Image Processing Reference
In-Depth Information
. Madden, S.R., Franklin, M.J., Hellerstein, J.M., and Hong, W.: Tinydb: An acquisitional query
processing system for sensor networks. ACM Transactions Database Systems  () -.
. Sharaf, A., Beaver, J., Labrinidis, A., and Chrysanthis, K.: Balancing energy efficiency and quality of
aggregate data in sensor networks. he VLDB Journal  () -.
. Deligiannakis, A., Kotidis, Y., and Roussopoulos, N.: Compressing historical information in sen-
sor networks. In: SIGMOD ': Proceedings of the  ACM SIGMOD International Conference on
Management of Data ,NewYork,ACM(),pp.-.
. Bonfils, B.J. and Bonnet, P.: Adaptive and decentralized operator placement for in-network query
processing. In: Proceedings of the nd International Workshop on Information Processing in Sensor Net-
works (IPSN) . Volume  of Lecture Notes in Computer Science, Springer-Verlag, Berlin Heidelberg
(), pp. -.
. Coman, A., Sander, J., and Nascimento, M.A.: An analysis of spatio-temporal query processing in
sensor networks. In: ICDEW ': Proceedings of the st International Conference on Data Engineering
Workshops , Washington, DC, IEEE Computer Society () p. .
. Abadi, D.J., Madden, S., and Lindner, W.: REED: Robust, efficient filtering and event detection in
sensor networks. In: VLDB ': Proceedings of the st International Conference on Very Large Data
Bases , VLDB Endowment , Trondheim (), pp. -.
. Deshpande, A., Guestrin, C., Madden, S., Hellerstein, J.M., and Hong, W.: Model-based approximate
querying in sensor networks. VLDB Journal  () -.
. Chu, D., Deshpande, A., Hellerstein, J.M., and Hong, W.: Approximate data collection in sensor
networks using probabilistic models. In: ICDE , Atlanta () p. .
. Cetintemel, U., Flinders, A., and Sun, Y.: Power-efficient data dissemination in wireless sensor net-
works. In: MobiDe ': Proceedings of the rd ACM International Workshop on Data Engineering for
Wireless and Mobile Access ,NewYork,ACM(),pp.-.
. Zadorozhny, V.I., Chrysanthis, P.K., and Krishnamurthy, P.: A framework for extending the synergy
between mac layer and query optimization in sensor networks. In: DMSN ': Proceedings of the st
International Workshop on Data Management for Sensor Networks ,NewYork,ACM(),pp.-.
. Chatterjea, S., van Hoesel, L., and Havinga, P.: AI-LMAC: An adaptive, information-centric and
lightweight MAC protocol for wireless sensor networks. In: Proceedings of the  Intelligent Sensors,
Sensor Networks and Information Processing Conference (Dec. -, ), pp. -.
. Ratnasamy, S., Karp, B., Shenker, S., Estrin, D., Govindan, R., Yin, L., and Yu, F.: Data-centric storage
in sensornets with GHT, a geographic hash table. Mobile Networks and Applications () -.
. Greenstein, B., Ratnasamy, S., Shenker, S., Govindan, R., and Estrin, D.: DIFS: A distributed index for
features in sensor networks. Ad Hoc Networks () -.
. Li, X., Kim, Y.J., Govindan, R., and Hong, W.: Multi-dimensional range queries in sensor networks.
In: SenSys ': Proceedings of the st International Conference on Embedded Networked Sensor Systems ,
New York, ACM (), pp. -.
. Chatterjea, S., Nieberg, T., Meratnia, N., and Havinga, P.: A distributed and self-organizing scheduling
algorithm for energy-efficient data aggregation in wireless sensor networks. In: ACM TOSN ,NewYork
().
. Tulone, D. and Madden, S.: PAQ: Time series forecasting for approximate query answering in sensor
networks. In: EWSN ,Zurich(),pp.-.
. Chatterjea, S. and Havinga, P.: An adaptive and autonomous sensor sampling frequency control
scheme for energy-efficient data acquisition in wireless sensor networks. In: DCOSS ,Santorini,()
pp. -.
. Hellerstein, J.M., Hong, W., Madden, S., and Stanek, K.: Beyond average: Toward sophisticated sensing
with queries. In: IPSN ,PaloAlto(),pp.-.
. Dulman, S.O.: Data-centric architecture for wireless sensor networks. PhD thesis, Faculty of Electrical
Engineering, Mathematics and Computer Science, University of Twente, Enschede, the Netherlands
().
 
Search WWH ::




Custom Search