Ergonomic Automated Dry and Wet Waste Segregation and Compost Production for Innovative Waste Management
Author:
Affiliation:
1. ATME College of Engineering,Dept. of Electrical and Electronics,Mysuru
2. CMR Institute of Technology,Dept. of Electronics and Communication,Bengaluru
3. HKBK, College of Engineering,Dept. of Information Science and Engineering,Bangalore
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9971791/9971808/09972230.pdf?arnumber=9972230
Reference17 articles.
1. An energy-efficient and lifetime ratio improvement method based on energy balancing;l;International Journal of Engineering and Advanced Technology,2019
2. Design and development of an automatic clustered, assorted trash segregation system
3. Lifetime ratio improvement technique using special fixed sensing points in wireless sensor network
4. Design and Development of Smart Trash Bin Prototype for Municipal Solid Waste Management
5. Solid waste monitoring and management using RFID, GIS and GSM
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