ITU-T H 812 4-2017 Interoperability design guidelines for personal connected health systems Services interface Authenticated Persistent Session capability (Study Group 16).pdf
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1、 I n t e r n a t i o n a l T e l e c o m m u n i c a t i o n U n i o n ITU-T H.812.4 TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU (11/2017) SERIES H: AUDIOVISUAL AND MULTIMEDIA SYSTEMS E-health multimedia services and applications Personal health systems Interoperability design guidelines for per
2、sonal connected health systems: Services interface: Authenticated Persistent Session capability Recommendation ITU-T H.812.4 ITU-T H-SERIES RECOMMENDATIONS AUDIOVISUAL AND MULTIMEDIA SYSTEMS CHARACTERISTICS OF VISUAL TELEPHONE SYSTEMS H.100H.199 INFRASTRUCTURE OF AUDIOVISUAL SERVICES General H.200H.
3、219 Transmission multiplexing and synchronization H.220H.229 Systems aspects H.230H.239 Communication procedures H.240H.259 Coding of moving video H.260H.279 Related systems aspects H.280H.299 Systems and terminal equipment for audiovisual services H.300H.349 Directory services architecture for audi
4、ovisual and multimedia services H.350H.359 Quality of service architecture for audiovisual and multimedia services H.360H.369 Telepresence H.420H.429 Supplementary services for multimedia H.450H.499 MOBILITY AND COLLABORATION PROCEDURES Overview of Mobility and Collaboration, definitions, protocols
5、and procedures H.500H.509 Mobility for H-Series multimedia systems and services H.510H.519 Mobile multimedia collaboration applications and services H.520H.529 Security for mobile multimedia systems and services H.530H.539 Security for mobile multimedia collaboration applications and services H.540H
6、.549 VEHICULAR GATEWAYS AND INTELLIGENT TRANSPORTATION SYSTEMS (ITS) Architecture for vehicular gateways H.550H.559 Vehicular gateway interfaces H.560H.569 BROADBAND, TRIPLE-PLAY AND ADVANCED MULTIMEDIA SERVICES Broadband multimedia services over VDSL H.610H.619 Advanced multimedia services and appl
7、ications H.620H.629 Ubiquitous sensor network applications and Internet of Things H.640H.649 IPTV MULTIMEDIA SERVICES AND APPLICATIONS FOR IPTV General aspects H.700H.719 IPTV terminal devices H.720H.729 IPTV middleware H.730H.739 IPTV application event handling H.740H.749 IPTV metadata H.750H.759 I
8、PTV multimedia application frameworks H.760H.769 IPTV service discovery up to consumption H.770H.779 Digital Signage H.780H.789 E-HEALTH MULTIMEDIA SERVICES AND APPLICATIONS Personal health systems H.810H.819 Interoperability compliance testing of personal health systems (HRN, PAN, LAN, TAN and WAN)
9、 H.820H.859 Multimedia e-health data exchange services H.860H.869 For further details, please refer to the list of ITU-T Recommendations. Rec. ITU-T H.812.4 (11/2017) i Recommendation ITU-T H.812.4 Interoperability design guidelines for personal connected health systems: Services interface: Authenti
10、cated Persistent Session capability Summary The Continua Design Guidelines (CDG) defines a framework of underlying standards and criteria that ensure the interoperability of devices and data used for personal connected health services. The Continua Design Guidelines also contains design guidelines (
11、DGs) that further clarify the underlying standards or specifications by reducing options or by adding missing features to improve interoperability. ITU-T H.812.4 defines the additional design guidelines for the Authenticated Persistent Session (APS), whose function is to provide a secure, long-lived
12、, persistent bidirectional data channel between the Health users of this Recommendation are therefore encouraged to investigate the possibility of applying the most recent edition of the Recommendations and other references listed below. A list of the currently valid ITU-T Recommendations is regular
13、ly published. The reference to a document within this Recommendation does not give it, as a stand-alone document, the status of a Recommendation. ITU-T H.810 Recommendation ITU-T H.810 (2017), Interoperability design guidelines for personal connected health systems: Introduction. All other reference
14、d documents can be found in clause 2 of ITU-T H.810. 3 Definitions This design guidelines document uses terms defined in ITU-T H.810. 4 Abbreviations and acronyms This design guidelines document uses abbreviations and acronyms defined in ITU-T H.810. 5 Conventions This design guidelines document fol
15、lows the conventions defined in ITU-T H.810. 6 Authenticated Persistent Session use case The Authenticated Persistent Session provides a mechanism by which future Continua Certified Capability Classes (CCCs) can initiate communications from cloud based services to the PHG. 7 Authenticated Persistent
16、 Session (APS) overview The Authenticated Persistent Session Certified Capability Class defines a long lived, persistent context for exchanging messages between a Health the APS is bound to a security credential such as an X.509 certificate, an OAuth token, or SAML token. There are three steps invol
17、ved in creating and exchanging a message using an APS. Once the APS is in place only the final step is needed to send additional messages. The three steps, in order are: Capability Exchange, see ITU-T H.812.3 In this phase the PHG application obtains information from the Health 2) an undefined futur
18、e CCC or vendor specific message handler. The MQTT message is received by the Network-IF component which forwards it to the dispatcher. The dispatcher extracts the MQTT header. The MQTT header contains the topic name which identifies the message handler to which the payload needs to be delivered. Th
19、e topic name is a string that uniquely identifies the CCC that is expected to process the message. NOTE 2 This description is illustrative and does not proscribe a particular method of implementation. Figure 7-2 Example of payload delivery to different message handlers 7.2 Topics used in MQTT Contin
20、ua compliant entities implementing the APS-CCC shall support the use of the MQTT protocol to publish and subscribe to messages. The MQTT protocol uses a topic-based addressing mechanism, and this standard specifies three kinds of topics to be used by an APS. They are shown in Table 7-1. Table 7-1 To
21、pics used in MQTT Name used in this document Format of the topic string used in MQTT Description Message topics pcha/message/ Topics used to transmit messages to the APS API client components in the PHG application. Status topic pcha/status/ Topic used to track status of the APS Response topics pcha
22、/response/ Topic used to receive responses from the PHG application Rec. ITU-T H.812.4 (11/2017) 5 Each APS is identified by a pair of APB identifiers (APBIs) in the corresponding APB resource, and these APBIs shall be inserted in the topic strings in place of the characters and . See clause 8.2.2 f
23、or more details on the APBIs. The shall be replaced by an identifier specified by the CCC that is using the APS exchange mechanism. The identifier allows different CCC peers to exchange messages in the context of a single APS. An example of a message topic for an APS might appear as follows: pcha/me
24、ssage/1/34521ee41da2eff/APS. The MQTT server shall control access to these topics using the following rules: A Health & Fitness services application shall have write access to any message topics containing its Services APBI. A Health & Fitness services application shall have read access to the statu
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