研究生: |
楊凱傑 Kai-Jei Yang |
---|---|
論文名稱: |
第三代行動通訊系統中涵蓋範圍與最大傳輸速率之研究 Cell Coverage and Maximum Available Data Rate for Third Generation Mobile Communication Systems |
指導教授: |
蔡育仁
Yuh-Ren Tsai |
口試委員: | |
學位類別: |
碩士 Master |
系所名稱: |
電機資訊學院 - 通訊工程研究所 Communications Engineering |
論文出版年: | 2002 |
畢業學年度: | 90 |
語文別: | 英文 |
論文頁數: | 82 |
中文關鍵詞: | 細胞涵蓋範圍 、最大傳輸率 、第三代行動通訊系統 、分碼多重接取 、展頻 |
外文關鍵詞: | cell coverage, maximum available data rate, third generation mobile communication systems, code-division multiple access, spread spectrum |
相關次數: | 點閱:2 下載:0 |
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數據資料傳輸在第三代行動通訊系統中,是一項重要的服務.第三代行動通訊系統提供不同的數據資料傳輸速率 (data transmission rate),用以滿足不同需求的數據服務.例如語音訊號傳輸速率較低,而影像訊號對於傳輸速率則有較高的需求.
第三代行動通訊系統使用展頻 (Spread Spectrum) 與分碼多重接取 (CDMA) 的技術,每個使用者擁有相同的展頻頻寬.在此條件下,高傳輸速率的用戶所使用的展頻因子較小,導致於對抗干擾的能力降低.當用戶在遠離提供服務的基地台的同時,因受到其他同頻細胞發射的干擾逐漸增大,高傳輸率用戶的傳輸品質會較低傳輸率用戶者為差,甚至導致傳輸中斷的情況產生.由此可知,對於不同的資料傳輸率,所對應的細胞涵蓋範圍並不一樣.它們之間的關係,亦會由於各種環境與系統因素而有所變動.而當使用者在長距離使用高傳輸率的服務,不僅達不到服務品質,也會降低系統的容量.
在這篇論文中,我們主要利用系統模擬與數值分析方法,考慮第三代行動通訊系統之下行傳輸 (downlink transmission),在可加性白高斯通道 (AWGN channel) 與雷利衰減通道 (Rayleigh fading channel) 中,去找出最大可提供資料傳輸率與細胞涵蓋範圍之間的關係.我們也針對各種影響因子,包括環境與系統的變數,分析其對於涵蓋範圍所產生的效應.在不影響精確度的前提下,我們也使用一些方法,用以簡化計算量.
Many data services are available in third-generation (3G) mobile communication systems and may have different data rates on transmission. It is important to maintain the link quality and performance when higher data rate is served. For example, real time video service is one of the services which require high data rate and high transmission quality. Unfortunately, the higher data rate we use, the lower processing gain we get, and fewer ability of anti-multiple- access-interference (MAI) we will have. Not only the processing gain, but also the carrier-to-interference ratio (CIR) will influence system performance. Simply speaking, when the CIR degrades due to either traveling away from the base-station (BS) or being shadowed by structures, the service rate must decrease to increase the processing gain for better link quality. By observing BER, we can discuss the relationship between propagation length and maximum available data rate under the forward link assumption for 3G systems. The results can be used to limit user’s data rates according to user’s positions. It is a helpful reference to resource management problems.
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