A MATLAB program has been written to investigate Orthogonal Frequency Division MULTIPLEXING (OFDM) communication systems. This program is valuable for future researchers simulating systems that are too theoretically complex to analyze. Single-carrier QAM and multicarrier OFDM are compared to demonstrate the strength of OFDM in multipath channels. Two graphical user interface demonstrations show some of the basic concepts of OFDM.
標(biāo)簽: MULTIPLEXING investigate Orthogonal Frequency
上傳時(shí)間: 2013-12-09
上傳用戶:redmoons
Orthogonal frequency division MULTIPLEXING (OFDM) has been shown to be an effective technique to combat multipath fading in wireless channels. It has been and is going to be used in various wireless communication systems. This book gives a comprehensive introduction on the theory and practice of OFDM for wireless communications.
標(biāo)簽: MULTIPLEXING Orthogonal Frequency Division
上傳時(shí)間: 2020-05-31
上傳用戶:shancjb
Wavelength division MULTIPLEXING (WDM) refers to a MULTIPLEXING and transmission scheme in optical telecommunications fibers where different wavelengths, typically emitted by several lasers, are modulated independently (i.e., they carry independent information from the transmitters to the receivers). These wavelengths are then multiplexed in the transmitter by means of passive WDM filters, and likewise they are separated or demultiplexed in the receiver by means of the same filters or coherent detection that usually involves a tunable local oscillator (laser).
標(biāo)簽: MULTIPLEXING Wavelength Division
上傳時(shí)間: 2020-06-01
上傳用戶:shancjb
近幾年來(lái),OFDM(Orthogonal Frequency Division MULTIPLEXING)技術(shù)引起了人們的廣泛注意,根據(jù)這項(xiàng)新技術(shù),很多相關(guān)協(xié)議被提出來(lái)。其中WiMax(Wireless MetropolitanArea Networks)代表空中接口滿足IEEE 802.16標(biāo)準(zhǔn)的寬帶無(wú)線通信系統(tǒng),IEEE標(biāo)準(zhǔn)在2004年定義了空中接口的物理層(PHY),即802.16d協(xié)議。該協(xié)議規(guī)定數(shù)據(jù)傳輸采用突發(fā)模式,調(diào)制方式采用OFDM技術(shù),傳輸速率較高且實(shí)現(xiàn)方便、成本低廉,已經(jīng)成為首先推廣應(yīng)用的商業(yè)化標(biāo)準(zhǔn)。 本文主要對(duì)IEEE802.16d OFDM系統(tǒng)物理層進(jìn)行研究,并在XILINX公司的Virtexpro II芯片上實(shí)現(xiàn)了基帶算法。 首先討論了OFDM基本原理及其關(guān)鍵技術(shù)。根據(jù)IEEE802.16d OFDM系統(tǒng)的物理層發(fā)送端流程搭建了基帶仿真鏈路,利用MATLAB/SIMULINK仿真了OFDM系統(tǒng)在有無(wú)循環(huán)前綴(CP)、多徑數(shù)目不同等情況下的性能變化。由于同步算法和信道估計(jì)算法計(jì)算量都很大,為了找到適合采用FPGA實(shí)現(xiàn)的算法,分析了同步誤差和不同信道估計(jì)算法對(duì)接收信號(hào)的影響,并結(jié)合計(jì)算量的大小提出了一種新的聯(lián)合同步算法,以及得出了LS信道估計(jì)算法最適合802.16d系統(tǒng)的結(jié)論。 其次,完成了基帶發(fā)射機(jī)和接收機(jī)的FPGA硬件電路實(shí)現(xiàn)。為了使系統(tǒng)的時(shí)鐘頻率更高,采用了流水線的結(jié)構(gòu)。設(shè)計(jì)中采用編寫Verilog程序和使用IP核相結(jié)合的辦法,實(shí)現(xiàn)了新的聯(lián)合同步算法,并且通過(guò)簡(jiǎn)化結(jié)構(gòu),避免了信道估計(jì)算法中的繁瑣除法。利用ISE9. 2i和Modelsim6.Oc軟件平臺(tái)對(duì)程序進(jìn)行設(shè)計(jì)、綜合和仿真,并將仿真結(jié)果和MATLAB軟件計(jì)算結(jié)果相對(duì)比。結(jié)果表明,采用16位數(shù)據(jù)總線可達(dá)到理想的精度。 最后,采用串口通信的方式對(duì)基帶系統(tǒng)進(jìn)行了驗(yàn)證。通過(guò)串口通信從功能上表明該系統(tǒng)確實(shí)可行。 關(guān)鍵詞:IEEE802. 16d; OFDM; 同步;信道估計(jì);基帶系統(tǒng)
上傳時(shí)間: 2013-07-31
上傳用戶:1757122702
正交頻分復(fù)用(Orthogonal Frequency Division MULTIPLEXING,OFDM)技術(shù)是一種多載波傳輸技術(shù),它的基本思想是在頻域內(nèi)將給定信道劃分成幾個(gè)相互正交的子信道,每個(gè)子信道使用一個(gè)子載波進(jìn)行調(diào)制,各子載波并行傳輸。該技術(shù)可以有效提高頻譜利用率,能夠?qū)苟鄰叫?yīng)產(chǎn)生的頻率選擇性衰弱和載波間干擾,在時(shí)變、頻變、多徑干擾嚴(yán)重的水聲信道中具有較強(qiáng)的優(yōu)勢(shì)。 隨著計(jì)算機(jī)和多媒體通信技術(shù)的發(fā)展,嵌入式系統(tǒng)在各個(gè)領(lǐng)域的應(yīng)用不斷深入。其中,基于ARM技術(shù)知識(shí)產(chǎn)權(quán)(IP)核的微處理器依靠其高性能、低功耗和易擴(kuò)展的特點(diǎn),在工業(yè)控制、無(wú)線通信、消費(fèi)電子等多個(gè)領(lǐng)域得到廣泛的應(yīng)用;隨著嵌入式系統(tǒng)復(fù)雜度的提高,操作系統(tǒng)已成為嵌入式系統(tǒng)不可缺少的一部分。其中,嵌入式Linux憑借免費(fèi)開(kāi)源、功能強(qiáng)大、成熟穩(wěn)定等特點(diǎn),目前已成為主要的嵌入式操作系統(tǒng)之一。 數(shù)字信號(hào)處理器(Digital Signal Processor,DSP)具有很強(qiáng)的數(shù)字信號(hào)處理能力,可以滿足各種高實(shí)時(shí)要求,但其尋址范圍小,I/O功能較差。ARM+DSP雙處理器的結(jié)構(gòu)可以充分利用ARM和DSP各自的優(yōu)勢(shì)實(shí)現(xiàn)協(xié)同工作。 本論文的主要工作是研究和實(shí)現(xiàn)一個(gè)基于OFDM技術(shù)的由ARM+DSP硬件平臺(tái)實(shí)現(xiàn)的能夠完成水下聲信道圖像傳輸?shù)南到y(tǒng)。主要研究?jī)?nèi)容包括OFDM系統(tǒng)的基本原理、ARM+DSP底層硬件的驅(qū)動(dòng)和控制,Linux操作系統(tǒng)的移植、MiniGUI人機(jī)界面的設(shè)計(jì)、相關(guān)應(yīng)用軟件的編寫以及在TMS320VC5502上初步實(shí)現(xiàn)OFDM的調(diào)制解調(diào),以期對(duì)今后水下圖像傳輸系統(tǒng)的實(shí)現(xiàn)能具有較大的參考價(jià)值。
標(biāo)簽: ARMDSP OFDM 圖像傳輸系統(tǒng)
上傳時(shí)間: 2013-05-20
上傳用戶:Ruzzcoy
正交頻分復(fù)用(OnIlogonaJ Frequency Division MULTIPLEXING,OFDM)技術(shù)通過(guò)將整個(gè)信道分為多個(gè)帶寬相等并行傳輸?shù)淖有诺?,通過(guò)將信息經(jīng)過(guò)子信道獨(dú)立傳輸來(lái)實(shí)現(xiàn)通信,子信道的正交性可以保證最大限度的利用頻譜資源。OFDM系統(tǒng)通過(guò)循環(huán)前綴來(lái)消除符號(hào)間干擾(ISI),通過(guò)IDFT/DFT調(diào)制解調(diào)降低了系統(tǒng)實(shí)現(xiàn)的復(fù)雜度。由于其頻譜利用率高,抗多徑能力強(qiáng),在多種通信場(chǎng)合中都得到了應(yīng)用。雖然有著上述優(yōu)點(diǎn),但為了準(zhǔn)確的恢復(fù)信號(hào),信道估計(jì)是OFDM系統(tǒng)中必須實(shí)現(xiàn)的一環(huán)。 本文正是針對(duì)OFDM接收機(jī)中的信道估計(jì)模塊的運(yùn)算部件的實(shí)現(xiàn)進(jìn)行了研究。首先,研究了OFDM信道估計(jì)的LS算法,一階線性插值算法,二次多項(xiàng)式插值算法,建立了適用于寬帶通信系統(tǒng)的信道估計(jì)模塊模型。其次研究了加法器電路和乘法器電路的實(shí)現(xiàn),包括進(jìn)位行波加法器,曼徹斯特進(jìn)位鏈,超前進(jìn)位加法器和乘法原理,陣列乘法器,wallace樹(shù)乘法器及BOOTH編碼算法,并分析了各種電路的特性及優(yōu)缺點(diǎn)。接著研究了幾種主要的除法器設(shè)計(jì)算法,包括數(shù)字循環(huán)算法,基于函數(shù)迭代的算法,以及CORDIC算法,結(jié)合信道估計(jì)的特點(diǎn)選擇了函數(shù)迭代和CORDIC算法作為具體實(shí)現(xiàn)的方法。最后,在前面的設(shè)計(jì)的基礎(chǔ)上在FPGA芯片上實(shí)現(xiàn)了前面的設(shè)計(jì)方案。
標(biāo)簽: OFDM FPGA 信道估計(jì) 模塊
上傳時(shí)間: 2013-06-06
上傳用戶:yyyyyyyyyy
正交頻分復(fù)用(OFDM,Orthogonal Frequency Division MULTIPLEXING)技術(shù)作為一種可以有效對(duì)抗信號(hào)波形間干擾的高速傳輸技術(shù),引起了廣泛關(guān)注。它利用許多并行的、傳輸?shù)退俾蕯?shù)據(jù)的子載波來(lái)實(shí)現(xiàn)高速率的通信。它的特點(diǎn)是各子載波相互正交,所以擴(kuò)頻調(diào)制后的頻譜可以相互重疊,不但減小了子載波問(wèn)的相互干擾,還大大提高了頻譜利用率。由于OFDM的高頻譜利用率、易于硬件實(shí)現(xiàn)、對(duì)抗頻率選擇性衰落和窄帶干擾的能力突出等優(yōu)點(diǎn),它成為第四代移動(dòng)通信的首選技術(shù),是當(dāng)前移動(dòng)通信技術(shù)研究的熱點(diǎn)問(wèn)題。 本文概括的介紹了OFDM系統(tǒng)的基本概念、基本工作原理和關(guān)鍵技術(shù),重點(diǎn)討論了如何在FPGA上實(shí)現(xiàn)OFDM低中頻收發(fā)信機(jī)。基于這些理論知識(shí),確定了OFDM低中頻收發(fā)信機(jī)系統(tǒng)實(shí)現(xiàn)方案,并選擇ALTERA公司的Cyclone
標(biāo)簽: FPGA OFDM 全數(shù)字 收發(fā)信機(jī)
上傳時(shí)間: 2013-06-29
上傳用戶:水瓶kmoon5
Abstract: Rail splitting is creating an artificial virtual ground as a reference voltage. It is used to set the signalto match the op amp's "sweet spot." An op amp has the most linear- and distortion-free qualities at that sweetspot. Typically, the sweet spot occurs near the center between the single power rail and ground. In the case ofa number of signals, the virtual ground can control channel DC errors when MULTIPLEXING or switching thesignals.
標(biāo)簽: 電源調(diào)整 虛擬地
上傳時(shí)間: 2013-10-23
上傳用戶:wushengwu
This application note covers the design considerations of a system using the performance features of the LogiCORE™ IP Advanced eXtensible Interface (AXI) Interconnect core. The design focuses on high system throughput through the AXI Interconnect core with F MAX and area optimizations in certain portions of the design. The design uses five AXI video direct memory access (VDMA) engines to simultaneously move 10 streams (five transmit video streams and five receive video streams), each in 1920 x 1080p format, 60 Hz refresh rate, and up to 32 data bits per pixel. Each VDMA is driven from a video test pattern generator (TPG) with a video timing controller (VTC) block to set up the necessary video timing signals. Data read by each AXI VDMA is sent to a common on-screen display (OSD) core capable of MULTIPLEXING or overlaying multiple video streams to a single output video stream. The output of the OSD core drives the DVI video display interface on the board. Performance monitor blocks are added to capture performance data. All 10 video streams moved by the AXI VDMA blocks are buffered through a shared DDR3 SDRAM memory and are controlled by a MicroBlaze™ processor. The reference system is targeted for the Virtex-6 XC6VLX240TFF1156-1 FPGA on the Xilinx® ML605 Rev D evaluation board
標(biāo)簽: XAPP 740 AXI 互聯(lián)
上傳時(shí)間: 2013-11-14
上傳用戶:fdmpy
選擇映射法(SLM)和概率類算法都可以降低OFDM (Orthogonal Frequency Division MULTIPLEXING)系統(tǒng)的PAPR(Peak to Average Power Ratio),傳統(tǒng)SLM算法自身較為復(fù)雜,但由于其優(yōu)良的性能,棄之可惜。研究表明,SLM算法和限幅類算法在性能上具有一定的互補(bǔ)性。任何一個(gè)算法未必能達(dá)到抑制PAPR的理想效果,在深入研究了兩個(gè)算法的基礎(chǔ)上,將其優(yōu)點(diǎn)聯(lián)合起來(lái),以達(dá)到降低OFDM系統(tǒng)PAPR的目的。最后對(duì)聯(lián)合改進(jìn)算法進(jìn)行了分析與仿真,并驗(yàn)證了聯(lián)合改進(jìn)算法的有效性和可行性
上傳時(shí)間: 2013-11-22
上傳用戶:xinhaoshan2016
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