信号频谱
- 网络Signal spectrum;frequency spectrum
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基于DSP的实时信号频谱分析模块设计
Design of real-time signal spectrum analysis module based on DSP
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基于DSP和Ethernet的实时信号频谱监测系统
Real-time Signal Spectrum Monitoring System Based on DSP and Ethernet Network
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OFDM机会频谱接入的信号频谱成型方法
Spectral Sculpting of OFDM Signal for Opportunistic Spectrum Access
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线性调频Z变换在信号频谱分析中的应用
Chirp-Z Transform and its Applications in Spectrum Analysis
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周期信号频谱分析演示CAI软件的编程实现
The Programming and Realization of the CAI Software for Periodic Signal Spectrum Analysis and Demonstration
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DDS输出信号频谱结构的系统分析
The Systematic Analysis of the Spectrum Structure of DDS Signal
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从PAL信号频谱入手恢复信号副载波
Subcarrier Recovery on the Basis of the Spectrum of PAL Signal
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本文研究了无线局域网中使信号频谱得到优化的一种简单OFDM子载波加载算法。
In this paper , we consider a simple loading algorithm for OFDM systems in WLAN for signal spectrum optimization .
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利用此方法,对回波信号频谱做距离向逆Chirpz变换,便可对距离单元迁移进行有效补偿。
We can calculate the inverse Chirp Z-transform of SAR echo on range dimension use this method to compensate the RCM .
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该文提出了一种新的宽带线性调频(LFM)信号频谱压缩数字接收方法。
This paper proposes a novel spectrum-compressed digital receiving method using Laguerre transformation for LFM signal .
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运用VISUALBASIC编写了客户软件,实现音频信号频谱分析数据的以太网传输和PC端频谱分析数据的图形显示。
With Visual Basic , it has been realized that the the transfer of spectral analysis data on the Ethernet and the data can be displayed as an image by the client software .
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分析了数字方法运用于波形合成中由于DAC零阶保持特性造成的信号频谱高频失真的机理;
The mechanism of the signal spectrum distortion because of DAC 's zero-order holding is analysed .
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基于Morlet小波的高分辨率信号频谱估计
High Resolution Signal Spectrum Estimation Based on Morlet Wavelet
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为了解决高频信号频谱检测系统数据采集慢、体积庞大的问题,开发了基于DSP芯片的数据采集及处理系统。
In order to improve the speed of data acquisition and retrench the high frequency signal detecting system , a data-acquisition and transacting system is put forward based on DSP .
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分析了存在距离-速度同步拖引干扰时的信号频谱特征,研究了一种脉冲多普勒(PD)雷达抗距离-速度同步拖引干扰的方法。
The spectrum characteristics of synchronous jamming on range and velocity are analyzed . A method for a PD radar to counter the jamming is also discussed .
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正交DRFM的系统仿真及其信号频谱分析
Simulation and Analysis of Spectrum of I-Q DRFM
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与小波变换(WT)相比,HLT对信号频谱的划分更加灵活。
Comparied to the wavelet transforms ( WT ), HLT have more flexibility in dividing the signal spectrum .
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在DDS频谱性能量化理论基础上,从相位噪声以及非线性余弦函数映射两个方面对DDS输出信号频谱纯度性能优化。
Based on DDS spectrum performances measurement theories , the methods of spectrum performance optimization were proposed from the two aspects including phase noise and nonlinear Sine / Cosine Map function .
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明胶溶液的pH值较大时,超声回波信号频谱主频幅值较大,频谱主频偏移量较小,明胶溶液内部分子呈开放线团构象。
The higher the pH value of gelatin solution is , the larger the peak values of ultrasonic echo signal frequency spectrum . The offset of frequency spectrum is small and the molecules in gelatin solution have a open coil conformation .
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针对传统数字调制信号频谱扩展问题,提出具有相位突变特性的时相调制(TPM)方式。
Aiming at the spectrum spread problem of traditional digital modulation signals , a time-phase modulation ( TPM ) method with abrupt phase change characteristic is proposed .
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首先总结了当前主要的几种频谱特征提取方法的优缺点,在对典型辐射源信号频谱特征分析的基础上,设计可以反映信号局部频谱结构的Spectrum原子,并提出多尺度Spectrum原子库构建方法。
At the beginning , the advantages and disadvantages of current main spectrum feature extraction methods are concluded . Based on it , the Spectrum atom expressing the local spectrum structure of signals is designed and a method of multi-scale Spectrum atom dictionary is proposed .
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本文采用了能较好地反映心率变异信号频谱特性的分析方法&样条插值法对HRV信号进行重采样。
Resample on HRV signal is necessary . In this chapter after comparing different evenly sampling methods , the best way - cubic spline interpolation is adopted in spectrum estimation .
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针对呼吸、心动信号频谱有重叠的特征,采用自适应LMS算法对信号进行相关噪声抵消处理,从而获取较为理想的心动信号。
According to the overlap of the respiration and heartbeat frequency spectra , an adaptive LMS algorithm has been adopted to reduce the correlative noise and to form a more ideal heartbeat waveform .
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文章通过对DIT-FFT算法的详细分析,提出了一种计算机软件仿真信号频谱分析方案,并给出了关键算法的C语言程序。
The article detailed analysis through DIT-FFT algorithm , presented a kind of analysis program about computer software simulation signal spectral , and given a key algorithm C language procedures .
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通过对压气机旋转失速形成、发展、退出过程中压力信号频谱演化特性的分析,提出了一种基于FFT的压气机旋转失速信号检测判据。
Based on the analysis of spectrum evolving characteristics of pressure signal measured from a compressor before , during , and after rotating stall , a criterion based on FFT is put forward to detect rotating stall signal .
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该稳定本振源由一个微波锁相环路(PLL)和一种新型自动频率控制电路(AFC)组成,文中分析了影响微波输出信号频谱纯度和相位噪声的主要因素。
The source consists of a microwave phase-locked loop and a new type of automatic frequency control circuit . Chief factors to influence spectrum purity of microwave output signal and phase noise are analyzed .
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该系统采用Fizeau干涉仪进行信号频谱分析,形成的梳状干涉图案强度分布可以通过线列CCD探测器测定,其重心位置决定信号的多普勒频移量或径向风速。
The system uses a Fizeau etalon for spectral analysis , and the comb-like interference patterns are determined by a linear CCD array . The gravity of the pattern is proportional to the Doppler shift of the backscattering signal from wind .
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论文介绍了Galileo卫星导航系统的空间部分、地面控制部分、用户设备部分和系统的特点,着重研究了BOC调制的原理、信号频谱特性和信号产生。
Firstly the space part , the ground control part , the user equipment part and the characteristic of Galileo satellite navigational system are introduced in the dissertation , and the BOC modulation principle , the signal frequency characteristic and the signal generation are mainly studied .
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本文依据Gibbs现象的实质,讨论了信号频谱分析中的理想滤波特性、频窗特性、限带白噪声的自相关函数、时域截断的泄漏效应、时窗特性以及离散采样信号的复原等问题。
Based on the essence of the Gibbs phenomenon , the ideal filtering characteristics , the time window characteristics , the spectral window characteristics , the autocorrelation function of band-limited white noise , the leakage effect and the restoration of discrete sampling signal in signal spectrum analysis are discussed .
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本文用Romberg数值积分法计算出在一定能量损耗限值要求下的脉冲信号频谱宽度,并用付氏级数对其进行了信号重构验证,据此得出了脉冲信号测试系统带宽的最佳值。
This paper presents the pulse signal spectrum bandwidth using Romberg numerical integration algorithm under a certain energy wastage required . A reconstruction signal is obtained by Fourier Series , and the optimum bandwidth of the measurement system is also presented .