AdaBoost算法有AdaBoost.M1和AdaBoost.M2两种算法,AdaBoost.M1是我们通常所说的DiscreteAdaBoost,而AdaBoost.M2是M1的泛化形式。
关于AdaBoost算法的一个结论是:当弱分类器算法使用简单的分类方法时,boosting的效果明显地统一地比bagging要好.当弱分类器算法使用C4.5时,boosting比bagging较好,但是没有前者明显。
后来又有学者提出了解决多标签问题的AdaBoost.MH和AdaBoost.MR算法,其中AdaBoost.MH算法的一种形式又被称为RealBoost算法---弱分类器输出一个可能度,该值的范围是整个R,和与之相应的权值调整,强分类器生成的AdaBoost算法。
Python实现该算法。
adabbost原理见博客http://blog.csdn.net/suipingsp/article/details/41722435
2025/6/12 10:39:13 72KB python json 机器学习 adaboost
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通过串口调试助手设定电压值(十六进制),用ADC采集显示在串口助手上
2025/6/11 19:28:39 4.19MB dac adc
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由于成像传感器噪声,相片颗粒及图像在传输过程中的通道传输误差等,会使得图像上会出现随机的、离散的、孤立的像素点,即图像噪声。
图像噪声在视觉上通常和它们相邻像素明显不同,表现为黑区域上的白点或者白区域上的黑点,影响到图像的视觉效果和有关的处理工作。
所以,需要对图像中的噪声进行消除,本论文主要阐述了中值滤波的工作原理及其他滤波方法的比较。
2025/6/11 12:10:50 1.09MB 图像处理 中值滤波 椒盐噪声
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文件中包含test.m文件和两个函数以及一张测试图片。
利用学习机会自己编写了均值滤波和中值滤波函数,并在test.m文件中运行,有详细代码注释,希望一起学习。
2025/6/11 12:33:57 14KB Matlab 均值滤波 中值滤波
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针对复杂运动背景中慢速小目标检测误检率高,实时性差等问题,提出了基于自适应阈值分割的慢速小目标检测算法。
首先计算连续两帧图像特征点的金字塔光流场,对光流场进行滤波,获取匹配特征点集合。
然后对图像运动背景进行建模,拟合投影模型参数,通过投影模型得到运动背景补偿图像,进行图像差分处理,获得差分图像。
最后迭代计算差分图像的自适应阈值,修正差分阈值,差分图像二值分割,检测出运动目标。
实验结果表明算法能够准确地检测出复杂背景中的慢速小目标,虚警率为2%,目标漏检率为2.6%,目标检测准确率95.4%,每帧图像目标检测时间为38ms,能够满足运动目标检测对实时性的要求。
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基于multisim的调幅发射机--要求截波1MZ,正弦波调制信号1KHZ正弦波,调制度0.6,用示波器观测1KHZ信号波形,记录幅度大小,频率值用示波器观测调制器输出波形,记录波形幅值大小,用频谱分析仪观测频谱并记录。
2025/6/11 0:24:28 291KB multisim 调幅发射机
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计算音频PESQ值,计算MOS分值。
直接在windows命令行中运行。
1-5分,1分代表最差,5分为最优,使用简单。
本人经常使用,保证可用。
2025/6/10 16:24:57 331KB PESQ MOS 音频
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数字逻辑之数字时钟课程设计设计要求1、设计一个能显示日期、小时、分钟、秒的数字电子钟,并具有整点报时的功能。
 2、可手动校正时、分时间和日期值,时间以24小时为一个周期,有校时功能,可以分别对时及分进行单独校时,使其校正到标准时间;
3、计时过程具有报时功能,当时间到达整点前10秒进行蜂鸣报时;
 为了保证计时的稳定及准确须由晶体振荡器提供表针时间基准信号由晶振电路产生1HZ标准的信号,分、秒为六十进制计数器,时为二十四进制计数器。
2025/6/10 2:04:22 633KB 数字逻辑设计报告
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视点变换,旋转,加速减速,星空背景太阳,光晕各行星纹理#include#include#include#include#include#include#include#pragmacomment(lib,"winmm.lib")#pragmacomment(lib,"wininet")//纹理图像结构typedefstruct{intimgWidth;//纹理宽度intimgHeight;//纹理高度unsignedcharbyteCount;//每个象素对应的字节数,3:24位图,4:带alpha通道的24位图unsignedchar*data;//纹理数据}TEXTUREIMAGE;//BMP文件头#pragmapack(2)typedefstruct{unsignedshortbfType;//文件类型unsignedlongbfSize;//文件大小unsignedshortbfReserved1;//保留位unsignedshortbfReserved2;//保留位unsignedlongbfOffBits;//数据偏移位置}BMPFILEHEADER;#pragmapack()//BMP信息头typedefstruct{unsignedlongbiSize;//此结构大小longbiWidth;//图像宽度longbiHeight;//图像高度unsignedshortbiPlanes;//调色板数量unsignedshortbiBitCount;//每个象素对应的位数,24:24位图,32:带alpha通道的24位图unsignedlongbiCompression;//压缩unsignedlongbiSizeImage;//图像大小longbiXPelsPerMeter;//横向分辨率longbiYPelsPerMeter;//纵向分辨率unsignedlongbiClrUsed;//颜色使用数unsignedlongbiClrImportant;//重要颜色数}BMPINFOHEADER;//定义窗口的标题、宽度、高度、全屏布尔变量#defineWIN_TITLE"模拟太阳系各星球的转动"constintWIN_WIDTH=800;constintWIN_HEIGHT=600;BOOLisFullScreen=FALSE;//初始不为全屏#defineDEG_TO_RAD0.017453floatangle=0.0;staticGLdoubleviewer[]={0,0,0,0,0};//初始化视角GLUquadricObj*quadric;//建立二次曲面对象GLfloatangle_Z;//星空旋转角度boolg_bOrbitOn=true;//控制转动暂停floatg_fSpeedmodifier=1.0f;//时间控制floatg_fElpasedTime;doubleg_dCurrentTime;doubleg_dLastTime;GLfloatLightAmbient[]={1.0f,1.0f,1.0f,0.0f};//环境光参数GLfloatLightDiffuse[]={1.0f,1.0f,1.0f,0.0f};//漫射光参数GLfloatLightPosition[]={0.0f,0.0f,0.0f,1.0f};//光源的位置//纹理图象TEXTUREIMAGEskyImg;TEXTUREIMAGEsunImg;TEXTUREIMAGErayImg;TEXTUREIMAGEmercuImg;TEXTUREIMAGEvenusImg;TEXTUREIMAGEearthImg;TEXTUREIMAGEmarsImg;TEXTUREIMAGEjupiterImg;TEXTUREIMAGEsaturnImg;TEXTUREIMAGEuranusImg;TEXTUREIMAGEneptuneImg;TEXTUREIMAGEmoonImg;GLuinttexture[12];//纹理数组//星球速度定义staticfloatfSunSpin=0.0f;//太阳自转速度staticfloatfMercuSpin=0.0f;//水星自转速度staticfloatfMercuOrbit=0.0f;//水星公转速度staticfloatfVenusSpin=0.0f;//金星自转速度staticfloatfVenusOrbit=0.0f;//金星公转速度staticfloatfEarthSpin=0.0f;//地球自转速度staticfloatfEarthOrbit=0.0f;//地球公转速度staticfloatfMarsSpin=0.0f;//火星自转速度staticfloatfMarsOrbit=0.0f;//火星公转速度staticfloatfJupiterSpin=0.0f;//木星自转速度staticfloatfJupiterOrbit=0.0f;//木星公转速度staticfloatfSaturnSpin=0.0f;//土星自转速度staticfloatfSaturnOrbit=0.0f;//土星公转速度staticfloatfUranusSpin=0.0f;//天王星自转速度staticfloatfUranusOrbit=0.0f;//天王星公转速度staticfloatfNeptuneSpin=0.0f;//海王星自转速度staticfloatfNeptuneOrbit=0.0f;//海王星公转速度staticfloatfMoonSpin=0.0f;//月亮自转速度staticfloatfMoonOrbit=0.0f;//月亮公转速度voidMakeTexture(TEXTUREIMAGEtextureImg,GLuint*texName)//转换为纹理{glPixelStorei(GL_UNPACK_ALIGNMENT,1);//对齐像素字节函数glGenTextures(1,texName);//第一个参数指定表明获取多少个连续的纹理标识符glBindTexture(GL_TEXTURE_2D,*texName);glTexParameterf(GL_TEXTURE_2D,GL_TEXTURE_WRAP_S,GL_REPEAT);glTexParameterf(GL_TEXTURE_2D,GL_TEXTURE_WRAP_T,GL_REPEAT);glTexParameterf(GL_TEXTURE_2D,GL_TEXTURE_MAG_FILTER,GL_LINEAR);glTexParameterf(GL_TEXTURE_2D,GL_TEXTURE_MIN_FILTER,GL_LINEAR);glTexImage2D(GL_TEXTURE_2D,0,GL_RGB,textureImg.imgWidth,textureImg.imgHeight,0,GL_RGB,GL_UNSIGNED_BYTE,textureImg.data);}//初始化OpenGLvoidInitGL(void){glClearColor(0.0f,0.0f,0.0f,0.5f);//设置黑色背景glClearDepth(2.0f);//设置深度缓存glEnable(GL_DEPTH_TEST);//启动深度测试glDepthFunc(GL_LEQUAL);//深度小或相等的时候渲染glShadeModel(GL_SMOOTH);//启动阴影平滑glEnable(GL_CULL_FACE);//开启剔除操作效果glHint(GL_PERSPECTIVE_CORRECTION_HINT,GL_NICEST);//使用质量最好的模式指定颜色和纹理坐标的插值质量glLightfv(GL_LIGHT1,GL_AMBIENT,LightAmbient);//设置环境光glLightfv(GL_LIGHT1,GL_DIFFUSE,LightDiffuse);//设置漫反射光glEnable(GL_LIGHTING);//打开光照glEnable(GL_LIGHT1);//打开光源1//载入纹理glEnable(GL_TEXTURE_2D);//开启2D纹理映射MakeTexture(skyImg,&texture;[0]);MakeTexture(sunImg,&texture;[1]);MakeTexture(rayImg,&texture;[2]);MakeTexture(mercuImg,&texture;[3]);MakeTexture(venusImg,&texture;[4]);MakeTexture(earthImg,&texture;[5]);MakeTexture(marsImg,&texture;[6]);MakeTexture(jupiterImg,&texture;[7]);MakeTexture(saturnImg,&texture;[8]);MakeTexture(uranusImg,&texture;[9]);MakeTexture(neptuneImg,&texture;[10]);MakeTexture(moonImg,&texture;[11]);quadric=gluNewQuadric();//建立一个曲面对象指针gluQuadricTexture(quadric,GLU_TRUE);//建立纹理坐标gluQuadricDrawStyle(quadric,GLU_FILL);//面填充}voidDisplay(void){glLoadIdentity();//设置观察点的位置和观察的方向gluLookAt(viewer[0],viewer[1],viewer[2],viewer[3],viewer[4],-5,0,1,0);//摄像机x,摄像机y,摄像机z,目标点x,目标点y,目标点z,摄像机顶朝向x,摄像机顶朝向y,摄像机顶朝向z//获得系统时间使太阳系有动态效果g_dCurrentTime=timeGetTime();g_fElpasedTime=(float)((g_dCurrentTime-g_dLastTime)*0.0005);g_dLastTime=g_dCurrentTime;glClear(GL_COLOR_BUFFER_BIT|GL_DEPTH_BUFFER_BIT);glMatrixMode(GL_MODELVIEW);//指定GL_MODELVIEW是下一个矩阵操作的目标glTranslatef(0.0f,0.0f,-5.0f);//将坐标系移入屏幕5.0fglRotatef(10,1.0f,0.0f,0.0f);//将坐标系绕x轴旋转10度glEnable(GL_LIGHT0);//打开光源0/**********************************绘制背景星空********************************************/glPushMatrix();//当前模型矩阵入栈glTranslatef(-10.0f,3.0f,0.0f);glRotatef(angle_Z,0.0f,0.0f,1.0f);glEnable(GL_TEXTURE_2D);glBindTexture(GL_TEXTURE_2D,texture[0]);//星空纹理glBegin(GL_QUADS);glNormal3f(0.0f,0.0f,1.0f);glTexCoord2f(0.0f,0.0f);glVertex3f(-50.0f,-50.0f,-50.0f);glTexCoord2f(6.0f,0.0f);glVertex3f(50.0f,-50.0f,-50.0f);glTexCoord2f(6.0f,6.0f);glVertex3f(50.0f,50.0f,-50.0f);glTexCoord2f(0.0f,6.0f);glVertex3f(-50.0f,50.0f,-50.0f);glEnd();glBegin(GL_QUADS);glNormal3f(0.0f,0.0f,-1.0f);glTexCoord2f(6.0f,6.0f);glVertex3f(-50.0f,-50.0f,50.0f);glTexCoord2f(0.0f,6.0f);glVertex3f(50.0f,-50.0f,50.0f);glTexCoord2f(0.0f,0.0f);glVertex3f(50.0f,50.0f,50.0f);glTexCoord2f(6.0f,0.0f);glVertex3f(-50.0f,50.0f,50.0f);glEnd();glBegin(GL_QUADS);glNormal3f(0.0f,1.0f,0.0f);glTexCoord2f(0.0f,0.0f);glVertex3f(-50.0f,-50.0f,-50.0f);glTexCoord2f(6.0f,6.0f);glVertex3f(50.0f,-50.0f,50.0f);glTexCoord2f(6.0f,0.0f);glVertex3f(50.0f,-50.0f,-50.0f);glTexCoord2f(0.0f,6.0f);glVertex3f(-50.0f,-50.0f,50.0f);glEnd();glBegin(GL_QUADS);glNormal3f(0.0f,-1.0f,0.0f);glTexCoord2f(6.0f,6.0f);glVertex3f(-50.0f,50.0f,-50.0f);glTexCoord2f(0.0f,0.0f);glVertex3f(50.0f,50.0f,50.0f);glTexCoord2f(0.0f,6.0f);glVertex3f(50.0f,50.0f,-50.0f);glTexCoord2f(6.0f,0.0f);glVertex3f(-50.0f,50.0f,50.0f);glEnd();glBegin(GL_QUADS);glNormal3f(1.0f,0.0f,0.0f);glTexCoord2f(0.0f,0.0f);glVertex3f(-50.0f,-50.0f,-50.0f);glTexCoord2f(6.0f,6.0f);glVertex3f(-50.0f,50.0f,50.0f);glTexCoord2f(0.0f,6.0f);glVertex3f(-50.0f,-50.0f,50.0f);glTexCoord2f(6.0f,0.0f);glVertex3f(-50.0f,50.0f,-50.0f);glEnd();glBegin(GL_QUADS);glNormal3f(-1.0f,0.0f,0.0f);glTexCoord2f(6.0f,6.0f);glVertex3f(50.0f,-50.0f,-50.0f);glTexCoord2f(0.0f,0.0f);glVertex3f(50.0f,50.0f,50.0f);glTexCoord2f(6.0f,0.0f);glVertex3f(50.0f,-50.0f,50.0f);glTexCoord2f(0.0f,6.0f);glVertex3f(50.0f,50.0f,-50.0f);glEnd();glPopMatrix();//当前模型矩阵出栈/**********************************绘制太阳************************************************/glBindTexture(GL_TEXTURE_2D,texture[2]);//光晕纹理glEnable(GL_BLEND);//开启混合glDisable(GL_DEPTH_TEST);//关闭深度测试//绘制太阳光晕glDisable(GL_LIGHTING);//关闭光照glBlendFunc(GL_SRC_ALPHA,GL_ONE);//半透明混合函数glColor4f(1.0f,0.5f,0.0f,0.5f);//设置RGBA值glBegin(GL_QUADS);glNormal3f(0.0f,0.0f,1.0f);glTexCoord2f(0.0f,0.0f);glVertex3f(-1.0f,-1.0f,0.0f);glTexCoord2f(1.0f,0.0f);glVertex3f(1.0f,-1.0f,0.0f);glTexCoord2f(1.0f,1.0f);glVertex3f(1.0f,1.0f,0.0f);glTexCoord2f(0.0f,1.0f);glVertex3f(-1.0f,1.0f,0.0f);glEnd();glDisable(GL_BLEND);//关闭混合glEnable(GL_DEPTH_TEST);glEnable(GL_LIGHTING);//开启光照glLightfv(GL_LIGHT1,GL_POSITION,LightPosition);//设置光源1位置glBindTexture(GL_TEXTURE_2D,texture[1]);//太阳纹理//将坐标系绕Y轴旋转fSunSpin角度,控制太阳自转glRotatef(fSunSpin,0.0,1.0,0.0);gluSphere(quadric,0.3f,32,32);//绘制太阳球体/**********************************绘制水星************************************************/glDisable(GL_LIGHT0);glEnable(GL_TEXTURE_2D);//开启纹理glPushMatrix();//当前模型视图矩阵入栈//将坐标系绕Y轴旋转fMercuOrbit角度,控制水星公转glRotatef(fMercuOrbit,0.0f,1.0f,0.0f);glRotatef(-90.0f,1.0f,0.0f,0.0f);//将坐标系绕X轴旋转-90度glTranslatef(0.5f,0.0f,0.0f);//将坐标系右移0.5fglBindTexture(GL_TEXTURE_2D,texture[3]);//水星纹理//将坐标系绕Z轴旋转fMercuSpin角度控制水星自转glRotatef(fMercuSpin,0.0f,0.0f,1.0f);gluSphere(quadric,0.04f,32,32);//水星球体glPopMatrix();//当前模型视图矩阵出栈//绘制轨道glBegin(GL_LINE_LOOP);for(angle=0;angle=-6.0)viewer[0]-=0.5;break;case'u':case'U':if(viewer[1]=-6.0)viewer[1]-=0.1;break;case'+':case'='://加速,减速,暂停g_fSpeedmodifier+=1.0f;glutPostRedisplay();break;case'':g_bOrbitOn=!g_bOrbitOn;glutPostRedisplay();break;case'-'://按'-'减小运行速度g_fSpeedmodifier-=1.0f;glutPostRedisplay();break;caseVK_ESCAPE://按ESC键时退出exit(0);break;default:break;}}voidspecial_keys(ints_keys,intx,inty){switch(s_keys){caseGLUT_KEY_F1://按F1键时切换窗口/全屏模式if(isFullScreen){glutReshapeWindow(WIN_WIDTH,WIN_HEIGHT);glutPositionWindow(30,30);isFullScreen=FALSE;}else{glutFullScreen();isFullScreen=TRUE;}break;caseGLUT_KEY_RIGHT://视角上下左右旋转if(viewer[3]=-3.0)viewer[3]-=0.1;break;caseGLUT_KEY_UP:if(viewer[4]=-4.5)viewer[4]-=0.1;break;default:break;}}voidmouse(intbtn,intstate,intx,inty)//远近视角{if(btn==GLUT_RIGHT_BUTTON&&state==GLUT_DOWN)viewer[2]+=0.3;if(btn==GLUT_LEFT_BUTTON&&state==GLUT_DOWN&&viewer;[2]>=-3.9)viewer[2]-=0.3;}voidLoadBmp(char*filename,TEXTUREIMAGE*textureImg)//载入图片{inti,j;FILE*file;BMPFILEHEADERbmpFile;BMPINFOHEADERbmpInfo;intpixel_size;//初始化纹理数据textureImg->imgWidth=0;textureImg->imgHeight=0;if(textureImg->data!=NULL){delete[]textureImg->data;}//打开文件file=fopen(filename,"rb");if(file==NULL){return;}//获取文件头rewind(file);fread(&bmpFile;,sizeof(BMPFILEHEADER),1,file);fread(&bmpInfo;,sizeof(BMPINFOHEADER),1,file);//验证文件类型if(bmpFile.bfType!=0x4D42){return;}//获取图像色彩数pixel_size=bmpInfo.biBitCount>>3;//读取文件数据textureImg->data=newunsignedchar[bmpInfo.biWidth*bmpInfo.biHeight*pixel_size];for(i=0;idata+(i*bmpInfo.biWidth+j)*pixel_size+2,sizeof(unsignedchar),1,file);//绿色分量fread(textureImg->data+(i*bmpInfo.biWidth+j)*pixel_size+1,sizeof(unsignedchar),1,file);//蓝色分量fread(textureImg->data+(i*bmpInfo.biWidth+j)*pixel_size+0,sizeof(unsignedchar),1,file);//Alpha分量if(pixel_size==4){fread(textureImg->data+(i*bmpInfo.biWidth+j)*pixel_size+3,sizeof(unsignedchar),1,file);}}}//记录图像相关参数textureImg->imgWidth=bmpInfo.biWidth;textureImg->imgHeight=bmpInfo.biHeight;textureImg->byteCount=pixel_size;fclose(file);}//程序主函数voidmain(intargc,char**argv){//读图片LoadBmp("Picture//Sky.bmp",&skyImg;);LoadBmp("Picture//Sun.bmp",&sunImg;);LoadBmp("Picture//Ray.bmp",&rayImg;);LoadBmp("Picture//Mercu.bmp",&mercuImg;);LoadBmp("Picture//Venus.bmp",&venusImg;);//金星LoadBmp("Picture//Earth.bmp",&earthImg;);LoadBmp("Picture//Mars.bmp",&marsImg;);//火星LoadBmp("Picture//Jupiter.bmp",&jupiterImg;);//木星LoadBmp("Picture//Saturn.bmp",&saturnImg;);//土星LoadBmp("Picture//Uranus.bmp",&uranusImg;);//天王星LoadBmp("Picture//Neptune.bmp",&neptuneImg;);//海王星LoadBmp("Picture//Moon.bmp",&moonImg;);glutInit(&argc;,argv);//初始化GLUT库glutInitDisplayMode(GLUT_RGBA|GLUT_DOUBLE|GLUT_DEPTH);//初始化显示模式glutInitWindowSize(WIN_WIDTH,WIN_HEIGHT);//初始化窗口大小glutInitWindowPosition(20,20);//初始化窗口位置GLuintwindow=glutCreateWindow(WIN_TITLE);//建立窗口InitGL();//初始化OpenGLglutDisplayFunc(Display);glutReshapeFunc(Reshape);glutKeyboardFunc(keyboard);glutSpecialFunc(special_keys);glutMouseFunc(mouse);glutIdleFunc(Display);//设置窗口空闲时的处理函数glutMainLoop();//进入事件处理循环}
2025/6/8 20:47:10 3.53MB 三维动画 模拟太阳系
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”人脸识别“是识别出人脸图的算法,它的输入为一个人脸特征,通过和注册在库中N个身份对应的特征进行逐个比对,找出“一个”与输入特征相似度最高的特征。
将这个最高相似度值和预设的阈值相比较,如果大于阈值,则返回该特征对应的人脸,否则返回“不在库中”
2025/6/8 18:43:08 253KB matlab
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在日常工作中,钉钉打卡成了我生活中不可或缺的一部分。然而,有时候这个看似简单的任务却给我带来了不少烦恼。 每天早晚,我总是得牢记打开钉钉应用,点击"工作台",再找到"考勤打卡"进行签到。有时候因为工作忙碌,会忘记打卡,导致考勤异常,影响当月的工作评价。而且,由于我使用的是苹果手机,有时候系统更新后,钉钉的某些功能会出现异常,使得打卡变得更加麻烦。 另外,我的家人使用的是安卓手机,他们也经常抱怨钉钉打卡的繁琐。尤其是对于那些不太熟悉手机操作的长辈来说,每次打卡都是一次挑战。他们总是担心自己会操作失误,导致打卡失败。 为了解决这些烦恼,我开始思考是否可以通过编写一个全自动化脚本来实现钉钉打卡。经过一段时间的摸索和学习,我终于成功编写出了一个适用于苹果和安卓系统的钉钉打卡脚本。
2024-04-09 15:03 15KB 钉钉 钉钉打卡