this paper , a new multi DSP parallel computing architecture including 5 ADSP 2106x chips is first presented .
首先提出了一种新型的、由5片ADSP-2106x构成的多DSP并行计算结构。
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At last , according to the development circumstance of ADSP and FPGA , this paper introduces the commissioning of MU .
最后,本文根据ADSP和FPGA的集成开发环境,简述了对合并单元的调试。
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In this paper , Real time torpedo homing system . which is based on ADSP ? 2106X to be discussed .
本课题提出了基于ADSP&2106X完成鱼雷自导算法。
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Using ADSP 21160 to design DSP programs with assembly and C languages for the three algorithms mentioned above on VisualDSP + + 3.5 integrated development environment .
用ADI公司的SHARC系列芯片ADSP21160,在VisualDSP++3.5集成开发软件平台上,完成以上三种旁瓣压缩算法实现的汇编、C语言程序设计和调试工作。
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This system includes 4 DSPs ( ADSP 2181 ), which can be arranged as a pipe line processing array . Many algorithms can be realized in this system .
系统包含4片DSP(ADSP2181)构成的流水线型的处理阵列,可用于实现各种算法;
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The start and duration of the burst access is controlled by ADSC , ADSP and ADV and chip select pins .
开始和持续时间的突发存取控制脂肪干细胞,腺病毒和芯片的ADSP和选择引脚。
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Lastly , this paper discussed the realization of the three sidelobe algorithms mentioned above using ADSP 21160 which is a product of ADI SHARC serial digital signal processor .
最后,采用ADI公司SHARC系列DSP芯片ADSP21160N探讨了伪随机FSK/PSK信号旁瓣抑制算法的DSP实现。
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The system takes image from CCD camera , then samples the video signal , at last uses ADSP to do the image procession and pattern recognition and outputs the result from 486 comput - er .
该系统采用面阵CCD摄象,经Bt812数字化器进行视频信号采集,运用ADSP完成实时图象处理与识别,最后由工控486微机输出测量结果。
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And the time-frequency analyzing methods are proposed to analyze the signal . The actual radar data is analyzed by short-time Fourier transform ( STFT ), Wigner distribution ( WD ) and adaptive spectrogram ( ADSP ) methods .
本文提出了用时-频分析的方法来分辨编队目标,并用短时付氏变换(STFT),Wigner分布(WD)以及我们提出的自适应谱图(ADSP)方法对实测的雷达数据进行了分析。
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Acquisition control circuit adopts double CPU structure with ADSP as the main controller to realize the high speed data acquisition , signal processing and preliminary analysis , and with MCS 51 as auxiliary CPU to realize the functions i.e. communication and man-machine interface .
采集控制电路采用了双CPU结构,以ADSP为主控制器,实现数据的高速采集、信号处理和初步分析,以MCS51为辅助CPU,完成通信、人机接口等功能。
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In order to solve the wrist force sensor 's dynamic characteristic changing with the loadings , this paper develops a real-time adaptive multi-dimensional dynamic compensating device with ADSP , designs the hardware circuit and edits the application software . A lot of experiments have been finished .
针对腕力传感器动态特性随负载变化这一问题,研制了以ADSP为处理核心的自适应多维实时动态补偿器,设计了硬件电路,编制了软件,进行了实验。