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analog data相关的网络例句

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The remote control and data acquisition system of GST-1 three-axis turntable is designed and manufactured. It can not only control all the work states of the turntable, but acquisite 6 channels digital signals and 6 channels analog signals as well. The system is powerful and has high accuracy of data acquisition. It is the important guarantee to realize automatical test of intertial sensor and system.

设计和参与研制了GST-1型三轴转台计算机远控及数据采集系统,并进行了实际调试,该系统不仅可以程序控制转台的所有工作状态,而且能够同时采集被测对象的六路数字信号和六路模拟信号,功能强大,数据采集精度高,是实现惯性仪表和惯性系统自动化测试的重要保障。

This system mainly contains the front-end pulse interception and back-end software analysis. In the first part, we used a non-invasive infrared measurement method based on the dual channel simultaneous measurement technique. We measured the photo-plethysmograph from the subject's fingers and toes simultaneously, then used an analog circuit and central control unit to process the signals. Finally, the digital volume pulse data is processed by a personal computer. Because the characteristic points of digital volume pulse always occur in sharp variations, this paper proposes two algorithms to solve this problem. First, we find the pacemaker and percussion wave peak from transient slope variation, and then locate the dicrotic notch and dicrotic wave peak by using the wavelet transformation algorithm. When we analyze the data, we use the Visual Basic graphical user interface, which together with the Matlab is the core of the system.

本系统主要包含前端脉波撷取及后端软体分析两部分,其中前端脉波撷取部份是以非侵入式的红外线量测方式,双通道同步量测受测者手指与脚趾的光容积变化描记图,同时将此讯号经类比处理电路及中央控制单元输出成为数位容积波,再传送至个人电脑中;而在后端软体分析部份,因数位容积波之特徵点皆出现於波形中急剧变化的部份,故本论文以瞬间斜率变化量来定位脉波讯号中的起搏点及主波峰顶点,并利用小波转换演算法(wavelet transformation algorithm)来分析重搏切迹与重搏波顶点;程式撰写主要以Matlab为核心,结合Visual Basic的图形化使用者操作介面,增加系统与使用者间的亲和力。

LT3468ES5-1 Pinout: 8-bit Resolution 1 Gsps Sampling Rate ADC Gain Adjust 2 GHz Full Power Input Bandwidth Fs = 1 Gsps, Fin = 20 MHz: C SINAD = 45 dB (7.4 Effective Bits) SFDR = 58 dBc Fs = 1 Gsps, Fin = 500 MHz: C SINAD = 44 dB (7.2 Effective Bits) SFDR = 56 dBc Fs = 1 Gsps, Fin = 1000 MHz (-3 dB Fs): C SINAD = 42 dB (7.0 Effective Bits) SFDR = 52 dBc 2 Tone IMD:-53 dBc (489 MHz and 490 MHz) at 1 Gsps DNL = 0.3 LSB INL = 0.7 LSB Low Bit Error Rate (10-13) at 1 Gsps Very Low Input Capacitance: 0.4 pF 500 mVpp Differential or Single-ended Analog Inputs Differential or Single-ended 50 ECL Compatible Clock Inputs ECL or LVDS/HSTL Output Compatibility Data Ready Output with Asynchronous Reset Gray or Binary Selectable Output Data; NRZ Output Mode Power Consumption: 3.4 W at TJ = 90 C Dual Power Supply: 5 V Radiation Tolerance Oriented Design 150 Krad (Si Measured

LT3468ES5-1引脚说明: 8位分辨率1 GSPS的采样速率ADC的增益调整2 GHz的全功率输入带宽= 1 GSPS的二恶英,翅= 20兆赫中:C的SINAD = 45分贝(7.4有效位)的SFDR = 58 dBc的二恶英= 1 GSP的,财务= 500兆赫中:C的SINAD = 44分贝(7.2有效位)的SFDR = 56 = 1 GSPS的dBc的外勤人员,财务= 1000兆赫(-3分贝财经事务)中:C的SINAD = 42分贝(7.0有效位)的SFDR = 52 dBc的2声调发展学院:-53 dBc的(489兆赫和1 GSPS的的DNL = 0.3的LSB的INL = 0.7 LSB的低误码率(10-13)在1 GSPS的非常低输入电容:0.4 pF的490兆赫)500 mVpp的差分或单端模拟输入差分或单端50Ω的ECL兼容的时钟输入的ECL或LVDS / HSTL输出兼容性数据与异步复位灰色或二进制可选的输出数据就绪输出; NRZ码输出模式下的功耗:3.4 W于温度Tj = 90 C双电源:5伏辐射性导向设计

The videodisk, in the form of Laser Vision, serves as the output of motion pictures and audio. The data are stored in an analog-coded format on the disks; the reproduced data meet the highest quality requirements.

以激光视觉形式的视频和音频的输出,数据以模拟编码形式存在盘上,再生的信号能符合最高的质量要求。

Base on the systematically geological investigation and study, we choose to use aremote sensing data source,the geography control data source(1:50,000relief map of Qiaojia and measured GPS ) as the data source of this research, adopt"Digital Landslide"processing image data, and carry on time-space analysiscombining geological investigation and related data. Application aerodynamicist theories, some important conclusions that obtained from the wind-tunnel experiment,and according to the time –space analysis result, we analyzed the landslide dammingmovement mechanism, presumed the movement format of this high-speed landslide,studied the formation mechanism and the movement characteristic of this landslide ,calculated it's movement equation, applied VC language to write calculationprocedure of each stage of the landslide, computed movement speed and displacement,and made sure its possible stop district.

本文在前人研究的基础上,选用遥感数据源、地理控制数据源(1:5万巧家幅地形图及实测GPS点)为本研究的数据源,采用"数字滑坡"技术处理图像数据,结合野外实地考察及相关资料对石膏地滑坡进行了时空分析;运用空气动力学理论,采用胡厚田等人在风洞实验中得出的许多重要结论,根据时空分析结果分析滑坡的运动机理,推测高速滑坡的运动模式;研究石膏地滑坡的形成机理、运动特征及运动方程,并用C++语言在VC开发环境中编写滑坡各阶段的计算程序,计算滑坡的流动速度及运动位移,确定其可能的停止区域。

A data gathering scheme MADG(movement-assisted data gathering),which makes use of the mobile base station for data collection,is presented.In this scheme,the base station moves in a stationary annularity area exploited for data buffering.The gathered data.are firstly forwarded into the buffering area and then collected by the mobile base station.

提出了一个利用移动基站协助数据收集的模式(movement-assisted data gathering,简称MADG),它将基站移动区域设置为缓冲区,首先将数据沿最短路径传输到缓冲区内,然后在基站移动的过程中进行数据收集。

To design a basic evaluation model of attribute data in GIS, using various theory of data quality, this paper makes a deep analysis of quality control and evaluation of attribute data and brings forward a effective measure against error in attribute data. A good method is presented to improve precision of attribute data in this paper.

为了给出一个GIS属性数据质量评价的基本模型,结合已有的数据质量理论,本文对属性数据的质量控制与评价进行了深入分析与研究,给出了GIS属性数据质量控制的有效措施,并提出了提高属性数据存储、操作精度的方法。

In GIS, data quality is one of the key aspects.The Recent studies of data quality in GIS most focus in the error of spatial data. The error study on attribute data is very weak. Most studies centralize in precision analysis of attribute data from remote sensing and introduction of new method. The studies of attribute information quality stored in RDB are very weak.

近年来,GIS数据质量的研究集中在位置数据的误差上,而对属性数据误差的研究较少,多年来的研究主要集中在遥感分类属性数据的精度分析和一些新方法的引入上,而关系数据库存储的属性信息质量方面的研究相对比较薄弱。

The tradition data base Management Information System can not be made full use of, the analytical data base is hit by build-up large amount of data , the data excavates with data storehouse technology to be able to resolve this one problem very good.

传统的数据库管理信息系统不能够很好地利用、分析数据库中积累的大量数据,数据挖掘与数据仓库技术可以很好地解决这一问题。

The invention discloses a data transmitting method, a device and a system in a time division duplex system, which is used to solve the problem in the prior art that downlink data among adjacent cells interfere to uplink data; the method comprises that: a blanket channel of a whole cell or a high-power transmit channel is mapped to OFDM symbols of a downlink time slot in a transmit frame, a guard interval in the transmit frame and the OFDM symbol on a time domain space OFDM symbols which are not mapped to any of the blank channel of the whole cell and the high-power transmit channel; an uplink control channel is mapped to OFDM symbols of an uplink time slot in the transmit frame, the guard interval and the OFDM symbols for mapping the uplink control channel on the time domain space OFDM symbols which are not mapped to uplink control channel; the OFDM symbols of the transmit frame are transmitted; the invention is adopted to avoid the interference between the downlink data and the uplink data among the adjacent cells.

本发明公开了一种时分双工系统中发送数据的方法、装置及系统,用以解决现有技术中邻近小区间的下行数据对上行数据产生干扰的问题;该方法包括将全小区覆盖信道或大功率发射信道映射到传输帧中下行时隙的OFDM符号上,并且所述传输帧中的保护间隔与所述OFDM符号在时域上间隔未映射全小区覆盖信道和大功率发射信道中任一信道的OFDM符号;将上行控制信道映射到所述传输帧中上行时隙的OFDM符号上,并且所述保护间隔与映射上行控制信道的OFDM符号在时域上间隔未映射上行控制信道的OFDM符号;发送所述传输帧的OFDM符号;采用本发明可以避免相邻小区间的下行数据和上行数据之间的干扰。

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