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Bluetooth, Zigbee , and Wibree : A Comparison of WPAN Technologies

Bluetooth, Zigbee , and Wibree : A Comparison of WPAN Technologies. John Kooker CSE 237A November 20, 2008. Background. Three Scenarios. Watch. Building Automation. Wireless Stereo Headphones. Side By Side. Side By Side, continued. Watch. Caller ID display for mobile phone Size

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Bluetooth, Zigbee , and Wibree : A Comparison of WPAN Technologies

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  1. Bluetooth, Zigbee, and Wibree:A Comparison of WPAN Technologies John Kooker CSE 237A November 20, 2008

  2. Background

  3. Three Scenarios Watch Building Automation Wireless Stereo Headphones

  4. Side By Side

  5. Side By Side, continued

  6. Watch • Caller ID display for mobile phone • Size • Battery Life • Small amounts of data • 1-to-1 communication • Solution:

  7. Building Automation • Installing lighting control in an existing building • Already wired for power • Mesh network for resilience • Limited data transfer • Solution:

  8. Wireless Stereo Headphones • Listening to uncompressed, stereo audio • 1.4 Mbps • Close range • Recharge every several days • Solution:

  9. Conclusion, and the Future! • ZigBee used to be the clear choice for very low power, low latency, low data rate, mostly asleep devices. • Preliminary designs for Bluetooth Low Energy Technology are just now being released. Bluetooth with integrated Wibree may steal that momentum (in non-mesh networks). • “Coming soon” for 2 years • Bluetooth is growing into a family of specs • 3.0 adds High Speed (UWB)

  10. Fin.

  11. Sources • [1] Ciardiello, T., "Wireless communications for industrial control and monitoring," Computing & Control Engineering Journal , vol.16, no.2, pp. 12-13, April-May 2005 • URL: http://ieeexplore.ieee.org/stamp/stamp.jsp?arnumber=1454279&isnumber=31235 • [2] Evans-Pughe, C., "Bzzzzzzz [ZigBee wireless standard]," IEE Review , vol.49, no.3, pp. 28-31, March 2003 • URL: http://ieeexplore.ieee.org/stamp/stamp.jsp?arnumber=1196386&isnumber=26924 • [3] Home networking with Zigbee • http://www.embedded.com/columns/technicalinsights/18902431?_requestid=184548 • [4] ZigBee Wireless Networking Overview • http://focus.ti.com/lit/ml/slyb134a/slyb134a.pdf • [5] Alternatives for Short Range Low Power Wireless Communications • http://ieeexplore.ieee.org/stamp/stamp.jsp?arnumber=1434907&isnumber=30915 • [6] Nick Baker, "ZigBee and Bluetooth: Strenghts and Weaknesses for Industrial Applications" • http://ieeexplore.ieee.org/stamp/stamp.jsp?arnumber=01454281 • [7] Bluetooth.com, "Compare with Other Technologies," • http://www.bluetooth.com/Bluetooth/Technology/Works/Compare/ • [8] Mike Foley, "The new wireless frontier," • http://www.bluetooth.com/NR/rdonlyres/9A00E8AB-1337-40FF-A4A5-4092D9E17121/0/BluetoothLowEnergyTechnology_MikeFoley_TheNewWirelessFrontier.pdf • [9] Bluetooth.com, "Market potential for Bluetooth low energy technology," • http://www.bluetooth.com/NR/rdonlyres/30CC41D0-5270-41ED-BE9F-C6608AE0C9DD/0/BluetoothLowEnergyTechnology_MarketPotential.pdf • [10] Bluetooth.com, "Technical Comparison," • http://www.bluetooth.com/Bluetooth/Technology/Works/Compare/Technical/ • [11] Jackson, Donny, "More than a Flash in the Pan," • http://urgentcomm.com/mag/radio_flash_pan/ • [12] Smith, Brad, "Bluetooth Umbrella Covers Low-Power Wibree," • http://www.wirelessweek.com/article.aspx?id=149088

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