Wireless Sensor Networks Application Centric Design 2011 Part 2 docx
... 10 .20 5.44 5.34 20 .00 9.08 16.08 8.76 8.90 30.00 12. 76 20 .58 12. 20 12. 28 40.00 15.90 25 .48 15.06 14.76 50.00 18.30 31 .22 17.98 17.80 60.00 21 .64 34.76 20 . 62 20 .28 70.00 23 . 92 37.74 22 .56 23 .08 ... 10 .20 5.44 5.34 20 .00 9.08 16.08 8.76 8.90 30.00 12. 76 20 .58 12. 20 12. 28 40.00 15.90 25 .48 15.06 14.76 50.00 18.30 31 .22 17.98 17.80 60.00 21 .64 34.76 20 ....
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... Rangan, P. V. (20 07). Factors and Approaches for Energy Optimized Wireless Sensor Network to Detect Rainfall In- Wireless Sensor Networks: Application- Centric Design5 2 The capacity of sensors and ... & Rangan, P. V. (20 07). Factors and Approaches for Energy Optimized Wireless Sensor Network to Detect Rainfall In- Wireless Sensor Networks: Application- Centric...
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... Sankarasubramaniam, Y. & Cayirci, E. (20 02) . Wireless sensor networks: a survey, Comp. Networks 38: 393– 422 . Balzano, L. (20 07). Addressing fault and calibration in wireless sensor networks, Master’s thesis, University ... Sankarasubramaniam, Y. & Cayirci, E. (20 02) . Wireless sensor networks: a survey, Comp. Networks 38: 393– 422 . Balzano, L. (20 07). Addr...
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Wireless Sensor Networks Application Centric Design 2011 Part 17 ppt
... summarized in FCC (20 02) ; Luedi ger & Kallenborn (20 09). 24 Wireless Sensor Networks: Application- Centric Design4 76 Over the sequence duration o f N M · t C1 a maximum shift of ≈ 1 2 t C1 is tolerable. ... lower sign is v ali d for index 2) : d 1 /2 = a 2 + r 2 2 a r cos(π /2 ±(β −α)) . (22 ) Then the total propagation times are: τ 1 /2 (α) = (1/c) ·(r + d 1 /2...
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Wireless Sensor Networks Application Centric Design 2011 Part 4 potx
... Wireless Sensor Networks: Application- Centric Design9 6 Fig. 12. Sun SPOT sensor board The facilities of the sensor board are: • One 2G/6G 3-axis accelerometer • One temperature sensor ... robot designs, because wheeled robots are almost always designed so that all wheels are in ground contact at all times (Gy. Mester, 20 09). Wireless Sensor Networks: Appli...
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Wireless Sensor Networks Application Centric Design 2011 Part 5 pptx
... multi-hop, Wireless Sensor Networks: Application- Centric Design1 24 (a) Rising edge detected from sensor B (P 020 ) (b) A->B sequence determined (c) Token enters to P 024 (d) T 025 enable ... Body Sensor A Infra-ray Human Body Sensor B Fig. 2. PN-WSNA model construction architecture. Wireless Sensor Networks: Application- Centric Design1 12 II....
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Wireless Sensor Networks Application Centric Design 2011 Part 6 ppt
... Net- working, Applications and Services, 20 08. HealthCom 20 08. 10th International Conference on, pp. 42 47. Wireless Sensor Networks: Application- Centric Design1 62 Position (ID, position) Device (ID, ... and the number of non-falls performed. Wireless Sensor Networks: Application- Centric Design1 46 Horton, M. & Suh, J. (20 05). A vision for wireless sensor n...
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Wireless Sensor Networks Application Centric Design 2011 Part 7 doc
... Technologies Part 2 Communication and Networking Technologies Wireless Sensor Networks: Application- Centric Design1 76 Fig. 12. Monitored field cells and their marking (Cui el at. , 20 04) ... Modelling Underwater Wireless Sensor Networks 185 Modelling Underwater Wireless Sensor Networks Jesús Llor and Manuel P. Malumbres X Modelling Underwater Wireles...
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Wireless Sensor Networks Application Centric Design 2011 Part 9 potx
... r 20 ) − R e,h (φ 2 )D(r i2 , r 22 , θ 2 )Ψ(r i2 + r 22 )/Ψ(r i0 + r 20 ) + R e,h (φ 0 ) ( R egionII) − R e,h (φ 1 )D(r i1 , r 21 , θ 1 )Ψ(r i1 + r 21 )/Ψ(r i2 + r 22 ) + R e,h (φ 2 )D(r i2 , r 22 , θ 2 ) (Regi onIII) (39) where ... r 20 ) − R e,h (φ 2 )D(r i2 , r 22 , θ 2 )Ψ(r i2 + r 22 )/Ψ(r i0 + r 20 ) + R e,h (φ 0 ) ( R egionII) − R e,h (φ 1 )D(r i1 , r...
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