Power Efficient Random Access for Massive NB-IoT Connectivity
暂无分享,去创建一个
[1] Michel Robert,et al. Overview of narrowband IoT in LTE Rel-13 , 2016, 2016 IEEE Conference on Standards for Communications and Networking (CSCN).
[2] Hu Jin,et al. Abstraction of Random Access Procedure for Bursty MTC Traffic in 5G Networks , 2018, 2018 24th Asia-Pacific Conference on Communications (APCC).
[3] Xingqin Lin,et al. A Primer on 3GPP Narrowband Internet of Things , 2016, IEEE Communications Magazine.
[4] Kai Liu,et al. A classification back-off method for capacity optimization in NB-IOT random access , 2017, 2017 11th IEEE International Conference on Anti-counterfeiting, Security, and Identification (ASID).
[5] Ray-Guang Cheng,et al. RACH Collision Probability for Machine-Type Communications , 2012, 2012 IEEE 75th Vehicular Technology Conference (VTC Spring).
[6] Riri Fitri Sari,et al. Optimization of Random Access Channel in NB-IoT , 2018, IEEE Internet of Things Journal.
[7] Jianhua Li,et al. Proposed Security Mechanism for XMPP-Based Communications of ISO/IEC/IEEE 21451 Sensor Networks , 2015, IEEE Sensors Journal.
[8] Min Chen,et al. Narrow Band Internet of Things , 2017, IEEE Access.
[9] Jun Xu,et al. Narrowband Internet of Things: Evolutions, Technologies, and Open Issues , 2018, IEEE Internet of Things Journal.
[10] Xingqin Lin,et al. Random Access Preamble Design and Detection for 3GPP Narrowband IoT Systems , 2016, IEEE Wireless Communications Letters.
[11] Yuan Wu,et al. Uplink Scheduling and Link Adaptation for Narrowband Internet of Things Systems , 2017, IEEE Access.
[12] Xingqin Lin,et al. Overview of 3GPP Release 14 Enhanced NB-IoT , 2017, IEEE Network.
[13] Ray-Guang Cheng,et al. Investigating the Performance of the Random Access Channel in NB-IoT , 2017, 2017 IEEE 86th Vehicular Technology Conference (VTC-Fall).
[14] Arvin C.-S. Huang,et al. Energy-saving scheduling in the 3GPP narrowband Internet of Things (NB-IoT) using energy-aware machine-to-machine relays , 2018, 2018 27th Wireless and Optical Communication Conference (WOCC).
[15] Arumugam Nallanathan,et al. RACH Preamble Repetition in NB-IoT Network , 2018, IEEE Communications Letters.
[16] Jun-Bae Seo,et al. Recursive Pseudo-Bayesian Access Class Barring for M2M Communications in LTE Systems , 2017, IEEE Transactions on Vehicular Technology.
[17] Nicola Blefari-Melazzi,et al. Autonomic control and personalization of a wireless access network , 2007, Comput. Networks.
[18] Fei Tong,et al. Throughput Modeling and Analysis of Random Access in Narrowband Internet of Things , 2018, IEEE Internet of Things Journal.
[19] Haris Pervaiz,et al. Radio Resource Management Scheme in NB-IoT Systems , 2018, IEEE Access.
[20] Jeng-Kuang Hwang,et al. Repetitions Versus Retransmissions: Tradeoff in Configuring NB-IoT Random Access Channels , 2019, IEEE Internet of Things Journal.
[21] Ying Chen,et al. Performance Analysis and Uplink Scheduling for QoS-Aware NB-IoT Networks in Mobile Computing , 2019, IEEE Access.
[22] R.J. Evans,et al. An efficient self-healing process for ZigBee sensor networks , 2007, 2007 International Symposium on Communications and Information Technologies.
[23] Dong Min Kim,et al. An Enhanced Access Reservation Protocol With a Partial Preamble Transmission Mechanism in NB-IoT Systems , 2017, IEEE Communications Letters.
[24] Jeng-Kuang Hwang,et al. Efficient Detection and Synchronization of Superimposed NB-IoT NPRACH Preambles , 2019, IEEE Internet of Things Journal.
[25] Wha Sook Jeon,et al. Effective Frequency Hopping Pattern for ToA Estimation in NB-IoT Random Access , 2018, IEEE Transactions on Vehicular Technology.