
Beijing Waterworks computer monitoring system in rural areas
Yu-mining town water supply of computer monitoring system
Project description:
- Project-related parties:
- Langfang City, Anderson Controls Equipment Co., Ltd.
- Kunlun Beijing China
- Beijing Advantech
- Projects:
- Anderson has been the contractor and construction of water stations, constant pressure water supply system. At present, the need for on-site five water plants, 15 water wells in the overall monitoring.
System Overview:
- System functions:
- 1. Control Center set up water stations in the center, the independent monitoring of the completion of the entire water plant;
- 2. Collection of water wells, submersible pumps, pond clearance, secondary pressure pumps, disinfection equipment and other equipment of various parameters, and collecting real-time feedback signal to the monitoring center;
- 3. To control pump start and stop at the scene;
- 4. Water wells, pond clearance data by radio transmission to the monitoring center to monitor the secondary pressure pump near the center of the signal through the RS-485 bus to the monitoring center.
- 5. Monitoring center uses the computer industry as a server, run the configuration software, surveillance, reality, memory records, print-related data and statements showing a part of the use of monitors, projectors program.
- Objective: To build an advanced, complete, reliable, open, and in line with the sustainable development of rural water plant monitoring computer information systems.
Detailed parameters:
I. Analysis of monitoring communications and gathering
- Five water stations, which
- A central station monitoring parameters are:
- 6 pumps (only monitor, not control)
6 DI - Voltage control cabinet (380), current (200A), frequency (0-10V corresponding to 0-50Hz), pump pressure (0-5V), pool 1, the road clearance measuring the water level pressure sensor (Note: How to collect voltage and current values)
5 AI - 3 water well submersible pump-related monitoring and control of the state
3 DI 3 months DO - Sterilization equipment operation status and alarm monitoring needs
2 DI - Well there are three sources of water 3 meters, collecting pulse signal (a pulse 10 liters) (Note: pulse accumulated at the same time, calculation of the flow!)
3 pulse count - There are three water wells measuring 3 water level.
3 AI
- Analysis: A total of 3-way control cabinet AI, 11 Road, DI, 3 Road, DO, two electrical parameters (module 1 4017)
Water wells for each 1 pulse, 1 Road, AI
Two water wells, radio and wireless communications. - Four monitoring stations around the water parameters are:
- 4 pumps (only monitor, not control)
4 DI - Voltage control cabinet (380), current (200A), frequency (0-10V corresponding to 0-50Hz), pump pressure (0-5V), pool 1, the road clearance measuring the water level pressure sensor (Note: How to collect voltage and current values)
5 AI - 2 water wells submersible pump-related monitoring and control of the state
2 DI 2 months DO - Well there are two sources of water 3 meters, collecting pulse signal (a pulse 10 liters) (Note: pulse accumulated at the same time, calculation of the flow!)
Pulse count 2 - There are two water wells measuring 3 water level.
2 AI - Sterilization equipment operation status and alarm monitoring needs
2 DI
- Analysis: A total of 3-way control cabinet AI, 11 Road, DI, 3 Road, DO, two electrical parameters (module 1 4017)
Water wells for each 1 pulse, 1 Road, AI
Two water wells, radio and wireless communications.
Remote Communication: The way radio. Distance from water wells within 600 meters sub-station has been completed, and no network cabling, so I hope that through wireless transmission to the central station directly. - Point system to monitor and maintain the 20% of redundancy.
Second, part of video surveillance:
Water Treatment Plant each separate video surveillance, 3 ~ 4 camera, fixed on the water works around 24 hours to monitor the overall situation of water plants. Local display and storage, preservation of historical data 1 week.
- Center waterworks display:
- Projector + screen (or white)
- IPC 19-inch display (two monitors, respectively, show different interface.)
Third, software components:
5 Waterworks surveillance, water wells in 15 parameters, and remote control. Shows the overall system. The overall training software.
- System:
- Note: The radio station pairs are, therefore, we use more appropriate to what kind of program?

System Price:
Type | Description | Configuration | Description | Amount | Price | Total |
Diving Pool 5 | Use every 2 ADAM-4017 +, 1 months ADAM-4050 | ADAM-4017 + | 8 AI modules, including power supply, terminals, serial line | 10 | ||
ADAM-4050 | 8 AI modules, including power supply, terminals, serial line | 5, | ||||
Radio | U.S. imports of high-performance radio, power, antenna | 2, | ||||
Qing Pool 3 | Each use of an ADAM-4017 +, 1 months ADAM-4050, the assumption that the use of radio | ADAM-4017 + | 8 AI modules, including power supply, terminals, serial line | 3 | ||
ADAM-4050 | 8 AI modules, including power supply, terminals, serial line | 3 | ||||
Radio | U.S. imports of high-performance radio, power, antenna | 3 | ||||
Secondary pressure pump 7 | Each use of an ADAM-4017 +, 1 months ADAM-4050 | ADAM-4017 + | 8 AI modules, including power supply, terminals, serial line | 7 | ||
ADAM-4050 | 8 AI modules, including power supply, terminals, serial line | 7 | ||||
Disinfection equipment | ADAM-4050 | Control switch | 1 | |||
Control Center | Operator Station / Server | IPC-610H | P4 2.8, 512M RAM, 160G hard drive, network card, DVD drive, 2 17 "LCD monitor, a Epson printer | 1 | ||
Configuration Software | WebAccess | Configuration software to run version, 300 points, the development of version free | 1 | |||
Big screen | Two-color large-screen | 1 | ||||
Projector, screen | Epson projector, screen and high-grade auto parts imports | 1 | ||||
Control cabinet | 10 | |||||
Total |
