Digital Multimedia Communications
Digital Multimedia Communications
21st International Forum on Digital TV and Wireless Multimedia Communications, IFTC 2024, Hainan, China, November 28-29, 2024, Revised Selected Papers, Part II
Ye, Long; Yang, Hua; An, Ping; Zhou, Jun; Zhai, Guangtao
Springer Nature Switzerland AG
04/2025
391
Mole
9789819642786
Pré-lançamento - envio 15 a 20 dias após a sua edição
Method Based on Dual-Branch Information Fusion.- Remote Photoplethysmography Signal Measurement from Facial Videos Based on Enhanced Hybrid Convolutional Neural Network with Waveform Consistency Loss Function.- Lightweight Spatio-Temporal Attention Network for Video
Super-Resolution.- Video QoE Modeling by Spatial-Temporal Resolutions.- An End-to-End Full-Reference and No-Reference Quality Assessment Model for 360 degrees VR Videos.- Do High Metrics Equal Enhanced Cognitive Performance? Exploring Objective and Subjective Assessments in Digital Human Quality.- Quality Assessment Indicators and Method of High-Resolution Space-Borne SAR Systems.- Objective Evaluation of Ambisonics Recording Performance Using Arbitrary Microphone Arrays.- Frame-Level Complexity Control for Practical Encoder x265.- A Human-Computer-Friendly Scalable Image Coding Scheme Based on the Canny Edge Detection Algorithm.
Method Based on Dual-Branch Information Fusion.- Remote Photoplethysmography Signal Measurement from Facial Videos Based on Enhanced Hybrid Convolutional Neural Network with Waveform Consistency Loss Function.- Lightweight Spatio-Temporal Attention Network for Video
Super-Resolution.- Video QoE Modeling by Spatial-Temporal Resolutions.- An End-to-End Full-Reference and No-Reference Quality Assessment Model for 360 degrees VR Videos.- Do High Metrics Equal Enhanced Cognitive Performance? Exploring Objective and Subjective Assessments in Digital Human Quality.- Quality Assessment Indicators and Method of High-Resolution Space-Borne SAR Systems.- Objective Evaluation of Ambisonics Recording Performance Using Arbitrary Microphone Arrays.- Frame-Level Complexity Control for Practical Encoder x265.- A Human-Computer-Friendly Scalable Image Coding Scheme Based on the Canny Edge Detection Algorithm.