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2下载:
16Qam的Matlab/Simulink仿真系统,包含匹配滤波,载波恢复,位定时恢复等个重要模块,加深对16Qam调制解调系统的理解-16Qam the Matlab / Simulink system, matched filtering, carrier recovery, rehabilitation Timing important module, the better modulation and demodulation system 16Qam understanding
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OQPSK的Matlab/Simulink调制解调仿真系统,包括匹配滤波,载波恢复,定时恢复等重要模块,可以观察眼图,仿真误码率,帮助理解OQPSK系统-OQPSK Matlab / Simulink simulation system modulation and demodulation, including matching filter, Carrier Recovery, timing recovery and other important module, we can observ
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QPSK的Matlab/Simulink的调制解调仿真系统,给出接收信号眼图及系统仿真误码率,包含载波恢复,匹配滤波,定时恢复等重要模块,帮助理解QPSK的系统-QPSK Matlab / Simulink simulation system modulation and demodulation, the received signal is given eye and BER simulation systems, including carrier recovery, matching f
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Blind Equalizer 的演算法主要是利用CMA及 LMS 的配合,当CMA将EYE打开,使讯号趋近于正确值,就切换到LMS,利用Slicer的输出当作training sequence来调整Equalizer的系数,而Carrier Recovery 的部份,则是将phase error track出来-Blind Equalizer algorithm is the use of the CMA and LMS tie, When the CMA will EYE open, sig
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QAM解调芯片中载波恢复的设计与实现,文件为MATLAB 源程序,QAM demodulator chip carrier recovery in the design and realization of the source file for the MATLAB
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完成了QPSK的调制解调的仿真,没有载波恢复环节-Completed a QPSK modulation and demodulation of the simulation, there is no carrier recovery links
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介绍了适合DVB-C环境下的载波恢复算法,并且对几种典型的算法进行了比较-Introduced for DVB-C environment of carrier recovery algorithm, and several typical algorithms were compared
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文章介绍了系统的硬件电路原理与具体实现方法,其中主要包括载波恢
复电路,PN 码捕获电路和跟踪电路,并针对Xilinx 公司FPGA 的特点,对各电
路的实现进行优化设计,在不影响系统稳定性和精度的前提下,减少硬件资源
消耗,提高硬件利用率。设计利用Verilog 硬件描述语言完成,通过后仿真验证
电路正确性,并给出综合结果。-This paper introduces the system' s hardware circuit principle and the spe
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QPSK modulation system with recover loops-This is a model of a QPSK modulation system for transmission over a bandpass channel with fc = 100 Hz and B = 30 Hz and AWGN at the receiver. SRRC fi lters with excess bandwidth α = 0.18 are employed. Th
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MSK modulation and demodulation with carrier recovery
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基于硬件定点的完整的costas载波恢复环设计,FPGA设计可以用之参考。包括输入QPSK信号,16倍符号率采样,初始频差2.4KHz,以及低通滤波器的设计等待。最重要的是有本人的注释,易于上手。-Hardware-based fixed-point of complete costas carrier recovery loop design, FPGA reference design can be used. Including input QPSK signal, 16 times th
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这是个关于bpsk载波恢复的例子,我们用simulik来搭建的整个系统,非常有利于对调制解调和载波恢复的理解。-This is a carrier recovery on the bpsk example, we use simulik to build the entire system, very beneficial for modulation and demodulation and carrier recovery understanding.
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在C++平台上实现QPSK调制,加频偏过AWGN信道,然后采用COSTAS的方法进行载波恢复-In the C++ platform for a QPSK modulation, plus offset over AWGN channel, and then use the methods COSTAS carrier recovery
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数字基带信号的传输是数字通信系统的重要组成部分。在数字通信中,有些场合可不经过载波调制和解调过程,而对基带信号进行直接传输。采用AMI码的信号交替反转,有可能出现四连零现象,这不利于接收端的定时信号提取。而HDB3码因其无直流成份、低频成份少和连0个数最多不超过三个等特点,而对定时信号的恢复十分有利,并已成为CCITT协会推荐使用的基带传输码型之一。为此,本文利用VHDL语言对数据传输系统中的HDB3编码器进行了设计。
基于达到达到达到的信号发生器的源程序-Digital baseband
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载波恢复技术及其相关算法,比较全面,拿去做参考,有点详细-Carrier recovery techniques and related algorithms, more comprehensive, taking reference to do a bit more
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this code simulate the channel model and function about channel
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一个载波恢复与符号定时的仿真。
载波恢复使用平方环,符号定时基于早迟门,发送信号采用BPSK调制方式,统计计算的误码率。-A carrier recovery and symbol timing simulation. Carrier recovery loop using the square, the symbol timing based on early-late gate, sending a signal using BPSK modulation, bit error rate
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Implemet PLL and Costas methodology for carrier recovery
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包含两个costas环代码和一个锁相环代码,能够同步载波,都能正确运行,可供参考-Contains two costas ring code and a phase locked loop code, can be synchronized carrier, can run correctly, for reference
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carrier and bit synchronisation in data communication
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