Xilinx is disclosing this user guide, manual, release note, and/or specification (the “Documentation”) to you solely for use in the development of designs to operate with Xilinx hardware devices. You may not reproduce, distribute, republish, download, display, post, or transmit the Documentation in any form or by any means including, but not limited to, electronic, mechanical, photocopying, recording, or otherwise, without the prior written consent of Xilinx. Xilinx expressly disclaims any liability arising out of your use of the Documentation. Xilinx reserves the right, at its sole discretion, to change the Documentation without notice at any time. Xilinx assumes no obligation to correct any errors contained in the Documentation, or to advise you of any corrections or updates. Xilinx expressly disclaims any liability in connection with technical support or assistance that may be provided to you in connection with the Information.
标签: CPLD
上传时间: 2013-10-22
上传用户:李哈哈哈
在车载自组网中,路由协议很大程度上决定了整个网络的性能。如何有效的利用车流信息提高传输质量是改善路由性能的一个关键问题。本文基于速度-密度线性模型,提出了一种实时车流密度的路由协议RVDR(Real-time Vehicle Density Routing)。该协议通过与邻居节点交换的速度信息,对相关道路车流密度进行预测,并给出基于车流密度信息的路径选择方法。仿真结果表明,与现有协议相比,RVDR协议在实时性和高效性等性能方面得到改进。
上传时间: 2014-07-10
上传用户:ZJX5201314
AFDX( Avionics Full Duplex Switch Ethernet)是空客公司首先提出的, 在商用以太网技术的基础上,通过增加特殊功能来保证航空应用的确定性和可靠性,是目前最先进的机载通信网络。文中针对航电设备与总线网络通信出现的故障,设计了某型号飞机AFDX总线监控器,该设备是一个便携式工控机,通过扩展AFDX总线接口卡,实时、高速、可靠的对总线上的数据进行记录、分析、显示,并依照航电总线标准ICD(接口控制文件)库进行解析,快速准确的定位故障,避免设备的无故障拆装,提高维护效率。仿真实验表明:该监控器可实时监控航电AFDX 总线上的所有动态信息,对信息的分析处理正确,能满足设计需求。
上传时间: 2013-10-17
上传用户:zyt
Byte2~Byte5 字节: 表示了仪表的测量值;高四位未使用,只使用了各字节的低四位。用BCD 码表示的数值,从高位到低 BYTE4 BYTE17 1 - 0 BATT MAX FULL A/C F/S START1 START2 UNIT_UP UNIT_DOWN 2 - 位依次为Byte5,Byte4,Byte3,Byte2。
上传时间: 2013-10-18
上传用户:thuyenvinh
摘 要: 针对非同分布的Nakagami信道,基于矩生成函数MGF(Moment Generation Function)的分析方法,提出正交空时分组码系统STBC(Space-Time Block Coding)的一种快速性能评估算法,不需要涉及超几何函数积分运算,可在中高信噪比时,快速准确地估计STBC系统的符号错误概率性能。在平坦瑞利衰落信道下的计算机仿真表明,该算法与已有的STBC系统的近似估计算法相比,具有较优的性能。 关键词: 正交空时分组码; MIMO; MGF; 误符号率
上传时间: 2014-12-29
上传用户:如果你也听说
为提升虚拟仪器传输速率与实时性能,扩展监测范围,在VC的软件平台上设计了一种全功能虚拟示波器。与传统虚拟示波器相比,该系统采用嵌入式系统完成信号采集,采用工业以太网为传输介质,通过线性插值算法和多线程编程思想,实现波形显示、参数计算、频谱分析以及波形存储及回放功能。实验结果表明,该虚拟示波器可以实现20 kHz采样频率下的波形精确显示,达到预期的各项指标。 Abstract: o enhance the transfer rate and real-time of virtual instrument performance, expand scope of monitoring, this paper uses the VCs software platform to design a fully functional virtual oscilloscope. Compared with traditional virtual oscilloscope, this system adopts the embedded system to complete the data acquisition, industrial Ethernet as the transmission medium used by the linear interpolation algorithm and multi-threaded programming ideas, namely to achieve waveform display, parameter calculation, spectrum analysis and waveform storage and playback. Experimental results show that the virtual oscilloscope can accurately display the waveform with 20kHz sampling frequency, and achieve the desired targets.
上传时间: 2013-11-25
上传用户:wbwyl
The field of microelectromechanical systems (MEMS), particularly micromachinedmechanical transducers, has been expanding over recent years, and the productioncosts of these devices continue to fall. Using materials, fabrication processes, anddesign tools originally developed for the microelectronic circuits industry, newtypes of microengineered device are evolving all the time—many offering numerousadvantages over their traditional counterparts. The electrical properties of siliconhave been well understood for many years, but it is the mechanical properties thathave been exploited in many examples of MEMS. This book may seem slightlyunusual in that it has four editors. However, since we all work together in this fieldwithin the School of Electronics and Computer Science at the University of Southampton,it seemed natural to work together on a project like this. MEMS are nowappearing as part of the syllabus for both undergraduate and postgraduate coursesat many universities, and we hope that this book will complement the teaching thatis taking place in this area.
上传时间: 2013-10-16
上传用户:朗朗乾坤
User ManualRev. 1.2SmartRF® CC2420DK: Packet Sniffer for IEEE 802.15.4 and ZigBee Table of contents1 INTRODUCTION...............................................................................................31.1 HARDWARE PLATFORM.......................................................................................31.2 SOFTWARE.........................................................................................................32 USER INTERFACE..........................................................................................42.1 MENUS AND TOOLBARS.......................................................................................62.2 SETUP................................................................................................................62.3 SELECT FIELDS...................................................................................................72.3.1 Tips............................................................................................................72.4 PACKET DETAILS.................................................................................................72.5 ADDRESS BOOK..................................................................................................92.5.1 Tips............................................................................................................92.6 DISPLAY FILTER................................................................................................102.7 TIME LINE.........................................................................................................103 HELP....................................................................................................................114 TROUBLESHOOTING..................................................................................125 GENERAL INFORMATION........................................................................135.1 DOCUMENT HISTORY........................................................................................135.2 DISCLAIMER......................................................................................................135.3 TRADEMARKS...................................................................................................136 ADDRESS INFORMATION........................................................................14
上传时间: 2014-01-14
上传用户:zhangyi99104144
A Computer-On-Module, or COM, is a Module with all components necessary for a bootable host computer, packaged as a super component. A COM requires a Carrier Board to bring out I/O and to power up. COMs are used to build single board computer solutions and offer OEMs fast time-to-market with reduced development cost. Like integrated circuits, they provide OEMs with significant freedom in meeting form-fit-function requirements. For all these reasons the COM methodology has gained much popularity with OEMs in the embedded industry. COM Express® is an open industry standard for Computer-On-Modules. It is designed to be future proof and to provide a smooth transition path from legacy parallel interfaces to LVDS (Low Voltage Differential Signaling) interfaces. These include the PCI bus and parallel ATA on the one hand and PCI Express and Serial ATA on the other hand.
上传时间: 2013-11-05
上传用户:Wwill
We all know the benefits of using FieldProgrammable Gate Arrays (FPGAs): no NRE, nominimum order quantities, and faster time-tomarket.In an ideal world, designs would never needto be changed because of design errors, but we allknow that sometimes this is necessary.
上传时间: 2013-11-04
上传用户:leixinzhuo