在航电系统维护过程中,为解决定位故障的效率和降低维修成本等问题,提出了基于ICD(Interface Control Document,接口控制文件)的1553B总线的信息监控系统模型。该系统运用数据采集卡对总线中传输的信号有无失真、偏差等电气特性进行检测,并使用1553B通讯卡通过测控软件LabWindows/CVI编程与ICD数据库的动态链接,实现总线信息的解析和故障的判断。与传统的维护过程相比,这种模型能够从信号的电气特性以及信息的解析等全方位的去检测判断故障的来源,并且能够广泛在其他1553B总线系统内扩展应用。验证表明该监控系统可以对总线信息进行快速有效地监测分析,能满足应用需求。 Abstract: In the process of avionics system maintenance, to solve the problems such as improving the efficiency of fast orientation to troubles and reducing maintenance cost, system of 1553B bus information monitor model based on ICD was proposed. The system observed whether the data which transmitted on the bus appear distortion and deviation by using data acquisition card. And using 1553B communication card programming of the measure software LabWindows/CVI and the dynamic linking of ICD database, message analysis and fault estimation could be realized. Compared with traditional maintenance, this model can all-dimensionally detect and analyze the source of faults from both electrical characteristics of the signal and message analysis, and it can be widely applied in the other 1553B system. Experiment shown that this monitor system can effectively detect and analyze the bus message and can meet the application requirements.
上传时间: 2013-11-23
上传用户:18752787361
以89S52单片机和EP1C6Q240C8型FPGA为控制核心的多功能计数器,是由峰值检波、A/D转换、程控放大、比较整形、移相网络部分组成,可实现测量正弦信号的频率、周期和相位差的功能。多功能计数器采用等精度的测量方法,可实现频率为1Hz~10MHz、幅度为0.01~5Vrms的正弦信号的精确测频,以及频率为10Hz~100kHz、幅度为0.5~5Vrms的正弦信号精确测相。液晶显示器能够实时显示当前信号的频率、周期和相位差。该多功能计数器精度高,界面友好,实用性强。 Abstract: A multi-function counter,which uses89S52MCU and EP1C6Q240C8FPGA as a control core,consists of peak detector,A/D conversion,program-controlled amplification,compared shaping and phase-shifting network part.The counter measures the frequency,period and phase of sinusoidal signal.With the equal precision method,the multi-function counter achieves the precise frequency measurement of the sinusoidal signal which its frequency is from1Hz to10MHz,its amplitude is from0.01Vrms to5Vrms,as well as the accurate phase measurement of the sinusoidal signal which its frequency is from10Hz to100kHz,its amplitude is from0.5Vrms to5Vrms.The LCD monitor real-time displays the frequency,period and phase difference of current signal.The multi-function counter features high precision,friendly interface,and strong practical.
上传时间: 2013-11-15
上传用户:gy592333
气压是气象监测中的一个重要参数,提出了一种气压数据采集模块设计方案,该模块采用数字气压传感器MS5534B、MSP430单片机MSP430F2272和带实时时钟(RTC)64 KB铁电存储器。通过低功耗软件设计方法以微安级整体平均功耗实现了气压数据的采集和存储,适合电池供电的连续高精度气压采集应用。给出了模块的软硬件设计以及MS5534B的性能指标和使用经验。 Abstract: Air pressure is an important parameter in weather monitor.This paper futs forward a new design scheme of low power-air pressure data acquisition module.The module uses a digital output barometer sensor MS5534B,MSP430 microcontroller MSP430F2272 and integrated RTC 64KB FRAM,precision air pressure measurement and storage chip.Another point of this module is low power consumption, so it is well suited for battery powered air pressure data acquisition applications. At the same time,the software and hardware deign of module is presented,And the speciaties and use notices of MS5534B are given.
上传时间: 2014-12-27
上传用户:drink!
为解决输油管道温度压力参数实时监测的问题,设计了以C8051F930单片机作为控制核心的超低功耗输油管道温度压力远程监测系统。现场仪表使用高精度电桥采集数据,通过433 MHz短距离无线通信网络与远程终端RTU进行通信,RTU通过GPRS网络与PC上位机进行远程数据传输,在上位机中实现数据存储和图形化界面显示,从而实现输油管道温度压力参数的实时监测和异常报警。经实验证明,该系统的12位数据采集精度满足设计要求,漏码率小于1%,正常工作时间超过5个月,能实时有效地监测输油管道的温度压力参数,节省大量人工成本,有效预防管道参数异常造成的经济损失和环境污染。 Abstract: In order to solve the problems on real-time monitoring of pipeline temperature and pressure parameters, the ultra-low power remote pipeline temperature and pressure monitoring system was designed by using the single chip processor C8051F930 as the control core. The high-precision electric bridge was used in field instruments for data collection, the 433MHz short-range wireless communication network was used to make communication between field instrument and RTU, the GPRS was used by the RTU to transmit data to the PC host computer, and the data was stored and displayed in the PC host computer, so the real-time monitoring and exception alerts of pipeline temperature and pressure parameters were achieved. The experiment proves that the system of which error rate is less than 1% over five months working with the 12-bit data acquisition accuracy can effectively monitor the pipeline temperature and pressure parameters in real time, it saves a lot of labor costs and effectively prevents environmental pollution and economic losses caused by abnormal channel parameters.
上传时间: 2013-11-07
上传用户:cuibaigao
以典型的9S08 系列为例,当你选择了一个MCU 型号后,在图1-4 右侧会显示出所有针对该型号芯片可用的项目调试场景。其中:Full Chip Simulator是芯片全功能模拟仿真,即无需任何目标系统的硬件资源,直接在你的PC 机上模拟运行单片机的程序,在模拟运行过程中可以观察调试程序的各项控制和运行流程,分析代码运行的时间,观察各种变量,等等。CW 提供了功能强大的模拟激励功能,可以在模拟运行时模拟一些外部事件的输入,配合程序调试;P&E Multilink/Cyclone Pro是基于P&E 公司的硬件调试工具实现实时在线硬件调试。实际就是我们经常说的BDM 调试。BDM 调试是基于芯片本身内含的在线调试功能,可实现程序下载,单步/全速运行,可以设若干个断点,可以观察和修改任意寄存器或RAM 内存空间。BDM 几乎是开发飞思卡尔8 位(9S08 和RS08 系列)、16 位(9S12 系列)和32 位(Coldfire V1 系列)单片机的标准调试模式,运用最为广泛;SofTec HCS08是另外一家SofTec 公司提供的硬件调试工具,国内使用较少;HCS08 Serial monitor是基于芯片串口的监控调试开发模式。由于开发效率较低,现在几乎无人使用。
上传时间: 2013-10-10
上传用户:alex wang
本文简单介绍了MCGS 组态软件和SPCE061A 单片机的特点,即北京昆仑通态自动化软件科技有限公司的工控组态软件MCGS(monitor and Control Generated System )和台湾凌阳科技推出的16 位微控制器SPCE061A,重点介绍了如何一步步开发SPCE061A 单片机的驱动程序,并简单介绍了下位机程序的设计,最后给出了测试情况。计算机技术的飞速发展为工业自动化开辟了广阔的发展空间,人们可以快捷地开发和组建高效的控制系统。笔者设计的液体点滴监控模型,可以对液体点滴情况实现远程监控和现场监控,终端和上位机均可人工设定所需的液体点滴速度并动态显示。在这方面,MCGS 工控组态软件提供了强有力的支持,它是一套Windows 环境下快速构造和生成上位机监控系统的组态软件系统,可快速构造和生成数据采集、报警处理、流程控制、动画显示、报表输出等界面,实现各种工程曲线的绘制、报表输出、远程通信等功能 [1]。MCGS 作为一种方便有效的通用工控软件,它提供了国内外各种常用的工控设备的驱动程序。但在实际应用中,因为所用设备的特殊性,允许用户根据需要来定制设备驱动程序。MCGS 用Active DLL 构件实现设备驱动程序,通过规范的OLE 接口挂接到MCGS 中,使其构成一个整体。鉴于Visual Basic 语言的通用性和简单性,使用VB 来开发单片机驱动,MCGS 的实现方法和原理与标准的Active DLL 完全一致,但MCGS 规定了一套接口规范,只有遵守这些接口规范的Active DLL 才能用作MCGS 的设备驱动构件。利用具有语音和 DSP 功能的SPCE061A 单片机作为液体点滴监控模型的核心控制器,SPCE061A 是台湾凌阳科技推出的16 位微控制器,提供了丰富的软、硬件资源,开发灵活方便。除此之外SPCE061A 的最高时钟频率可达到49MHz,具有运算速度高的优势,这为语音的录制和播放提供了条件[4]。
上传时间: 2013-12-19
上传用户:leesuper
(Portmon is an application that lets you monitor serial and parallel activity on your local system, or any computer on the network that you can reach via TCP/IP. It is the most powerful tool available for tracking down port-related configuration problems and analyzing application port usage.)
上传时间: 2013-11-07
上传用户:1412904892
为了扩大监控范围,提高资源利用率,降低系统成本,提出了一种多通道视频切换的解决方案。首先从视频信号分离出行场信号,然后根据行场信号由DSP和FPGA产生控制信号,控制多路视频通道之间的切换,从而实现让一个视频处理器同时监控不同场景。实验结果表明,该方案可以在视频监控告警系统中稳定、可靠地实现视频通道的切换。 Abstract: To expand the scope of monitoring, improve resource utilization, reduce system cost, a multiple video channels signal switching method is pointed out in this paper. First, horizontal sync signal and field sync signal from the video signal are separated, then control signal according to the sync signal by DSP and FPGA is generated to control the switching between multiple video channels. Thus, it achieves to make a video processor to monitor different place. Experimental results show that the method can realize video channel switching reliably, and is applied in the video monitoring warning system successfully.
上传时间: 2013-11-09
上传用户:不懂夜的黑
This application note covers the design considerations of a system using the performance features of the LogiCORE™ IP Advanced eXtensible Interface (AXI) Interconnect core. The design focuses on high system throughput through the AXI Interconnect core with F MAX and area optimizations in certain portions of the design. The design uses five AXI video direct memory access (VDMA) engines to simultaneously move 10 streams (five transmit video streams and five receive video streams), each in 1920 x 1080p format, 60 Hz refresh rate, and up to 32 data bits per pixel. Each VDMA is driven from a video test pattern generator (TPG) with a video timing controller (VTC) block to set up the necessary video timing signals. Data read by each AXI VDMA is sent to a common on-screen display (OSD) core capable of multiplexing or overlaying multiple video streams to a single output video stream. The output of the OSD core drives the DVI video display interface on the board. Performance monitor blocks are added to capture performance data. All 10 video streams moved by the AXI VDMA blocks are buffered through a shared DDR3 SDRAM memory and are controlled by a MicroBlaze™ processor. The reference system is targeted for the Virtex-6 XC6VLX240TFF1156-1 FPGA on the Xilinx® ML605 Rev D evaluation board
上传时间: 2013-11-14
上传用户:fdmpy
SRAM-based FPGAs are non-volatile devices. Upon powerup, They are required to be programmed from an external source. This procedure allows anyone to easily monitor the bit-stream, and clone the device. The problem then becomes how can you effectively protect your intellectual property from others in an architecture where the part is externally programmed?
上传时间: 2013-11-06
上传用户:wl9454