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doc.: IEEE 802.15-09-0087-00-0006 Submission January 2009 Arthur Astrin (Astrin Radio)Slide 1 Project: IEEE P802.15 Working Group for Wireless Personal Area Networks (WPANs) Submission Title: TG6 Closing Report for the Session in January 2009 Date Submitted: January 22, 2009 Source: Arthur Astrin Contact: Arthur Astrin (Astrin Radio) Voice: +1 650 704-2517, E-Mail: astrin@ieee.orgastrin@ieee.org Re: TG6 Closing Report for January 2009 Session Abstract: Closing Report for the TG6 Session in January 2009. Purpose:To summarize activities during the meeting Notice:This document has been prepared to assist the IEEE P802.15. It is offered as a basis for discussion and is not binding on the contributing individual(s) or organization(s). The material in this document is subject to change in form and content after further study. The contributor(s) reserve(s) the right to add, amend or withdraw material contained herein. Release:The contributor acknowledges and accepts that this contribution becomes the property of IEEE and maybe made publicly available by P802.15.
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doc.: IEEE 802.15-09-0087-00-0006 Submission IEEE 802.15 TG6 Body Area Network Closing Report 7th Meeting as a Task Group 6 Los Angeles, CA January 22, 2009 January 2009 Arthur Astrin (Astrin Radio)Slide 2
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doc.: IEEE 802.15-09-0087-00-0006 Submission January 2009 Arthur Astrin (Astrin Radio)Slide 3 Session Results Heard 3 proposals: –CSEM –University of Massachusetts –Motorola Issued TG6 Updated Call for Proposals (CFP) Issued TG6 Comparison Criteria Document. Asked for input with dealing with 64 proposals. Received several selection procedures.
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doc.: IEEE 802.15-09-0087-00-0006 Submission January 2009 Arthur Astrin (Astrin Radio)Slide 4 Session Results Added one more editor volunteer. Found and filled a frequency channel model as reference. Thanks Medtronic, NICT Update from Medical ICT Consortium alliance Update from ETSI EP eHEALTH alliance
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doc.: IEEE 802.15-09-0087-00-0006 Submission January 2009 Arthur Astrin (Astrin Radio)Slide 5 Timeline 09 January 2009 Arthur AstrinSlide 5 2009 123456789101112 Issue CFP (Call for Proposals) Close CFP (Call for Proposals) v Hear Proposals >>^ Base line ^ Technical editorial team in place ^ Technical Comments Resolution >>>>> Draft ready for Letter Ballot > Letter Ballot (#1) > Recirculation >> Letter Ballot (#2) Draft ready for Sponsor Ballot Sponsor Ballot Sponsor Ballot Recirculation WG/SEC approval REVCOM approval
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doc.: IEEE 802.15-09-0087-00-0006 Submission January 2009 Arthur Astrin (Astrin Radio)Slide 6 Plans for March 2009 meeting Hear proposals Encourage and facilitate mergers
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doc.: IEEE 802.15-09-0087-00-0006 Submission January 2009 Arthur Astrin (Astrin Radio)Slide 7 Will have teleconferences when needed Teleconferences
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doc.: IEEE 802.15-09-0087-00-0006 Submission January 2009 Arthur Astrin (Astrin Radio)Slide 8 Thank You ! Any Questions ?
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doc.: IEEE 802.15-09-0087-00-0006 Submission Purpose of Proposed Standard (PAR 07-0575) The purpose of the proposed standard it to provide an international standard for a short range (ie about human body range), low power and highly reliable wireless communication for use in close proximity to, or inside, a human body. Data rates, typically up to 10Mbps, will be offered to satisfy an evolutionary set of entertainment and healthcare services. Current PANs do not meet the medical (proximity to human tissue) and relevant communication regulations for some application environments. They also do not support the combination of reliability (QoS), low power, data rate and noninterference required to broadly address the breadth of body area network applications. January 2009 Arthur Astrin (Astrin Radio)Slide 9
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doc.: IEEE 802.15-09-0087-00-0006 Submission Need for the Project (PAR 07-0575) There is a need for a standard optimized for ultra low power devices and operation on, in or around the human body to serve a variety of applications including medical and personal entertainment. Examples of the applications served by the proposed standard are: EEG, ECG, EMG, vital signals monitoring (temperature (wearable thermometer), respiratory, wearable heart rate monitor, wearable pulse oximeter, wearable blood pressure monitor, oxygen, pH value, wearable glucose sensor, implanted glucose sensor, cardiac arrhythmia), wireless capsule endoscope (gastrointestinal), wireless capsule for drug delivery, deep brain stimulator, cortical stimulator (visual neuro-stimulator, audio neuro stimulator, Parkinson’s disease, etc…), remote control of medical devices such as pacemaker, actuators, insulin pump, hearing aid (wearable and implanted), retina implants, disability assistance, such as muscle tension sensing and stimulation, wearable weighing scale, fall detection, aiding sport training. This will include body-centric solutions for future wearable computers. In a similar vein, the same technology can provide effective solutions for personal entertainment as well.The existence of a body area network standard will provide opportunities to expand these product features, better healthcare and well being for the users. It will therefore result in economic opportunity for technology component suppliers and equipment manufacturers. January 2009 Arthur Astrin (Astrin Radio)Slide 10
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