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題名 QoS-constrained resource allocation scheduling for LTE network
作者 張宏慶
Hung-Chin Jang
貢獻者 資科系
日期 2013-11
上傳時間 2-Sep-2014 17:18:47 (UTC+8)
摘要 Long Term Evolution (LTE) is the most promising technology for 4G mobile communication networks. The goal of LTE is to provide high data transmission rate, scalable bandwidth, low latency, and high-mobility. LTE employs Orthogonal Frequency Division Multiplexing (OFDM) and Single Carrier - Frequency Division Multiple Access (SC-FDMA) for downlink and uplink data transmission, respectively. As to SC-FDMA, there are two constraints in resource allocation. First, the allocated resource blocks (RB) should be contiguous. Second, these allocated resource blocks are forced to use the same modulation technique. This paper focuses on the resource allocation problem of LTE SC-FDMA system. The aim of this paper is to propose a QoS-constraint resource allocation scheduling to enhance data transmission on uplink SC-FDMA. The proposed scheduling is a three-stage approach. In the first stage, it uses a time domain scheduler to differentiate UE services according to different QoS service requirements. In the second stage, it uses a frequency domain scheduler to prioritize UE services based on channel quality. In the third stage, it limits the times of modulation downgrade in RBs allocation to enhance system throughput. In the simulations, the proposed method is compared to fixed sub-carrier dynamic resource allocation algorithm and adaptive dynamic sub-carrier resource allocation algorithm. Simulation results show that our method outperforms the other two methods in terms of throughput, transmission delay, packet loss ratio, and RB utilization.
關聯 2013 International Symposium on Wireless and Pervasive Computing (ISWPC)
資料類型 conference
DOI http://dx.doi.org/10.1109/ISWPC.2013.6707440
dc.contributor 資科系en_US
dc.creator (作者) 張宏慶zh_TW
dc.creator (作者) Hung-Chin Jangen_US
dc.date (日期) 2013-11en_US
dc.date.accessioned 2-Sep-2014 17:18:47 (UTC+8)-
dc.date.available 2-Sep-2014 17:18:47 (UTC+8)-
dc.date.issued (上傳時間) 2-Sep-2014 17:18:47 (UTC+8)-
dc.identifier.uri (URI) http://nccur.lib.nccu.edu.tw/handle/140.119/69577-
dc.description.abstract (摘要) Long Term Evolution (LTE) is the most promising technology for 4G mobile communication networks. The goal of LTE is to provide high data transmission rate, scalable bandwidth, low latency, and high-mobility. LTE employs Orthogonal Frequency Division Multiplexing (OFDM) and Single Carrier - Frequency Division Multiple Access (SC-FDMA) for downlink and uplink data transmission, respectively. As to SC-FDMA, there are two constraints in resource allocation. First, the allocated resource blocks (RB) should be contiguous. Second, these allocated resource blocks are forced to use the same modulation technique. This paper focuses on the resource allocation problem of LTE SC-FDMA system. The aim of this paper is to propose a QoS-constraint resource allocation scheduling to enhance data transmission on uplink SC-FDMA. The proposed scheduling is a three-stage approach. In the first stage, it uses a time domain scheduler to differentiate UE services according to different QoS service requirements. In the second stage, it uses a frequency domain scheduler to prioritize UE services based on channel quality. In the third stage, it limits the times of modulation downgrade in RBs allocation to enhance system throughput. In the simulations, the proposed method is compared to fixed sub-carrier dynamic resource allocation algorithm and adaptive dynamic sub-carrier resource allocation algorithm. Simulation results show that our method outperforms the other two methods in terms of throughput, transmission delay, packet loss ratio, and RB utilization.en_US
dc.format.extent 3473485 bytes-
dc.format.mimetype application/pdf-
dc.language.iso en_US-
dc.relation (關聯) 2013 International Symposium on Wireless and Pervasive Computing (ISWPC)en_US
dc.title (題名) QoS-constrained resource allocation scheduling for LTE networken_US
dc.type (資料類型) conferenceen
dc.identifier.doi (DOI) 10.1109/ISWPC.2013.6707440en_US
dc.doi.uri (DOI) http://dx.doi.org/10.1109/ISWPC.2013.6707440en_US