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  • 學位論文

LTE-Advanced上行傳輸之實體層

Physical Layer of LTE-Advanced Uplink Transmission

指導教授 : 劉玉蓀

摘要


當今LTE-A(Long-Term Evolution Advanced)為4G行動通訊的規範,所有4G的版本都來自於第三代合作夥伴計畫(3GPP),本篇論文探討為LTE-A上行傳送通道(Transport Channels)到實體通道(Physical Channels)之間資料位元的傳輸過程,首先從LTE-A系統的TDD訊框結構(Frame Structure)進行說明,從LTE-A上行時槽結構和實體層資源,再對傳送通道(Transport Channels)到實體通道(Physical Channels) 資料位元的傳輸過程整個基本架構中的區塊來詳細敘述,最後分別對LTE-A上行中的上行共享傳輸通道(Physical uplink share channel)的基本系統處理流程不同之處進行說明。

並列摘要


LTE-A (Long-Term Evolution Advanced) is specified criterion for fourth generation mobile communication at present, all of fourth generation's version are definition by Third Generation Partnership Project (3GPP). This thesis is discuss about the data bits from Transport Channels to Physical Channels for transmission process, First, Time Division Duplexing (TDD) of the LTE-A system began to introduce and explain the Frame Structure. Since the LTE-A uplink slot structure and physical resources, we introduce the uplink transmit of data bits from Transport Channels to Physical Channels for transmission process basic system architecture, and in the process of the basic architecture of each block in detail above classification. Finally, the LTE-A uplink of the Physical uplink share channel and basic system architecture is described.

參考文獻


[5] 林柏志,LTE-A隨機接入程序,碩士論文,國立台北科技大學電腦與通訊研究所,台北,2013。
[2] 洪啟超,LTE-Advanced下行傳輸之實體層,碩士論文,國立台北科技大學電腦與通訊研究所,台北,2012。
[3] 3GPP TS 36.321, “Medium Access Control (MAC) Protocol Specification,” Rel.10, v. 10.0.0, Jan. 2011.
[7] 3GPP TS 36.213, “Evolved Universal Terrestrial Radio Access (E-UTRA); Physical layer procedures” V10.0.0, Jan. 2011.
參考文獻

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