采样频率—每单位(如英寸)的采样数(如像素)。
SAMPLING FREQUENCY - the number of samples (e. g., pixels) per unit (e. g., inch).
该成像系统基本满足了极弱光成像探测在光强、灵敏度和采样数等方面的要求。
It concludes that this imaging system meets the demand of ultra-weak light imaging detection for ultra-weak light intensity, high sensitivity and few measurements.
测试客户端测量测试的持续时间内平均的响应时间和成功的采样数(即得到了响应的采样数)。
The test client measures average response time and number of successful hits (i.e. hits that get responses) for the duration of the testing.
用户应按技术要求的指标对收到的产品进行检验,并按GB/T6680确定采样数。
Users should indicator of the technical requirements for testing before the product, according to several GB/T6680 of sampling.
编码器首先由预设值的帧持续时间计算出帧大小,然后拿结果的采样数与帧大小限定的值作比较。
The encoder first calculates the frame size for the preset's frame Duration and then compares the resulting sample count with the frame size Limit value.
它使用随机数5生成器通过重复地根据不确定变量的概率分布采样来生成模型的多重情境。
It typically USES random number 5 generators to generate multiple scenarios of a model by repeatedly sampling values from the probability distributions for the uncertain variables.
评测表提供为特定的处理器事件收集的采样的百分数或数量,比如高速缓存线路故障的数量、传输后备缓存(TLB)故障的数量,等等。
The profiling table provides the percentage and number of samples collected for specified processor events such as the number of cache line misses, Transition Lookaside Buffer (TLB) misses, and so on.
r——在所选择的任意采样间隔期间的平均可运行内核线程数。
R — The average number of runnable kernel threads over whatever sampling interval you have chosen.
b——采样期间在虚拟内存中等待队列的平均内核线程数。
B — the average number of kernel threads that are in the virtual memory waiting queue over your sampling interval.
有理数采样速率转换可以划分为整数倍和分数倍采样率转换。
Rational ratio conversion can be realized by integer and fraction ratio conversion.
为了解码需要样品的宽度文件(比特数),和采样频率(赫兹),和本的信道数。
In order to decode the file you need the width of the samples (number of bits), and the sampling frequency (Hertz), and the number of channels present.
在这个公式中,M是调节器阶数,K是转换过程中的过采样速率。
In this formula, m is the order of the modulator, and K is the oversampling ratio during the conversion.
在室内用ANDERSEN生物粒子采样器进行了不同采样时间对采集空气细菌和真菌粒子浓度、粒数中值直径效果的研究。
The impact of sampling time on concentration of collected bacterium, fungus particles and mid-value diameter of particle number are studied by ANDERSEN bioparticle sampler in lab.
与常规的沉降法相比,浮游细菌采样器能直接得到单位体积空气中所含的菌落数,而且不受环境气流的影响。
Compared with the conventional settlement, planktonic bacteria sampler can be directly contained in unit volume of air bacteria counts, and the impact of air from the environment.
给出了可编程采样系统的整体设计方案,利用CPLD强大的硬件可编程能力实现系统采样频率和采样通道数的可编程设置,介绍了其原理和特点。
The overall design scheme, as well as its principle and characteristics, are presented. With powerful CPLD, the sampling rate and channel number of the system are programmable.
研究了采样与静差补偿,以及四元数、姿态、位置和速度更新的算法。
The sample and static error compensation, quaternion and attitude updating and algorithm of station and velocity updating were researched.
作为人机对话的窗口,可以通过该软件对系统采集通道数和采样频率进行选择。
As the dialogue window of the operator and the computer, the software can select acquisition channels and frequency.
这些参数包括模态数、采样频率、车速、响应测点位置和测点数等。
These parameters include mode number, sampling frequency, vehicle speed, locations and Numbers of measured stations.
对调制器的结构和设计技术进行了研究,根据系统要求设计了量化器位数,调制器过采样比和阶数。
The architecture and design methods of - modulators are studied . based on it , the bits of quantizer , oversampling - ratio and the orders of modulator have been designed.
辨识精度与算法中拟合模型阶数、采样时间间隔和采样总数有关,并受信号中噪声的影响,需加以改进。
The identification accuracy is related to the order of the fitting model, sample interval and sample number, and also affected by signal noise, which shows the method should be improved.
同时研究了噪声对关联维数计算结果的影响,并提出用采样迭代奇异值降噪算法对原始数据进行降噪处理。
The influence of noise on the computational precision of correlation dimension is discussed, and iterative singular value decomposition for reducing noise is introduced.
同时研究了噪声对关联维数计算结果的影响,并提出用采样迭代奇异值降噪算法对原始数据进行降噪处理。
The influence of noise on the computational precision of correlation dimension is discussed, and iterative singular value decomposition for reducing noise is introduced.
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