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averaging_kernel
- 反演问题离散后存在不适定性,平均核求解比较稳定且接近真解。-averaging kernel
Experiment-3
- 计算离散信号的振幅谱和相位谱 1. 编写计算DFT的程序。 2. 编写计算振幅谱和相位谱的程序。-DSP
Experiment-1
- dsp 信号处理中的 生成离散信号并计算其振幅谱-DSP
DisPID
- 离散PID控制实现了grey model prediction的例子-PID control of a discrete grey model prediction example
DiscreteFourierTransform
- 本代码为离散傅立叶变换的源代码。在石油矿产勘探中的 地球物理信号分析 中有广泛的应用-This code for discrete Fourier transform of source code. In petroleum mineral exploration of geophysical signal analysis is widely used
sthrw001
- CMG STARS里面 离散井筒法 定义水平井-This is the STARS data set for Lee s modified "Fourth SPE ** ** Comparative Solution Project- a Comparison of Steam Injection ** ** Simulators", paper SPE 13510, presented at the eigh
fft
- 快速傅立叶变换子程序 //l=0时,pr存放采样输入的实部,返回离散傅立叶变换的模;l=1时,pr存放傅立叶变换的实部,返回逆傅立叶变换的模 //l=0时,pi存放采样输入的虚部,返回离散傅立叶变换的幅角;l=1时,pi存放傅立叶变换的虚部,返回逆傅立叶变换的幅角 //l=0时,fr返回傅立叶变换的实部 l=1时返回逆傅立叶变换的实部 //l=0时,fi返回傅立叶变换的虚部 l=1时返回逆傅立叶变换的虚部 (l=0时正变换,l=1时逆变换) //il=0时,表示不要求本函数计
new3
- 逆变电路 使用matlab自带的pwm发生器 离散仿真-unicerse matlab simulink pwm generator
onedheattransfer
- 本程序为一维非稳态导热的有限差分法解法, 使用TDMA法求解离散方程组。-This program is a one-dimensional unsteady heat conduction solution of the finite difference method for solving the discrete equations using TDMA method
do_rad
- 一个CFD代码,用来模拟照明灯的流动和传热,核心是运用离散坐标辐射模型来计算辐射换热-a CFD code for simulating the flow and heat transfer of a headlamp, focusing on the using of discrete ordinates radiation model.
One-Dimensional-SN
- 反应堆物理的SN方法(离散纵标法)计算单速均匀、各向同性的一维平几何和一维球几何的中子通量密度分布-Using SN method to calculate neutron flux in one-dimensional plane and sphere reactors
wall_film
- 计算流体力学离散项液滴撞壁模型 边界条件-Computational fluid dynamics model of discrete items droplets hit the wall
SPLL_1ph_digital_2
- 单相锁相环simulink仿真,用于并网逆变等,大部分不是自带模型,根据相关资料和离散方程搭建,比较实用。基于matlab2014b-Single-phase locked loop simulink simulation for grid-connected inverter, etc., most are not built model, according to the relevant data structures and discrete equations, more practi
jc
- 有限容积法对非稳态传热偏微分方程进行离散,方程组的求解采用高斯-赛德尔迭代法- differential equation were discretized by an implicit finite-difference method, and the aforementioned simulative equations were solved numerically using the Gauss-Seidel method
power_3phsignaldq
- 演示使用的power_3phsignaldq离散三相位可编程源代码块生成1 p.u.,正序电压15度。在0.05秒的正序电压增加到1.5 p.u.,在0.1秒的不平衡是由一个0.3 p.u.负序分量相位与30度的引入。正序分量的大小和相位用两种不同的方式进行评估(The power_3phsignaldq demo uses a Discrete Three-Phase Programmable Source block to generate a 1 p.u., 15 degrees posi