基于无线传感器网络的抽油机远程参数检测系统毕业论文外文翻译.doc
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1、附录ARemote Monitoring System of Pumping Unit Based on Wireless Sensor NetworksMeijuanGao, Jin Xu, and Jingwen TianDepartment of Automatic Control, Beijing Union University School of Information Science, Beijing University of Chemical Technology Beijing, ChinaI. INTRODUCTIONAs wireless communication t
2、echnology continues to improve, it is an important development direction to implement the remote monitoring system of pumping unit using wireless networks. Now in this field the application is mainly GPRS wireless network, but the network base station is costly, with coverage blind spot, and oil exp
3、loitation is usually in the areas where the communication signals cant cover, the paper introduces a remote monitoring system of pumping unit based on ZigBee 1-2. ZigBee is a new wireless networking technology, it is a technical proposal between Bluetooth technology and the wireless marker, with low
4、 power, low cost and short time-delay characteristics. ZigBee is the set of specs built around the IEEE 802.15.4 wireless protocol, using ZigBee, devices in a network can communicate at speeds of up to 250 Kbps while physically separated by distances of up to 50 meters in typical circumstances and g
5、reater distances in an ideal environment. Based on ZigBee network communication technology and microprocessor technology, the system can deal with the various operating parameters of the remote transmission, real-time data collection and real-time load monitoring. The significance is: By monitoring
6、the functioning of the pumping unit, when failure or abnormal operation take place, it can give an alarm quickly, reduce downtime and ensure oil pumps operate safely, provide a reliable guarantee for oilfield. II. SYSTEM DESIGNThe main design thinking of the system is: Monitoring the three-phase pow
7、er, temperature, rotational speed and flow of pumping unit by sensors. When abnormal operation take place, it can cut off the power of the oil pump and give an alarm, at the same time the monitored data can be transmitted through the ZigBee network. The worker can understand the oil pump work state
8、at control centre, and implement the monitoring of pumping unit informatization and automation, the purpose is to protect normal pumping units, reduce downtime, improve efficiency and achieve economic efficiency. A. Network Design of System The system is made up of data collection monitoring module,
9、 wireless module and control centres. Its structure is shown in Fig.1.In the blind area of the mobile communication system, as the distribution of oil wells are non-uniform, we can set up a relay node in several neighboring collection points. The data collected by each nodes can be sent to relay nod
10、es firstly, then each relay node send the data to the network coordination, at the same time, when the works abnormally of oil pump is detected by collection node, the power of oil pump can be cut off timely. The information is transmitted to the control centre PC by network coordinator, workers can
11、 know the working condition of oil pump in time through PC. When we need long-distance transmission in the area where the communication signals cant cover, there will be a number of ZigBee wireless nodes to transfer data in relay ways, and then connect to communication network when there are communi
12、cation signals. This will not only solve the problem of blind spots in mobile communications networks, but also achieve a long-distance transmission, and save cost.BMesh NetworksMesh networks are regularly distributed networks that generally allow transmission only to a nodes nearest neighbors. The
13、nodes in these networks are generally identical, so that mesh nets are also referred to as peer-to-peer (see below) nets. Mesh nets can be good models for large-scale networks of wireless sensors that are distributed over a geographic region, e.g. personnel or vehicle security surveillance systems.
14、Note that the regular structure reflects the communications topology; the actual geographic distribution of the nodes need not be a regular mesh. Since there are generally multiple routing paths between nodes, these nets are robust to failure of individual nodes or links. An advantage of mesh nets i
15、s that, although all nodes may be identical and have the same computing and transmission capabilities, certain nodes can be designated as group leaders that take on additional functions. If a group leader is disabled, another node can then take over these duties. All nodes of the star topology are c
16、onnected to a single hub node. The hub requires greater message handling, routing, and decision-making capabilities than the other nodes. If a communication link is cut, it only affects one node. However, if the hub is incapacitated the network is destroyed. In the ring topology all nodes perform th
17、e same function and there is no leader node. Messages generally travel around the ring in a single direction. However, if the ring is cut, all communication is lost. The self-healing ring network (SHR) shown has two rings and is more fault to lerant. In the bus topology, messages are broadcast on th
18、e bus to all nodes. Each node checks the destination address in the message header, and processes the messages addressed to it. The bus topology is passive in that each node simply listens for messages and is not responsible for retransmitting any messages.C. Design of Data Collection Monitoring Mod
19、ule Data collection monitoring module is made up of wireless SCM, three-phase power parameter detection circuit, photoelectric encoder, temperature sensor, flow sensor and relay. It detects the parameters of pumping unit timed or when it receives the order from control centre, then send the test res
20、ult to the control centre. At the same time, the SCM monitors the result, cuts off the pumping units power automatically through controlling the relay in pumping unit power circuit when it finds the result overrun danger alarming threshold. Data collection monitoring module circuit is shown in Fig.2
21、. Wireless SCM is ZigBee chip CC2430 3. The chip can content the need of high performance and low power in 2.4 GHz IEEE 802.15.4 band based ZigBee, ROHS compliant 7x7mm QLP48 package, it includes 2.4GHz RF transceiver and an industry-standard enhanced 8051 MCU, 32/64/128 KB flash memory, 8 KB RAM an
22、d many other powerful features, ADC, several timers, 21 general I/O pins and so on.In order to get pumping units three-phase power parameter, include each phase valid value of voltage and current, active power and reactive power, power factor and frequency. We choice the new single phase bi-directio
23、nal Power/Energy measurement chip CS5460A with serial interface, it includes a power calculation engine and a bidirectional serial interface. Using M/T method, the rotational speed can be detected by photoelectric encoder in the system. By intercalating bit and byte of a group of SFR registers in CC
24、2430, make P1.5 and P1.6 as counter and timers pin, photoelectric encoders pulse signal add to P1.6s input end, then calculate rotational speed. We use LUGB catena vortex transducer to measure flow, the transducers output is 4-20mA current analogue signal, the signal can be connected to SCMs A/D pin
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