
【国外标准】 Information technology - Hypermedia/Time-based Structuring Language (HyTime)
本网站 发布时间:
2022-07-01
- INCITS/ISO/IEC 10744:1997 [R2015]
- 现行
- 定价: 1211元 / 折扣价: 1030 元
- 在线阅读
开通会员免费在线看70000余条国内标准,赠送文本下载次数,单本最低仅合13.3元!还可享标准出版进度查询、定制跟踪推送、标准查新等超多特权!  
查看详情>>

适用范围:
This Standard defines a language and underlying model for the representation of "hyperdocuments" that link and synchronize static and dynamic (time-based) information contained in multiple conventional and multimedia documents and information objects. The language is known as the "Hypermedia/Time-based Structuring Language", or "HyTime".HyTime can represent time in both the abstract, or "musical" sense, and in user-defined real-time units. It also provides a way of relating the two so that elements of time-dependent documents can be synchronized.NOTE 7 This facility extends to the representation of multimedia information the power, once limited to conventional documents, to distinguish intrinsic information content from style considerations.HyTime's techniques for representing its time model are equally applicable to spatial and other domains; all are treated as systems for measuring along different axes of a coordinate space. Arbitrary cross-references and access paths based on external interactions ("hypermedia links") are also supported.HyTime's time representation contains sufficient information to derive the durations of both control ("gestural") data (e.g., control information for audio or video hardware) and visual data (e.g., a music score, presentation storyboard, or television script).The media formats and data notations of objects in a HyTime hyperdocument can include formatted and unformatted documents, audio and video segments, still images, and object-oriented graphics, among others. Users can specify the positions and sizes of occurrences of objects in space and time, using a variety of measurement units and granularities. Temporal requirements of applications ranging from animation to project management can be supported by choosing appropriate measurement granules.NOTE 8 This International Standard does not address the representation of audio or video content data, but simply defines the means by which the start-time and duration of such data can be synchronized with other digitized information. Nor does it specify the layout process by which occurrences of unformatted documents and other information objects can be made to fit the positions and sizes specified for them.HyTime is an enabling standard, not an encompassing one. As a result, the objects comprising a HyTime hyperdocument are free to conform to any application architectures, or to document architectures imposed by standards, and to be represented in any notation permitted by those architectures. Only the "hub document", which may determine the hyperdocument membership, must conform to HyTime in addition to any other architectures to which it may conform.HyTime is designed for flexibility and extensibility. Optional subsets can be implemented, alone or in conjunction with user-defined extensions.The Hypermedia/Time-based Structuring Language (HyTime) is an SGML application conforming to International Standard ISO 8879 ?Standard Generalized Markup Language.The hyperdocument interchange format recommended in this International Standard is ISO 9069, the SGML Document Interchange Format (SDIF). SDIF is defined in Abstract Syntax Notation 1 (ISO/IEC 8824) and can be encoded according to the basic encoding rules of ISO/IEC 8825 for interchange using protocols conforming to the Open Systems Interconnection (OSI) model. Other interchange formats can also be used.
标准号:
INCITS/ISO/IEC 10744:1997 [R2015]
标准名称:
Information technology - Hypermedia/Time-based Structuring Language (HyTime)
英文名称:
Information technology - Hypermedia/Time-based Structuring Language (HyTime)标准状态:
现行-
发布日期:
-
实施日期:
出版语种:
- 推荐标准
- ASTM F1035-03(2015) Standard Practice for Use of Rubber-Cord Pie Disk to Demonstrate the Discernment Capability of a Tire X-ray Imaging System
- ASTM F2255-05(2015) Standard Test Method for Strength Properties of Tissue Adhesives in Lap-Shear by Tension Loading
- ASTM F2258-05(2015) Standard Test Method for Strength Properties of Tissue Adhesives in Tension
- ASTM F2392-04(2015) Standard Test Method for Burst Strength of Surgical Sealants
- ASTM F2819-10(2015)e2 Standard Test Methods for Measurement of Straightness of Bar, Rod, Tubing and Wire to be used for Medical Devices
- ASTM F665-09(2015) Standard Classification for Vinyl Chloride Plastics Used in Biomedical Application
- ASTM F754-08(2015) Standard Specification for Implantable Polytetrafluoroethylene (PTFE) Sheet, Tube, and Rod Shapes Fabricated from Granular Molding Powders
- ASTM ISO/ASTM51310-22 Standard Practice for Use of a Radiochromic Optical Waveguide Dosimetry System
- ASTM ISO/ASTM51539-23 Standard Guidance for Use of Radiation-Sensitive Indicators
- ASTM ISO/ASTM51607-13 Standard Practice for Use of the Alanine-EPR Dosimetry System
- ASTM ISO/ASTM51608-15(2022) Standard Practice for Dosimetry in an X-Ray (Bremsstrahlung) Facility for Radiation Processing at Energies between 50 keV and 7.5 MeV
- ASTM ISO/ASTM51631-20 Standard Practice for Use of Calorimetric Dosimetry Systems for Dose Measurements and Routine Dosimetry System Calibration in Electron Beams
- ASTM ISO/ASTM51650-13 Standard Practice for Use of a Cellulose Triacetate Dosimetry System
- ASTM ISO/ASTM51707-15 Standard Guide for Estimation of Measurement Uncertainty in Dosimetry for Radiation Processing
- ASTM ISO/ASTM51900-23 Standard Guidance for Dosimetry for Radiation Research