Analysis of group paging with pre-backoff

Ruki Harwahyu1, Xian Wang2, Riri Fitri Sari3, Ray-Guang Cheng1
1Department of Electrical, Electronics and Computer Engineering, National Taiwan University of Science and Technology (NTUST), Taipei, Taiwan
2School of Information Science and Technology, Southwest Jiaotong University, Sichuan, China
3Department of Electrical Engineering, University of Indonesia (UI), Depok, Indonesia

Tóm tắt

Group paging can simultaneously activate hundreds of user equipments (UEs) using a single paging message. Upon receiving the group paging message, all UEs should immediately transmit their paging response messages through the random access channels (RACHs). Simultaneous channel access from a huge group of UEs may result in severe collisions of the RACHs during a very short period of time. In this paper, we propose a pre-backoff method to reduce the collision probability of random access requests. We develop an analytical model to investigate the performance and optimize the setting of the pre-backoff method. The accuracy of the analytical model is verified through computer simulation. Results show that the proposed pre-backoff method can effectively enhance the performance of group paging.

Tài liệu tham khảo

E Khorov, A Lyakhov, A Krotov, A Guschin, A survey on IEEE 802.11ah: An enabling networking technology for smart cities. Comp. Commun (2014). doi:10.1016/j.comcom.2014.08.008. R Harwahyu, RG Cheng, RF Sari, in International Symposium on personal Indoor and Mobile Radio Communications. Consecutive group paging for LTE networks supporting machine-type communications services (IEEEEngland, 2013), pp. 1619–1623. doi:10.1109/PIMRC.2013.6666401. LG Electronics Inc., 3GPP, R2-104004 (2010). http://www.3gpp.org/ftp/tsg_ran/WG2_RL2/TSGR2_70bis/Docs/R2-104004.zip. Accessed 12 Jan 2013. CH Wei, RG Cheng, SL Tsao, Performance analysis of group paging for machine-type communications in LTE networks. IEEE Trans. Vehicular Tech. 62, 7 (2013). doi:10.1109/TVT.2013.2251832. ITRI, 3GPP, R2-113198 (2010). http://www.3gpp.org/ftp/tsg_ran/WG2_RL2/TSGR2_74/Docs/R2-113198.zip. Accessed 13 Jan 2013. CH Wei, RG Cheng, SL Tsao, Modeling and estimation of one-shot random access for finite-user multichannel slotted ALOHA systems. IEEE Commun. Lett. 16, 8 (2012). doi:10.1109/LCOMM.2012.060112.120376. AH Tsai, LC Wang, JH Huang, TM Lin, in Vehicular Technology Conference. Overload control for machine type communications with femtocells (IEEEQuebec, 2012), pp. 1–5. doi:10.1109/VTCFall.2012.6399236. H Tang, M Lei, X Wang, C Sun, in Business Computing and Global Informatization. The priority backoff algorithm and PUSCH power control for random access in TD-LTE trunking system (IEEEChina, 2012), pp. 580–583. doi:10.1109/BCGIN.2012.157. G Farhadi, A Ito, in Vehicular Technology Conference. Group-based signaling and access control for cellular machine-to-machine communication (IEEELas Vegas, 2013), pp. 1–6. doi:10.1109/VTCFall.2013.6692218. O Arouk, A Ksentini, Y Hadjadj-Aoul, T Taleb, in International Conference on Communications. On improving the group paging method for machine-type-communications (IEEESydney, 2014), pp. 484–489. doi:10.1109/ICC.2014.6883365. ZTE, 3GPP, R2-111916 (2011). http://www.3gpp.org/ftp/tsg_ran/WG2_RL2/TSGR2_73bis/Docs/R2-111916.zip. Accessed 20 Dec 2014. W Jiang, X Wang, T Deng, in International Conference on Intelligent Green Building and Smart Grid. Performance analysis of a pre-backoff based random access scheme for machine-type communications (IEEETaipei, 2014), pp. 1–4, doi:10.1109/IGBSG.2014.6835249.