資料介紹
Table of Contents
Wireless Vibration Monitoring Platform
Overview
This document will give a high level explanation of the function and setup of Analog Devices’ Condition Based Monitoring (CBM) evaluation software and hardware. This includes a brief introduction to the software and how it is used with the CBM hardware. It also includes a step-by-step guide on the functionality of the CBM Graphical User Interface (GUI).
The function of the system is to provide an evaluation tool for a wireless signal chain for MEMS-accelerometer based vibration monitoring. The hardware can be directly attached to a motor or fixture via a stud.
Figure 1. SmartMesh System Overview
The CBM hardware signal chain consists of a tri-axis ADXL356 accelerometer mounted to the base of the module. The output of the ADXL356 is read into the AD7685 ADC, and then processed by the ADuCM4050 low power microcontroller. Here it is buffered, transformed to the frequency domain and streamed to the SmartMesh IP mote. From the SmartMesh chip it is wirelessly streamed to the SmartMesh IP Manager. The manager connects to a PC and visualization and saving of the data can take place.
Figure 2. CBM Mote Breakdown
Features
Smartmesh
- 2.4 GHz multi-hop wireless mesh networking solution.
- Automatic creation and maintenance of network, with 101 mote limit.
- Scalability for networks to work in different configurations.
- High data capacity with up to 7.2 kbps of payload data per node.
Mote
- Low-power motes (wireless nodes) with >10 year battery life, suitable for tough RF environments.
- Small form factor packages.
- 3-axis accelleration data.
GUI
- Supports real-time plotting of incoming data, tested for up to 3 motes
- Save incoming data to database.
- Customise data plotting.
- Available as both an executable or python file.
Getting Started
Equipment
- EV-CBM-VOYAGER3-1Z Hardware Module (referred to as “Mote”)
- JTAG Cable (only needed for firmware upgrade)
- Programming Board (Only needed for firmware upgrade)
- Clamp
Figure 3. Mote, Manager, Programming Board and Clamp
Software Required
The software for this project is available as an executable, or as a python file. The executable only works on windows, but requires no installation of dependencies by the user, these are all packaged into the executable. If running the python file, a number of dependencies must first be installed. Please consult the CBM_setup guide for more detailed instructions on running the python program.
Executable (Windows Only)
- CBM_app.exe
Python
- Python 2.7.15
- Pip for Python (latest version)
- Matplotlib (v2.2.3)
- PySerial (v3.5)
- Scipy (v1.2.2)
- Pandas (v0.23.3)
- openpyxl (v2.6.4)
- CBM_app.py (provided in software package)
Quickstart
- Plug the manager into any available USB port on your PC
- Place the 2xAA batteries in the mote.
- Download the available software below in the software installation section.
- Save the CBM_app executable anywhere on your PC and launch the program.
- A window should pop up, prompting you for the COM port of your manager. Search for the manager port number in your computers device manager, under PORTS(COM & LPT). The correct COM port is the last of four consecutive COM ports
- Click connect.
- When the Mote's green LED starts blinking, data is plotted, with the default being time and fft plots.
- While the mote is stationary, double click the remove adc offset checkbox.
- Interact with the mote by shaking it, and observe the changes to the data plotted.
Figure 4. Initial Connection to Single Stationary Mote
Documentation
A setup guide has been created for the Wireless CBM tool which is available on this wiki. This may be used if the quickstart provided here does not result in successful operation of the program, or for more information about this program and its setup.
Typical Measurements
If you have the program running, with a mote connected, simply shake the mote in any direction. This should update the plots with some meaningful vibration data.
This demo can be improved by using the mote in conjunction with a small motorized device (e.g. electric fan). Simply place the mote as close to the vibration source as possible and observe the results in the GUI.
Figure 5. Typical GUI Output
Figure 6. Fourier Transform graph explained
Mounting Information
The Voyager enclosure includes a ?-28 threaded hole. To mount the mote, either a mounting stud or a magnetic mount can be used. Magnetic mounts are typically used in situations where the monitored equipment does not include a threaded hole. Several different scenarios for mounting are discussed below, with suggested parts for each scenario.
Mounting Studs
- If the monitored equipment includes a ?-28 threaded hole, then a ?-28 to ?-28 attach stud can be used. Example Parts:
- If the monitored equipment includes an M6 threaded hole, then a ?-28 to M6 attach stud can be used. Example Parts:
- If the monitored equipment includes an M8 threaded hole, then a 1/4 -28 to M8 attach stud can be used. Example Parts:
Magnetic Mounts
- IFM and PCB Piezotronics provide magnetic mounts with M8 or ?-28 vibration sensor attach. Example Parts:
- Note: To use the IFM base then you also need a ?-28 to M8 adaptor stud for the Voyager enclosure
- PCB Piezotronics ?-28. Example Parts:
- Note: The Piezotronics bases 080A54, 080A130/131/132 could be used directly with the Voyager enclosure concept, as they include a ?-28 treaded hole.
—
LTspice Simulation
Figure 7 can be used to simulate the frequency response of a MEMS circuit. Figure 7 has two elements - firstly the response of the MEMS mechanical structure estimated using the LAPLACE equation, and secondly the signal chain op-amp filtering. Figure 8 presents the x-axis frequency response of the ADXL356, in good agreement with the ADXL356 data sheet Figure 8. This model assumes a nominal resonant frequency of 5500 Hz, a Q of 17, and the use of a single-pole, low-pass filter that has a cutoff frequency of 1500 Hz. This model does not include consideration of the manner in which the accelerometer is coupled to the platform that it is monitoring.
The simulation model shows good agreement with the data sheet typical performance, with resonant frequency of 5.5kHz. For AC analysis its best to use a LAPLACE circuit in LTspice, but for transient analysis discrete components or a simple voltage waveform input should be used for best simulation performance. This is a good rule of thumb when extending the analysis to the rest of the signal chain beyond the MEMS and op-amp. For example, Figure 9 shows an added ADC on the op-amp output.
Figure 7. LTspice Simulation circuit for ADXL356 MEMS Frequency Response
Figure 8. LTspice Frequency Response Simulation Output for ADXL356 (X-Axis)
Figure 8. Extending the analysis to the ADC)
LTSpice models are available here: click here to download
Further Reading
If you are a developer interested in contributing to this project, or looking at the SmartMesh library in greater detail, more information is available at the SmartMeshSDK space on Dustcloud . This gives links to a number of example programs which show the full capability of the SmartMesh library, and links to the source code for the whole project available on GitHub at SmartMesh GitHub.
- 輸電線路微風(fēng)振動(dòng)監(jiān)測(cè)裝置技術(shù)規(guī)范 0次下載
- 《抑制開(kāi)關(guān)磁阻電機(jī)振動(dòng)的結(jié)構(gòu)設(shè)計(jì)研究》pdf 3次下載
- 基于軟件無(wú)線電的無(wú)線信號(hào)實(shí)時(shí)監(jiān)測(cè)系統(tǒng)設(shè)計(jì)總結(jié) 14次下載
- 基于無(wú)線傳感器網(wǎng)絡(luò)邊坡監(jiān)測(cè)系統(tǒng)的硬件設(shè)計(jì) 2次下載
- 基于LabVIEW的電機(jī)振動(dòng)數(shù)據(jù)分析平臺(tái) 60次下載
- 軟件無(wú)線電RFID測(cè)試平臺(tái)課件下載 32次下載
- 基于光電監(jiān)測(cè)技術(shù)、無(wú)線通信網(wǎng)絡(luò)的無(wú)線監(jiān)測(cè)系統(tǒng) 652次下載
- 通過(guò)無(wú)線傳感網(wǎng)絡(luò)設(shè)計(jì)光伏陣列監(jiān)測(cè)系統(tǒng) 24次下載
- 2300振動(dòng)監(jiān)測(cè)器的數(shù)據(jù)手冊(cè)免費(fèi)下載 0次下載
- 關(guān)于嬰兒尿床無(wú)線監(jiān)測(cè)系統(tǒng)的研制 5次下載
- 直升機(jī)振動(dòng)無(wú)線監(jiān)測(cè)技術(shù) 1次下載
- NI便攜式實(shí)時(shí)振動(dòng)監(jiān)測(cè)系統(tǒng)應(yīng)用 12次下載
- STM32F103的振動(dòng)監(jiān)測(cè)系統(tǒng)設(shè)計(jì) 49次下載
- 基于STM32F103的振動(dòng)監(jiān)測(cè)系統(tǒng)設(shè)計(jì) 43次下載
- 基于DSP的風(fēng)機(jī)振動(dòng)監(jiān)測(cè)系統(tǒng)
- 基于啟明6M5開(kāi)發(fā)板的無(wú)線環(huán)境監(jiān)測(cè)小車(chē)系統(tǒng)設(shè)計(jì) 732次閱讀
- Google開(kāi)放硬件:振動(dòng)觸控平臺(tái)(VHP)技術(shù)觀察 953次閱讀
- MEMS振動(dòng)監(jiān)測(cè):從加速度到速度 1682次閱讀
- 無(wú)線水質(zhì)監(jiān)測(cè)系統(tǒng) 1325次閱讀
- 基于LabWindows/CVI平臺(tái)和開(kāi)發(fā)板實(shí)現(xiàn)多點(diǎn)隨機(jī)振動(dòng)試驗(yàn)系統(tǒng)的設(shè)計(jì) 1599次閱讀
- DM212雙通道軸振動(dòng)監(jiān)測(cè)儀的技術(shù)參數(shù) 1078次閱讀
- 邦納VT1無(wú)線振動(dòng)溫度傳感器在無(wú)線網(wǎng)絡(luò)中的應(yīng)用解析 1645次閱讀
- 基于GPRS無(wú)線網(wǎng)絡(luò)的污水治理監(jiān)測(cè)系統(tǒng)設(shè)計(jì) 965次閱讀
- 振動(dòng)傳感器測(cè)量振動(dòng)的方式_振動(dòng)傳感器故障排除 4305次閱讀
- 基于無(wú)線傳感器網(wǎng)絡(luò)對(duì)環(huán)境監(jiān)測(cè)系統(tǒng)的設(shè)計(jì) 2970次閱讀
- 基于振動(dòng)信號(hào)的機(jī)械設(shè)備故障監(jiān)測(cè)實(shí)現(xiàn)步驟 1.2w次閱讀
- 基于新型Virtex FPGA實(shí)現(xiàn)小型軟件無(wú)線電平臺(tái)SFF SDR設(shè)計(jì) 1205次閱讀
- 基于B/S架構(gòu)的智能家居環(huán)境無(wú)線遠(yuǎn)程監(jiān)測(cè)方案詳解 2390次閱讀
- 移動(dòng)多Sink無(wú)線傳感器網(wǎng)絡(luò)監(jiān)測(cè)系統(tǒng) 1696次閱讀
- 基于ZigBee無(wú)線傳感的核輻射的監(jiān)測(cè)系統(tǒng) 3176次閱讀
下載排行
本周
- 1電子電路原理第七版PDF電子教材免費(fèi)下載
- 0.00 MB | 1491次下載 | 免費(fèi)
- 2單片機(jī)典型實(shí)例介紹
- 18.19 MB | 95次下載 | 1 積分
- 3S7-200PLC編程實(shí)例詳細(xì)資料
- 1.17 MB | 27次下載 | 1 積分
- 4筆記本電腦主板的元件識(shí)別和講解說(shuō)明
- 4.28 MB | 18次下載 | 4 積分
- 5開(kāi)關(guān)電源原理及各功能電路詳解
- 0.38 MB | 11次下載 | 免費(fèi)
- 6100W短波放大電路圖
- 0.05 MB | 4次下載 | 3 積分
- 7基于單片機(jī)和 SG3525的程控開(kāi)關(guān)電源設(shè)計(jì)
- 0.23 MB | 4次下載 | 免費(fèi)
- 8基于AT89C2051/4051單片機(jī)編程器的實(shí)驗(yàn)
- 0.11 MB | 4次下載 | 免費(fèi)
本月
- 1OrCAD10.5下載OrCAD10.5中文版軟件
- 0.00 MB | 234313次下載 | 免費(fèi)
- 2PADS 9.0 2009最新版 -下載
- 0.00 MB | 66304次下載 | 免費(fèi)
- 3protel99下載protel99軟件下載(中文版)
- 0.00 MB | 51209次下載 | 免費(fèi)
- 4LabView 8.0 專(zhuān)業(yè)版下載 (3CD完整版)
- 0.00 MB | 51043次下載 | 免費(fèi)
- 5555集成電路應(yīng)用800例(新編版)
- 0.00 MB | 33562次下載 | 免費(fèi)
- 6接口電路圖大全
- 未知 | 30320次下載 | 免費(fèi)
- 7Multisim 10下載Multisim 10 中文版
- 0.00 MB | 28588次下載 | 免費(fèi)
- 8開(kāi)關(guān)電源設(shè)計(jì)實(shí)例指南
- 未知 | 21539次下載 | 免費(fèi)
總榜
- 1matlab軟件下載入口
- 未知 | 935053次下載 | 免費(fèi)
- 2protel99se軟件下載(可英文版轉(zhuǎn)中文版)
- 78.1 MB | 537793次下載 | 免費(fèi)
- 3MATLAB 7.1 下載 (含軟件介紹)
- 未知 | 420026次下載 | 免費(fèi)
- 4OrCAD10.5下載OrCAD10.5中文版軟件
- 0.00 MB | 234313次下載 | 免費(fèi)
- 5Altium DXP2002下載入口
- 未知 | 233046次下載 | 免費(fèi)
- 6電路仿真軟件multisim 10.0免費(fèi)下載
- 340992 | 191183次下載 | 免費(fèi)
- 7十天學(xué)會(huì)AVR單片機(jī)與C語(yǔ)言視頻教程 下載
- 158M | 183277次下載 | 免費(fèi)
- 8proe5.0野火版下載(中文版免費(fèi)下載)
- 未知 | 138039次下載 | 免費(fèi)
評(píng)論
查看更多