逼近的
- 与 逼近的 相关的网络例句 [注:此内容来源于网络,仅供参考]
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In this paper, the elemntary knowledge of oblique circulant matrix is described briefly and three inverse eigenvalue problems which a-re denoted by Ⅰ,Ⅱ,Ⅲ and best approximation problem which is denoted byⅣ on oblique circulant matrix are presented.
本文介绍了斜循回方阵的基本内容,提出了斜循回方阵的特征值反问题Ⅰ,Ⅱ,Ⅲ及其最佳逼近问题Ⅳ,给出了它们有解的充分必要条件及求解算法,并举出了相应的数值例子。
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VQ is easy and tend to realize, HMM can comminute the speech dynamically, it can embody not only the dynamic characteristic but also the stationary characteristic of the speech. GMM is a special HMM, it uses combination of many weighted Gaussian density function to approach the distributing density of speaker characteristic vector in characteristic space, so it is also a good way.
VQ方法是最简单又易于实现,HMM方法能将语音动态分割,既能体现语音的动态特征,又能体现语音的平稳特性,GMM用多个加权高斯密度函数的组合来逼近说话人特征矢量在特征空间的分布密度,收到了较好的结果。
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The wavelet properties of compact support and multi-scale analysis can ensure the target function of the whole time domain optimization, some important points fitting and the optimal parameters aggregation.
利用小波的紧支局部性和多尺度分析特性,既保证了整体误差性能的优化,又突出了重要拟合点的逼近要求,并实现了优化变量的集结。
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A comparable function can be defined in terms of the digital transfer function using the polar variable z by defining HH = HH (1/z) which gives the magnitude-squared frequency response when evaluated around the unit circle, i.e., z = ejw.
解析复杂值函数的复变S是定义在此背景下,逼近抵达中的F ,结果是一个解析函数法郎的因子F款,这是理想的过滤器传递函数在矩形的变数。
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To solve the third problem, the definition of T-revision function and RT-computation model are proposed, and it is proved that with the increase of revision time, T-revision function converges to revision function and T-revision function is computable.
作为对第3个问题的解决,作者提出了T-修正函数的定义和RT-计算模型,证明了随修正时间的增长,T-修正函数逼近修正函数,且T-修正函数是可计算的。
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To solve the third problem, we present the definition of T-revision function and RT-computation model, prove that T-revision function converges to revision function with the increase of revision time and Trevision function is computable.
作为对第3个问题的解决,作者提出了T-修正函数的定义和RT-计算模型,证明了随修正时间的增长,T-修正函数逼近修正函数,且T-修正函数是可计算的。
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On defining the conditional threshold of discretized density evolution, a method for designing the time-invariant quantized decoder with finite levels, which can approach the optimal time-varying one and hence the continuous decoding, is proposed.
应用Shannon率失真理论以及密度进化理论,阐述了最佳量化译码的时变特性,建立了离散密度进化的条件阈值概念,提出了二元输入对称信道上逼近最佳时变量化译码、进而接近连续译码的时不变量化译码设计方法,推导了量化和积算法与最小和算法的等价条件,从误码率性能、错误平层和平均迭代次数等三个指标全面衡量量化译码性能; 5。
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This regression problem is dicult for several reasons: large number of examples, large number variables (most of which are discrete and multi-valued), non-stationarity of the distribution, and a conditional distribution of the dependent variable which is very dierent from those usually encountered in typical applications of machine learning and function approximation.
这个回归问题是,邸邪教组织有多少个原因:大量的例子,大批变量(其中大部分是离散和多值),非平稳性的分布,以及有条件的分布因变量,这是非常邸erent从这些一般遇到的典型应用机器学习和函数逼近。
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This paper discusses the conditional stability for solving the inverse sideways heat conduction problem by the rapid decreasing properties of the mollification kernel function, and obtain its regularization solution and its error estimate by constructing a well-posed problem.
利用磨光核函数在无穷远处的急降性质研究了反问题的条件稳定性,构造了一个适定的问题来逼近原问题,从而获得反问题的正则化解及其误差估计。
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With a constructed theorem, the author comes to a conclusion that this method, in a sense, equals to the algorithm of the continued fraction.
通过构造的一个定理对这个算法进行的分析讨论证实,闰周算法是一种很好的实数有理逼近算法,事实上,从某种意义上讲,它与连分数展开算法是等价的。
- 推荐网络例句
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According to the clear water experiment, aeration performance of the new equipment is good with high total oxygen transfer coefficient and oxygen utilization ratio.
曝气设备的动力效率在叶轮转速为120rpm~150rpm时取得最大值,此时氧利用率和充氧能力也具有较高值。
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The environmental stability of that world - including its crushing pressures and icy darkness - means that some of its most famous inhabitants have survived for eons as evolutionary throwbacks, their bodies undergoing little change.
稳定的海底环境─包括能把人压扁的压力和冰冷的黑暗─意谓海底某些最知名的栖居生物已以演化返祖的样态活了万世,形体几无变化。
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When I was in school, the rabbi explained everythingin the Bible two different ways.
当我上学的时候,老师解释《圣经》用两种不同的方法。