999精品在线视频,手机成人午夜在线视频,久久不卡国产精品无码,中日无码在线观看,成人av手机在线观看,日韩精品亚洲一区中文字幕,亚洲av无码人妻,四虎国产在线观看 ?

Design and realization of signal acquisition digital system for leak detection of water supply pipeline*

2014-07-31 20:22:31HongliLYUCuiyingDONG
機床與液壓 2014年2期
關鍵詞:單片機信號系統

Hong-li LYU, Cui-ying DONG

Department of Information Engineering, Tangshan College, Tangshan 063000, China

Design and realization of signal acquisition digital system for leak detection of water supply pipeline*

Hong-li LYU?, Cui-ying DONG

DepartmentofInformationEngineering,TangshanCollege,Tangshan063000,China

Since the leakage signals have some characteristics such as low amplitude and wide dynamic range, it is difficult to catch these signals in the real industrial applications. In this paper, a leakage signal acquisition system, which has some unique characteristics such as low noise, low power consumption and easy to be adjusted according to the practical settings, is analyzed and designed. Based on the SCM, this system is capable for signal acquisition and data communication with DSP. It could satisfy the requirements of leak detection and data acquisition in outdoor long-distance operation mode.

Leak detection, Signal adjust circuit, Data acquisition, RS-485, SCM

1.Introduction

As far as urban water supply system is concerned in our country, the leakage of water supply pipeline could cause serious water loss at each year[1]. Therefore, how to develop the instruments for pipeline to monitor and position the leakage is a new promising research subject. Since the data used to detect the pipeline leakage have a direct impact on the leakage position accuracy for the pipeline, the data acquisition system becomes very important to determine the leakage position of pipeline[2-4].

2.Theory of correlation detection of pipeline leakage

The schematic diagram of correlation detection is shown in Figure 1[5-6]. The leakage signal travels in two directions with the velocityv. The symbolL1andL2stand for the distance from 1# and 2# sensor to the leakage position. The time difference of the signal arrival the two sensors is called time delay and is symbolizedD. The distance between the two consecutive sensors is symbolized asL. According to the similarity of the two signals, the peak value of correlation function could be obtained and the time delayDcould be evaluated and then the leakage position could be is determined. The distance from leakage position to 1# sensor isL1and it could satisfy the following formula.

Figure 1. The principle of correlation detection

3.Control scheme for signal acquisition system

Due to the different material of pipeline, diameter of pipeline and shape of leakage position, the frequency distribution of leakage signal could vary in a relative big range. The frequency range of water leakage sound signals for the metal pipeline is from 500 Hz to 3 500 Hz[7]. Since the water leakage signal is transmitted through soil to ground, the amplitude of this signal could be decreased. Based on the on-site field measurement, the frequency range of leakage sound is always between 100 Hz and 700 Hz which could be detected from the ground. Therefore, the accelerometer is needed in the system to measure the vibration signal. According to the principle of correlation detection, the signal acquisition system should simultaneously obtain these two signals.

Since the obtained signals from the two sensors are weakened and there exist some noise signals, the signal adjustment circuit is designed to amplify and filter the noise signals. And then the signals will be converted into digital signals through the A/D chip and these digital signals could be saved by single-chip microcontroller (SCM). Because there exist some distance between the consecutive two sensors and various signals are stored by the main SCM, the data transmission is necessary and it is selected as RS-485. In order to obtain the real-time analysis for this system, a DSP chip is adopted to realize the complex algorithm for correlation detection theory and the RS-485 is used for the data transmission between the main SCM and DSP. The control scheme diagram for signal acquisition system is shown in Figure 2.

Figure 2. The system control scheme diagram

4.Design of the signal adjustment circuit

The signal adjustment circuit consists of amplification circuit and filter circuit.

4.1.Design of the signal amplification circuit

The leakage signal has relatively high dynamic range and is seriously affected by the outside environment. If the fixed-gain amplifier is adopted for the signal acquisition system, there exist some problems for the signals such as insufficient amplification or saturated amplification. Therefore, the adjustable-gain amplifier should be selected and the dynamic gain range is between 0 dB and 32 dB. As shown in Figure 3, it is presented the signal amplification circuit with the chip NE5532, and the gain of this circuit could be adjusted by modulating the resistance value of R4.

Figure 3. Signal amplifying circuit with NE5532

4.2.Design of the signal filter circuit

The maximum limit of high frequency components for leakage signal is 3 500 Hz and the frequency bandwidth of noise is relatively wide, therefore the low pass filter is needed for the design of the filter circuit. Since the elliptic filter is one of the low pass filters and it has the minimal pass-band and stop-band ripple as compared with other filters, this kind of filer is adopted in this paper. As shown in Figure 4, the elliptic filter circuit with chip LTC1068 is presented and the cut-off frequency is 3 500 Hz and the pass-band gain is 0 dB.

Figure 4. Signal filtering circuit

4.3.Hardware design for low noise and low power consumption

The signal amplification circuit could magnify the output signal of the sensor; however, at the same time the noise could be produced. In order to control the noise signal and prevent the signal pollution during the amplification process, the low noise components is selected for the circuit design, such as metal film resistor, field-effect tube, Rail-to-Rail device for integrated operational amplifier.

In order to adapt to the water pipeline leakage detection of outdoor working environment, the signal acquisition system is needed to be powered by a battery. Therefore, the system has the requirement for the low power consumption. Due to this reason, the SCM is selected to be the processor because it has relatively low power consumption characteristics as compared with other embedded processors. In addition, the low power devices meet the requirements for the design of the peripheral circuit and Lithium- ion battery of high energy density could be used in the real industrial applications.

5.Software design

After power on and initialization, the two SCM will wait for the instructions from the main SCM through RS-485 bus. Once the data acquisition instruction is received, the A/D chip will get started and the leakage signals could be obtained and saved. The saved data will be transmitted to DSP through RS-485 bus. The program flow chart of main SCM is illustrated in Figure 5.

Figure 5. Program flow chart of data acquisition system

6.Conclusion

The leakage signals are simulated by signal generator and the peak-to-peak voltage amplitude is 500 mV and frequency is 1000 Hz. These signals will be adopted as the input signals for the signal adjustment circuit. The peak-to-peak voltage amplitude of output signals from adjustment circuit is 4 V. As shown in Figure 6, it is presented the input and output simulated waveforms for signal adjustment circuit. This demonstrates that the magnification factor of signal amplification circuit is eight.

Figure 6. The input and output simulated waveform of signal adjust circuit

Figure 7 is the model machine of signal acquisition system and Figure 8 is the waveform recorded in the field testing for water pipeline leakage. The data stored in SCM is transmitted to DSP by RS-485 and the complex filtering algorithm and localization algorithm are achieved by DSP.

Figure 7. The signal acquisition system prototype

Figure 8. The waveform recorded in the field testing

The designed leakage signal acquisition system has low noise and low power consumption. It is capable to match the outdoor working environment for leakage detection and could be applied to the petroleum, gas or other pipelines.

[1] Qian Yi,Liu Changming.Sustainable development of water resource in Chinese urban[M].Beijing: China Water Power Press,2002.

[2] Wang Ji-hua,Peng Zhen-bin,Guan Xiang-feng.Leakage testing techniques and prospect for ductwork of water supply[J].Journal of Guilin institute of technology,2004,24(4):456-460.

[3] Pilcher R,Hamilton S,Chapman H,et al.Leakage location & repair guidance notes version 1[J].Water Loss Task Force,IWA.2007(3):12-18.

[4] Shu Shi-hu,He Wen-jie,et al.Current Application and Recent Development of Leakage Detection Technologies in Water Supply Networks[J].Journal of water & wastewater engineering,2008,34(6):114-116.

[5] Brennan M J,Gao Y,Joseph P F.On the relationship between time and frequency domain methods in time delay estimation for leak detection in water distribution pipes[J].Journal of Sound and Vibtation,2007,304:213-223.

[6] Gao Y,Brennan M J,Joseph P F,et al.On the selection of acoustic/vibration sensors for leak detection in plastic water pipes[J].Journal of Sound and Vibtation,2005,283:927-941.

[7] Feng Ying-jian.Research on leakage detection system of city water pipeline[D].Shenyang: Shenyagn University of Technology,2008.

供水管道泄漏信號采集系統的設計與實現*

呂宏麗?, 董翠英

唐山學院 信息工程系, 河北 唐山 063000

針對供水管道泄漏信號幅度低、動態范圍大的特點,設計了管道泄漏信號采集系統。該系統具有低噪聲、低功耗特性,而且采集參數動態可調。系統實現以單片機為核心,完成了數據采集并實現與DSP的數據通信,能夠滿足戶外長距離管道泄漏信號數據采集的要求。

泄漏檢測;信號調理電路;數據采集;RS-485;單片機

TP274

2014-03-01

10.3969/j.issn.1001-3881.2014.12.018

*Project supported by Science and Technology Support Program of Hebei Province(13276201D)

? Hong-li LYU, Associate professor. E-mail: LHL741127@163.com

猜你喜歡
單片機信號系統
Smartflower POP 一體式光伏系統
工業設計(2022年8期)2022-09-09 07:43:20
信號
鴨綠江(2021年35期)2021-04-19 12:24:18
WJ-700無人機系統
ZC系列無人機遙感系統
北京測繪(2020年12期)2020-12-29 01:33:58
完形填空二則
基于單片機的SPWM控制逆變器的設計與實現
電子制作(2019年13期)2020-01-14 03:15:28
基于單片機的層次漸變暖燈的研究
電子制作(2019年15期)2019-08-27 01:12:10
基于單片機的便捷式LCF測量儀
電子制作(2019年9期)2019-05-30 09:42:02
基于FPGA的多功能信號發生器的設計
電子制作(2018年11期)2018-08-04 03:25:42
連通與提升系統的最后一塊拼圖 Audiolab 傲立 M-DAC mini
主站蜘蛛池模板: 亚洲首页国产精品丝袜| 五月天天天色| 色综合婷婷| 国产一区免费在线观看| 色综合久久88色综合天天提莫| 91精品国产一区| 极品尤物av美乳在线观看| 日本a级免费| 玖玖精品视频在线观看| 美女一级免费毛片| 蜜臀av性久久久久蜜臀aⅴ麻豆 | 久久精品国产亚洲麻豆| 亚洲首页在线观看| 欧美久久网| 亚洲区一区| 国产精品成人第一区| 青青草国产免费国产| 九九热在线视频| 亚洲区第一页| 毛片久久久| 亚洲精品国产乱码不卡| 亚洲综合第一区| 国产女人综合久久精品视| 国产专区综合另类日韩一区| 亚洲欧美日韩另类| 国产小视频a在线观看| 成人久久精品一区二区三区| 波多野衣结在线精品二区| 香蕉视频在线精品| 18禁不卡免费网站| 国产97视频在线观看| 国产精品一区二区在线播放| 日本91在线| 亚洲综合久久成人AV| 欧洲熟妇精品视频| 黄色网站在线观看无码| 国产成人超碰无码| 亚洲一区二区约美女探花| 国产va免费精品观看| 97狠狠操| 欧美成人在线免费| 伊人欧美在线| 国产精品所毛片视频| 亚洲日韩精品无码专区| 日韩专区欧美| 成人在线视频一区| 青青草a国产免费观看| 色悠久久久久久久综合网伊人| 亚洲中文精品久久久久久不卡| 丁香婷婷激情网| 国产情侣一区二区三区| 色老二精品视频在线观看| av大片在线无码免费| 久久成人18免费| 九九精品在线观看| 久草视频中文| 亚洲天堂视频在线观看| 欧美日韩精品一区二区在线线 | 一级不卡毛片| 欧美啪啪一区| 精品日韩亚洲欧美高清a| 国产真实乱子伦精品视手机观看| 日韩东京热无码人妻| 伊人国产无码高清视频| 无码中文字幕精品推荐| 波多野结衣在线se| 99在线国产| 国产福利小视频高清在线观看| 九九久久99精品| 亚洲三级电影在线播放| 四虎国产在线观看| av午夜福利一片免费看| 亚洲三级视频在线观看| 国产中文在线亚洲精品官网| 国产精品视频免费网站| 亚洲黄色成人| 亚洲天堂精品视频| 日韩人妻无码制服丝袜视频 | 欧美在线黄| 亚洲无码高清免费视频亚洲| 在线观看国产精美视频| 99免费在线观看视频|