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正交頻分復(fù)用ofdm及其應(yīng)用-全文預(yù)覽

  

【正文】 字調(diào)制插入導(dǎo)頻串/并轉(zhuǎn)換IFFT FFT串/并轉(zhuǎn)換插入循環(huán)前綴和加窗DACRF TXRF TXDAC定時(shí)和頻率同步去除循環(huán)前綴串/并轉(zhuǎn)換串/并轉(zhuǎn)換信道校正數(shù)字解調(diào)解交織解碼圖11 OFDM系統(tǒng)結(jié)構(gòu)圖在此圖串/并轉(zhuǎn)換中,由于數(shù)據(jù)傳輸?shù)牡湫托问绞谴袛?shù)據(jù)流,符號(hào)被連續(xù)傳輸,每一個(gè)數(shù)據(jù)符號(hào)的頻譜可以占據(jù)整個(gè)可以使用的帶寬。直到 80年代,MCM獲得了快速的發(fā)展,大規(guī)模集成電路系統(tǒng)讓FFT技術(shù)的完成不再是難以攻克的問(wèn)題,一些其他難以攻克的困難也都被解決,自此,人們才研究如何將OFDM技術(shù)的研究深入到無(wú)線調(diào)頻信道上的寬帶數(shù)據(jù)傳輸。美國(guó)軍方早在五六十年代就創(chuàng)建了世界上第一個(gè)MCM系統(tǒng)。在以往的多載波移動(dòng)通信方案中,整個(gè)系統(tǒng)頻域被劃分為許多個(gè)相互分開(kāi)的子信道。由于OFDM具有抗多徑干擾能力強(qiáng),頻譜利用率高,成本低等優(yōu)點(diǎn),因此受到廣泛關(guān)注,人們不但認(rèn)為在寬帶無(wú)線接入領(lǐng)域采用OFDM是一種趨勢(shì),而且在未來(lái)移動(dòng)通信系統(tǒng)中也會(huì)扮演重要角色。當(dāng)傳輸速率很高的時(shí)候,信號(hào)持續(xù)時(shí)間就短,相應(yīng)的帶寬就寬,倘若信號(hào)帶寬超過(guò)信道帶寬。 intersymbol interference目錄摘要 …………………………………………………………… I引言 ……………………………………………………………………… 1第一章 OFDM的發(fā)展歷程 ……………………………………………… 2第二章 OFDM的基本原理……………………………………………… 4 信號(hào)的生成…………………………………………………………… 4 保護(hù)時(shí)間和時(shí)間前綴………………………………………………… 6 加窗技術(shù)……………………………………………………………… 8第三章 信道估計(jì)………………………………………………………… 10 導(dǎo)頻圖案的選擇……………………………………………………… 10 信道估計(jì)的算法……………………………………………………… 12 最小二乘估計(jì)(LS)………………………………………… 12 最小均方差估計(jì)(MMSE)…………………………………… 12第四章 OFDM中的同步技術(shù)…………………………………………… 13 頻率同步誤差的影響………………………………………………… 13 時(shí)間同步誤差的影響………………………………………………… 14 OFDM系統(tǒng)中的各種同步算法………………………………………… 15第五章 OFDM的應(yīng)用…………………………………………………… 17 OFDM技術(shù)的優(yōu)點(diǎn)與不足……………………………………………… 17 OFDM技術(shù)的優(yōu)點(diǎn)…………………………………………… 17 OFDM技術(shù)的不足…………………………………………… 18 OFDM在DAB、DVB中的應(yīng)用………………………………………… 19 OFDM與CDMA的結(jié)合以及在LTE中的應(yīng)用………………………… 20 OFDM與CDMA的結(jié)合方式…………………………………… 21 OFDM在LTE中的應(yīng)用……………………………………… 23結(jié)論……………………………………………………………………………… 25致謝詞………………………………………………………………………… 26參考文獻(xiàn)……………………………………………………………………… 27引言O(shè)FDM技術(shù)的應(yīng)用始于1960,主要用于軍事通信,但究其復(fù)雜的結(jié)構(gòu)以及復(fù)雜的算法,使得OFDM不得不放慢了腳步。 carrier。 符號(hào)間干擾ABSTRACTOrthogonal frequency division multiplexing (OFDM) is the multicarrier modulation (MCM) which ing. The world39。與此同時(shí),在OFDM符號(hào)之間增加保護(hù)時(shí)間和循環(huán)前綴能夠有效的避免由多徑效應(yīng)導(dǎo)致的符號(hào)間干擾,同時(shí)也保證了符號(hào)之間的正交性。隨著DSP芯片技術(shù)的快速發(fā)展,大規(guī)模集成電路可以實(shí)現(xiàn)FFT/IFFT技術(shù)。盡我所知,除文中已經(jīng)注明引用的內(nèi)容外,本學(xué)位論文的研究成果不包含他人享有著作本人簽名: 日期: 摘 要正交頻分復(fù)用(OFDM)是通過(guò)多載波調(diào)制(MCM)發(fā)展而來(lái)。S DEGREE THESIS OF DONGHU COLLEGE WUHAN UNIVERSITYOrthogonal Frequency DivisionMultiplexing OFDM Technology and its Application College :Electronic information engineering Subject : Electronic Information Engineering Name :Tian LeiDirected by : Professor Jiao ShuqingMay 2013 鄭 重 聲 明本人呈交的學(xué)位論文,是在導(dǎo)師的指導(dǎo)下,獨(dú)立進(jìn)行研究工作所取得的成果,所有數(shù)據(jù)、圖片資料真實(shí)可靠。但由于一些技術(shù)未能突波,使得OFDM理論的邁進(jìn)放慢。OFDM系統(tǒng)是在相互之間具有正交性的且傳輸速率低的多個(gè)并行子載波上進(jìn)行傳輸調(diào)制的。關(guān)鍵字:OFDM; 子載波; 無(wú)線信道; 正交性; 多徑干擾。s was derived using the OFDM system of large scale mold carrier technology and frequency overlap technique. But because of some technical failed to surge, the OFDM theory goes the slow. With the rapid development of DSP chip technology, large scale integrated circuit can realize the FFT/IFFT technology. Orthogonal frequency division multiplexing technology by its high spectrum efficiency, low cost, multipath fading, bandwidth expansion advantages have received intense attention. Along with the people to the data munication data, fast, personalized, broadband and mobile demand, OFDM technology is being widely used in mobile munications. The OFDM system is orthogonal and low transmission rate of many parallel subcarriers for transmission modulation in between. Subcarrier spectrum overlapped transmission data, restore orthogonality end by using each subcarrier received. This OFDM system will have a very high frequency spectrum utilization. At the same time, increase the protection time and cyclic prefix in OFDM symbol can effectively avoid caused by multipath intersymbol interference, but also guarantees the orthogonality between symbols. This shows that OFDM is very suitable for multipath wireless channel environment. In this paper, through the development of OFDM technology, the basic principle and the OFDM channel estimation, synchronization technology has made certain explanation
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