The role of caching in next generation cellular networks: A survey and research outlook
暂无分享,去创建一个
Edvin J. Kitindi | Asif Kabir | Khurrum Mustafa Abbasi | Zain ul Abidin Jaffri | Gohar Rehman | Syed Mushhad Gilani | Asif Kabir | E. J. Kitindi | Gohar Rehman | S. Gilani
[1] Seyed Pooya Shariatpanahi,et al. Multi-Server Coded Caching , 2015, IEEE Transactions on Information Theory.
[2] Suhas N. Diggavi,et al. Effect of number of users in multi-level coded caching , 2015, 2015 IEEE International Symposium on Information Theory (ISIT).
[3] Nirwan Ansari,et al. Network Utility Aware Traffic Load Balancing in Backhaul-Constrained Cache-Enabled Small Cell Networks with Hybrid Power Supplies , 2014, IEEE Transactions on Mobile Computing.
[4] Sheng Yang,et al. Content delivery with coded caching and massive MIMO in 5G , 2016, 2016 9th International Symposium on Turbo Codes and Iterative Information Processing (ISTC).
[5] K. G. Nagananda,et al. Caching with Unknown Popularity Profiles in Small Cell Networks , 2014, GLOBECOM 2014.
[6] Walid Saad,et al. Echo State Networks for Proactive Caching in Cloud-Based Radio Access Networks With Mobile Users , 2016, IEEE Transactions on Wireless Communications.
[7] Deniz Gündüz,et al. Learning-based optimization of cache content in a small cell base station , 2014, 2014 IEEE International Conference on Communications (ICC).
[8] Olga Galinina,et al. Exploring synergy between communications, caching, and computing in 5G-grade deployments , 2016, IEEE Communications Magazine.
[9] Michael Gastpar,et al. Information-Theoretic Caching: The Multi-User Case , 2017, IEEE Transactions on Information Theory.
[10] Chao Tian,et al. Caching and Delivery via Interference Elimination , 2018, IEEE Transactions on Information Theory.
[11] Jinbo Liu,et al. Energy efficiency analysis of cache-enabled cooperative dense small cell networks , 2017, IET Commun..
[12] Harpreet S. Dhillon,et al. Effect of Retransmissions on Optimal Caching in Cache-Enabled Small Cell Networks , 2017, IEEE Transactions on Vehicular Technology.
[13] Deniz Gündüz,et al. Coded caching for a large number of users , 2016, 2016 IEEE Information Theory Workshop (ITW).
[14] Gerhard Fettweis,et al. The global footprint of mobile communications: The ecological and economic perspective , 2011, IEEE Communications Magazine.
[15] Zhi Yan,et al. Energy Efficiency Analysis of Cache-Enabled Two-Tier HetNets Under Different Spectrum Deployment Strategies , 2017, IEEE Access.
[16] Hooshang Ghasemi,et al. Improved lower bounds for coded caching , 2015, 2015 IEEE International Symposium on Information Theory (ISIT).
[17] Mehdi Bennis,et al. A transfer learning approach for cache-enabled wireless networks , 2015, 2015 13th International Symposium on Modeling and Optimization in Mobile, Ad Hoc, and Wireless Networks (WiOpt).
[18] Giuseppe Caire,et al. Cellular Interference Alignment , 2015, IEEE Trans. Inf. Theory.
[19] Tapani Ristaniemi,et al. Learn to Cache: Machine Learning for Network Edge Caching in the Big Data Era , 2018, IEEE Wireless Communications.
[20] Weng Chon Ao,et al. Fast Content Delivery via Distributed Caching and Small Cell Cooperation , 2018, IEEE Transactions on Mobile Computing.
[21] Michele A. Wigger,et al. Erasure broadcast networks with receiver caching , 2016, 2016 IEEE International Symposium on Information Theory (ISIT).
[22] Weihua Zhuang,et al. Network cooperation for energy saving in green radio communications , 2011, IEEE Wireless Communications.
[23] Ravi Tandon,et al. Improved Approximation of Storage-Rate Tradeoff for Caching With Multiple Demands , 2016, IEEE Transactions on Communications.
[24] Suhas N. Diggavi,et al. Multi-level coded caching , 2014, 2014 IEEE International Symposium on Information Theory.
[25] Hao Wu,et al. Energy-Efficient In-Network Caching for Content-Centric Networking , 2013, IEEE Communications Letters.
[26] Zhi Chen,et al. Fundamental limits of caching: improved bounds for users with small buffers , 2016, IET Commun..
[27] Michele A. Wigger,et al. An upper bound on the capacity-memory tradeoff of degraded broadcast channels , 2016, 2016 9th International Symposium on Turbo Codes and Iterative Information Processing (ISTC).
[28] A.P. Subramanian,et al. Near-Optimal Dynamic Spectrum Allocation in Cellular Networks , 2008, 2008 3rd IEEE Symposium on New Frontiers in Dynamic Spectrum Access Networks.
[29] Siddarama R. Patil,et al. A survey on spectrum sensing algorithms for cognitive radio , 2016, 2016 International Conference on Advances in Human Machine Interaction (HMI).
[30] Osvaldo Simeone,et al. Harnessing cloud and edge synergies: toward an information theory of fog radio access networks , 2016, IEEE Communications Magazine.
[31] Abd AlRahman AlMomani,et al. A heuristic approach for overlay content-caching network design in 5G wireless networks , 2016, 2016 IEEE Symposium on Computers and Communication (ISCC).
[32] Shlomo Shamai,et al. Two-user MISO broadcast channel: Synergistic benefits of alternating CSIT , 2013, 2013 IEEE International Symposium on Information Theory.
[33] T. Charles Clancy,et al. Achievable Capacity Under the Interference Temperature Model , 2007, IEEE INFOCOM 2007 - 26th IEEE International Conference on Computer Communications.
[34] Suhas N. Diggavi,et al. A layered caching architecture for the interference channel , 2016, 2016 IEEE International Symposium on Information Theory (ISIT).
[35] Ziv Bar-Yossef,et al. Index Coding With Side Information , 2011, IEEE Trans. Inf. Theory.
[36] Jeffrey G. Andrews,et al. Spatially Correlated Content Caching for Device-to-Device Communications , 2016, IEEE Transactions on Wireless Communications.
[37] Rick S. Blum,et al. A Survey of Caching Techniques in Cellular Networks: Research Issues and Challenges in Content Placement and Delivery Strategies , 2018, IEEE Communications Surveys & Tutorials.
[38] Tiejun Lv,et al. Energy-Efficient Caching for Scalable Videos in Heterogeneous Networks , 2018, IEEE Journal on Selected Areas in Communications.
[39] Sanjeev Jain,et al. Green Communication in Next Generation Cellular Networks: A Survey , 2017, IEEE Access.
[40] Jeffrey G. Andrews,et al. Optimizing Content Caching to Maximize the Density of Successful Receptions in Device-to-Device Networking , 2016, IEEE Transactions on Communications.
[41] Bin Xia,et al. Energy efficiency in wireless cooperative caching networks , 2014, 2014 IEEE International Conference on Communications (ICC).
[42] F. Richard Yu,et al. A survey of energy-efficient caching in information-centric networking , 2014, IEEE Communications Magazine.
[43] Aylin Yener,et al. Fundamental limits of secure device-to-device coded caching , 2016, 2016 50th Asilomar Conference on Signals, Systems and Computers.
[44] Urs Niesen,et al. Online Coded Caching , 2013, IEEE/ACM Transactions on Networking.
[45] Harpreet S. Dhillon,et al. Distributed caching in device-to-device networks: A stochastic geometry perspective , 2015, 2015 49th Asilomar Conference on Signals, Systems and Computers.
[46] Syed Ali Jafar,et al. On the Optimality of Treating Interference as Noise: Compound Interference Networks , 2016, IEEE Transactions on Information Theory.
[47] Jaime Llorca,et al. Order-Optimal Rate of Caching and Coded Multicasting With Random Demands , 2015, IEEE Transactions on Information Theory.
[48] R. Michael Buehrer,et al. Learning distributed caching strategies in small cell networks , 2014, 2014 11th International Symposium on Wireless Communications Systems (ISWCS).
[49] Nirwan Ansari,et al. Powering mobile networks with green energy , 2014, IEEE Wireless Communications.
[50] Haiyun Luo,et al. Traffic-driven power saving in operational 3G cellular networks , 2011, MobiCom.
[51] Jeffrey G. Andrews,et al. Seven ways that HetNets are a cellular paradigm shift , 2013, IEEE Communications Magazine.
[52] Tommy Svensson,et al. The role of small cells, coordinated multipoint, and massive MIMO in 5G , 2014, IEEE Communications Magazine.
[53] Luis M. Lopez-Ramos,et al. Jointly optimal sensing and resource allocation for multiuser interweave cognitive radios , 2012, 2012 7th International ICST Conference on Cognitive Radio Oriented Wireless Networks and Communications (CROWNCOM).
[54] Khaled Ben Letaief,et al. Energy harvesting small cell networks: feasibility, deployment, and operation , 2015, IEEE Communications Magazine.
[55] Junyi Li,et al. Network densification: the dominant theme for wireless evolution into 5G , 2014, IEEE Communications Magazine.
[56] Xiaofeng Tao,et al. On Base Station Coordination in Cache- and Energy Harvesting-Enabled HetNets: A Stochastic Geometry Study , 2018, IEEE Transactions on Communications.
[57] Urs Niesen,et al. Cache-aided interference channels , 2015, 2015 IEEE International Symposium on Information Theory (ISIT).
[58] Kevin C. Almeroth,et al. The Use of Multicast Delivery to Provide a Scalable and Interactive Video-on-Demand Service , 1996, IEEE J. Sel. Areas Commun..
[59] James Roberts,et al. Exploring the memory-bandwidth tradeoff in an information-centric network , 2013, Proceedings of the 2013 25th International Teletraffic Congress (ITC).
[60] Matti Latva-aho,et al. On the impact of heterogeneous backhauls on coordinated multipoint transmission in femtocell networks , 2012, 2012 IEEE International Conference on Communications (ICC).
[61] Nirwan Ansari,et al. Optimal Cooperative Power Allocation for Energy-Harvesting-Enabled Relay Networks , 2014, IEEE Transactions on Vehicular Technology.
[62] Jeffrey G. Andrews,et al. On/off macrocells and load balancing in heterogeneous cellular networks , 2013, 2013 IEEE Global Communications Conference (GLOBECOM).
[63] Jianhua Lu,et al. Energy-Efficient Resource Allocation in LTE-Based MIMO-OFDMA Systems With User Rate Constraints , 2015, IEEE Transactions on Vehicular Technology.
[64] Michele A. Wigger,et al. Joint cache-channel coding over erasure broadcast channels , 2015, 2015 International Symposium on Wireless Communication Systems (ISWCS).
[65] Cheng-Xiang Wang,et al. 5G Ultra-Dense Cellular Networks , 2015, IEEE Wireless Communications.
[66] Michael Gastpar,et al. Information-Theoretic Caching: Sequential Coding for Computing , 2015, IEEE Transactions on Information Theory.
[67] Huaiyu Dai,et al. A Survey on Low Latency Towards 5G: RAN, Core Network and Caching Solutions , 2017, IEEE Communications Surveys & Tutorials.
[68] Urs Niesen,et al. Decentralized coded caching attains order-optimal memory-rate tradeoff , 2013, 2013 51st Annual Allerton Conference on Communication, Control, and Computing (Allerton).
[69] Laszlo A. Belady,et al. A Study of Replacement Algorithms for Virtual-Storage Computer , 1966, IBM Syst. J..
[70] Walid Saad,et al. Echo-Liquid State Deep Learning for 360° Content Transmission and Caching in Wireless VR Networks With Cellular-Connected UAVs , 2018, IEEE Transactions on Communications.
[71] A. I. Chernyi. On the brink of the information society , 2010, Automatic Documentation and Mathematical Linguistics.
[72] Fei Shen,et al. A Stackelberg Game for Incentive Proactive Caching Mechanisms in Wireless Networks , 2016, 2016 IEEE Global Communications Conference (GLOBECOM).
[73] Cyril Leung,et al. Resource Allocation in an LTE Cellular Communication System , 2009, 2009 IEEE International Conference on Communications.
[74] Takuro Sato,et al. A Context-Aware Green Information-Centric Networking Model for Future Wireless Communications , 2018, IEEE Access.
[75] Osvaldo Simeone,et al. Fog-Aided Wireless Networks for Content Delivery: Fundamental Latency Tradeoffs , 2016, IEEE Transactions on Information Theory.
[76] Mehdi Bennis,et al. Social and spatial proactive caching for mobile data offloading , 2014, 2014 IEEE International Conference on Communications Workshops (ICC).
[77] Urs Niesen,et al. Fundamental Limits of Caching , 2014, IEEE Trans. Inf. Theory.
[78] Walid Saad,et al. Echo State Networks for Self-Organizing Resource Allocation in LTE-U With Uplink–Downlink Decoupling , 2016, IEEE Transactions on Wireless Communications.
[79] Jeffrey G. Andrews,et al. What Will 5G Be? , 2014, IEEE Journal on Selected Areas in Communications.
[80] Michael Gastpar,et al. K users caching two files: An improved achievable rate , 2016, 2016 Annual Conference on Information Science and Systems (CISS).
[81] Omar Y. Al-Jarrah,et al. Popularity-Based Video Caching Techniques for Cache-Enabled Networks: A Survey , 2019, IEEE Access.
[82] Suhas N. Diggavi,et al. Content caching and delivery over heterogeneous wireless networks , 2014, 2015 IEEE Conference on Computer Communications (INFOCOM).
[83] Hongke Zhang,et al. GrIMS: Green Information-Centric Multimedia Streaming Framework in Vehicular Ad Hoc Networks , 2018, IEEE Transactions on Circuits and Systems for Video Technology.
[84] H. Vincent Poor,et al. A Learning-Based Approach to Caching in Heterogenous Small Cell Networks , 2015, IEEE Transactions on Communications.
[85] Li Fan,et al. Web caching and Zipf-like distributions: evidence and implications , 1999, IEEE INFOCOM '99. Conference on Computer Communications. Proceedings. Eighteenth Annual Joint Conference of the IEEE Computer and Communications Societies. The Future is Now (Cat. No.99CH36320).
[86] Hongke Zhang,et al. Optimizing content routers deployment in large‐scale information centric core‐edge separation Internet , 2014, Int. J. Commun. Syst..
[87] Chaitanya Swamy,et al. Approximation Algorithms for Data Placement Problems , 2008, SIAM J. Comput..
[88] Sujit Dey,et al. Video-Aware Scheduling and Caching in the Radio Access Network , 2014, IEEE/ACM Transactions on Networking.
[89] Chia-Lung Liu,et al. Sum Throughput-Improved Resource Allocation for LTE Uplink Transmission , 2011, 2011 IEEE Vehicular Technology Conference (VTC Fall).
[90] Peter Han Joo Chong,et al. Fundamentals of Cluster-Centric Content Placement in Cache-Enabled Device-to-Device Networks , 2015, IEEE Transactions on Communications.
[91] Mihaela van der Schaar,et al. Trend-Aware Video Caching Through Online Learning , 2016, IEEE Transactions on Multimedia.
[92] Himanshu Gupta,et al. Self-Regulating Spectrum Management: A Case of Fractional Frequency Reuse Patterns in LTE Networks , 2010, 2010 IEEE Symposium on New Frontiers in Dynamic Spectrum (DySPAN).
[93] Robert W. Heath,et al. Five disruptive technology directions for 5G , 2013, IEEE Communications Magazine.
[94] Satoshi Nagata,et al. Trends in small cell enhancements in LTE advanced , 2013, IEEE Communications Magazine.
[95] Mehdi Bennis,et al. Living on the edge: The role of proactive caching in 5G wireless networks , 2014, IEEE Communications Magazine.
[96] Navid Naderializadeh,et al. ITLinQ: A New Approach for Spectrum Sharing in Device-to-Device Communication Systems , 2013, IEEE Journal on Selected Areas in Communications.
[97] Rajmohan Rajaraman,et al. Placement Algorithms for Hierarchical Cooperative Caching , 2001, J. Algorithms.
[98] Qianbin Chen,et al. Integration of Networking, Caching, and Computing in Wireless Systems: A Survey, Some Research Issues, and Challenges , 2018, IEEE Communications Surveys & Tutorials.
[99] Amir K. Khandani,et al. Communication Over MIMO X Channels: Interference Alignment, Decomposition, and Performance Analysis , 2008, IEEE Transactions on Information Theory.
[100] Lujie Zhong,et al. Optimal Information Centric Caching in 5G Device-to-Device Communications , 2018, IEEE Transactions on Mobile Computing.
[101] Michael Gastpar,et al. A new converse bound for coded caching , 2016, 2016 Information Theory and Applications Workshop (ITA).
[102] Theodore S. Rappaport,et al. Millimeter Wave Mobile Communications for 5G Cellular: It Will Work! , 2013, IEEE Access.
[103] Zhouyue Pi,et al. An introduction to millimeter-wave mobile broadband systems , 2011, IEEE Communications Magazine.
[104] T. Charles Clancy,et al. Dynamic Resource Allocation for Cooperative Spectrum Sharing in LTE Networks , 2015, IEEE Transactions on Vehicular Technology.
[105] Jeffrey G. Andrews,et al. Modeling and Analyzing Millimeter Wave Cellular Systems , 2016, IEEE Transactions on Communications.
[106] Jeffrey G. Andrews,et al. Femtocells: Past, Present, and Future , 2012, IEEE Journal on Selected Areas in Communications.
[107] Ian F. Akyildiz,et al. Cooperative spectrum sensing in cognitive radio networks: A survey , 2011, Phys. Commun..
[108] Mihaela van der Schaar,et al. Smart caching in wireless small cell networks via contextual multi-armed bandits , 2016, 2016 IEEE International Conference on Communications (ICC).
[109] Jaime Llorca,et al. Cache-aided coded multicast for correlated sources , 2016, 2016 9th International Symposium on Turbo Codes and Iterative Information Processing (ISTC).
[110] Xing Zhang,et al. A Survey on Mobile Edge Networks: Convergence of Computing, Caching and Communications , 2017, IEEE Access.
[111] Mohammad Ali Maddah-Ali,et al. Completely Stale Transmitter Channel State Information is Still Very Useful , 2010, IEEE Transactions on Information Theory.
[112] Walid Saad,et al. Liquid State Machine Learning for Resource Allocation in a Network of Cache-Enabled LTE-U UAVs , 2017, GLOBECOM 2017 - 2017 IEEE Global Communications Conference.
[113] Dong In Kim,et al. HetNets with cognitive small cells: user offloading and distributed channel access techniques , 2013, IEEE Communications Magazine.
[114] Alexandros G. Dimakis,et al. FemtoCaching: Wireless Content Delivery Through Distributed Caching Helpers , 2013, IEEE Transactions on Information Theory.
[115] Lajos Hanzo,et al. Green radio: radio techniques to enable energy-efficient wireless networks , 2011, IEEE Communications Magazine.
[116] Walid Saad,et al. On the tradeoff between energy harvesting and caching in wireless networks , 2015, 2015 IEEE International Conference on Communication Workshop (ICCW).
[117] Jia Wang,et al. A survey of web caching schemes for the Internet , 1999, CCRV.
[118] Daniela Tuninetti,et al. On caching with more users than files , 2016, 2016 IEEE International Symposium on Information Theory (ISIT).
[119] Walid Saad,et al. Many-to-many matching games for proactive social-caching in wireless small cell networks , 2014, 2014 12th International Symposium on Modeling and Optimization in Mobile, Ad Hoc, and Wireless Networks (WiOpt).
[120] Wei Wang,et al. Distributed cache replacement for caching-enable base stations in cellular networks , 2014, 2014 IEEE International Conference on Communications (ICC).
[121] Yongbin Wei,et al. Coordinated downlink multi-point communications in heterogeneous cellular networks , 2012, 2012 Information Theory and Applications Workshop.
[122] Dong Liu,et al. Energy Efficiency of Downlink Networks With Caching at Base Stations , 2015, IEEE Journal on Selected Areas in Communications.
[123] Melike Erol-Kantarci. Cache-at-relay: energy-efficient content placement for next-generation wireless relays , 2015, Int. J. Netw. Manag..
[124] Erik G. Larsson,et al. Massive MIMO for next generation wireless systems , 2013, IEEE Communications Magazine.
[125] Xiaofei Wang,et al. Cache in the air: exploiting content caching and delivery techniques for 5G systems , 2014, IEEE Communications Magazine.
[126] Mérouane Debbah,et al. Proactive small cell networks , 2013, ICT 2013.
[127] Sem C. Borst,et al. Distributed Caching Algorithms for Content Distribution Networks , 2010, 2010 Proceedings IEEE INFOCOM.
[128] Giuseppe Caire,et al. Fundamental Limits of Caching in Wireless D2D Networks , 2014, IEEE Transactions on Information Theory.
[129] Mohammad Ali Maddah-Ali,et al. Fundamental Limits of Cache-Aided Interference Management , 2017, IEEE Trans. Inf. Theory.
[130] Preben E. Mogensen,et al. On Open versus Closed LTE-Advanced Femtocells and Dynamic Interference Coordination , 2010, 2010 IEEE Wireless Communication and Networking Conference.
[131] Walid Saad,et al. Caching in the Sky: Proactive Deployment of Cache-Enabled Unmanned Aerial Vehicles for Optimized Quality-of-Experience , 2016, IEEE Journal on Selected Areas in Communications.
[132] Xinbing Wang,et al. Coded caching under arbitrary popularity distributions , 2015, ITA.
[133] Jeffrey G. Andrews,et al. Fundamental Limits of Cooperation , 2012, IEEE Transactions on Information Theory.
[134] Urs Niesen,et al. Coded Caching With Nonuniform Demands , 2017, IEEE Trans. Inf. Theory.
[135] Wei Chen,et al. GreenDelivery: proactive content caching and push with energy-harvesting-based small cells , 2015, IEEE Communications Magazine.