Heat and air conditioning losses in buildings and
factories lead to a large amount of wasted
energy. The Action Plan for Energy Efficiency of the
Commission of the European Communities (2008)
estimates that the largest cost-effective energy
savings potential lies in residential ($\sim$27\%)
and commercial ($\sim$30\%) buildings. Imagine a
technology that creates a precise digital 3D model
of heat distribution and heat flow enabling one to
detect all sources of wasted energy and to modify
buildings to reach these savings. This paper
presents our overall approach to map indoor
environments with thermal data in 3D.
%0 Conference Paper
%1 SYROCO2012_4
%A Borrmann, D.
%A Nüchter, A.
%A Dakulovic, M.
%A Maurovic, I.
%A Petrovic, I.
%A Osmankovic, D.
%A Velagic, J.
%B Proceedings of the 10th International IFAC Symposium
on Robot Control (SYROCO '12)
%C Dubrovnik, Croatia
%D 2012
%K imported
%R 10.3182/20120905-3-HR-2030.00045
%T The Project ThermalMapper -- Thermal 3D Mapping of
Indoor Environments for Saving Energy
%U https://robotik.informatik.uni-wuerzburg.de/telematics/download/syroco2012_1.pdf
%V 10
%X Heat and air conditioning losses in buildings and
factories lead to a large amount of wasted
energy. The Action Plan for Energy Efficiency of the
Commission of the European Communities (2008)
estimates that the largest cost-effective energy
savings potential lies in residential ($\sim$27\%)
and commercial ($\sim$30\%) buildings. Imagine a
technology that creates a precise digital 3D model
of heat distribution and heat flow enabling one to
detect all sources of wasted energy and to modify
buildings to reach these savings. This paper
presents our overall approach to map indoor
environments with thermal data in 3D.
@inproceedings{SYROCO2012_4,
abstract = {Heat and air conditioning losses in buildings and
factories lead to a large amount of wasted
energy. The Action Plan for Energy Efficiency of the
Commission of the European Communities (2008)
estimates that the largest cost-effective energy
savings potential lies in residential ($\sim$27\%)
and commercial ($\sim$30\%) buildings. Imagine a
technology that creates a precise digital 3D model
of heat distribution and heat flow enabling one to
detect all sources of wasted energy and to modify
buildings to reach these savings. This paper
presents our overall approach to map indoor
environments with thermal data in 3D.},
added-at = {2017-09-19T13:40:53.000+0200},
address = {Dubrovnik, Croatia},
author = {Borrmann, D. and N{\"u}chter, A. and Dakulovic, M. and Maurovic, I. and Petrovic, I. and Osmankovic, D. and Velagic, J.},
biburl = {https://www.bibsonomy.org/bibtex/26136225c26e73fa3bb982af3db3da6dd/nuechter76},
booktitle = {Proceedings of the 10th International IFAC Symposium
on Robot Control (SYROCO '12)},
doi = {10.3182/20120905-3-HR-2030.00045},
interhash = {dfc9c1846274c870bc49390d6425e64b},
intrahash = {6136225c26e73fa3bb982af3db3da6dd},
keywords = {imported},
month = {September},
timestamp = {2017-09-29T16:01:21.000+0200},
title = {{The Project ThermalMapper -- Thermal 3D Mapping of
Indoor Environments for Saving Energy}},
url = {https://robotik.informatik.uni-wuerzburg.de/telematics/download/syroco2012_1.pdf},
volume = 10,
year = 2012
}