Carrier-phase synchronization can be approached in a general manner by estimating the multiplicative distortion (MD) to which a baseband received signal in an RF or coherent optical transmission system is subjected. This paper presents a unified modeling and estimation of the MD in finite-alphabet digital communication systems. A simple form of MD is the camer phase exp GO) which has to be estimated and compensated for in a coherent receiver. A more general case with fading must, however, allow for amplitude as well as phase variations of the MD. We assume a state-variable model for the MD and generally obtain a nonlinear estimation problem with additional randomly-varying system parameters such as received signal power, frequency offset, and Doppler spread. An extended Kalman filter is then applied as a near-optimal solution to the adaptive MD and channel parameter estimation problem. Examples are given to show the use and some advantages of this scheme.
标签: synchronization Carrier-phase multiplicativ approached
上传时间: 2013-11-28
上传用户:windwolf2000
This paper investigates the design of joint frequency offset and carrier phase estimation of a multi-frequency time division multiple access (MF-TDMA) demodulator that is applied to a digital video broadcasting—return channel system via satellite (DVB-RCS). The proposed joint estimation algorithm is based on the interpolation technique for two correlation values in the frequency and phase domains. This simple interpolation technique can significantly improve frequency and phase resolution capabilities of the proposed technique without increasing the number of the correlation values. In addition, the overall block diagram of a digital communications receiver for DVB-RCS is presented, which was designed using the proposed estimation algorithms. Index Terms—Carrier phase estimation, DVB-RCS, frequency offset estimation, interpolation, joint estimation, MF-TDMA.
标签: investigates estimation frequency carrier
上传时间: 2015-12-30
上传用户:ls530720646
Combined Processing of GPS, GLONASS, and SBAS Code Phase and Carrier Phase Measurements Lambert Wanninger, Stephan Wallstab-Freitag Geodetic Institute, Dresden University of Technology, Germany
标签: Phase Measurements Processing and
上传时间: 2014-01-15
上传用户:asasasas
本文提出用级联多电平逆变器取代变压器多重化结构的STATCOM 拓扑结构,用载波相移正弦脉宽调制技术(Carrier phase-shifted SPWM,以下简称CPS-SPWM)取代工频调制。这种基于CPS-SPWM 级联多电平逆变器的STATCOM 不仅去掉了多重化变压器,而且用较低的开关频率可以获得较高的等效开关频率的输出效果,简化了滤波;针对电力系统强耦合、非线性的特征,本文提出了将自抗扰控制应用于STATCOM 装置的控制策略,此控制策略不但可以大大缩短动态过程,改善系统的动态性能,而且具有较强的鲁棒性。
上传时间: 2013-11-20
上传用户:maqianfeng
We address the problem of blind carrier frequency-offset (CFO) estimation in quadrature amplitude modulation, phase-shift keying, and pulse amplitude modulation communications systems.We study the performance of a standard CFO estimate, which consists of first raising the received signal to the Mth power, where M is an integer depending on the type and size of the symbol constellation, and then applying the nonlinear least squares (NLLS) estimation approach. At low signal-to noise ratio (SNR), the NLLS method fails to provide an accurate CFO estimate because of the presence of outliers. In this letter, we derive an approximate closed-form expression for the outlier probability. This enables us to predict the mean-square error (MSE) on CFO estimation for all SNR values. For a given SNR, the new results also give insight into the minimum number of samples required in the CFO estimation procedure, in order to ensure that the MSE on estimation is not significantly affected by the outliers.
标签: frequency-offset estimation quadrature amplitude
上传时间: 2014-01-22
上传用户:牛布牛
光纤水听器自问世以来,在巨大的军事价值和民用价值推动下得到了迅速发展,已逐渐从实验室研究阶段走向工程应用。同时随着光纤水听器的不断发展,对水声信号的检测技术以及数字处理能力也提出了新的要求。论文在此背景下开展了一系列研究工作,并提出了利用FPGA(Field ProgrammableGate Array,现场可编程门阵列)实现光纤3×3耦合器解调算法的新思路。 目前干涉型光纤水听器的解调一般采用PGC(Phase Generated Carrier,相位生成载波技术)技术和基于3×3光纤耦合器干涉的解调技术。PGC技术在解调过程中引入了载波信号,它对采样率,激光器等的要求都较高,因此我们把目光投向3×3耦合器解调技术,文中对其解调原理进行了阐述,对采样率的确定进行了讨论,并对3×3耦合器三路输出不对称的情况进行了分析,最后在本文的结论部分提出了基于3×3耦合器解调的改良方案。 目前,光纤信号数字化解调的硬件实现采用DSP(Digital Signal Process,可编程数字信号处理器)信号处理机,与之相比,FPGA解调具有速度快、资源占用少、易于扩展等优势。本文对FPGA与DSP、ASIC(application-specificintegrated circuit,专用集成电路)实现方案进行了对比,分析了适合利用FPGA实现的算法所应具备的特征;介绍了3×3耦合器解调算法中各个模块的设计情况;分析了系统的工作情况,硬件的构造及芯片的选择,最后验证了利用FPGA可以实现3×3耦合器解调算法。
上传时间: 2013-07-03
上传用户:love1314
·Phase-Locked Loop Circuit Design
标签: nbsp Phase-Locked Circuit Design
上传时间: 2013-04-24
上传用户:lhc9102
资料->【E】光盘论文->【E5】英文书籍->Phase-Locked Loops for Wireless Communications (英).pdf
标签: Communications Phase-Locked Wireless Loops
上传时间: 2013-07-27
上传用户:大融融rr
分析了调幅信号和载波信号之间的相位差与调制信号的极性的对应关系,得出了相敏检波电路输出电压的极性与调制信号的极性有对应关系的结论。为了验证相敏检波电路的这一特性,给出3 个电路方案,分别选用理想元件和实际元件,采用Multisim 对其进行仿真实验,直观形象地演示了相敏检波电路的鉴相特性,是传统的实际操作实验所不可比拟的。关键词:相敏检波;鉴相特性;Multisim;电路仿真 Abstract : The corresponding relation between modulation signal polarity and difference phases of amplitudemodulated signal and the carrier signal ,the polarity of phase2sensitive detecting circuit output voltage and the polarity of modulation signal are correspondent . In order to verify this characteristic ,three elect ric circuit s plans are produced ,idea element s and actual element s are selected respectively. Using Multisim to carry on a simulation experiment ,and then demonst rating the phase detecting characteristic of the phase sensitive circuit vividly and directly. Which is t raditional practical experience cannot be com pared.Keywords :phase sensitive detection ;phase2detecting characteristic ;Multisim;circuit simulation
上传时间: 2013-11-23
上传用户:guanhuihong
为了在CDMA系统中更好地应用QDPSK数字调制方式,在分析四相相对移相(QDPSK)信号调制解调原理的基础上,设计了一种QDPSK调制解调电路,它包括串并转换、差分编码、四相载波产生和选相、相干解调、差分译码和并串转换电路。在MAX+PLUSⅡ软件平台上,进行了编译和波形仿真。综合后下载到复杂可编程逻辑器件EPM7128SLC84-15中,测试结果表明,调制电路能正确选相,解调电路输出数据与QDPSK调制输入数据完全一致,达到了预期的设计要求。 Abstract: In order to realize the better application of digital modulation mode QDPSK in the CDMA system, a sort of QDPSK modulation-demodulation circuit was designed based on the analysis of QDPSK signal modulation-demodulation principles. It included serial/parallel conversion circuit, differential encoding circuit, four-phase carrier wave produced and phase chosen circuit, coherent demodulation circuit, difference decoding circuit and parallel/serial conversion circuit. And it was compiled and simulated on the MAX+PLUSⅡ software platform,and downloaded into the CPLD of EPM7128SLC84-15.The test result shows that the modulation circuit can exactly choose the phase,and the output data of the demodulator circuit is the same as the input data of the QDPSK modulate. The circuit achieves the prospective requirement of the design.
上传时间: 2014-01-13
上传用户:qoovoop