Energy options for wireless sensor nodes C Knight, J Davidson, S Behrens Sensors 8 (12), 8037-8066, 2008 | 293 | 2008 |
Selection of materials for high temperature sensible energy storage S Khare, M Dell'Amico, C Knight, S McGarry Solar Energy Materials and Solar Cells 115, 114-122, 2013 | 283 | 2013 |
Selection of materials for high temperature latent heat energy storage S Khare, M Dell’Amico, C Knight, S McGarry Solar Energy Materials and Solar Cells 107, 20-27, 2012 | 260 | 2012 |
Thermomagnetic energy harvesting with first order phase change materials A Post, C Knight, E Kisi Journal of Applied Physics 114 (3), 033915, 2013 | 54 | 2013 |
Supplying the power requirements to a sensor network using radio frequency power transfer S Percy, C Knight, F Cooray, K Smart Sensors 12 (7), 8571-8585, 2012 | 47 | 2012 |
Ocean renewable energy: 2015–2050. An analysis of ocean energy in Australia S Behrens, D Griffin, J Hayward, M Hemer, C Knight, S McGarry, P Osman, ... Commonwealth Scientific and Industrial Research Organisation Report, 212, 2012 | 36 | 2012 |
The potential for harvesting energy from the movement of trees S McGarry, C Knight Sensors 11 (10), 9275-9299, 2011 | 34 | 2011 |
Thermal energy harvesting for application at MEMS scale S Percy, C Knight, S McGarry, A Post, T Moore, K Cavanagh Springer New York, 2014 | 28 | 2014 |
Application of microbial fuel cells to power sensor networks for ecological monitoring C Knight, K Cavanagh, C Munnings, T Moore, KY Cheng, AH Kaksonen Wireless Sensor Networks and Ecological Monitoring, 151-178, 2013 | 27 | 2013 |
Development and successful application of a tree movement energy harvesting device, to power a wireless sensor node S McGarry, C Knight Sensors 12 (9), 12110-12125, 2012 | 26 | 2012 |
Thermal energy harvesting for wireless sensor nodes with case studies C Knight, J Davidson Advances in Wireless Sensors and Sensor Networks, 221-242, 2010 | 20 | 2010 |
Measured power dissipation of shock absorbers on light and heavy commercial vehicles C Gill, C Knight, S McGarry SAE International Journal of Commercial Vehicles 7 (2014-01-9026), 718-725, 2014 | 15 | 2014 |
Results of a water based thermoelectric energy harvesting device for powering wireless sensor nodes C Knight, M Collins Active and Passive Smart Structures and Integrated Systems 2009 7288, 72880Y, 2009 | 13 | 2009 |
Thermoelectric energy harvesting as a wireless sensor node power source C Knight, J Davidson Active and Passive Smart Structures and Integrated Systems 2010 7643, 76431E, 2010 | 12 | 2010 |
A review of ocean energy converters, with an Australian focus C Knight, S McGarry, J Hayward, P Osman, S Behrens AIMS Energy 2 (3), 295-320, 2014 | 10 | 2014 |
Low Airspeed Measuring Devices for Helicopter Usage Monitoring CG Knight DEFENCE SCIENCE AND TECHNOLOGY ORGANISATION VICTORIA (AUSTRALIA) PLATFORM …, 2003 | 7* | 2003 |
A practical application of using tree movement to power a wireless sensor node SA McGarry, CG Knight Active and Passive Smart Structures and Integrated Systems 2011 7977, 797704, 2011 | 3 | 2011 |
Wireless networks: implications for aircraft loads monitoring CG Knight DEFENCE SCIENCE AND TECHNOLOGY ORGANISATION VICTORIA (AUSTRALIA) AIR …, 2007 | 3 | 2007 |
Artificial muscles on heat TG McKay, DK Shin, S Percy, S McGarry, C Knight, IA Anderson SPIE Smart Structures and Materials+ Nondestructive Evaluation and Health …, 2014 | 2 | 2014 |
Thermal to Electrical Energy Converters S Percy, C Knight, S McGarry, A Post, T Moore, K Cavanagh Thermal Energy Harvesting for Application at MEMS Scale, 51-67, 2014 | 2 | 2014 |