DocumentCode :
2134231
Title :
Aquaculture monitoring system based on fuzzy-PID algorithm and intelligent sensor networks
Author :
Bo Chang ; Xinrong Zhang
Author_Institution :
Huaiyin Inst. of Technol., Huaiyin, China
fYear :
2013
fDate :
21-25 July 2013
Firstpage :
385
Lastpage :
388
Abstract :
According to the development needs of aquaculture modernization, the wireless sensor network (WSN) technology is introduced into the development of aquaculture monitoring system, which can effectively solve the problem of complex work environment, scattered monitoring locations, and high wiring cost in the aquaculture. The system uses CC2530 as the core to develop wireless sensor nodes which follow the ZigBee protocol, uses the data collection terminal with high-precision sensor to collect data of the environment for achieving real-time monitoring of aquaculture environment and uses the fuzzy PID control algorithm to process environmental parameters for improving the accuracy of test data. The management function of various sensor nodes is achieved based on embedded database. The system realized the real time measurement and control for the dissolved oxygen, temperature, pH and other parameters of the culture water, reduced energy consumption, reduced latency and increased intensification and intelligent level of aquaculture. The monitoring results have shown that this system is usefulness and efficiency and can meet the application requirement of monitoring environmental parameters in aquaculture.
Keywords :
Zigbee; aquaculture; energy consumption; fuzzy control; oxygen; pH control; protocols; temperature control; three-term control; wireless sensor networks; CC2530; WSN technology; ZigBee protocol; aquaculture modernization; aquaculture monitoring system; data collection terminal; dissolved oxygen control; embedded database; energy consumption reduction; environmental parameter processing; fuzzy PID control algorithm; high-precision sensor; intelligent sensor networks; latency reduction; pH control; real time measurement; temperature control; wireless sensor network technology; wiring cost; Aquaculture; Monitoring; Niobium; Reliability; Temperature measurement; Temperature sensors; Wireless sensor networks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Cross Strait Quad-Regional Radio Science and Wireless Technology Conference (CSQRWC), 2013
Conference_Location :
Chengdu
Type :
conf
DOI :
10.1109/CSQRWC.2013.6657435
Filename :
6657435
Link To Document :
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