DOI QR코드

DOI QR Code

Trends and Development Prospects in Broadcasting Technology

방송 기술 동향 및 발전 전망

  • J.S. Um ;
  • B.M. Lim ;
  • H.Y. Jung ;
  • S.K. Ahn ;
  • H.J. Yim ;
  • J.H. Seo
  • 엄중선 (미디어방송연구실) ;
  • 임보미 (미디어방송연구실) ;
  • 정회윤 (6G무선방식연구실) ;
  • 안석기 (기업성장지원전략실) ;
  • 임현정 (미디어방송연구실) ;
  • 서재현 (미디어방송연구실)
  • Published : 2024.04.01

Abstract

The media environment is rapidly evolving to be tailored to viewers using personal mobile devices in accordance with technological evolution and changes in social structures. Broadcast media technology is also advancing to enable new services, including data casting, in various reception environments beyond the existing fixed environment and one-way audio/video content services. In addition, technologies to increase the transmission capacity to accommodate next-generation large-capacity media content as well as communication network utilization and convergence technologies are being developed to facilitate interactive services and expand the broadcasting coverage. We discuss the current status and future prospects in broadcasting technology for terrestrial and mobile communication systems and analyze broadcasting technology elements for upcoming media environments relying on generative artificial intelligence.

Keywords

Acknowledgement

본 성과물은 중소벤처기업부에서 지원하는 2024년도 스마트 제조혁신 기술개발(R&D)(No. RS-2022-00070516)의 연구수행으로 인한 결과물임을 밝힙니다.

References

  1. 한국방송통신전파진흥원, "방송.미디어 산업의 사회.문화적 변화에 대응하는 미래전략 연구," 2021. 9. 5.
  2. https://mylovekbs.kbs.co.kr
  3. ATSC Standard: ATSC 3.0 System, document A/300:2023-03, Advanced Television System Committee, Washington, DC US, Mar. 2023.
  4. ATSC Standard: Physical Layer Protocol, document A/322:2023-03, Advanced Television System Committee, Washington, DC US, Mar. 2023.
  5. S.I. Park et al., "Low complexity layered division multiplexing for ATSC 3.0," IEEE Trans. Broadcast., vol. 62, no. 1, 2016, pp. 233-243.
  6. ATSC Standard: Link-Layer Protocol, document A/330:2023-03, Advanced Television System Committee, Washington, DC US, Mar. 2023.
  7. ATSC Standard: Signaling, Delivery, Synchronization, and Error Protection, document A/331:2023-12, Advanced Television System Committee, Washington, DC US, Dec. 2023.
  8. ATSC Standard: ATSC 3.0 Interactive Content, document A/344:2023-05, Advanced Television System Committee, Washington, DC US, May 2023.
  9. ATSC Standard: Service Usage Reporting, document A/333:2023-03, Advanced Television System Committee,, Washington, DC US, Mar. 2023.
  10. ATSC TG3/S43, Request for Proposals: ATSC 3.0 Broadcast Core Networking Facilities, Aug. 2021.
  11. Brazilian Digital Terrestrial Television System Forum, "Call for proposals: TV 3.0 project," Jul. 2020.
  12. H. Jung et al., "Feasibility verification of ATSC 3.0 MIMO system for 8K-UHD terrestrial broadcasting," IEEE Trans. Broadcast., vol. 67, no. 4, 2021, pp. 909-916.
  13. H. Jung et al., "Core-layer performance comparison of ATSC 3.0 LDM-MIMO system in mobile environment," in Proc. IEEE BMSB, (Bilbao, Spain), June 2022.
  14. 3GPP TS 23.246 V16.0.0, Multimedia Broadcast/Multicast Service (MBMS); Architecture and functional description (Release 16), Sept. 2019.
  15. 3GPP TSG SA #70, SP-150756 - New WID on 3GPP Enhancement for TV service (EnTV), Sitges, Spain, Dec. 2015.
  16. 3GPP TR 36.776 V1.0.0, Study on LTE-based 5G terrestrial broadcast (Release 16), Nov. 2018.
  17. 3GPP TR 36.976 V1.0.0, Overall description of LTE-based 5G broadcast (Release 16), Dec. 2019.
  18. 3GPP TR 38.913 V15.0.0, Study on Scenarios and Requirements for Next Generation Access Technologies (Release 15), June 2018.
  19. 3GPP RP-193248: New Work Item on NR support of Multicast and Broadcast Services, Dec. 2019.