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ofdm_without_noise
ofdm without noise the article is matlab code without considering the noise parameter
- 2010-11-07 20:59:41下载
- 积分:1
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dvbt_sim0
ofdm-dvb-t系统的仿真,有ofdm 实现模块,误码率计算,等模块。(ofdm- dvb-t system simulation, ofdm achieve module, BER, and other modules.)
- 2007-05-25 22:54:46下载
- 积分:1
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Kalmanfiltertargetecognization
卡尔曼滤波对移动目标的定位与跟踪,效果明显,可以实时的对移动目标进行定位跟踪(Kalman filter positioning and tracking moving targets, the effect is obvious, can real-time location and tracking of moving targets)
- 2015-05-08 12:55:08下载
- 积分:1
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119128673Lyapunov_Terra
利用正交法求解LYAPUNOV指数的一般方法,希望能帮助做混沌判断的人(Method using orthogonal LYAPUNOV index general approach, hoping to help people make judgments of Chaos)
- 2008-06-10 15:20:25下载
- 积分:1
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landmarc9
matlab实现landmarc定位算法的仿真(landmarc positioning algorithm (matlab))
- 2013-11-21 09:12:51下载
- 积分:1
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NLPF-MATLAB
牛顿法电力系统潮流计算,采用matlab计算程序(MATLAB)
- 2010-06-06 21:55:07下载
- 积分:1
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code
基于MATLAB环境下的人脸识别代码,简单易行,值得下载(Environment based on MATLAB code for face recognition, simple and easy, it is worth downloading)
- 2009-04-23 09:26:47下载
- 积分:1
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CICA
还参考量独立分量分析(ICA-R)程序与文档(Also refers to the amount of independent component analysis (ICA-R) procedure and documentation)
- 2020-09-08 10:18:02下载
- 积分:1
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matlab_m
MATLAB宝典 配套源文件,有相关书籍的话很适合大家学习(this is matlab .m source)
- 2012-04-22 11:18:31下载
- 积分:1
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Boost_Converter
说明: 升压转换器是一种DC / DC电源转换器,可将电压从其输入(源)升至其输出(负载)。在连续导通模式下(流经电感的电流永远不会降为零),升压转换器的理论传递函数为:
占空比在哪里0.5
在此示例中,转换器从250 V电源馈送RC负载,并且PWM频率设置为31 kHz。
模拟
运行仿真并观察示波器上的波形。确认负载电压(Vout)的平均值非常接近理论值:Vout = 250 /(1- 0.5)= 500V。(A boost converter is a DC/DC power converter which steps up voltage from its input (source) to its output (load). In continuous conduction mode (current through the inductor never falls to zero), the theoretical transfer function of the boost converter is:
where is the duty cycle.0.5
In this example, the converter is feeding an RC load from a 250 V source and the PWM frequency is set to 31 kHz.
Simulation
Run the simulation and observe waveforms on Scope. Verify that the mean value of the load voltage (Vout) is very close to the theoretical value of: Vout = 250 / (1 - 0.5) = 500 V.)
- 2020-03-22 20:41:56下载
- 积分:1