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1)  Iterative acquisition f
m序列迭代捕获
2)  iterative acquisition
迭代捕获
1.
To solve the problem of long acquisition time of routine pseudo noise(PN)code acquisition algorithms,a PN code iterative acquisition algorithm based on Tanner graph is proposed based on sliding correlation.
为解决常规基于滑动相关伪码捕获算法的捕获时间较长的问题,提出了一种基于Tanner图的伪随机码迭代捕获算法,给出了伪随机码的Tanner图表示和在该图上的和积算法流程。
3)  sequence acquisition
序列捕获
1.
This paper introduces wavelet detection in the system of spread-spectrum sequence acquisition, because wavelet analysis provides a basis that there are different features between the acquisition signal (modulate signal) and the unacquisition signal (white noise) for estimating code acquisition.
根据小波分析的特点,将小波检测引入扩频序列捕获系统中,利用扩频码捕获时信号(调制信号)和未捕获时信号(高斯白噪声)的小波变换的不同特征,结合多分辨分析,设立小波变换阈值,正确识别捕获状态。
4)  iterative sequence
迭代序列
1.
Strong convergence of Reich-Takahashi iterative sequence for asymptotically pseudo-contractive mapping;
渐近伪压缩映像的Reich-Takahashi迭代序列的强收敛性
2.
Strong convergence of some iterative sequences for asymptotically nonexpansive mappings in Banach spances;
Banach空间中渐近非扩张映象迭代序列的强收敛性
3.
Aim\ The convergence of Mann iterative sequences of real functions defined on unbounded convex domain is discussed.
目的 讨论无界闭凸区域上的实函数的 Mann迭代序列的收敛性 。
5)  iteration sequence
迭代序列
1.
For a lot of nonlinear mappings,the fixed points can be approximated by iteration sequence {xn}.
设E是Hilbert空间,T是E中具非空不动点集F(T)的非线性映象,许多非线性映像的多种形式的迭代序列{xn}可逼近映像T的不动点p0∈F(T)。
2.
Convergence of Ishikawa iteration sequence for setvalued nonexpansive mapping are discussed in uniformly covex Banach space, and the conditions are shown which guarantee the convergence of the iteration sequence to a fixed point.
讨论了集值非扩张映象在一致凸Banach空间中Ishikawa迭代序列的收敛性及确保迭代程序收敛到不动点的条件,所得结果是曾六川等的推广和发展。
3.
This article will set up an iteration sequence and extent its results to a more comprehensive mapping-semi-compact 1-set mapping.
本文建立了一迭代序列,将其结果推广到更广泛的一类映射———半紧1-集映射,并削弱了紧性和全连续的条件,得到了乘积空间中的极小、极大耦合不动点定理。
6)  psedorandom sequence acquisition
伪随机序列捕获
补充资料:层层迭迭
1.见"层层迭迭"。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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