登录
首页 » MDK » OOK调制代码(误码率较高)

OOK调制代码(误码率较高)

于 2021-03-25 发布
0 304
下载积分: 1 下载次数: 4

代码说明:

说明:  stm32实现ook调制,调制通过,误码率较高(The realization of ook modulation by stm32)

文件列表:

OOK调制代码(误码率较高)\09jieshou\cortexm3_macro.s, 9548 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\gpio.uvopt, 73750 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\gpio_USART.dep, 1004 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\JLinkArm_USART.ini, 205 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\JLinkLog.txt, 43867 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\listing\main.i, 81511 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\listing\main.lst, 498811 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\listing\STM32F10x.lst, 29306 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\listing\stm32f10x_gpio.i, 25652 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\listing\stm32f10x_gpio.lst, 107561 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\listing\stm32f10x_it.i, 69401 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\listing\stm32f10x_it.lst, 456018 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\listing\stm32f10x_rcc.lst, 163 , 2018-10-04
OOK调制代码(误码率较高)\09jieshou\listing\stm32f10x_usart.i, 28372 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\listing\stm32f10x_usart.lst, 128219 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\listing\USART.map, 87936 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\main.c, 11065 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\ExtDll.iex, 19 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\main.crf, 154502 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\main.d, 1779 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\main.o, 189652 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\main.txt, 32684 , 2011-09-15
OOK调制代码(误码率较高)\09jieshou\obj\STM32F10x.d, 32 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x.o, 4828 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_gpio.crf, 42614 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_gpio.d, 466 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_gpio.o, 65832 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_gpio.txt, 32840 , 2011-09-15
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_it.crf, 149683 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_it.d, 2001 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_it.o, 228596 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_it.txt, 19852 , 2011-09-15
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_rcc.crf, 41215 , 2018-07-11
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_rcc.d, 446 , 2018-07-11
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_rcc.o, 83952 , 2018-07-11
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_rcc.txt, 52229 , 2011-09-15
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_usart.crf, 45799 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_usart.d, 475 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_usart.o, 79368 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\stm32f10x_usart.txt, 47642 , 2011-09-15
OOK调制代码(误码率较高)\09jieshou\obj\USART.axf, 102812 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\USART.hex, 7431 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\USART.htm, 33940 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\USART.lnp, 390 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\USART.plg, 23794 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\obj\USART.sct, 479 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\obj\USART.tra, 1373 , 2018-07-12
OOK调制代码(误码率较高)\09jieshou\readme.txt, 906 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\STM32F10x.s, 8816 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\STM32F10xR.LIB, 1756210 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\stm32f10x_conf.h, 5676 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\stm32f10x_gpio.c, 22512 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\stm32f10x_it.c, 22505 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\stm32f10x_it.h, 3397 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\stm32f10x_lib.c, 9154 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\stm32f10x_usart.c, 43292 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\stm32f10x_vector.s, 8676 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\USART.opt.bak, 3642 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\USART.plg, 184 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\USART.Uv2.bak, 2790 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\USART.uvgui.lsc, 142979 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\USART.uvgui_lsc.bak, 142991 , 2018-10-04
OOK调制代码(误码率较高)\09jieshou\USART.uvopt, 13630 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\USART.uvproj, 16132 , 2018-10-04
OOK调制代码(误码率较高)\09jieshou\USART_Opt.Bak, 3632 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\USART_Target 1.dep, 4154 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\USART_USART.dep, 6288 , 2018-10-05
OOK调制代码(误码率较高)\09jieshou\USART_Uv2.Bak, 2792 , 2011-08-29
OOK调制代码(误码率较高)\09jieshou\USART_uvopt.bak, 155304 , 2018-07-12
OOK调制代码(误码率较高)\09jieshou\USART_uvproj.bak, 16128 , 2012-08-30
OOK调制代码(误码率较高)\fasong\cortexm3_macro.s, 9548 , 2008-10-06
OOK调制代码(误码率较高)\fasong\JLinkArm_USART.ini, 205 , 2009-05-26
OOK调制代码(误码率较高)\fasong\JLinkLog.txt, 43867 , 2010-10-26
OOK调制代码(误码率较高)\fasong\listing\main.i, 81812 , 2018-10-05
OOK调制代码(误码率较高)\fasong\listing\main.lst, 500208 , 2018-10-05
OOK调制代码(误码率较高)\fasong\listing\STM32F10x.lst, 29306 , 2018-10-05
OOK调制代码(误码率较高)\fasong\listing\stm32f10x_it.i, 69401 , 2018-10-05
OOK调制代码(误码率较高)\fasong\listing\stm32f10x_it.lst, 456018 , 2018-10-05
OOK调制代码(误码率较高)\fasong\listing\USART.map, 87670 , 2018-10-05
OOK调制代码(误码率较高)\fasong\main.c, 12130 , 2018-10-05
OOK调制代码(误码率较高)\fasong\obj\ExtDll.iex, 19 , 2018-10-04
OOK调制代码(误码率较高)\fasong\obj\main.crf, 154343 , 2018-10-05
OOK调制代码(误码率较高)\fasong\obj\main.d, 1779 , 2018-10-05
OOK调制代码(误码率较高)\fasong\obj\main.o, 185784 , 2018-10-05
OOK调制代码(误码率较高)\fasong\obj\main.txt, 30826 , 2011-09-30
OOK调制代码(误码率较高)\fasong\obj\STM32F10x.d, 32 , 2018-10-05
OOK调制代码(误码率较高)\fasong\obj\stm32f10x.o, 4828 , 2018-10-05
OOK调制代码(误码率较高)\fasong\obj\stm32f10x_it.crf, 149683 , 2018-10-05
OOK调制代码(误码率较高)\fasong\obj\stm32f10x_it.d, 2001 , 2018-10-05
OOK调制代码(误码率较高)\fasong\obj\stm32f10x_it.o, 228420 , 2018-10-05
OOK调制代码(误码率较高)\fasong\obj\stm32f10x_it.txt, 19842 , 2011-09-30
OOK调制代码(误码率较高)\fasong\obj\USART.axf, 107364 , 2018-10-05
OOK调制代码(误码率较高)\fasong\obj\USART.hex, 7243 , 2018-10-05
OOK调制代码(误码率较高)\fasong\obj\USART.htm, 34004 , 2018-10-05
OOK调制代码(误码率较高)\fasong\obj\USART.lnp, 337 , 2018-10-05
OOK调制代码(误码率较高)\fasong\obj\USART.plg, 8242 , 2018-10-05
OOK调制代码(误码率较高)\fasong\obj\USART.sct, 479 , 2011-08-14
OOK调制代码(误码率较高)\fasong\obj\USART.tra, 1130 , 2018-10-04
OOK调制代码(误码率较高)\fasong\readme.txt, 906 , 2009-05-25
OOK调制代码(误码率较高)\fasong\STM32F10x.s, 8817 , 2011-07-20

下载说明:请别用迅雷下载,失败请重下,重下不扣分!

发表评论

0 个回复

  • entropy
    for entropy H = entropy(S) this command will evaluate the entropy of S, S should be row matrix H = entropy([X Y Z]) this command will find the joint entropy for the 3 variables H = entropy([X,Y],[Z,W]) this will find H(X,Y/Z,W).. you can use it for any combination of joint entropies Please validate this function before using it
    2009-05-22 03:49:16下载
    积分:1
  • ANFISCLUST_10SLOT
    working of the fifth generation intelligent radio that is Cognitive Radio (CR) system which works on predictive data rate and propose ANFIS based learning scheme to introduce intelligence in it. The testing data set is taken from training set. Validation data set is unseen data. RMSE and prediction accuracy are used as performance index. Two gaussian membership functions are taken for each input. Error goal was set for .001.Training was for 300 epochs. It is seen prediction accuracy was 91 percentages in testing case and 89 in validation. RMSE difference between validation and testing case very small.
    2011-11-29 23:02:21下载
    积分:1
  • osyk4
    实现两台PC机的串口通信,很好用,经编译无错误()
    2018-03-28 21:42:58下载
    积分:1
  • IIR 数字滤波器的设计与实现
    说明:  设计一个巴特沃兹数字低通滤波器,其技术指标为:3dB带宽为0.2π,阻带截止频率为0.3π,通带纹波为1dB,阻带衰减大于30dB,采样间隔T=10ms。 1)采用冲激响应不变法; 2)采用双线性变换法设计; 3)采用FIR的窗函数(Hanning窗、Hamming窗或Blackman窗)设计。(A Butterworth digital low-pass filter is designed. Its technical specifications are: 3 dB bandwidth is 0.2 pi, stopband cut-off frequency is 0.3 pi, passband ripple is 1 dB, stopband attenuation is more than 30 dB, sampling interval T=10 Ms. 1) Impulse response invariance method is adopted. 2) Design by bilinear transformation method; 3) FIR window function (Hanning window, Hamming window or Blackman window) is used to design.)
    2019-04-19 10:03:16下载
    积分:1
  • ethernet_mac-master
    说明:  ethernet mac vhdl verilog basic
    2019-03-30 15:47:25下载
    积分:1
  • Nashgame
    认知无线电分布式功率控制非合作博弈NASH均衡的实现基于价格函数以及DPC功率控制比较(Distributed cognitive radio power control non-cooperative game NASH equilibrium price function and the DPC-based power control more)
    2011-11-26 10:52:38下载
    积分:1
  • QPSK pn
    结合QPSK调制的直接序列扩频系统的仿真(Combined with QPSK modulation direct-sequence spread-spectrum system simulation)
    2013-03-13 18:42:03下载
    积分:1
  • 特征提取
    说明:  对接受到的调制信号的特征提取,用于调制识别(automatic modulation recognition)
    2020-01-06 19:35:55下载
    积分:1
  • 第一次作业_基于分类算法的雷达状态识别
    说明:  第一次作业_基于分类算法的雷达状态识别 对于本数据集中的雷达状态识别,数据降维前使用朴素贝叶斯、支持向量机、神经网络的分类算法对于识别的准确率无太大影响;数据降维后使用神经网络算法最优,支持向量机算法其次,朴素贝叶斯算法较差。此外,训练样本越多,分类准确率有小幅度提高。(First Operation Radar State Recognition Based on Classification Algorithms For radar state recognition in this data set, the classification algorithm of Naive Bayesian, Support Vector Machine and Neural Network before data dimension reduction has little effect on the accuracy of recognition; Neural Network algorithm is the best after data dimension reduction, Support Vector Machine algorithm is the second, Naive Bayesian algorithm is the worst. In addition, the more training samples, the smaller the classification accuracy.)
    2019-04-03 08:54:04下载
    积分:1
  • BELLHOP
    matlab bellhop 工具包,可进行bellhop建模,内附工具包(Instructions for the use of the MATLAB bellhop)
    2021-04-27 09:48:44下载
    积分:1
  • 696518资源总数
  • 105661会员总数
  • 6今日下载