博碩士論文 995203020 詳細資訊




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姓名 林威龍(Wei-lung Lin)  查詢紙本館藏   畢業系所 通訊工程學系
論文名稱 在 LTE-A 網路以載波聚合為基礎之下行鏈路無線電資源管理
(The Study of Carrier-Aggregation Based Radio Resource Management for Downlink Traffic in LTE-A Network)
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摘要(中) 在 IMT-Advanced 行動通訊系統下為了達到傳輸速率1Gbps,LTE-Advanced 規格中制定了許多新技術,而載波聚合為其中重要的技術之一。
於本篇的論文中我們著重於在LTE-Advanced 系統的下行鏈路中如何提高系統吞吐量,針對LTE 和LTE-Advanced UE 提出了全新挑選Component Carriers 以及資源分配方法,並且提出了一套針對GBR 與Non-GBR 不同Traffic 類型的權重計算方式,藉此來找出最高優先權的UE。由於最高優先權的UE 可以挑選 出來比較好Component Carriers 和選擇比較好的MCS 來做資源分配,因此計算最高優先權的式子對於系統來說非常地重要。
最後我們將會透過模擬的方式來驗證所提出來的方法是否能有效提高系統吞吐量,並且探討在本方法中提高系統吞吐量所帶來的優缺點。提高系統吞吐量的優點在於能夠提高系統的使用效率,服務更多的LTE 或LTE-Advanced UE;缺點是會造成LTE-Advanced UE 消耗比較多的電量,因為LTE-Advanced UE 需要開啟比較多的天線來接收或是傳送Component Carriers 資訊來取得比較多的頻寬,進而提升系統的吞吐量。
摘要(英) In order to achieve up to 1 Gbps peak data rate in future IMT-Advanced mobile systems, LTE-Advanced has developed many new technologies, and carrier aggregation is one of the most important technologies.
In this paper, we focus on how to improve the system throughput in downlink, and propose a new component carriers selection and resource allocation method for LTE and LTE-Advanced UE. And we also propose the weighting function for the GBR and Non-GBR different traffic types, clarifying the priority of UE and selecting the high one. UE of the highest priority can choose the best component carriers and select the RBG with high MCS index for resource allocation. Thus, the calculation of high priority weighting function is the most important one in our system.
Finally, we would validate our method through simulation, to check out whether the proposed method can improve the system throughput or not, and investigate
advantages and disadvantages of improving system throughput. The advantage of improving the system performance is that it can serve more LTE or LTE-Advanced
UE with the same resource in the system. But that would make the LTE-Advanced UE waste more power, for the reason that the LTE-Advanced UE need activate more antennas to receive component carriers’ information, getting more bandwidth for the improvement of system throughput.
關鍵字(中) ★ LTE
★ LTE-Advanced
★ Component Carriers
★ 載波聚合
★ 資源分配
關鍵字(英) ★ LTE
★ LTE-Advanced
★ Component Carriers
★ Carrier Agg
論文目次 摘要 I
Abstract II
誌謝 III
目錄 IV
圖目錄 VI
表目錄 VIII
第一章 緒論 1
1.1研究背景 1
1.2研究動機與目的 2
1.3章節概要 3
第二章 相關背景研究 4
2.1 LTE 系統架構 4
2.1.1 LTE Protocol 架構 5
2.2 LTE Frame 架構 6
2.2.1 Resource Block 7
2.3 LTE MAC 9
2.4 LTE-Advanced Carrier Aggregation 10
2.5 LTE-Advanced Carrier Aggregation 省電機制介紹 14
2.6 相關文獻 15
第三章 研究方法 22
3.1系統架構 22
3.2 UE 優先權 23
3.2.1 GBR 權重計算 28
3.2.2 Non GBR 權重計算 28
3.3 CC挑選 29
3.3.1 LTE UE CC 權重計算 30
3.3.2 LTE-Advanced UE CC 權重計算 31
3.4 資源需求量計算方式 34
3.5 分配頻寬與通道回報機制 35
3.6 資源分配流程 38
第四章 模擬環境與結果分析 40
4.1 模擬環境 40
4.2 Traffic Model 介紹 41
4.2.1 Http Traffic Model 41
4.2.2 Video Streaming Traffic Model 43
4.3 模擬結果分析 44
4.3.1 數據分析一 44
4.3.2 數據分析二 51
4.3.3數據分析三 59
4.3.4數據分析四 62
第五章 結論 66
參考文獻 67
參考文獻 [1]ITU-R M.2134 “Requirements Related to Technical Performance for IMT Advanced Radio Interface(s)” Nov.2008.
[2]A. Ghosh, R. Ratasuk, B. Mondal, N. Mangalvedhe, and T. Thomas, “LTE-Advanced: next-generation wireless broadband technology”, IEEE Communication Magazine, vol. 17, no. 3, pp. 10~22, June 2010
[3]T.E. Kolding, F. Frederiksen, I.Z. Kovacs, D. Laselva, and P.E. Mogensen, “An overview of downlink radio resource management for UTRAN long-term evolution”, IEEE Communication Magazine, vol. 47, no. 7, pp. 86~93, July 2009
[4]3GPP TS 23.401 V9.3.0. General Packet Radio Service (GPRS) enhancements for Evolved Universal Terrestrial Radio Access Network (E-UTRAN) access
[5]3GPP TS 36.300. Evolved Universal Terrestrial Radio Access (E-UTRA) and Evolved Universal Terrestrial Radio Access Network (E-UTRAN); Overall description; Stage 2
[6]3GPP TS 36.101. Evolved Universal Terrestrial Radio Access (E-UTRA); User Equipment (UE) radio transmission and reception
[7]3GPP TS 36.213. Evolved Universal Terrestrial Radio Access (E-UTRA); Physical layer procedures
[8]3GPP TS 36.321 V9.0.0, Evolved Universal Terrestrial Radio Access (E-UTRA) Medium Access Control (MAC) protocol specification
[9]3GPP TR 36.808. Evolved Universal Terrestrial Radio Access (E-UTRA); Carrier Aggregation; Base Station (BS) radio transmission and reception
[10]M. Iwamura , K. Etemad, Fong Mo-Han, R. Nory, and R. Love, “Carrier aggregation framework in 3GPP LTE-Advanced”, IEEE Communication Magazine, vol. 48, no. 8, pp. 60~67, Aug 2010
[11]Yuanye Wang, K.I. Pedersen, T.B. Sørensen, and P.E. Mogensen, “Carrier load balancing and packet scheduling for multi-carrier systems” , IEEE Transactions on Wireless Communications, vol. 9, no. 5, pp. 1780~1789, May 2010
[12]L. Zhang, K. Zheng, W.Wang, and L. Huang, “Performance analysis on carrier scheduling schemes in the long-term evolution-advanced system with carrier aggregation”, IET Communications, vol. 5, no. 5, pp. 612~619, Mar 2011
[13]Yao-Liang Chung, Lih-Jong Jang , and Zsehong Tsai “An efficient downlink packet scheduling algorithm in LTE-Advanced systems with Carrier Aggregation”, Consumer Communications and Networking Conference , pp.632~636, Jan. 2011
[14]C. Bontu , and E. Illidge, “DRX mechanism for power saving in LTE”, IEEE Communication Magazine, vol. 47, no. 6, pp. 48~55, June 2009
[15]Suckchel Yang, Myungsik Yoo, and Yoan Shin, “An Adaptive Discontinuous Reception Mechanism Based on Extended Paging Indicator for Power Saving in UMTS”, Vehicular Technology Conference, pp. 1~5, Sept. 2006
[16]Suckchel Yang, Myungsik Yoo, and Yoan Shin,: “Adaptive discontinuous reception mechanism for power saving in UMTS”, IEEE Communications Letters, vol. 11, no. 1, pp. 40~42, Jan. 2007
[17]Fei Yin, “An application aware discontinuous reception mechanism in LTE-advanced with carrier aggregation consideration”, Annals of telecommunications, vol. 67, no. 3~4, pp. 147~159, 2012
[18]3GPP TS 23.203 V9.4.0 Technical Specification Group Services and System Aspects, Policy and charging control architecture
[19]3GPP TR 25.892 V6.0.0,Technical Specification Group Radio Access Network, Feasibility Study for Orthogonal Frequency Division Multiplexing (OFDM) for UTRAN enhancement
[20]易啟福,2012,在LTE-A 網路以節能為基礎之下行鏈路無線電資源管理,國立中央大學通訊工程研究所碩士論文。
指導教授 陳彥文(Yen-wen Chen) 審核日期 2012-7-26
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