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A Low Power Wireless Sensor Network for Gully Pot Monitoring in Urban Catchments

Platform : EMBEDDED

IEEE Projects Years : 2012 - 13

A Low Power Wireless Sensor Network for Gully Pot Monitoring in Urban Catchments

 

                                                              Sewer and gully blockages are the main cause of residential sewer flooding. A low-cost and power efficient wireless sensor mesh networking communication system has been designed, developed and implemented to provide adequate warning on potential blockage incidents to prevent sewer failure. By monitoring the water level of the gully pot at each residential property, the water company will be proactively informed of the best course of actions to eliminate the causal problem, i.e., blockage and leakage within the sewer infrastructure .Hence, the number of residential sewer flooding and pollution incidents can be reduced. The deterioration of this ageing and primarily underground system has presented significant challenges to water companies. Moreover, some major countries impositioning Water Industry Act and the Water Act of by the government places a legal responsibility on the water companies not only to maintain the structural and operational reliability of the sewer system, but also to reduce progressively its risk of failure. In order to meet these obligations and to become more operationally efficient, the UK’s water industry is currently investing in excess of £200 million per annum.

 

 

 

                                                            The prototype system consists of eight Zigbee based wireless sensor nodes and a GSM (SMS) enabled data gatherer. Each Zigbee sensor node comprises of a radio transceiver, a data acquisition board and an acoustic sensor probe(3-levels:floody,normal,leak detections). Field trials were carried out in an outdoor scenario to cross-validate the theoretical and practical performance of the prototype system. The results in terms of durability of sensors, sensor nodes and gateways and Reliability of communication under real operational conditions and within a typical inner city urban environment are discussed. The problems encountered and solutions to tackle these problems were addressed.

           


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