▍1. -RBF-complex-
ARIMA与RBF复合模型在设备运行状态趋势预测中的应用(ARIMA and RBF complex model equipment running trend prediction)
ARIMA与RBF复合模型在设备运行状态趋势预测中的应用(ARIMA and RBF complex model equipment running trend prediction)
小波包分解Welch平均法在焊接电弧声功率谱估计中的应用(Application of wavelet packet Welch method in the welding arc sound power spectrum estimation)
小波包分解Welch平均法在焊接电弧声功率谱估计中的应用(Application of wavelet packet Welch method in the welding arc sound power spectrum estimation)
合成孔径雷达成像程序,使用BP算法,对点目标进行仿真,实现点目标的成像(Synthetic aperture radar imaging procedures, the use of BP algorithm, the point target simulation to achieve point target imaging)
合成孔径雷达成像程序,使用BP算法,对点目标进行仿真,实现点目标的成像(Synthetic aperture radar imaging procedures, the use of BP algorithm, the point target simulation to achieve point target imaging)
一个关于压缩感知的论文,是用子空间迭代法求出最后的稀疏解(a method for compressed sensing)
一个关于压缩感知的论文,是用子空间迭代法求出最后的稀疏解(a method for compressed sensing)
基于STC89C52RC的单片机的PWM电机调速(STC89C52RC microcontroller-based PWM motor control)
基于STC89C52RC的单片机的PWM电机调速(STC89C52RC microcontroller-based PWM motor control)
C++Builder短信猫开发包,提供有C++Builde开发语言示例,方便程序员开发调用。支持单口gsm短信猫设备,-深圳汉邦科技 www.ssm-hb.com 0755-36537765(C++Builder SMS cat Development Kit, provides an example of the development of language C++Builde facilitate programmers call. Support single port gsm SMS cat equipment- Shenzhen parti Technology www.ssm-hb.com 0755-36537765)
C++Builder短信猫开发包,提供有C++Builde开发语言示例,方便程序员开发调用。支持单口gsm短信猫设备,-深圳汉邦科技 www.ssm-hb.com 0755-36537765(C++Builder SMS cat Development Kit, provides an example of the development of language C++Builde facilitate programmers call. Support single port gsm SMS cat equipment- Shenzhen parti Technology www.ssm-hb.com 0755-36537765)
Matlab环境下PC机与单片机的串行通信及数据处理(Serial communication and data processing Matlab environment PC and SCM)
Matlab环境下PC机与单片机的串行通信及数据处理(Serial communication and data processing Matlab environment PC and SCM)
As the figure above illustrates, a phase accumulator compares the sample clock and desired frequency to increment a phase register. Again, the fundamental idea is that we can generate signals with precise frequencies by generating an appropriate sample based on the phase of that frequency at any point in time. In addition, by representing our waveform with 214 (16,384) points, we are able to represent exactly 16,384 phase increments with our lookup table.