to minimize the secondary damage (e.g. in terms of
human life) of these events.
ACKNOWLEDGEMENTS
This work is part of the research project “Sensor-
based Security and Emergency management system
for underground Metro system during disaster
events” (SenSE4Metro) and is funded by BMBF
(German Federal Ministry of Education and
Research) through the joint program “International
cooperation in civil security research: Cooperation
between Germany and India” under Grant No.
13N13039.
REFERENCES
P. J. Bennett, K. Soga, I. Wassell, P. Fidler, K. Abe, Y.
Kobayashi, and M. Vanicek, 2010. Wireless sensor
networks for underground railway applications: case
studies in Prague and London. In Smart Structures and
Systems, vol. 6, no. 5–6, pp. 619–639.
M. Ceriotti, M. Corrà, L. D. Orazio, R. Doriguzzi, D.
Facchin, G. P. Jesi, R. L. Cigno, L. Mottola, A. L.
Murphy, M. Pescalli, et al, 2011. Is there light at the
ends of the tunnel? Wireless sensor networks for
adaptive lighting in road tunnels. In Information
Processing in Sensor Networks (IPSN), 2011 10th
International Conference, pp. 187-198
M. Erd, F. Schäfer, M. Kostic, and L. M. Reindl, 2016.
Event monitoring in emergency scenarios using energy
efficient wireless sensor nodes for the disaster
information management. In International Journal of
Disaster Risk Reduction, vol. 16, pp. 33–42
O. Gnawali, R. Fonseca, K. Jamieson, D. Moss, and P.
Levis, 2009. Collection tree protocol. In Proceedings of
the 7th ACM Conference on Embedded Networked
Sensor Systems (SenSys '09). ACM, New York, USA,
pp. 1-14.
H. Jiang, L. Chen, J. Wu, S. Chen, and H. Leung, 2010. A
Reliable and High-Bandwidth Multihop Wireless
Sensor Network for Mine Tunnel Monitoring. In IEEE
Sensors Journal, vol. 9, no. 11, pp. 1511–15173
J. Johansson, M. Gustafsson, and J. Delsing, 2006. Ultra-
low power transmit/receive ASIC for battery operated
ultrasound measurement systems. In Sensors and
Actuators A: Physical, vol. 125, no. 2, pp. 317–328
S. Kempf, F. Schäfer, G. Sitharam, P. Kleist, W. Gräfling,
N. Ferguson, T. Stuchtey, T. Chakraborty, V. Matsagar,
N. Gebbeken, 2016. SenSE4Metro: A bi-national multi-
disciplinary project for monitoring underground metro
environments in disaster events. At 11th Future
Security, Berlin, Germany
M. Li and Y. Liu, 2007. Underground Structure Monitoring
with Wireless Sensor Networks. In Proceedings of the
6th International Conference on Information
Processing in Sensor Networks, New York, USA, 2007,
pp. 69–78.
Measurement Specialties, Inc., 2010. MS5806-02BA
Miniature Altimeter Module. In Datasheet
000058061951 ECN2205
O. Millon, F. Schäfer, A. Stolz, and W. Riedel, 2013.
Automatisierte Informationsgewinnung und Schutz
kritischer Infrastruktur im Katastrophenfall (AISIS). In
Fraunhofer IRB Verlag Stuttgart.
M. Mitchell, 2006. Study of an ionic smoke sensor. In Texas
Instruments Incorporated, Texas, Application Report
SLAA335.
Z. Mokhtari, S. Holé, and J. Lewiner, 2013. Study of an
ionic smoke sensor. In Meas. Sci. Technol., vol. 24, no.
5, p. 55006.
L. Mottola, G. P. Picco, M. Ceriotti, Ş. Gunǎ, and A. L.
Murphy, 2010. Not All Wireless Sensor Networks Are
Created Equal: A Comparative Study on Tunnels. In
ACM Trans Sen Netw, vol. 7, no. 2, p. 15:1–15:33
A. Pflitsch, M. Brüne, J. Ringeis, and M. Killing-Heinze,
2010. ‘OrGaMIR‘– Development of a safety system for
reaction to an event with emission of hazardous
airborne substances – like a terrorist attack or fire –
based on subway climatology. In 4th Intl. Symposium
on Tunnel Safety and Security, Frankfurt a. Main,
Germany
U. Raza, A. Bogliolo, V. Freschi, E. Lattanzi, and A. L.
Murphy, 2016. A Two-Prong Approach to Energy-
Efficient WSNs: Wake-Up Receivers plus Dedicated,
Model-Based Sensing. In arXiv:1601.06664
F. Schäfer, A. Stolz, L. Reindl and K. Thoma, 2014.
Energieautarkes Funksensornetzwerk zur Erhöhung der
Sicherheit in Bahntunnels bei terroristischen
Anschlägen mit Sprengstoffen. In SCIENCE^2 – Safety
and Security, Homeland Security – Nationale
Sicherheit und Bevölkerungsschutz, vol. 01/2014, ISSN
2197-7240.
SenSE4Metro, 2016, Sensor-based Security and
Emergency management system for underground
Metro system during disaster events. At
www.sense4metro.org
A. Stolz, W. Riedel, C. Mayrhofer, M. Nöldgen, and K.
Dörendahl, 2010. Tunnel Structures subjected to
Explosions. At 5th Future Security, Berlin, Germany.
Z. Sun and I. F. Akyildiz, 2008. Not All Wireless Sensor
Networks Are Created Equal: A Comparative Study on
Tunnels. Channel Modeling of Wireless Networks in
Tunnels. In IEEE GLOBECOM 2008 - Global
Telecommunications Conference, 2008, pp. 1–5.
ThermoTun Online, 2016. Rail Tunnel Ventilation and
Aerodynamics Software. At http://www.thermotun-
online.com/index.php. (Accessed: 09-Jun-2016).
M. Wischke, M. Masur and P. Woias, 2011. Vibration
harvesting in traffic tunnels to power wireless sensor
nodes. In Smart Materials and Structures, 20(8).
D. Wu, L. Bao, and R. Li, 2009. A holistic approach to
wireless sensor network routing in underground tunnel
environments. In Comput. Commun., vol. 33, no. 13, pp.
1566–1573