ISO/IEC 14496-25:2011 PDF
Information technology — Coding of audio-visual objects — Part 25: 3D Graphics Compression Model
Information technology — Coding of audio-visual objects — Part 25: 3D Graphics Compression Model
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 13
- Дата публикации:
- 5 мая 2011 г.
- Издание:
- ISO/IEC IS 14496 edition 2 version 1
- ICS:
- 35.040
ISO/IEC 14496-25:2011 describes a model for connecting 3D graphics compression tools defined in ISO/IEC 14496 to graphics primitives defined in any other standard, specification or recommendation. The goal of ISO/IEC 14496-25:2011 is to specify an architectural model able to accommodate third-party XML based descriptions of scene graph and graphics primitives with (potential) binarization tools and with MPEG-4 3D graphics compression tools specified in ISO/IEC 14496-2, ISO/IEC 14496-11 and ISO/IEC 14496-16.
Abstract
Overview
ISO/IEC 14496-25:2011 - "3D Graphics Compression Model" - defines an architectural model that connects MPEG‑4 3D graphics compression tools to scene graph and graphics-primitive descriptions expressed in XML. The standard enables powerful MPEG‑4 geometry, texture and animation encoders to be applied to third‑party XML scene formats (for example XMT, COLLADA and X3D) and specifies how the resulting binary streams are packaged in MP4 files.
Key Topics and Requirements
- Three-layer architecture:
- Layer 1 - Textual Data Representation: any scene-graph or primitive representation expressed in XML (currently XMT, COLLADA, X3D are supported in normative annexes).
- Layer 2 - Binarization: non-encoded XML data (scene metadata) is stored in the MP4
metaatom; binary representation may use gzip. - Layer 3 - Compression: MPEG‑4 elementary streams carry compressed geometry, texture and animation data as MP4 media tracks.
- Supported MPEG‑4 compression tools (integrated via the model):
- Geometry: 3DMCe (3D Mesh Compression Extension), SC3DMC (Scalable Complexity 3D Mesh Compression)
- Animation: CI (Coordinate Interpolator), OI (Orientation Interpolator), PI (Position Interpolator), BBA (Bone‑Based Animation), FAMC (Frame‑based Animated Mesh Compression)
- MP4 packaging and indexing:
- Scene XML (text or binary) placed in
metaatom; compressed elementary streams stored inmoovatom as tracks. - Mapping between XML scene elements and MP4 tracks uses unique element_IDs and MP4 meta-box updates (data_references, item_location, item_name) via the File Format Pointer scheme.
- Scene XML (text or binary) placed in
- Decoder/encoder models:
- Encoding: split XML into elements to be compressed by MPEG‑4 tools and remaining metadata (optionally binarized), then multiplex to MP4.
- Decoding: retrieve
metaatom, decode elementary streams and reconstruct original XML scene.
Practical Applications and Who Would Use This Standard
- Developers of 3D content pipelines who need efficient delivery of geometry, textures and animation in MP4 containers (e.g., streaming 3D assets).
- Tool and codec implementers integrating MPEG‑4 3D compression into engines that consume XML scene formats (COLLADA, X3D, custom XML).
- AR/VR, games and interactive media vendors looking to leverage MPEG‑4 compression for reduced bandwidth and storage.
- Standards bodies and integrators seeking interoperability between XML scene descriptions and MPEG‑4 compression toolsets.
Implementation Notes
- Input scene graphs must be XML‑based; annexes provide normative mappings for XMT, COLLADA and X3D.
- Binary XML default binarization is gzip; images must be in PNG/JPEG/JPEG2000 for native MP4 encapsulation or converted before packaging.
- Elementary streams require proper element_ID mapping so decoders can associate tracks with scene nodes.
Related Standards
- ISO/IEC 14496 (MPEG‑4) family: Parts 2 (Visual), 11 (Scene description / interpolators), 16 (3D graphics/animation tools), 12 (ISO base media file format), 14 (MP4 file format)
- X3D standard: ISO/IEC 19775
- COLLADA specification (Khronos Group)
Keywords: ISO/IEC 14496-25:2011, 3D Graphics Compression Model, MPEG‑4, XML scene graph, COLLADA, X3D, XMT, MP4, 3DMCe, SC3DMC, CI OI PI BBA FAMC, binarization, scene graph compression.
Технические детали
- Технический комитет
- ISO/IEC JTC 1/SC 29 - Coding of audio, picture, multimedia and hypermedia information
- SKU
- ISO/IEC 14496-25:2011
Похожие стандарты
Упомянутые в описании и другие стандарты ISO
ISO/IEC 14496-30:2018/Amd 1:2022
ДействующийInformation technology — Coding of audio-visual objects — Part 30: Timed text and other visual overlays in IS…
Overview ISO/IEC 14496-30:2018/Amd 1:2022 is an international standard amendment focusing on timing improvements for coding timed text and other visual overlays within the ISO base media file format…
ISO/IEC 19775-1:2008
ОтменёнInformation technology — Computer graphics and image processing — Extensible 3D (X3D) — Part 1: Architecture…
ISO 8689-1:2000
ДействующийWater quality — Biological classification of rivers — Part 1: Guidance on the interpretation of biological qu…
Overview ISO 8689-1:2000, titled Water quality - Biological classification of rivers - Part 1: Guidance on the interpretation of biological quality data from surveys of benthic macroinvertebrates, is…
ISO/ASTM51540-04(2012)
ОтменёнStandard Practice for Use of a Radiochromic Liquid Dosimetry System (Withdrawn 2020)
Significance and Use4.1 The radiochromic liquid dosimetry system provides a means of measuring absorbed dose in materials (5-7). Under the influence of ionizing radiation, chemical reactions take pla…
ISO/ASTM51204-04
ДействующийStandard Practice for Dosimetry in Gamma Irradiation Facilities for Food Processing (Withdrawn 2013)
Significance and Use4.1 Food products may be treated with ionizing radiation, such as gamma-rays from 60Co or 137Cs sources, for numerous purposes, including control of parasites and pathogenic micro…
ISO/ASTM51431-05
ОтменёнStandard Practice for Dosimetry in Electron Beam and X-Ray (Bremsstrahlung) Irradiation Facilities for Food P…
Significance and Use4.1 Food products may be treated with acceleratorgenerated radiation (electrons and X-rays) for numerous purposes, including control of parasites and pathogenic microorganisms, in…
ISO/ASTM52628-20e1
ДействующийStandard Practice for Dosimetry in Radiation Processing
1.1 This practice describes the basic requirements that apply when making absorbed dose measurements in accordance with the ASTM E61 series of dosimetry standards. In addition, it provides guidance o…
ISO/ASTM52921-13(2019)
ДействующийStandard Terminology for Additive Manufacturing—Coordinate Systems and Test Methodologies
Significance and Use 3.1 Although many additive manufacturing systems are based heavily upon the principles of Computer Numerical Control (CNC), the coordinate systems and nomenclature specific to CN…