博碩士論文 107523028 詳細資訊




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姓名 劉家豪(Chia-Hao Liu)  查詢紙本館藏   畢業系所 通訊工程學系
論文名稱 URLLC下行鏈路傳送之頻寬子集配置研究
(Study of Bandwidth Part Allocation for URLLC Downlink Transmission)
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摘要(中) 超可靠度和低延遲通訊(Ultra-reliable and low latency communications, URLLC)為第五代行動通訊技術(Fifth generation of mobile technologies, 5G)中的三大應用場景之一,對於傳送封包的延遲要求在1 ms內,且須達到1-10^-5的可靠度。而第三代合作夥伴計劃(The 3rd Generation Partnership Project, 3GPP)於最新5G的標準中,提出了5G更寬廣的使用頻寬,以及頻寬子集(Bandwidth Part, BWP)的新概念,使得裝置能以較省電的方式與基地台通訊。有鑑於在5G多樣化的應用中,可能有URLLC需求及須使用頻寬子集的聯網裝置,本論文綜合以上情境,在有URLLC需求的使用者設備(User Equipment, UE)使用BWP的前提下,使用本論文設計的自適應BWP配置方法,排程下行鏈路(downlink)的URLLC封包,提升傳送效能。
本論文提出之自適應BWP配置方法,包含考慮BWP閒置資源量的IPO(Idle PRB Only)方法,以及考慮BWP資源釋放可能性的RRI(Resource Release Index)方法,兩方法透過各自的機制,以最小的排隊延遲為目標,在基地台排程downlink封包時,讓目標UE切換至合適的BWP以進行傳送。
本論文亦模擬比較兩自適應BWP配置法與固定BWP配置法的效能,並根據模擬的結果,印證了IPO與RRI兩者能確實的緩解流量造成的排隊現象,提升使用BWP時的URLLC效能。
摘要(英) Ultra-reliable and low latency communications (URLLC) is one of the three major usage scenarios in 5G wireless communication system. It has a stringent requirement of 1 ms user plane latency with 1-10-5 reliability for one transmission of a packet. The 3rd Generation Partnership Project (3GPP) has release new specifications which mention about the wider bandwidth supported for BS channel bandwidth in 5G, and a new concept called Bandwidth Part (BWP). In case there might be energy critical network device requiring URLLC service, a scenario is adopted in this thesis, including the User Equipment (UE) configured with BWP, and the base station (BS) scheduling downlink URLLC packet to the UE using adaptive BWP allocation method proposed in this thesis.
Two BWP allocation method are proposed in this thesis, the first one called IPO (Idle PRB Only) considers the remaining resource of each BWP as a factor for selecting BWP; the second method called RRI (Resource Release Index) considers the resource release probability of each BWP for selecting BWP. Both IPO and RRI target on minimizing the queuing delay in BS which is achieved by switching the target UE to appropriate BWP when BS schedule the downlink URLLC packet.
A simulation is performed to compare the two method with Fixed BWP configuration (FIX). According to the results of the simulation, IPO and RRI significantly reduce the queuing phenomenon and increase the performance of URLLC while using the BWP concept.
關鍵字(中) ★ 第五代行動通訊技術
★ 超可靠度和低延遲通訊
★ 頻寬子集
★ 頻寬子集切換
★ 下行鏈路排程
關鍵字(英) ★ 5G
★ URLLC
★ Bandwidth Part
★ BWP Switching
★ downlink scheduling
論文目次 摘要 I
ABSTRACT II
致謝 III
目錄 IV
圖目錄 VI
表目錄 VIII
1 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
2 第二章 相關研究背景 4
2.1 5G 基本介紹 4
2.1.1 訊框架構基本介紹 5
2.2 URLLC 基本介紹 8
2.3 Bandwidth Part 基本介紹 10
2.4 相關文獻 13
3 第三章 研究方法 15
3.1 系統架構 15
3.2 演算法 18
3.2.1 Adaptive BWP Selection - IPO 20
3.2.2 Adaptive BWP Selection - RRI 21
4 第四章 模擬結果與討論 24
4.1 模擬參數與環境 24
4.2 模擬結果分析 26
4.2.1 Case 1:初始UE數均勻分布 27
4.2.2 Case 2:多種TX success rate組合 32
4.2.2.1 Set 1 32
4.2.2.2 Set 2 35
4.2.2.3 Set 3 37
4.2.2.4 Set 4 39
4.2.3 Case 3:初始UE數非均勻分布 42
5 第五章 結論 45
參考文獻 47
參考文獻 [1] ITU, "ITU towards “IMT for 2020 and beyond”," [Online]. Available: https://www.itu.int/en/ITU-R/study-groups/rsg5/rwp5d/imt-2020/Pages/default.aspx. [Accessed 06 2020].
[2] ITU-R, "M.2083 : IMT Vision - Framework and overall objectives of the future development of IMT for 2020 and beyond," 09 2015. [Online]. Available: https://www.itu.int/dms_pubrec/itu-r/rec/m/R-REC-M.2083-0-201509-I!!PDF-E.pdf. [Accessed 06 2020].
[3] 3GPP, "TS 38.104 NR; Base Station (BS) radio transmission and reception," 2020.
[4] 3GPP, "TS 36.521-1 Evolved Universal Terrestrial Radio Access (E-UTRA); User Equipment (UE) conformance specification; Radio transmission and reception; Part 1: Conformance testing," 2020.
[5] 3GPP, "TS 38.211 NR; Physical channels and modulation," 2020.
[6] MediaTek, "Bandwidth Part Adaptation - 5G NR User Experience & Power Consumption White Paper," 2018. [Online]. Available: https://d86o2zu8ugzlg.cloudfront.net/mediatek-craft/documents/Bandwidth-Part-Adaptation-White-Paper-PDFBPAWPA4.pdf. [Accessed 06 2020].
[7] "5G 智慧電網應用機會與趨勢," 工業技術研究院 資訊與通訊研究所, [Online]. Available: https://ictjournal.itri.org.tw/Content/Messagess/contents.aspx?&MmmID=654304432122064271&CatID=654313611326033112&MSID=1035145400213627440. [Accessed 06 2020].
[8] "LTE Frame Structure - Downlink," [Online]. Available: http://www.sharetechnote.com/html/FrameStructure_DL.html. [Accessed 06 2020].
[9] "5G/NR - Frame Structure," [Online]. Available: http://www.sharetechnote.com/html/5G/5G_FrameStructure.html. [Accessed 06 2020].
[10] 3GPP, "TR 38.913 Study on scenarios and requirements for next generation access technologies," 2018.
[11] "5G Americas White Papers; New Services & Applications with 5G Ultra-Reliable Low Latency Communications," 2018. [Online]. Available: https://www.5gamericas.org/wp-content/uploads/2019/07/5G_Americas_URLLLC_White_Paper_Final__updateJW.pdf. [Accessed 06 2020].
[12] C. Wang, Y. Chen, Y. Wu and L. Zhang, "Performance Evaluation of Grant-Free Transmission for Uplink URLLC Services," in 2017 IEEE 85th Vehicular Technology Conference (VTC Spring), Sydney, NSW, Australia, June 2017.
[13] A. Anand and G. d. Veciana, "Resource Allocation and HARQ Optimization for URLLC Traffic in 5G Wireless Networks," IEEE Journal on Selected Areas in Communications, vol. 36, no. 11, pp. 2411 - 2421, Nov. 2018.
[14] 3GPP, "TS 22.261 Service requirements for next generation new services and markets," 2020.
[15] 3GPP, "TS 22.104 Service requirements for cyber-physical control applications in vertical domains," 2019.
[16] 3GPP, "TS 22.186 Service requirements for enhanced V2X scenarios," 2019.
[17] 3GPP, "TS 22.289 Mobile communication system for railways," 2019.
[18] "5G NR Bandwidth Part (BWP)," 28 September 2018. [Online]. Available: http://www.techplayon.com/5g-nr-bandwidth-part-bwp/. [Accessed 06 2020].
[19] 3GPP, "TS 38.300 NR; Overall description; Stage-2," 2020.
[20] "5G/NR - Carrier Bandwith Part," [Online]. Available: http://www.sharetechnote.com/html/5G/5G_CarrrierBandwidthPart.html. [Accessed 06 2020].
[21] 3GPP, "TS 38.212 NR; Multiplexing and channel coding," 2020.
[22] H. Chen, J. Wu and T. Shimomura, "New Reference Signal Design for URLLC and eMBB Multiplexing in New Radio Wireless Communications," in 2018 IEEE 29th Annual International Symposium on Personal, Indoor and Mobile Radio Communications (PIMRC), Bologna, Italy, 2018.
指導教授 陳彥文(Yen-Wen Chen) 審核日期 2020-7-29
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