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1)  cochannel signal recovery
同信道信号接收
1.
In this paper, based on the DOA algorithm and the parallel multistage constant modulus (CM) array, an algorithm for cochannel signal recovery is presented.
提出一种基于并联式恒模阵和DOA的同信道信号接收算法。
2)  synchronous signal receiver
同步信号接收
1.
In order to realize high-precisien measurement of the airborne IRM/DME(radio magnetic compass display/rangefinder)system, this paper proposes a new kind of synchronous signal receiver circuit in which the signal angle information is withdrawed by the software algorithm.
为实现对机载IRM DME(无线电磁罗盘指示器 测距机 )系统的高精度测试 ,提出了一种通过软件算法提取信号角度信息的新型同步信号接收电路。
3)  signal receive
信号接收
1.
A new teaching device based technology of satellite signal receive;
基于卫星信号接收参数的教学装置
2.
The design scheme includes signal generator and signal receiver.
该方案主要分为信号发生和信号接收两个部分,分别对测试系统的模拟前端和数字系统电路进行了设计。
4)  received signals
接收信号
1.
Monte Carlo method is a classical method used to simulate the mutiplescattering lidar received signals, but its main disadvantage is that calculation time can become prohibitively long.
MonteCarlo方法模拟多次散射激光雷达接收信号是一种经典方法,但这种方法的最大缺点是计算时间很长。
2.
A simple proportional relationship is established between the higher scattering and the single scattering by analyzing each level scattering of the multiple backscattering lidar received signals.
通过对多次后向散射激光雷达接收信号的各级散射的分析,在高次散射接收信号与单次散射接收信号之间建立了一个简单的比例关系,即它们的比值与总衰减系数成比例;用蒙特卡罗方法对激光雷达接收信号进行了模拟。
5)  signal receiving
信号接收
1.
The process of signal receiving and transmitting is very important while a Mixed Reality interface is constructing.
确保信号的传输和接收达到要求的关键是信号接收模块React building block的建立。
2.
The platform for IF signal receiving is established in this paper based on the XILINX XC4VLX25 FPGA.
本文基于XILINX可编程逻辑器件XC4VLX25 FPGA开发了一个中频信号接收系统,利用一个可配置的硬件平台实现了模拟信号数字处理的设计,为软件无线电技术的研究提供了一个先进的实验平台。
6)  channel decoder
信道接收
1.
Carrier recovery module of DVB-S channel decoder chip will be deep discussed In this articleIn the chapter one, digital TV standards is introduced here and DVB-S channel transimission standard is introduced in detail.
数字电视的发展已成为全球广播电视行业最引人注目的焦点,而随着电子技术的不断发展与进步使得ASIC迅速发展,数字电视DVB-S信道接收芯片就是两者的完美结合,本文完成了DVB-S接收芯片中载波恢复的研究和实现。
补充资料:三十一祖道信大医禅师《八十八祖道影传赞》
【三十一祖道信大医禅师《八十八祖道影传赞》】
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