2011 11 29 6 Nov 2011 Vol 29 No 6 doi 10 3969 /j issn 1674-8530 2011 06 009 ZigBee 3G 212013 ZigBee 3G ARM + DSP 3G /GPRS Internet ZigBee 3G /GPRS Internet Web 5 2% 5 4% ZigBee 3G S277 9 TP274 23 A 1674-8530 2011 06-0503 - 05 System design for monitoring of more sewage treatment plant based on ZigBee and 3G Sheng Ping Wang Yuxiu Guo Yangyang Wang Leiqiang School of Computer Science and Telecommunication Engineering Jiangsu University Zhenjiang Jiangsu 212013 China Abstract In order to collect the information of both sewage pumping stations and treatment plants fast and accurately sewage treatment plant remote monitoring system was proposed based on ZigBee and 3G technology The system consists of collecting node in sewage treatment plant embedded ARM + DSP module 3G / GPRS transmitting network and Internet network Sensor nodes collect information in the sewage treatment plant site ZigBee wireless sensor network sends all kinds of messages to the upper computer The upper computer integrates mobile communication networks through the gateway node This system uses 3G / GPRS network to realize the information interaction between internet and wireless transmission This system realizes the remote parameter setting and real-time monitoring information It was shown that the sewage processing quantity increases by 5 2% at least after the system is applied Meanwhile the consumption of water and electricity per ton decreased by 5 4% at least The remaining sewage also descends obviously than before Key words sewage treatment plant wireless sensor network monitor system ZigBee 3G pumping station 2011-09 - 05 BS2006040 1957 pingsheng@ ujs edu cn 1979 35073695@ qq com
504 29 3G /GPRS 3G /GPRS Internet 2011 2 Internet ZigBee 1 3G /GPRS 4-2015 Internet 5 2007 15% 2007 geographic information system GIS 2009 2009 2005 120% 75% Web ZigBee 3G /GPRS 1-3 1 2 2 1 ZigBee ZigBee ZigBee 2 Fig 1 1 Remote on-line monitoring system framework SPI ZigBee ZigBee CC2420 3 ZigBee GSM /GPRS /3G Internet 1 ZigBee ZigBee GSM /GPRS /3G
6 505 ZigBee 3G P d = P d 0 + 10αlg d 0 d + X d P d d S3C6410 2 ~ 4 S3C6410 ARM1176JZF - S d 0 α ARM V6 400 533 667 MHz X N 0 δ 2 3 Camera ITU - R BT X d 0-656 DSP SIMD MPEG - 4 /H 263 /H 264 IIC SPI UART LCD GPIO 3G AD3812 AD3812 3G mini PCI Express 6-7 3G USB S3C6410 2 ZigBee ARM 3G ZigBee ARM 2 Fig 2 Haldware structure of sensor node 2 2 # setenv bootargs root = / dev / mtdblock2 rootfstype = cramfs console = ttysac1 115200 3G 3 GSM 3G GSM 3G USB 3 GSM /GPRS WaveCOM 3G 3G 3G 4 pdu 1 ARM ARM unicode DSP DSP ARM + DSP S3C6410 ARM11 DSP SIMD RS232 S3C6410 ttysac0 ZigBee RS232 6410 uboot ttysac0 3
506 29 3G ph 1 CCD S3C6410 Tab 1 Water quality monitoring data detailed structure sheet Camera TVP5150AM TVP5150 TVP5150 ARM11 datasheet linux outdata numeric ZigBee 3G 1 Camera tvp5150 _ data 720 * 240 pixels YCBCR4 2 2 27 MHz Camera 2 static int tvp5150_attach_adapter struct i2c_adapter* adap s3c_fimc_register_ TVP5150 makefile kconfig 1 tvp5150 c tvp5150 h 3 linux2 6 28 /drivers /media /video /samsung /fimc 2 linux2 6 28 /drivers /media /video /samsung /fimc Makefile obj - $ CONFIG_TVP5150 + = tvp5150 o 3 linux2 6 28 /drivers /media /video /samsung /fimc Kconfig - camera config TVP5150 bool TVP5150 depends on VIDEO_FIMC 3 ph PLC 2 1 1 5 2% 1 xxjlid numeric szjlid numeric 0-1 - ph indata numeric 0-1 - 0 05 /s camera &tvp5150_data 8 struct s3c _ fimc _ config s3c _ fimc Fig 3 3 Pumping station equipment operating real-time monitoring ZigBee 3G 5 4%
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