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OFDM系统中时域均衡的仿真和结果分析,先对搭建的最基本的OFDM系统性能进行仿真分析,然后对在多径信道下的OFDM系统性能进行仿真分析,最后对MMSE算法进行仿真分析。-OFDM system, time domain equalization and results of the simulation analysis, the first of the basic structures of the simulated OFDM system performance analysis, a
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Semi blind time domain equalization of mimo ofdm system
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此为时域均衡的程序,主要用于OFDM接收系统,用verilog编写,很好-This time domain equalization program, mainly for OFDM receiving system, written in verilog good
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frequency division multiplexing (OFDM) is used extensively in broadband wired and wireless communication systems because it is an effective solution to intersymbol interference (ISI) caused by a dispersive channel. This becomes increasingly important
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ofdm 传输与接受的各项例子
-OFDM Receiver
1. Initalize the USRP setting the RX parameters and moving the LO outside the transmission band.
2. Generate random data bits (PN Sequence) (125 bits)
3. Use the Van De Beek algorithm to detect the cyclic prefix
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OFDM系统通过在时域符号前插入大于信道冲击响应长度的循环前缀(CP)可以避免符号间干扰(ISI)和载波间干扰(ICI)。但是,过长CP会使得数据传输效率降低。可以采用最小均方误差(MMSE)信道缩短均衡技术来压缩信道冲击响应长度。-OFDM systems avoid inter-symbol interference (ISI) and inter-carrier interference (ICI) by inserting a cyclic prefix (CP) larger than
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该算法是迄今为止我找到的最好的最完整的单载波频域均衡的原理。众所周知,时域均衡一直是接收机的瓶颈能估,频域均衡则要简单的多。频域均衡使用基于块传输的机制,类似于OFDM,并且是单载波的。接收机十分完整,包含载波同步、帧同步等,最重要的均衡处理。(This algorithm is the best and the most complete single carrier frequency domain equalization principle I have found so far. As
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