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[1] Halim Yanikomeroglu,et al. Efficient 3-D placement of an aerial base station in next generation cellular networks , 2016, 2016 IEEE International Conference on Communications (ICC).
[2] Michal Król,et al. Wireless Sensor Networks and Multi-UAV systems for natural disaster management , 2017, Comput. Networks.
[3] Jie Xu,et al. Capacity Characterization of UAV-Enabled Two-User Broadcast Channel , 2018, IEEE Journal on Selected Areas in Communications.
[4] Juan-Carlos Cano,et al. A Discretized Approach to Air Pollution Monitoring Using UAV-based Sensing , 2018, Mobile Networks and Applications.
[5] Velio Tralli,et al. Improving QoE and Fairness in HTTP Adaptive Streaming Over LTE Network , 2016, IEEE Transactions on Circuits and Systems for Video Technology.
[6] Kathiravan Srinivasan,et al. Intelligent deployment of UAVs in 5G heterogeneous communication environment for improved coverage , 2017, J. Netw. Comput. Appl..
[7] Han Hu,et al. Unmanned Aircraft System Aided Adaptive Video Streaming: A Joint Optimization Approach , 2020, IEEE Transactions on Multimedia.
[8] Xirong Que,et al. QoE-driven optimization for cloud-assisted DASH-based scalable interactive multiview video streaming over wireless network , 2017, Signal Process. Image Commun..
[9] Ming Wang,et al. Joint Coding-Transmission Optimization for a Video Surveillance System With Multiple Cameras , 2018, IEEE Transactions on Multimedia.
[10] Xiao-Wei Tang,et al. Dynamic Spectrum Access for Multimedia Transmission Over Multi-User, Multi-Channel Cognitive Radio Networks , 2020, IEEE Transactions on Multimedia.
[11] Josaphat Tetuko Sri Sumantyo,et al. 3D Land Mapping and Land Deformation Monitoring Using Persistent Scatterer Interferometry (PSI) ALOS PALSAR: Validated by Geodetic GPS and UAV , 2018, IEEE Access.
[12] Shuowen Zhang,et al. Cellular-Enabled UAV Communication: A Connectivity-Constrained Trajectory Optimization Perspective , 2018, IEEE Transactions on Communications.
[13] Seungmin Rho,et al. A hybrid framework of data hiding and encryption in H.264/SVC , 2016, Discret. Appl. Math..
[14] Vaneet Aggarwal,et al. LBP: Robust Rate Adaptation Algorithm for SVC Video Streaming , 2018, IEEE/ACM Transactions on Networking.
[15] Rui Zhang,et al. Energy-Efficient UAV Communication With Trajectory Optimization , 2016, IEEE Transactions on Wireless Communications.
[16] Shiwen Mao,et al. Quality of Experience Driven Multi-User Video Streaming in Cellular Cognitive Radio Networks With Single Channel Access , 2016, IEEE Transactions on Multimedia.
[17] Wen Gao,et al. Distributed Soft Video Broadcast (DCAST) with Explicit Motion , 2012, 2012 Data Compression Conference.
[18] Haitian Pang,et al. Joint Sponsor Scheduling in Cellular and Edge Caching Networks for Mobile Video Delivery , 2018, IEEE Transactions on Multimedia.
[19] Qingqing Wu,et al. Joint Trajectory and Communication Design for Multi-UAV Enabled Wireless Networks , 2017, IEEE Transactions on Wireless Communications.
[20] Halim Yanikomeroglu,et al. The New Frontier in RAN Heterogeneity: Multi-Tier Drone-Cells , 2016, IEEE Communications Magazine.
[21] Walid Saad,et al. Drone Small Cells in the Clouds: Design, Deployment and Performance Analysis , 2014, 2015 IEEE Global Communications Conference (GLOBECOM).
[22] Luc Martens,et al. Emergency ad-hoc networks by using drone mounted base stations for a disaster scenario , 2016, 2016 IEEE 12th International Conference on Wireless and Mobile Computing, Networking and Communications (WiMob).
[23] Rui Zhang,et al. 3D Trajectory Optimization in Rician Fading for UAV-Enabled Data Harvesting , 2019, IEEE Transactions on Wireless Communications.
[24] Xiaoli Xu,et al. Trajectory Optimization for Completion Time Minimization in UAV-Enabled Multicasting , 2017, ArXiv.
[25] Francesca Cuomo,et al. Drone Cellular Networks: Enhancing the Quality Of Experience of video streaming applications , 2018, Ad Hoc Networks.
[26] Chang Wen Chen,et al. Sparse Representation With Spatio-Temporal Online Dictionary Learning for Promising Video Coding , 2016, IEEE Transactions on Image Processing.
[27] Ping Wang,et al. Improved KMV-Cast with BM3D Denoising , 2017, Mobile Networks and Applications.
[28] Yoram Bresler,et al. Video denoising by online 3D sparsifying transform learning , 2015, 2015 IEEE International Conference on Image Processing (ICIP).
[29] Randa Atta,et al. Low-Complexity Joint Temporal-Quality Scalability Rate Control for H.264/SVC , 2018, IEEE Transactions on Circuits and Systems for Video Technology.
[30] Han Hu,et al. Transmission Rate Allocation for Reliable Video Transmission in Aerial Vehicle Networks , 2018, 2018 14th International Wireless Communications & Mobile Computing Conference (IWCMC).
[31] Dina Katabi,et al. A cross-layer design for scalable mobile video , 2011, MobiCom.
[32] Song Ci,et al. Utility-Based H.264/SVC Video Streaming Over Multi-Channel Cognitive Radio Networks , 2015, IEEE Transactions on Multimedia.
[33] Jing Wang,et al. Green 5G Heterogeneous Networks Through Dynamic Small-Cell Operation , 2016, IEEE Journal on Selected Areas in Communications.
[34] Deep Medhi,et al. SARA: Segment aware rate adaptation algorithm for dynamic adaptive streaming over HTTP , 2015, 2015 IEEE International Conference on Communication Workshop (ICCW).
[35] Bogdan Smolka,et al. Fast averaging peer group filter for the impulsive noise removal in color images , 2015, Journal of Real-Time Image Processing.
[36] Yongming Huang,et al. Energy-Efficient Optimization for UAV-Aided Cellular Offloading , 2019, IEEE Wireless Communications Letters.
[37] Chao He,et al. A QoE-Oriented Uplink Allocation for Multi-UAV Video Streaming , 2019, Sensors.
[38] Altamiro Amadeu Susin,et al. Optimized Solution to Accelerate in Hardware an Intra H.264/SVC Video Encoder , 2018, IEEE Micro.
[39] Lingyang Song,et al. UAV Offloading: Spectrum Trading Contract Design for UAV Assisted 5G Networks , 2017, ArXiv.
[40] Chong Luo,et al. DaC-RAN: A data-assisted cloud radio access network for visual communications , 2015, IEEE Wireless Communications.
[41] Lazaros F. Merakos,et al. Quality of experience management in mobile cellular networks: key issues and design challenges , 2015, IEEE Communications Magazine.
[42] Jonathan Kua,et al. A Survey of Rate Adaptation Techniques for Dynamic Adaptive Streaming Over HTTP , 2017, IEEE Communications Surveys & Tutorials.
[43] Feng Wu,et al. Structure-Preserving Hybrid Digital-Analog Video Delivery in Wireless Networks , 2015, IEEE Transactions on Multimedia.
[44] Izhak Rubin,et al. A Cross-Layer Bandwidth Allocation Scheme for HTTP-Based Video Streaming in LTE Cellular Networks , 2017, IEEE Communications Letters.
[45] Izhak Rubin,et al. Joint Adaptive Rate and Scheduling for Video Streaming in Multi-Cell Cellular Wireless Networks , 2014, 2015 IEEE Global Communications Conference (GLOBECOM).
[46] Xin-Lin Huang,et al. Maximum a Posteriori Decoding for KMV-Cast Pseudo-Analog Video Transmission , 2017, Mobile Networks and Applications.
[47] Rui Zhang,et al. Wireless communications with unmanned aerial vehicles: opportunities and challenges , 2016, IEEE Communications Magazine.
[48] Harpreet S. Dhillon,et al. 3GPP-Inspired HetNet Model Using Poisson Cluster Process: Sum-Product Functionals and Downlink Coverage , 2017, IEEE Transactions on Communications.
[49] Siyi Wang,et al. Performance analysis of micro unmanned airborne communication relays for cellular networks , 2014, 2014 9th International Symposium on Communication Systems, Networks & Digital Sign (CSNDSP).
[50] Xin-Lin Huang,et al. Knowledge-Enhanced Mobile Video Broadcasting Framework With Cloud Support , 2017, IEEE Transactions on Circuits and Systems for Video Technology.
[51] Rui Zhang,et al. UAV-Aided Offloading for Cellular Hotspot , 2017, IEEE Transactions on Wireless Communications.
[52] Qingqing Wu,et al. Common Throughput Maximization in UAV-Enabled OFDMA Systems With Delay Consideration , 2018, IEEE Transactions on Communications.
[53] Do-Kyoung Kwon,et al. Dependent R/D Modeling Techniques and Joint T-Q Layer Bit Allocation for H.264/SVC , 2013, IEEE Transactions on Circuits and Systems for Video Technology.