Your browser does not support JavaScript!
http://iet.metastore.ingenta.com
1887

Optimised proportional fair algorithm for long-term evolution-advanced system with multiple component carriers

Optimised proportional fair algorithm for long-term evolution-advanced system with multiple component carriers

For access to this article, please select a purchase option:

Buy article PDF
£12.50
(plus tax if applicable)
Buy Knowledge Pack
10 articles for £75.00
(plus taxes if applicable)

IET members benefit from discounts to all IET publications and free access to E&T Magazine. If you are an IET member, log in to your account and the discounts will automatically be applied.

Learn more about IET membership 

Recommend Title Publication to library

You must fill out fields marked with: *

Librarian details
Name:*
Email:*
Your details
Name:*
Email:*
Department:*
Why are you recommending this title?
Select reason:
 
 
 
 
 
IET Communications — Recommend this title to your library

Thank you

Your recommendation has been sent to your librarian.

Long-term evolution-advanced (LTE-A), the true 4G technology of third Generation Partnership Project family, has a new feature that aggregates multiple LTE carriers so that users can be served on multiple component carriers (CCs). This characteristic plays an important role to increase data rate multiple times for LTE-A users with corresponding multiple CCs. However, current proposed packet scheduling (PS) algorithms ignore this effect in the effort of providing new solution that increases system performance. The modified proportional fair algorithms proposed in this study can provide optimised algorithm for PS mechanism in LTE-A system as well as other technologies that use multiple carriers.

References

    1. 1)
      • Chung, Y.-L., Jang, L.-J., Tsai, Z.: `An efficient downlink packet scheduling algorithm in LTE-advanced systems with carrier aggregation', 2011 IEEE Consumer Communications and Networking Conf. (CCNC), 2011, p. 632–636.
    2. 2)
      • 3GPP: ‘Policy and charging control architecture (Release 9)’, TS 23.203, 2009b.
    3. 3)
      • Li, C., Wenwen, C., Xin, Z., Dacheng, Y.: `Analysis and simulation for spectrum aggregation in LTE-advanced system', Vehicular Technology Conf. Fall IEEE 70th, 2009, p. 1–6.
    4. 4)
      • H. Holma , A. Toskala . (2007) WCDMA for UMTS: HSPA evolution and LTE.
    5. 5)
    6. 6)
    7. 7)
      • Jalali, A., Padovani, R., Pankaj, R.: `Data throughput of CDMA-HDR a high efficiency-high data rate personal communication wireless system', 2000 IEEE 51st Vehicular Technology Conf. Proc., Spring, Tokyo, VTC 2000, 2000, p. 1854–1858, vol. 3.
    8. 8)
      • Takeda, K., Nagata, S., Kishiyama, Y., Miki, N., Tanno, M.: `Effects of wideband scheduling and radio resource assignment in OFDMA radio access for LTE-advanced downlink', 2009 IEEE 70th Vehicular Technology Conf. (VTC 2009-Fall), 2009, p. 1–5.
    9. 9)
    10. 10)
      • Nguyen, S.C., Sandrasegaran, K.: `Adaptations of proportional fair algorithm for packet scheduling in LTE-advanced', 2010 Int. Conf. on Communication and Vehicular Technology (ICCVT 2010), 2010, Hanoi, Vietnam, p. 1–4.
    11. 11)
      • Ramli, H.A.M., Sandrasegaran, K., Basukala, R., Leijia, W.: `Modeling and simulation of packet scheduling in the downlink long term evolution system', 15thAsia-Pacific Conf. on Communication, 2009, APCC 2009, 2009, p. 68–71.
    12. 12)
      • Shi, S., Feng, C., Guo, C.: `A resource scheduling algorithm based on user grouping for LTE-advanced system with carrier aggregation', Int. Symp. on Computer Network and Multimedia Technology, 2009, p. 1–4.
    13. 13)
      • ITU. (21/10/2010): ‘ITU-R IMT-Advanced 4 G standards to usher new era of mobile broadband communications.’ Available at: http://www.itu.int/net/pressoffice/press_releases/2010/40.aspx.
    14. 14)
      • Cheng-Chung, L., Sandrasegaran, K., Ramli, H.A.M.: `Optimization of handover algorithms in 3GPP long term evolution system', 2011 Fourth Int. Conf. on Modeling, Simulation and Applied Optmization (ICMSA), 2011, p. 1–5.
    15. 15)
      • 3GPP TSG-RAN1: ‘3GPP Self-evaluation Methodology and Results’, 17-18/12/2009.
    16. 16)
    17. 17)
    18. 18)
      • 3GPP TR 36.814: ‘Further Advancements for E-UTRA Physical Layer Aspects (Release 9)’, January 2009.
    19. 19)
      • Nguyen, S.C., Sandrasegaran, K.: `Modeling and simulation of packet scheduling in the downlink LTE-advanced', 17thAsia-Pacific Conf. on Communication (APCC 2011), 2011, Sabah, Malaysia, p. 1–4.
    20. 20)
      • Kim, K., Yeo, G.-M., Ryu, B.-H., Chang, K.: `Interference analysis and subchannel allocation schemes in tri-sectored OFDMA systems', Presented at the IEEE 66th Vehicular Technology Conf., 2007.
    21. 21)
      • Sandrasegaran, K., Mohd Ramli, H.A., Basukala, R.: `Delay-Prioritized Scheduling (DPS) for real time traffic in 3GPP LTE system', 2010 IEEE Wireless Communications and Networking Conf. (WCNC), 2010, p. 1–6.
    22. 22)
      • H. Shirani-Mehr , H. Papadopoulos , S. Ramprashad , G. Caire . Joint scheduling and ARQ for MU-MIMO downlink in the presence of inter-cell interference. IEEE Trans. Commun. , 99 , 1 - 12
    23. 23)
      • Komninakis, C.: `A fast and accurate Rayleigh fading simulator', IEEE Global Telecommunications Conf., GLOBECOM'03, 2003, p. 3306–3310, vol. 6.
    24. 24)
      • 3GPP: ‘Feasibility study for orthogonal frequency division multiplexing (OFDM) for UTRAN Enhancement (Release 6)’, TR25.892, version 6.0.0, June 2004.
http://iet.metastore.ingenta.com/content/journals/10.1049/iet-com.2011.0863
Loading

Related content

content/journals/10.1049/iet-com.2011.0863
pub_keyword,iet_inspecKeyword,pub_concept
6
6
Loading
This is a required field
Please enter a valid email address