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dsp相关的网络例句
与 dsp 相关的网络例句 [注:此内容来源于网络,仅供参考]

In chapter Ⅴ, from the point of the system'view of the vibration data acquisitor for rotating machinery, the major—minor processor structure in this system is analysed, the characteristics of the major processor DSP56001, the function of the minor microcomputer PC have been explained. The Memory Spaces Configuration, Synchronous Serial Interface , Serial Communications Interface , Host— Port and Peripheral Buses of the DSP system are summarized, and its timing is explained. The DSP system interfaces with the boards have been explained further.

第Ⅴ章,从旋转机械振动数据采集器的系统出发,分析了该系统的主—次处理器结构,说明了主处理器DSP56001的特点及次微机PC的地位和作用;概述了DSP系统的存储器空间设置、同步串行接口、串行通讯接口、主接口和外设总线,并说明其工作时序;对DSP系统与各模块之间的接口关系,作了进一步的说明。

And another use of FPGA is that provide DSP original data. DSP is used as digital filters used by sampling at the foreside and at the export correspondingly.The original data used by DSP is taken from the first adder in the circle. After the DSPs disposal,the output data are sent to guidance system.

总的说来,PGGA主要实现整个系统的时序控制和闭环回路,以及为DSP提供原始滤波数据;而DSP主要的工作是从PGGA那里取来第一个加法器输出的数据作为原始数据,再对数据进行滤波处理,最后的处理结果作为转速的信息送给捷联惯导系统。

This invention relates to a DC linear motor digital controller including a central processor circuit, a data memory, a program memory, an A/D conversion circuit, a D/A conversion circuit, a linear shift orthogonal code pulse signal circuit, a signal isolation circuit, among which, the center processor circuit is composed of a special DSP chip controlled by the motor, a complicated programmable logic device CPLD combining with a peripheral expanding circuit, said digital controller fully utilizes the motor to control the special DSP chip to integral DSP kernel CZXLP and the rich external circuit in a single chip to make up of a digital controller for controlling high frequency response DC linear motor with small volume, low dissipation and high reliability.

高频响直流直线电机数字控制器,属于电机自动控制技术领域,目的在于获得快速、高精度往返运动的控制效果,实现高频响直流直线电机的精密位置跟踪控制功能。本发明包括中央处理器电路,数据存储器,程序存储器,A/D转换电路,D/A转换电路,直线位移正交编码脉冲信号电路,信号隔离电路;中央处理器电路由一个电机控制专用DSP芯片,复杂可编程逻辑器件CPLD,结合外围扩展电路组成。该数字控制器充分利用电机控制专用DSP芯片将高性能DSP核C2xLP和丰富的功能外设电路集成在单个芯片上这一特点,构成了一个体积小、功耗低、可靠性高和功能比较齐全的高频响直流直线电机控制用的数字控制器,使系统的整体成本大大降低。

The SINS of FOG is designed and implemented based on DSP. The system is with a dual CPU structure. DSP is used to process data while MCU controls data acquisition and the communication between DSP and MCU is achieved by dual-port RAM. All of these constitute a small strap-down navigation system. Meanwhile introduced a kind of algorithm of SINS, SPI communication and the second boot Loder of TMS320C6713 in briefly. After testing, the system speed and accuracy satisfy design requirements and the system has been applied to actual system.

介绍了一种基于DSP的光纤陀螺捷联惯导系统的设计与实现方法;系统采用DSP+MCU的体系结构,DSP主要完成导航计算,利用单片机实现对数据采集模块的控制,并通过双口RAM实现单片机和DSP的数据通信,构成了一套小型捷联惯导系统,同时给出了一种捷联惯导算法编排,简要介绍了SPI通信和TMS320C6713的二次bootloder方式;经测试,系统速度和精度都满足了设计要求,已应用于实际系统。

For the image of 512×512,the time of two-dimensional FFT by fixed DSP is 17.7ms, the gross time of float point multiplication and division by float point DSP is 32.51ms, according to above time, the load of every DSP is calculated.

对于512×512大小的图像,定点DSP完成二维FFT的时间为17.7ms,浮点DSP完成浮点数据乘法和除法的时间总共为32.5ms,据此计算了各个DSP的工作负荷。

The proposed method [5] is based on the sample correlation coefficient to normalize the signal Gerschgorin radii for source number detection. The second part of this reseach involving and construction of a TI TMS320C54XX [26-28] DSP developed platform. The platform will be used for developing H/W source number detectors.

同时,在第一年计划进行时,即著手於硬体电路的规划与设计,先行完成 DSP 发展平台,结合德州仪器DSP 大学实验室计画[24-25]所提供的简易初学板(TMS320C54X DSP Starter's kit)[23-24],加入自行撰写的开机载入程式,拉出多组重要资料/址线接脚讯号,制完成乙套多功能而价廉的DSP发展平台。

Dr. Dahnoun′s contributions include the authoring of a popular book on Digital Signal Processing implementation using TI′s TMS320C6000TM DSP platform, a teaching CD-ROM on the C6000TM that has been distributed to over 4,000 academics worldwide and the instruction of over 40 technical DSP workshops to industry professionals across Europe.

大河博士的杰出工作包括编写了基于德州仪器TMS320C6000TM DSP平台的DSP实现的畅销教材、C6000TM教学光盘(现已普及至世界4000所研究机构)以及对全欧洲超过40个的DSP工厂和工业界人士的指导。

multi-channel correlators are widely used in traditional pseudo-random code cw radar,which makes the ranging system more complicated.this paper proposes a method of digitalizing the return signal directly and then convoluting the signals on dsp,which can replace multi-channel correlation in analog circuit.but the computation of convolution is too huge for the dsp to fulfill.to solve this problem,this paper analyzes five fast algorithms including fft,and then chooses one according to the characters of prc-cw radars.the digital method and fast algorithm have been verified by simulated signal and real signal.

一种提高空间伪码扩谱测距精度的实用。。。摘要:传统的伪码调相连续波雷达采用多路模拟相关电路实现对回波信号的相关接收,通过多路试探搜索各距离单元的目标,电路复杂。提出的数字化方案,对回波信号直接数字化,利用高速dsp实现数字卷积,可替代多路模拟相关电路。但是直接卷积的运算量过大,dsp无法承受。本文对此进行了研究,分析了包括fft在内的五种快速算法,结合prc-cw雷达的具体情况,确定了一种适于dsp实现的快速卷积算法。仿真和实测数据证实了数字化方案及快速算法的正确性。

multi-channel correlators are widely used in traditional pseudo-random code cw radar,which makes the ranging system more complicated.this paper proposes a method of digitalizing the return signal directly and then convoluting the signals on dsp,which can replace multi-channel correlation in analog circuit.but the computation of convolution is too huge for the dsp to fulfill.to solve this problem,this paper analyzes five fast algorithms including fft,and then chooses one according to the characters of prc-cw radars.the digital method and fast algorithm have been verified by simulated signal and real signal.

摘 要:传统的伪码调相连续波雷达采用多路模拟相关电路实现对回波信号的相关接收,通过多路试探搜索各距离单元的目标,电路复杂。提出的数字化方案,对回波信号直接数字化,利用高速dsp实现数字卷积,可替代多路模拟相关电路。但是直接卷积的运算量过大,dsp无法承受。本文对此进行了研究,分析了包括fft在内的五种快速算法,结合prc-cw雷达的具体情况,确定了一种适于dsp实现的快速卷积算法。仿真和实测数据证实了数字化方案及快速算法的正确性。

Specialized introduction: This specialized raise has the electronic technology and the information system elementary knowledge, can be engaged in each kind of electronic installation and the information system research, the design, the manufacture, the application and the development higher project technology talented person Main curriculum: The signal and the system, the digital signal processing, the correspondence principle, the microcomputer principle and the connection technology, the monolithic integrated circuit principle and the application technology, the DSP technology and the application, the EDA technology, the construction of data, embedded Linux using the programming, the feeling measure technical, the electric circuit theory series curriculum, the computer technology series curriculum and so on individual hobby * software and hardware research and development computer correspondence literature ping pong photography The experience and the personal experience * 2006.6.29-7.8 compile the staff management system management system using the C language, its basic service activity includes: The staff information warehousing, the revision, the inquiry, the insertion, deletes the staff information and so on * 2006.7.10-7.20 monolithic integrated circuit curriculum design period completes the stopwatch the design, namely the initialization timer is 99:99, 0 starts using the monolithic integrated circuit timer fixed time, fixed time arrives when 0s to transmit the signal to cause the buzzer bell, and may realize suspends, the continuation and the replacement function * 2007.7.2- 7.8 practises in Luoyang Big dragon Peony Communication facility Limited company, does has liquid crystal display monitor telephone one, simultaneously visited has served under somebody's banner the correspondence company, and studied has simulated the telephone the design electric circuit, had understood its basic principle * 2007.7.4- 7.18 completed the DSP curriculum in the school to design, realizes the FIR numeral filter, namely transmitted 25 from DSPThe height level, after advocates AC01 D/A to transform the simulation square-wave, then passes to again from AC01 carries on A/D to transform, produces the data signal, after the DSP numeral filter, finally produces the sine wave * 2008.8.1-8.15 to practise in the Zhejiang Jiang hua abundant power tool limited company, studies the computer software and hardware maintenance.

专业介绍:本专业培养具备电子技术和信息系统的基础知识,能从事各类电子设备和信息系统的研究、设计、制造、应用和开发的高等工程技术人才主要课程:信号与系统、数字信号处理、通信原理、微机原理与接口技术、单片机原理与应用技术、DSP技术及应用、EDA技术、数据结构、嵌入式Linux应用编程、感测技术、电路理论系列课程、计算机技术系列课程等个人爱好*软硬件研发计算机通信文学乒乓球摄影实践经验及个人经历* 2006.6.29-7.8 利用C语言编写员工管理系统,其基本业务活动包括:员工信息入库,修改、查询、插入、删除员工信息等* 2006.7.10-7.20 单片机课程设计期间完成秒表的设计,即初始化定时器为99:99,利用单片机定时器0开始定时,定时到0s时发送信号使蜂鸣器响铃,并可实现暂停、继续和复位功能* 2007.7.2- 7.8 在洛阳巨龙牡丹通信设备有限公司实习,做有液晶显示屏电话机一部,同时参观了旗下通信公司,并学习了模拟电话的设计电路,懂得了其基本原理* 2007.7.4- 7.18 在校完成DSP课程设计,实现FIR数字滤波,即从DSP发送25个高低电平,经主AC01 D/A 转换成模拟方波,然后再传给从AC01进行A/D转换,生成数据信号,经DSP数字滤波,最后生成正弦波* 2008.8.1-8.15 在浙江华丰电动工具有限公司实习,学习电脑软硬件维护。

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