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Distributed remote temperature monitoring and acquisition system based on CAN

Platform : EMBEDDED

IEEE Projects Years : 2012 - 13

Distributed remote temperature monitoring and acquisition system based on CAN

 

                                                    In modem industrial and agricultural production, the working temperature change reflects the running status of equipment and changes of many physical characteristics. So it is an important parameter which needs to be monitored, especially in the harsh and complex environment, such as electricity running system, food processing, crop seedbed, poultry hatching, and cultivating bacteria and so on. By monitoring temperature, staff can make the right judgments and operation to ensure the most effective and economical industrial and agricultural production The workers can make right judgments and operation by a temperature monitor. So it is the most effective and most economical means of equipment safety

 

Monitoring. CAN bus is one of the most widely used field bus in the world. It is of high rate, high resistance to electromagnetic interference, and it has the function of point to point, one with 10 k ill (5kbps) communication distance, with 1Mbps communication rate. And the network nodes are up to 110. So the system can meet temperature monitoring with a certain region. And the data transfer rate can also meet the general real-time requirements.

 

 

 

 

 

                                                     Embedded controller is as the control unit in the temperature monitoring node, and the data communication between nodes is by CAN bus. In distributed remote monitoring acquisition temperature system where the user can monitor the temperature nodes by the host monitoring machine The system realizes real-time remote data collection monitoring and storage through protocol data conversion of the CAN bus and then it is communicated with other CAN to SPI bus converter to embedded controller of the distributed temperature acquisition node. The temperature measurement accuracy is within 0.5 °C. The system is reliable and stable. Hence there are not communication failures. So it has very good social prospects.



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