博碩士論文 100523039 詳細資訊




以作者查詢圖書館館藏 以作者查詢臺灣博碩士 以作者查詢全國書目 勘誤回報 、線上人數:77 、訪客IP:3.140.186.17
姓名 洪莉喬(Li-Chiao Hung)  查詢紙本館藏   畢業系所 通訊工程學系
論文名稱 使用位置資訊之干擾消除及空間群集技術 探討
(Location-based Interference Mitigation and Spatial Grouping Techniques for Hetnet)
相關論文
★ 利用手持式手機工具優化行動網路系統於特殊型活動環境★ 穿戴裝置動態軌跡曲線演算法設計
★ 石英諧振器之電極面設計對振盪頻率擾動之溫度相依性研究★ 股票開盤價漲跌預測
★ 感知無線電異質網路下以不完美頻譜偵測進行資源配置之探討★ 大數量且有限天線之多輸入多輸出系統效能分析
★ 具有元學習分類權重轉移網路生成遮罩於少樣本圖像分割技術★ 具有注意力機制之隱式表示於影像重建 三維人體模型
★ 使用對抗式圖形神經網路之物件偵測張榮★ 基於弱監督式學習可變形模型之三維人臉重建
★ 以非監督式表徵分離學習之邊緣運算裝置低延遲樂曲中人聲轉換架構★ 基於序列至序列模型之 FMCW雷達估計人體姿勢
★ 基於多層次注意力機制之單目相機語意場景補全技術★ 應用於3GPP WCDMA-FDD上傳鏈路系統的遞迴最小平方波束合成犛耙式接收機
★ 調適性遠時程瑞雷衰退通道預測演算法設計與性能比較★ 智慧型天線之複合式到達方位-時間延遲估測演算法及Geo-location應用
檔案 [Endnote RIS 格式]    [Bibtex 格式]    [相關文章]   [文章引用]   [完整記錄]   [館藏目錄]   [檢視]  [下載]
  1. 本電子論文使用權限為同意立即開放。
  2. 已達開放權限電子全文僅授權使用者為學術研究之目的,進行個人非營利性質之檢索、閱讀、列印。
  3. 請遵守中華民國著作權法之相關規定,切勿任意重製、散佈、改作、轉貼、播送,以免觸法。

摘要(中) 此篇論文提供一個,在有干擾信號的異質網路正交分頻多重接取系統下到達角度的波束成型設計,此方法不需要估測通道參數資訊,也不需要每一根子載波都計算一次波束權重.此方法主要是以特徵分解的方式來建構信號空間給估測角度演算法來偵測角度,使用此法可以減低家庭基站與後端網路連接的過度附載或是延遲.
在估算出接收到的角度後,可使用群集的方法來消除接收端使用者同頻的干擾.群集的概念一開始是在文獻[1]中提出,此篇文獻假設使用者只有單一角度,且在接收端有多用戶偵測器.然而這些假設並不合理,所以我們提出另一種,在沒有多用戶偵測器並考慮多重路徑下的群集方法.
最後電腦模擬分析,將會顯示提出方法是有效的.
摘要(英) In this thesis, we proposed an angle of arrival (AOA) based beamforming structure for orthogonal frequency division multiple access (OFDMA)-based Hetnet systems. The proposed scheme has interference resistant capability without the needs in the estimation of the channel parameters and the calculation of beamforming weight vector for each subcarrier in OFDM-based systems. It can also reduce extra burden and delay generated from communication link between the femtocell and the central entity for using beamforming technology. Then, one can also use the obtained AOAs at receivers to group users to reduce the co-channel interference (CCI) among users. The grouping concept appears in [1] which requires a multi-user detection device at the receiver and ignores the influence of multipaths. However, the multi-user detection device may not exist in the receiver and some multipath might cause serious interference effect. In this thesis, another grouping idea is proposed to aim at minimizing the CCI by considering the multipath impact and without multiuser detection device. The simulation results are presented to demonstrate the efficacy of the proposed algorithms.
關鍵字(中) ★ 家庭基站
★ 異質網路
★ 到達角度
★ 波束形成
★ 群集
關鍵字(英) ★ Femtocell
★ heterogeneous networks
★ angle of arrival
★ beamforming
★ grouping
論文目次 論文摘要 I
Abstract II
致謝 ……………………………………………………………….III
Contents IV
List of Figures VI
List of Tables VII
List of Abbreviations VIII
Chapter1. Introduction 1
1.1 Heterogeneous Network 1
1.2 Femtocell 2
1.3 OFDMA System 3
1.4 Review of Literature 4
1.5 Motivation of the research 5
1.6 Contribution 6
1.7 Organization 7
Chapter2. Fundamental Concepts 8
2.1 Generalized eigenvectors and signal space 8
2.2 Unitary ESPRIT 9
Chapter3. System Model 12
Chapter4. Proposed Femtocell Interference Mitigation 15
4.1 Signal Space Construction 15
4.2 AOA Estimation Algorithm 20
4.3 Beamforming Scheme with Interference Resistant AOA estimation algorithm 21
Chapter5. Spatial Resource Allocation Scheme 26
5.1 Grouping Resource Allocation 26
Chapter6. Simulation 30
6.1 Scatter plots of AOA estimation 30
6.2 Sum-rate performance evaluation 33
6.3 Grouping Capacity performance evaluation 38
Chapter7. Conclusion 41
Reference 42
參考文獻 [1] Y. J. Zhang and K. B. Letaief, "An efficient resource-allocation scheme for spatial multiuser access in MIMO/OFDM systems," IEEE Trans.Commun, vol. 53, pp. 107-116, 2005.
[2] D. Astély, E. Dahlman, A. Furuskar, Y. Jading, M. Lindstrom, and S. Parkvall, "LTE: the evolution of mobile broadband," IEEE Commun. Mag., pp 44-51, 2009.
[3] A. Ghosh, R. Ratasuk, B. Mondal, N. Mangalvedhe, and T. Thomas, "LTE-advanced: next-generation wireless broadband technology," IEEE Trans. Wireless Commun., vol. 17, pp. 10-22, 2010.
[4] I. F. Akyildiz, D. M. Gutierrez-Estevez, and E. C. Reyes, "The evolution to 4G cellular systems: LTE-Advanced," J. Physical Commun., vol. 3, pp. 217-244, 2010.
[5] V. Chandrasekhar, J. Andrews, and A. Gatherer, "Femtocell networks: a survey," IEEE Commun.Mag., vol. 46, pp. 59-67, 2008.
[6] T. Zahir, K. Arshad, A. Nakata, and K. Moessner, "Interference Management in Femtocells," IEEE Commun. Surveys and Tutorials, vol.15, 2012.
[7] G. De La Roche, A. Valcarce, D. López-Pérez, and J. Zhang, "Access control mechanisms for femtocells," IEEE Commun.Mag., vol. 48, pp. 33-39, 2010.
[8] C. Eklund, R. B. Marks, K. L. Stanwood, and S. Wang, "IEEE standard 802.16: a technical overview of the WirelessMAN/sup TM/air interface for broadband wireless access," IEEE Commun.Mag., vol. 40, pp. 98-107, 2002.
[9] P. Channels, "Modulation (Release 8), " 3GPP TSG-RAN TS 36.211, v8. 4.0, Tech.Rep, Sep. 2008.
[10]S. Huan, K. Linling, and L. Jianhua, "Interference avoidance in OFDMA-based femtocell network," in Proc. IEEE Youth Conf. on Information, Computing, and Telecomm., pp.126-129, Sept. 2009.
[11]V. Chandrasekhar, J. G. Andrews, T. Muharemovic, Z. Shen, and A. Gatherer, "Power control in two-tier femtocell networks," IEEE Trans. Wireless Commun., vol. 8, pp. 4316-4328, 2009.
[12] A. K. Elhakeem, R. Di Girolamo, I. B. Bdira, and M. Talla, "Delay and throughput characteristics of TH, CDMA, TDMA, and hybrid networks for multipath faded data transmission channels," IEEE J. Sel. Areas Commun., vol. 12, pp. 622-637, 1994.
[13] X. Li, L. Qian, and D. Kataria, "Downlink power control in co-channel macrocell femtocell overlay," in Proc. IEEE 43rd CISS, pp. 383-388, 2009.
[14] M. Costa, "Writing on dirty paper," IEEE Trans. Inf. Theory, vol. 29, pp. 439-441, 1983.
[15] T. Yoo and A. Goldsmith, "On the optimality of multiantenna broadcast scheduling using zero-forcing beamforming," IEEE J. Sel. Areas Commun., vol. 24, pp. 528-541, 2006.
[16] M. Joham, W. Utschick, and J. A. Nossek, "Linear transmit processing in MIMO communications systems," IEEE Trans. Signal Processing, vol. 53, pp. 2700-2712, 2005.
[17] S. Kapoor, D. J. Marchok, and Y.-F. Huang, "Adaptive interference suppression in multiuser wireless OFDM systems using antenna arrays," IEEE Trans. Signal Processing, vol. 47, pp. 3381-3391, 1999.
[18] M. Haardt and J. A. Nossek, "Unitary ESPRIT: How to obtain increased estimation accuracy with a reduced computational burden," IEEE Trans. Signal Processing, vol. 43, pp. 1232-1242, 1995.
[19] R. Roy and T. Kailath, "ESPRIT-estimation of signal parameters via rotational invariance techniques," IEEE Trans. Acoust., Speech, Signal Processing, vol. 37, pp. 984-995, 1989.
[20] 3GPP, "E-UTRA: FDD Home eNode B (HeNB) Radio Frequency (RF) requirements," Tech. Rep.36.921,V10.0 ,2010.
[21] Y.-F. Chen and S.-S. Chi, "A RAKE receiver design for WCDMA FDD uplink with an RLS-based adaptive beamforming scheme," IEEE Trans. Veh. Technol., vol. 54, pp. 508-515, 2005.
[22] M. Wax and T. Kailath, "Detection of signals by information theoretic criteria," IEEE Trans. Acoust., Speech, Signal Processing, vol. 33, pp. 387-392, 1985.
[23] E. UMTS, "Selection procedures for the choice of radio transmission
technologies of the UMTS," Tech. Rep.101 112, V3. 2.0, 1998.
[24] U. Sorger, I. De Broeck, and M. Schnell, "Interleaved FDMA-a new spread-spectrum multiple-access scheme," in Proc. IEEE Int. Conf. on Commun., 1998, pp. 1013-1017.
[25] 3GPP, "E-UTRA: Further advancements for E-UTRA physical layer aspects (Release 9)," Tech. Rep.36.814, V9.0, 2010.
指導教授 陳永芳(Yung-Fang Chen) 審核日期 2013-7-15
推文 facebook   plurk   twitter   funp   google   live   udn   HD   myshare   reddit   netvibes   friend   youpush   delicious   baidu   
網路書籤 Google bookmarks   del.icio.us   hemidemi   myshare   

若有論文相關問題,請聯絡國立中央大學圖書館推廣服務組 TEL:(03)422-7151轉57407,或E-mail聯絡  - 隱私權政策聲明