One or more digital signal processors (DSPs) coupled to fast analog-digital converters (ADCs) perform the signal acquisition and pre-processing, trigger generation, and so forth.
一个或多个数字信号处理器(DSP)耦合起来可以构成速度很快的模拟-数字转换器(asc),用来执行信号获取、预处理、触发器生成等操作。
The inverse synthetic aperture radar (ISAR) echo signal model of fast-moving target and the effect of target fast-moving on ISAR signal processing were analyzed.
分析了高速运动目标的逆合成孔径雷达(ISAR)回波信号模型和目标高速运动对ISAR信号处理的影响。
FFT is a mathematical tool commonly used in digital signal processing, and is characterized by fast operational speed and low SNR threshold value.
快速傅里叶变换是数字信号处理的常用数学工具,以运算速度快和信噪比阈值低为特点。
DSP is a high-powered digital signal processor and possesses fast computation capability and strong information processing capability.
DSP是一种高性能的数字信号处理器,具有快速的计算能力和强大的信息处理能力。
The standard method for spectrum analysis in digital signal processing is the discrete Fourier transform(DFT), typically implemented using a fast Fourier transform(FFT) algorithm.
数字信号处理中标准的频谱分析方法是离散傅立叶变换(DFT),典型的实现方法是快速傅立叶变换(FFT)。
Fast Direct spread spectrum signal acquisition using block processing technique has been only used in software receivers because of the huge computation.
块处理方法实现扩频信号的捕获因其运算量巨大到目前为止多用于软件接收机中。
The Fast Fourier Transform (FFT) is one of the most important algorithm of real-time signal processing. It's widely used in EW receivers.
FFT是电子战接收机信号处理的关键算法之一,在数字EW 接收机中有着广泛的应用前景。
The system came to a better harmony in both hardware and software, made fast and precise sampling of CCD signal, and provided dependable evidence for further analyzing and processing of CCD signal.
整个系统在硬件与软件两个方面达到了较佳配合,实现了对线阵CCD信号快速而准确地采集,为后续CCD信号的分析处理提供了可靠依据。
The mathematical means of discrete Fast Fourier Transform is used in signal processing.
采用快速离散富里叶变换处理信号;
At present, the most widely used fault signal analysis and processing method is Fourier analysis and Fourier corresponding FFT fast algorithm.
目前,应用最广泛的故障信号分析处理方法是傅立叶(Fourier)分析和相应的FFT快速算法。
Because of real-time response requirements, signal processing must be fast and accurate.
因为要满足实时的反应要求,所以信号处理需要快速且准确。
The major idea of this paper is to develop a system of images fast lossless compression, which realized on the special digital signal processing (DSP) chip of the high speed hardware.
本文内容旨在研制一种基于高速硬件处理功能的专用数字信号处理(dsp)芯片实现图像快速无损压缩的系统。
Fast Hadamard transform (FHT) is a basic transformation in digital signal processing, which is widely used in mobile communications and Multimedia coding.
快速哈达玛变换(FHT)是数字信号处理中的基本变换之一,在移动通信、多媒体编解码中得到了广泛的应用。
Firstly, this algorithm utilizes the delay caused by signal transmitting and signal processing to achieve fast control information exchange.
首先,该算法利用信号收发及处理所产生的时延,实现从用户间快速交换控制信息的目的。
Correlation matching is widely used in signal processing and image processing. This paper proposes a fast correlation matching algorithm.
相关算法是一种广泛应用于信号和图像处理领域的方法。
DSP technologies have applied in every field of digital signal processing because of its parallel multiplier, pipeline structure and fast On-Chip memory.
数字信号处理(dsp)具有并行的硬件乘法器、流水线结构以及快速的片内存储器等资源,其技术广泛地应用于数字信号处理的各个领域。
By the fast development of DSP technology, Digital Signal processing is turning to real-time processing.
随着DSP技术的迅猛发展,数字信号处理转向了实时性处理。
A method which makes use of autorelation signal processing to realize fast frequency measurement is given, it can improve frequency measurement speed of digital receivers.
介绍了一种利用信号自相关处理进行快速测频的方法 ,可以提高数字接收机的测频速度。
The algorithm is fast and accurate with a strong anti-jamming capability, which can be used for echo signal analysis and processing in real-time multi-beam sonar systems.
通过实时提取信号的幅度及形状的综合特征计算出信号的时延。该方法具有较强的抗干扰能力,算法快速、准确,适合于多波束声呐系统的回波信号实时分析处理。
The inverse synthetic aperture radar (ISAR) echo signal model of fast-moving target and the effect of fast-moving character on ISAR signal processing are analyzed.
分析了高速运动目标的逆合成孔径雷达(ISAR)回波信号模型和高速运动对ISAR信号处理的影响。
The inverse synthetic aperture radar (ISAR) echo signal model of fast-moving target and the effect of fast-moving character on ISAR signal processing are analyzed.
分析了高速运动目标的逆合成孔径雷达(ISAR)回波信号模型和高速运动对ISAR信号处理的影响。
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