Resource Allocation Mechanism which can simultaneously process GBR and non-GBR for LTE Uplink

碩士 === 國立宜蘭大學 === 電子工程學系碩士班 === 101 === In LTE system, it is still a challenge for e-NodeB to perform resource block (RB) allocation and scheduling. So far, most of the previous works focus on maximizing the system throughput or achieving fairness among User Equipments (UEs). However, allocating R...

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Main Authors: Hua-Chun Kao, 高華駿
Other Authors: Fang-Chang Kuo
Format: Others
Language:zh-TW
Published: 2013
Online Access:http://ndltd.ncl.edu.tw/handle/31941116608112997931
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spelling ndltd-TW-101NIU004280062015-10-13T22:24:08Z http://ndltd.ncl.edu.tw/handle/31941116608112997931 Resource Allocation Mechanism which can simultaneously process GBR and non-GBR for LTE Uplink 能同時處理 GBR 與non-GBR 之LTE 上行資源分配機制 Hua-Chun Kao 高華駿 碩士 國立宜蘭大學 電子工程學系碩士班 101 In LTE system, it is still a challenge for e-NodeB to perform resource block (RB) allocation and scheduling. So far, most of the previous works focus on maximizing the system throughput or achieving fairness among User Equipments (UEs). However, allocating RBs without considering the data rate requested by UEs or granted by call admission control (CAC) would make the demand and supply not balance. The Allocate As Granted (AAG) scheme proposed in literature, performs well in terms of satisfaction degree and system throughput. However, there are still some problems with it. In this thesis, some functions and options are added to improve the existing AAG. The main contributions of this thesis are as follows: 1. After a UE has established connections, the transmission speed is usually not constant, i.e., it is bursty. This thesis explores the characteristic corresponding to maximum burst size. 2. Usually, a UE not only establishes GBR bearers, but also non-GBR bearers. This thesis explores how to allocated RBs for both GBR bearer and non-GBR bearer at the same time. 3. According to the 3GPP specifications, an eNodeB informs the allocation result to UEs every 10ms. Currently, 3GPP does not specify how frequently to re-allocate RBs. The impact of re-allocating frequency is explored in this thesis. 4. The impact of AAG parameters is explored. For example, this thesis discusses how to select parameter alfa, the input pattern and data rate. Fang-Chang Kuo Kuo-Chang Ting 郭芳璋 丁國章 2013 學位論文 ; thesis 66 zh-TW
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description 碩士 === 國立宜蘭大學 === 電子工程學系碩士班 === 101 === In LTE system, it is still a challenge for e-NodeB to perform resource block (RB) allocation and scheduling. So far, most of the previous works focus on maximizing the system throughput or achieving fairness among User Equipments (UEs). However, allocating RBs without considering the data rate requested by UEs or granted by call admission control (CAC) would make the demand and supply not balance. The Allocate As Granted (AAG) scheme proposed in literature, performs well in terms of satisfaction degree and system throughput. However, there are still some problems with it. In this thesis, some functions and options are added to improve the existing AAG. The main contributions of this thesis are as follows: 1. After a UE has established connections, the transmission speed is usually not constant, i.e., it is bursty. This thesis explores the characteristic corresponding to maximum burst size. 2. Usually, a UE not only establishes GBR bearers, but also non-GBR bearers. This thesis explores how to allocated RBs for both GBR bearer and non-GBR bearer at the same time. 3. According to the 3GPP specifications, an eNodeB informs the allocation result to UEs every 10ms. Currently, 3GPP does not specify how frequently to re-allocate RBs. The impact of re-allocating frequency is explored in this thesis. 4. The impact of AAG parameters is explored. For example, this thesis discusses how to select parameter alfa, the input pattern and data rate.
author2 Fang-Chang Kuo
author_facet Fang-Chang Kuo
Hua-Chun Kao
高華駿
author Hua-Chun Kao
高華駿
spellingShingle Hua-Chun Kao
高華駿
Resource Allocation Mechanism which can simultaneously process GBR and non-GBR for LTE Uplink
author_sort Hua-Chun Kao
title Resource Allocation Mechanism which can simultaneously process GBR and non-GBR for LTE Uplink
title_short Resource Allocation Mechanism which can simultaneously process GBR and non-GBR for LTE Uplink
title_full Resource Allocation Mechanism which can simultaneously process GBR and non-GBR for LTE Uplink
title_fullStr Resource Allocation Mechanism which can simultaneously process GBR and non-GBR for LTE Uplink
title_full_unstemmed Resource Allocation Mechanism which can simultaneously process GBR and non-GBR for LTE Uplink
title_sort resource allocation mechanism which can simultaneously process gbr and non-gbr for lte uplink
publishDate 2013
url http://ndltd.ncl.edu.tw/handle/31941116608112997931
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