intercarrier 基本解释
n. (内)载波;载波差拍
intercarrier 词组短语
- intercarrier buzz
- intercarrier noise suppression
- intercarrier sound receiving sy-stem
- intercarrier sound system
- intercarrier spacing
intercarrier 双语例句
- 1、
Terrestrial digital sound decoder for conventional intercarrier PLL-IF systems.
PLL的IF传统的载波系统的地面数字声解码器。 - 2、
Areawide intercarrier consolidation system
地区货运业并装系统 - 3、
Based on the existing intercarrier interference ( ICI) self-cancellation scheme, we propose an improved scheme using symbol transform for canceling the ICI effectively.
为了有效消除ICI的影响,该文在ICI自消除方法的基础上提出基于符号变换的改进方法。 - 4、
intercarrier sound rejector double wire crosstalk suppression filter
载波差拍伴音抑制器双线串音抑制滤波器 - 5、
intercarrier sound receiving system
内载波伴音接收方式 - 6、
intercarrier interference cancellation for MIMO-OFDM systems
MIMO-OFDM系统中的子载波间干扰消除 - 7、
The reason to produce beat interference of color subcarrier and sound intercarrier is analyzed with the introduction of considerable items for design and testing methods.
分析了彩色副载波和伴音内载波差拍干扰产生的原因、设计应考虑的问题以及测试方法。 - 8、
High quality stereo and dual sound for a TV receiver require improvements in the dynamienoise performance and the intercarrier buzz.
电视拦收机为获得高质量的立体声和双伴音,必须设法降低系统动态噪声和内载波蜂音。 - 9、
By using the cyclic embedding algorithm of interference matrix, this scheme can directly eliminate intercarrier interference and restrain the floor effect of systems.
通过干扰矩阵的循环镶嵌算法来消除载频间干扰,抑制系统中的地板效应。 - 10、
The performance of traditional OFDM system is greatly degraded in time-varying fading channel due to the intercarrier interference ( ICI).
在快速时变信道环境下,由于子载波间干扰(ICI)的影响,传统OFDM系统性能有较大下降。 - 11、
The Beat Interference Of Color Subcarrier And Sound intercarrier
谈谈彩色副载波和伴音内载波的差拍干扰 - 12、
This thesis mainly deals with the intercarrier interference ( ICI) of the OFDM systems caused by time-variant multipath channels.
在本文中主要就OFDM系统在时变多径信道中由信道时变特性产生的ICI进行分析,给出进行ICI抑制的几种算法和性能分析。 - 13、
Decision Feedback-based intercarrier Interference Cancellation Method in OFDM Communication System
正交频分复用系统中的判决反馈干扰消除方法 - 14、
At high mobile speeds, the intercarrier Interference ( ICI) can severely degrade the performance of OFDM system.
在快速移动环境中,子载波间干扰(ICI)是恶化OFDM系统性能的重要因素。 - 15、
In order to eliminate intercarrier interference ( ICI) of orthogonal frequency-division multiplexing ( OFDM) communication systems, based on interference coefficients analysis and reasonable estimation, a novel decorrelation interference cancellation sche
为消除正交频分复用(OFDM)系统中的载波间干扰,在对干扰系数分析与合理估计的基础上,提出了一种基于频域均衡思想的解相关干扰抑制方案。 - 16、
intercarrier interference cancellation based on iterative detection algorithm for OFDM systems over time-varying channels
时变信道下OFDM系统中基于载频间干扰抑制的迭代检测算法 - 17、
intercarrier Interference Cancellation Scheme for OFDM High Speed Mobile Communication Systems
OFDM在高速移动下的载波间干扰消除 - 18、
Linear suppression of intercarrier interference in OFDM systems
OFDM载波间干扰的线性抑制技术 - 19、
Suppression of intercarrier interference in ST-OFDM systems
ST-OFDM系统载波干扰抑制技术研究 - 20、
The symbol timing and carrier frequency offsets both destroy the orthogonality among the subcarriers, thereby result in intersymbol interference ( ISI) and intercarrier interference ( ICI) and reduce the overall performance of the system.
符号定时偏差和载波偏差都将破坏子载波的正交性,从而引入符号间干扰(ISI)和子载波间干扰(ICI),使得系统整体性能降低。 - 21、
It provides high frequency efficiency, better performance against intersymbol interference, intercarrier interference, tone and impulse interference and can transmit multirate symbols easily.
它具有频谱利用率高和良好的抗符号间串扰、信道间干扰、脉冲干扰和单频干扰的优良特性,并且易于多速率传输。因此是一种非常有发展的多载波调制技术。 - 22、
If the carrier is not synchronous, the system will generate intercarrier interference; and if the timing is not synchronous, system will generate symbol interference; the asynchronous of sampling frequency in receiver will make symbol interference and car
如若载波不同步,系统会产生载波间干扰;定时不同步,系统会产生符号间的干扰;接收端采样频率的不同步,会使系统产生符合干扰和载波干扰等。 - 23、
There will be more subcarriers 、 higher carrier frequency and faster mobile speed in the future mobile communication, so the intercarrier interference caused by Doppler shift frequency will be a problem to be solved.
在未来移动通信系统中,载波频率更高,移动速度更快,多普勒频移造成的子载波间干扰将成为一个待解决的难题。
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更新时间:2026-03-25 07:11
更新时间:2026-03-25 07:11

