Queec: QoE-aware Edge Computing for IoT Devices under Dynamic Workloads
暂无分享,去创建一个
Wei Dong | Jiajun Bu | Tao Gu | Yi Gao | Gaoyang Guan | Jiadong Zhang | Borui Li
[1] Byung-Gon Chun,et al. CloneCloud: elastic execution between mobile device and cloud , 2011, EuroSys '11.
[2] Wei Dong,et al. TinyLink: A Holistic System for Rapid Development of IoT Applications , 2017, MobiCom.
[3] Y. Charlie Hu,et al. Furion: Engineering High-Quality Immersive Virtual Reality on Today's Mobile Devices , 2017, IEEE Transactions on Mobile Computing.
[4] Tarek F. Abdelzaher,et al. DeepIoT: Compressing Deep Neural Network Structures for Sensing Systems with a Compressor-Critic Framework , 2017, SenSys.
[5] Pan Hui,et al. Dandelion: A Unified Code Offloading System for Wearable Computing , 2019, IEEE Transactions on Mobile Computing.
[6] Stephen McCamant,et al. Enabling Cross-ISA Offloading for COTS Binaries , 2017, MobiSys.
[7] Teruo Higashino,et al. Edge-centric Computing: Vision and Challenges , 2015, CCRV.
[8] Yongbo Li,et al. MobiQoR: Pushing the Envelope of Mobile Edge Computing Via Quality-of-Result Optimization , 2017, 2017 IEEE 37th International Conference on Distributed Computing Systems (ICDCS).
[9] Alejandro F. Frangi,et al. Two-dimensional PCA: a new approach to appearance-based face representation and recognition , 2004 .
[10] Peter Friess,et al. Digitising the Industry Internet of Things Connecting the Physical, Digital and VirtualWorlds , 2016 .
[11] Euiseong Seo,et al. An enhanced DSM model for computation offloading , 2017, 2017 IEEE International Conference on Pervasive Computing and Communications (PerCom).
[12] Weisong Shi,et al. Edge Computing: Vision and Challenges , 2016, IEEE Internet of Things Journal.
[13] Raja Lavanya,et al. Fog Computing and Its Role in the Internet of Things , 2019, Advances in Computer and Electrical Engineering.
[14] Xiaowei Yang,et al. CloudCmp: comparing public cloud providers , 2010, IMC '10.
[15] Peng Liu,et al. ParaDrop: Enabling Lightweight Multi-tenancy at the Network’s Extreme Edge , 2016, 2016 IEEE/ACM Symposium on Edge Computing (SEC).
[16] Emmanuel Baccelli,et al. Operating Systems for Low-End Devices in the Internet of Things: A Survey , 2016, IEEE Internet of Things Journal.
[17] Kyung-Ah Chang,et al. Architecture-aware automatic computation offload for native applications , 2015, 2015 48th Annual IEEE/ACM International Symposium on Microarchitecture (MICRO).
[18] Pan Hui,et al. ThinkAir: Dynamic resource allocation and parallel execution in the cloud for mobile code offloading , 2012, 2012 Proceedings IEEE INFOCOM.
[19] Yang Yu,et al. Computation Offloading for Mobile-Edge Computing with Multi-user , 2019, 2019 IEEE 39th International Conference on Distributed Computing Systems (ICDCS).
[20] Young Geun Kim,et al. Signal Strength-Aware Adaptive Offloading with Local Image Preprocessing for Energy Efficient Mobile Devices , 2020, IEEE Transactions on Computers.
[21] A. Conn,et al. An Efficient Method to Solve the Minimax Problem Directly , 1978 .
[22] Jian Yang,et al. Two-dimensional PCA: a new approach to appearance-based face representation and recognition , 2004, IEEE Transactions on Pattern Analysis and Machine Intelligence.
[23] Yantian Hou,et al. Workload-Aware Task Placement in Edge-Assisted Human Re-identification , 2019, 2019 16th Annual IEEE International Conference on Sensing, Communication, and Networking (SECON).
[24] Alec Wolman,et al. MAUI: making smartphones last longer with code offload , 2010, MobiSys '10.
[25] Wei Wang,et al. Edge computing: the case for heterogeneous-ISA container migration , 2020, VEE.
[26] Cecilia Mascolo,et al. LEO: scheduling sensor inference algorithms across heterogeneous mobile processors and network resources , 2016, MobiCom.
[27] Xu Chen,et al. COMET: Code Offload by Migrating Execution Transparently , 2012, OSDI.
[28] Adam A. Alli,et al. SecOFF-FCIoT: Machine learning based secure offloading in Fog-Cloud of things for smart city applications , 2019, Internet Things.