介绍了51单片机开发的基本知识、常用功能模块以及KEIL8051 C编译器;重点介绍了7个实际的应用实例,内容涉及红外数据通信系统开发、光纤延迟线系统开发、车辆行驶状态记录仪开发、SDH光端机支路单元盘开发、用单片机实现简单的Web服务器、基于Keil RTX51 Tiny的远程监控采集系统开发、Shell调试系统开发等
标签: 应用系统开发
上传时间: 2015-12-03
上传用户:13411102023
介绍了51单片机开发的基本知识、常用功能模块以及KEIL8051 C编译器;重点介绍了7个实际的应用实例,内容涉及红外数据通信系统开发、光纤延迟线系统开发、车辆行驶状态记录仪开发、SDH光端机支路单元盘开发、用单片机实现简单的Web服务器、基于Keil RTX51 Tiny的远程监控采集系统开发、Shell调试系统开发等。
标签: 应用系统开发
上传时间: 2015-12-03
上传用户:13411102023
/****************temic*********t5557***********************************/ #include <at892051.h> #include <string.h> #include <intrins.h> #include <stdio.h> #define uchar unsigned char #define uint unsigned int #define ulong unsigned long //STC12C2051AD的SFR定义 sfr WDT_CONTR = 0xe1;//stc2051的看门狗?????? /**********全局常量************/ //写卡的命令 #define write_command0 0//写密码 #define write_command1 1//写配置字 #define write_command2 2//密码写数据 #define write_command3 3//唤醒 #define write_command4 4//停止命令 #define TRUE 1 #define FALSE 0 #define OK 0 #define ERROR 255 //读卡的时间参数us #define ts_min 250//270*11.0592/12=249//取近似的整数 #define ts_max 304//330*11.0592/12=304 #define t1_min 73//90*11.0592/12=83:-10调整 #define t1_max 156//180*11.0592/12=166 #define t2_min 184//210*11.0592/12=194 #define t2_max 267//300*11.0592/12=276 //***********不采用中断处理:采用查询的方法读卡时关所有中断****************/ sbit p_U2270B_Standby = P3^5;//p_U2270B_Standby PIN=13 sbit p_U2270B_CFE = P3^3;//p_U2270B_CFE PIN=6 sbit p_U2270B_OutPut = P3^7;//p_U2270B_OutPut PIN=2 sbit wtd_sck = P1^7;//SPI总线 sbit wtd_si = P1^3; sbit wtd_so = P1^2; sbit iic_data = P1^2;//lcd IIC sbit iic_clk = P1^7; sbit led_light = P1^6;//测试绿灯 sbit led_light1 = P1^5;//测试红灯 sbit led_light_ok = P1^1;//读卡成功标志 sbit fengmingqi = P1^5; /***********全局变量************************************/ uchar data Nkey_a[4] = {0xA0, 0xA1, 0xA2, 0xA3};//初始密码 //uchar idata card_snr[4]; //配置字 uchar data bankdata[28] = {1,2,3,4,5,6,7,1,2,3,4,5,6,7,1,2,3,4,5,6,7,1,2,3,4,5,6,7}; //存储卡上用户数据(1-7)7*4=28 uchar data cominceptbuff[6] = {1,2,3,4,5,6};//串口接收数组ram uchar command; //第一个命令 uchar command1;// //uint temp; uchar j,i; uchar myaddr = 8; //uchar ywqz_count,time_count; //ywqz jishu: uchar bdata DATA; sbit BIT0 = DATA^0; sbit BIT1 = DATA^1; sbit BIT2 = DATA^2; sbit BIT3 = DATA^3; sbit BIT4 = DATA^4; sbit BIT5 = DATA^5; sbit BIT6 = DATA^6; sbit BIT7 = DATA^7; uchar bdata DATA1; sbit BIT10 = DATA1^0; sbit BIT11 = DATA1^1; sbit BIT12 = DATA1^2; sbit BIT13 = DATA1^3; sbit BIT14 = DATA1^4; sbit BIT15 = DATA1^5; sbit BIT16 = DATA1^6; sbit BIT17 = DATA1^7; bit i_CurrentLevel;//i_CurrentLevel BIT 00H(Saves current level of OutPut pin of U2270B) bit timer1_end; bit read_ok = 0; //缓存定时值,因用同一个定时器 union HLint { uint W; struct { uchar H;uchar L; } B; };//union HLint idata a union HLint data a; //缓存定时值,因用同一个定时器 union HLint0 { uint W; struct { uchar H; uchar L; } B; };//union HLint idata a union HLint0 data b; /**********************函数原型*****************/ //读写操作 void f_readcard(void);//全部读出1~7 AOR唤醒 void f_writecard(uchar x);//根据命令写不同的内容和操作 void f_clearpassword(void);//清除密码 void f_changepassword(void);//修改密码 //功能子函数 void write_password(uchar data *data p);//写初始密码或数据 void write_block(uchar x,uchar data *data p);//不能用通用指针 void write_bit(bit x);//写位 /*子函数区*****************************************************/ void delay_2(uint x) //延时,时间x*10us@12mhz,最小20us@12mhz { x--; x--; while(x) { _nop_(); _nop_(); x--; } _nop_();//WDT_CONTR=0X3C;不能频繁的复位 _nop_(); } ///////////////////////////////////////////////////////////////////// void initial(void) { SCON = 0x50; //串口方式1,允许接收 //SCON =0x50; //01010000B:10位异步收发,波特率可变,SM2=0不用接收到有效停止位才RI=1, //REN=1允许接收 TMOD = 0x21; //定时器1 定时方式2(8位),定时器0 定时方式1(16位) TCON = 0x40; //设定时器1 允许开始计时(IT1=1) TH1 = 0xfD; //FB 18.432MHz 9600 波特率 TL1 = 0xfD; //fd 11.0592 9600 IE = 0X90; //EA=ES=1 TR1 = 1; //启动定时器 WDT_CONTR = 0x3c;//使能看门狗 p_U2270B_Standby = 0;//单电源 PCON = 0x00; IP = 0x10;//uart you xian XXXPS PT1 PX1 PT0 PX0 led_light1 = 1; led_light = 0; p_U2270B_OutPut = 1; } /************************************************/ void f_readcard()//读卡 { EA = 0;//全关,防止影响跳变的定时器计时 WDT_CONTR = 0X3C;//喂狗 p_U2270B_CFE = 1;// delay_2(232); //>2.5ms /* // aor 用唤醒功能来防碰撞 p_U2270B_CFE = 0; delay_2(18);//start gap>150us write_bit(1);//10=操作码读0页 write_bit(0); write_password(&bankdata[24]);//密码block7 p_U2270B_CFE =1 ;// delay_2(516);//编程及确认时间5.6ms */ WDT_CONTR = 0X3C;//喂狗 led_light = 0; b.W = 0; while(!(read_ok == 1)) { //while(p_U2270B_OutPut);//等一个稳定的低电平?超时判断? while(!p_U2270B_OutPut);//等待上升沿的到来同步信号检测1 TR0 = 1; //deng xia jiang while(p_U2270B_OutPut);//等待下降沿 TR0 = 0; a.B.H = TH0; a.B.L = TL0; TH0 = TL0 = 0; TR0 = 1;//定时器晚启动10个周期 //同步头 if((324 < a.W) && (a.W < 353)) ;//检测同步信号1 else { TR0 = 0; TH0 = TL0 = 0; goto read_error; } //等待上升沿 while(!p_U2270B_OutPut); TR0 = 0; a.B.H = TH0; a.B.L = TL0; TH0 = TL0 = 0; TR0 = 1;//b.N1<<=8; if(a.B.L < 195);//0.5p else { TR0 = 0; TH0 = TL0 = 0; goto read_error; } //读0~7块的数据 for(j = 0;j < 28;j++) { //uchar i; for(i = 0;i < 16;i++)//8个位 { //等待下降沿的到来 while(p_U2270B_OutPut); TR0 = 0; a.B.H = TH0; a.B.L = TL0; TH0 = TL0 = 0; TR0 = 1; if(t2_max < a.W/*)&&(a.W < t2_max)*/)//1P { b.W >>= 2;//先左移再赋值 b.B.L += 0xc0; i++; } else if(t1_min < a.B.L/*)&&(a.B.L < t1_max)*/)//0.5p { b.W >>= 1; b.B.L += 0x80; } else { TR0 = 0; TH0 = TL0 = 0; goto read_error; } i++; while(!p_U2270B_OutPut);//上升 TR0 = 0; a.B.H = TH0; a.B.L = TL0; TH0 = TL0 = 0; TR0 = 1; if(t2_min < a.W/*)&&(a.W < t2_max)*/)//1P { b.W >>= 2; i++; } else if(t1_min < a.B.L/*a.W)&&(a.B.L < t1_max)*/)//0.5P //else if(!(a.W==0)) { b.W >>= 1; //temp+=0x00; //led_light1=0;led_light=1;delay_2(40000); } else { TR0 = 0; TH0 = TL0 = 0; goto read_error; } i++; } //取出奇位 DATA = b.B.L; BIT13 = BIT7; BIT12 = BIT5; BIT11 = BIT3; BIT10 = BIT1; DATA = b.B.H; BIT17 = BIT7; BIT16 = BIT5; BIT15 = BIT3; BIT14 = BIT1; bankdata[j] = DATA1; } read_ok = 1;//读卡完成了 read_error: _nop_(); } } /***************************************************/ void f_writecard(uchar x)//写卡 { p_U2270B_CFE = 1; delay_2(232); //>2.5ms //psw=0 standard write if (x == write_command0)//写密码:初始化密码 { uchar i; uchar data *data p; p = cominceptbuff; p_U2270B_CFE = 0; delay_2(31);//start gap>330us write_bit(1);//写操作码1:10 write_bit(0);//写操作码0 write_bit(0);//写锁定位0 for(i = 0;i < 35;i++) { write_bit(1);//写数据位1 } p_U2270B_CFE = 1; led_light1 = 0; led_light = 1; delay_2(40000);//测试使用 //write_block(cominceptbuff[4],p); p_U2270B_CFE = 1; bankdata[20] = cominceptbuff[0];//密码存入 bankdata[21] = cominceptbuff[1]; bankdata[22] = cominceptbuff[2]; bankdata[23] = cominceptbuff[3]; } else if (x == write_command1)//配置卡参数:初始化 { uchar data *data p; p = cominceptbuff; write_bit(1);//写操作码1:10 write_bit(0);//写操作码0 write_bit(0);//写锁定位0 write_block(cominceptbuff[4],p); p_U2270B_CFE= 1; } //psw=1 pssword mode else if(x == write_command2) //密码写数据 { uchar data*data p; p = &bankdata[24]; write_bit(1);//写操作码1:10 write_bit(0);//写操作码0 write_password(p);//发口令 write_bit(0);//写锁定位0 p = cominceptbuff; write_block(cominceptbuff[4],p);//写数据 } else if(x == write_command3)//aor //唤醒 { //cominceptbuff[1]操作码10 X xxxxxB uchar data *data p; p = cominceptbuff; write_bit(1);//10 write_bit(0); write_password(p);//密码 p_U2270B_CFE = 1;//此时数据不停的循环传出 } else //停止操作码 { write_bit(1);//11 write_bit(1); p_U2270B_CFE = 1; } p_U2270B_CFE = 1; delay_2(560);//5.6ms } /************************************/ void f_clearpassword()//清除密码 { uchar data *data p; uchar i,x; p = &bankdata[24];//原密码 p_U2270B_CFE = 0; delay_2(18);//start gap>150us //操作码10:10xxxxxxB write_bit(1); write_bit(0); for(x = 0;x < 4;x++)//发原密码 { DATA = *(p++); for(i = 0;i < 8;i++) { write_bit(BIT0); DATA >>= 1; } } write_bit(0);//锁定位0:0 p = &cominceptbuff[0]; write_block(0x00,p);//写新配置参数:pwd=0 //密码无效:即清除密码 DATA = 0x00;//停止操作码00000000B for(i = 0;i < 2;i++) { write_bit(BIT7); DATA <<= 1; } p_U2270B_CFE = 1; delay_2(560);//5.6ms } /*********************************/ void f_changepassword()//修改密码 { uchar data *data p; uchar i,x,addr; addr = 0x07;//block7 p = &Nkey_a[0];//原密码 DATA = 0x80;//操作码10:10xxxxxxB for(i = 0;i < 2;i++) { write_bit(BIT7); DATA <<= 1; } for(x = 0;x < 4;x++)//发原密码 { DATA = *(p++); for(i = 0;i < 8;i++) { write_bit(BIT7); DATA >>= 1; } } write_bit(0);//锁定位0:0 p = &cominceptbuff[0]; write_block(0x07,p);//写新密码 p_U2270B_CFE = 1; bankdata[24] = cominceptbuff[0];//密码存入 bankdata[25] = cominceptbuff[1]; bankdata[26] = cominceptbuff[2]; bankdata[27] = cominceptbuff[3]; DATA = 0x00;//停止操作码00000000B for(i = 0;i < 2;i++) { write_bit(BIT7); DATA <<= 1; } p_U2270B_CFE = 1; delay_2(560);//5.6ms } /***************************子函数***********************************/ void write_bit(bit x)//写一位 { if(x) { p_U2270B_CFE = 1; delay_2(32);//448*11.0592/120=42延时448us p_U2270B_CFE = 0; delay_2(28);//280*11.0592/120=26写1 } else { p_U2270B_CFE = 1; delay_2(92);//192*11.0592/120=18 p_U2270B_CFE = 0; delay_2(28);//280*11.0592/120=26写0 } } /*******************写一个block*******************/ void write_block(uchar addr,uchar data *data p) { uchar i,j; for(i = 0;i < 4;i++)//block0数据 { DATA = *(p++); for(j = 0;j < 8;j++) { write_bit(BIT0); DATA >>= 1; } } DATA = addr <<= 5;//0地址 for(i = 0;i < 3;i++) { write_bit(BIT7); DATA <<= 1; } } /*************************************************/ void write_password(uchar data *data p) { uchar i,j; for(i = 0;i < 4;i++)// { DATA = *(p++); for(j = 0;j < 8;j++) { write_bit(BIT0); DATA >>= 1; } } } /*************************************************/ void main() { initial(); TI = RI = 0; ES = 1; EA = 1; delay_2(28); //f_readcard(); while(1) { f_readcard(); //读卡 f_writecard(command1); //写卡 f_clearpassword(); //清除密码 f_changepassword(); //修改密码 } }
标签: 12345
上传时间: 2017-10-20
上传用户:my_lcs
C#远控源代码 * TCP network stream (IPv4 & IPv6 support) * Fast network serialization (NetSerializer) * Compressed (QuickLZ) & Encrypted (AES-128) communication * Multi-Threaded * UPnP Support * No-Ip.com Support * Visit Website (hidden & visible) * Show Messagebox * Task Manager * File Manager * Startup Manager * Remote Desktop * Remote Webcam * Remote Shell * Download & Execute * Upload & Execute * System Information * Computer Commands (Restart, Shutdown, Standby) * Keylogger (Unicode Support) * Reverse Proxy (SOCKS5) * Password Recovery (Common Browsers and FTP Clients) * Registry Editor
标签: QuasarRAT
上传时间: 2019-04-21
上传用户:netangels
uCOS51高效内核、OS人机界面SHELL的编写、
上传时间: 2019-07-31
上传用户:shouliezhe
全网最全的autojs列子,有一千六百多的脚本文件,脚本内容包含:几十种类型的UI脚本,抖音、QQ、微信、陌陌、支付宝等自动化操作的脚本、还有部分协议列表,HTTP协议(POST、GET)上传下载,接码模块,百度文字识别api模块,文件操作模块:txt文本读一行删一行,等等其他例子QQ语音红包.jsqq语音红包,没加悬浮窗,我觉得自己用脚本引擎会好点.jsQQ语音输入(Tim版)(1).jsQQ语音输入(Tim版).jsQQ资料赞.jsqq轰炸机(1).jsqq轰炸机.jsQQ选图涂鸦.jsqq顺序点赞脚本.jsQQ,微信聊天辅助脚本(文本分割填充字符) v2.jsQQ,微信聊天辅助脚本(文本分割填充字符).jsqtiao.jsrawWindow求解.jsrelationship.jsrhinoneteasecloudmusic.jsRobot.jsROOT权限启动无障碍服务.jsRSA.jsscript.jsscroll的使用.jsSecure.jssetting.jssha256.jsshell开关飞行模式.jsshuabaoviod.jsSMSCODE.jsSmsCodeExtract.jssojson.com.jssoul_灵魂匹配.jsspinner例子.jsSqlDatabase2.jsss.jsstart(2).jssun_rise&set.jssurfaceView(简单示例).jsSwitch控件.jstcp连接客户端.jste.jstest(1).jstest(2).jstest(3).jstest(4).jstest.jstestTouch.jstestyinhe.jsTheWolf_API.jstoast图片加文字.jstoast替代函数.jstranslate.jsTrun(翻翻乐).jsts-00-dist.jsTS微信跳一跳满分(10000)飞速版.jsts跳一跳r9s最新版.jsTS跳一跳全机型通用版(2).jsts跳一跳全机型通用版(3).jsts跳一跳全机型通用版.jsTS跳一跳脚本正确显示方式(支持root).jsTS跳一跳自动.jsTS跳一跳过检测.jstt.jsTTS(1).jstts.jstts2.jstts3.jsTTS抢语音红包,作者A酷安(?????)----锦,详细使用看代码注释.jstxt.jsuc答题.jsui 悬浮窗动画+滑动界面.jsUI(2).jsUI.jsuitest - 副本.jsui。.jsui下对话框文件选择器(1).jsui中的延时除了多线程有别的办法吗.jsui保存控件属性3.jsUI全选.jsUI切换.jsui列子.jsui右下角展开按钮.jsui多界面.jsui属性(1).jsui开关控件(1).jsui开关控件.jsUI文件选择.jsUI显示日志.jsUI画时钟作者xxoo.jsui相对布局.jsUI示例(支付UI).jsui示例app下方tabs.jsui示例下方tabs(1.0.0-1 修复宽度不适配问题).jsUI脚本使用无障碍的最佳实践.jsUI轮播图.jsui选择文件.jsUI验证码(有BUG).jsuki_0.jsUki消息交互式回复.jsUnlock.jsUntitled-1.jsuntitled.jsUTF.jsvip视频解析2.1.jsvscode连接不上手机解决办法.jsWannaCry(仅为娱乐).jsWeather.jswebScript.jsWebViewClient的使用方法.jswebViewUA切换3.jswebView填充表单加alert.jsWebView多页面浏览(1).jsWebView多页面浏览.jswebView提取图片地址并加载.jswebView获取图片地址.jswebview获取网页原图.jswebview获取网页原图保存.jswebView输入关键词搜索.jsweb拦截修改.jsWeChat.jsWechatJumpingAI(2).jsWechatJumpingAI(3).jswechatjumpingai(4).jsWechatJumpingAI.jswife紧急掉线(autojs破解版专用).js.jswifi设置代理(未完成).js.js
标签: autojs
上传时间: 2021-11-06
上传用户:
SIM7600C 全网通4G模块软硬件设计技术资料包linux驱动SIM7500_SIM7600 Series_AT Command Manual_V1.01.pdfsim7600C-CE.zipSIM7600CE_SIM7600C 硬件设计手册_V1.01.pdfSIM7600CE_SIM7600C-PCIE_Hardware_Design_V1.00.pdfSIM7600CE_SIM7600C_Hardware Design_V1.01.pdfSIM7600CE_SPEC CN_201607.pdfSIM7600CE_SPEC EN_201607.pdfSIM7600CE_TAC_86147703.pdfSIM7600C_SIM7100C_Hardware Comparion_V1.00.pdfSIM7600C_SIM7100C_硬件差异文档_V1.01.pdfSIM7600C_SPEC CN_201607.pdfSIM7600C_SPEC EN_201607.pdfSIM7600C_TAC_86147603.pdf
上传时间: 2021-11-09
上传用户:
1. Scope ......................................................................................................................................................................... 12. DDR4 SDRAM Package Pinout and Addressing ....................................................................................................... 22.1 DDR4 SDRAM Row for X4,X8 and X16 ................................................................................................................22.2 DDR4 SDRAM Ball Pitch........................................................................................................................................22.3 DDR4 SDRAM Columns for X4,X8 and X16 ..........................................................................................................22.4 DDR4 SDRAM X4/8 Ballout using MO-207......................................................................................................... 22.5 DDR4 SDRAM X16 Ballout using MO-207.............................................................................................................32.6 Pinout Description ..................................................................................................................................................52.7 DDR4 SDRAM Addressing.....................................................................................................................................73. Functional Description ...............................................................................................................................................83.1 Simplified State Diagram ....................................................................................................................................83.2 Basic Functionality..................................................................................................................................................93.3 RESET and Initialization Procedure .....................................................................................................................103.3.1 Power-up Initialization Sequence .............................................................................................................103.3.2 Reset Initialization with Stable Power ......................................................................................................113.4 Register Definition ................................................................................................................................................123.4.1 Programming the mode registers .............................................................................................................123.5 Mode Register ......................................................................................................................................................134. DDR4 SDRAM Command Description and Operation ............................................................................................. 244.1 Command Truth Table ..........................................................................................................................................244.2 CKE Truth Table ...................................................................................................................................................254.3 Burst Length, Type and Order ..............................................................................................................................264.3.1 BL8 Burst order with CRC Enabled .........................................................................................................264.4 DLL-off Mode & DLL on/off Switching procedure ................................................................................................274.4.1 DLL on/off switching procedure ...............................................................................................................274.4.2 DLL “on” to DLL “off” Procedure ..............................................................................................................274.4.3 DLL “off” to DLL “on” Procedure ..............................................................................................................284.5 DLL-off Mode........................................................................................................................................................294.6 Input Clock Frequency Change ............................................................................................................................304.7 Write Leveling.......................................................................................................................................................314.7.1 DRAM setting for write leveling & DRAM termination function in that mode ............................................324.7.2 Procedure Description .............................................................................................................................334.7.3 Write Leveling Mode Exit .........................................................................................................................34
标签: DDR4
上传时间: 2022-01-09
上传用户:
MICRO HDMI TF卡 USBTYPE-C USB-侧立式 摄像头FPC-24P OLED屏模块AD集成库(原理图库+3D封装库),).IntLib后缀文件,拆分后文件为PcbLib+SchLib格式,Altium Designer原理图库+PCB封装库,已验证使用,可以直接应用到你的项目开发。器件列表:ANT-Rainsun-AP5120AZ1045-04F BSN20BKR N-Channel 60 V 2.8 Ohm 310 mW 0.49 nC Surface Mount Trench MosFet - SOT-23ButtonTACT_3x4x2_180ButtonCP2102 USB转TTLESD-0402 ESDHDR2x4_2.54 HeaderLED_0402 LEDLM4871LP2992 LDOMIC Micro-HDMI Conn Micro HDMI RCP 19 POS 0.4mm Solder RA SMD 19 Terminal 1 Port Micro HDMI Embossed T/RNL27WZU04DF OLED-6432 显示屏OV2640 Header, 24-PinQuantum-Quark-Core RJ45座 RJ45座RT9011 TF卡座 8脚自弹USB-Type-C-TOP USB-WiFi-ANTUSB-侧立式 USB A Skt, Upright/Flag, R/A GF, W/kinked shell stake, tray电容-0402 Capacitor电容-0603 Capacitor电阻-0402 Resistor二极管-5B5817WS 40V晶振-4Pin-无源 2520无源选择跳线 Resistor
上传时间: 2022-01-09
上传用户:
FPGA那些事儿--Modelsim仿真技巧REV6.0,经典Modelsim学习开发设计经验书籍-331页。前言笔者一直以来都在纠结,自己是否要为仿真编辑相关的教程呢?一般而言,Modelsim 等价仿真已经成为大众的常识,但是学习仿真是否学习Modelsim,笔者则是一直保持保留的态度。笔者认为,仿真是Modelsim,但是Modelsim 不是仿真,严格来讲Modelsim只是仿真所需的工具而已,又或者说Modelsim 只是学习仿真的一部小插曲而已。除此之外,笔者也认为仿真可以是验证语言,但是验证语言却不是仿真,因为验证语言只是仿真的一小部分而已,事实上仿真也不一定需要验证语言。常规告诉笔者,仿真一定要学习Modelsim 还有验证语言,亦即Modelsim 除了学习操作软件以外,我们还要熟悉TCL 命令(Tool Command Language)。此外,学习验证语言除了掌握部分关键字以外,还要记忆熟悉大量的系统函数,还有预处理。年轻的笔者,因为年少无知就这样上当了,最后笔者因为承受不了那巨大的学习负担,结果自爆了。经过惨痛的经历以后,笔者重新思考“仿真是什么?”,仿真难道是常规口中说过的东西吗?还是其它呢?苦思冥想后,笔者终于悟道“仿真既是虚拟建模”这一概念。虚拟建模还有实际建模除了概念(环境)的差别以外,两者其实是同样的东西。换句话说,一套用在实际建模的习惯,也能应用在仿真的身上。按照这条线索继续思考,笔者发现仿真其实是复合体,其中包括建模,时序等各种基础知识。换言之,仿真不仅需要一定程度的基础,仿真不能按照常规去理解,不然脑袋会短路。期间,笔者发现愈多细节,那压抑不了的求知欲也就愈烧愈旺盛,就这样日夜颠倒研究一段时间以后,笔者终于遇见仿真的关键,亦即个体仿真与整体仿真之间的差异。常规的参考书一般都是讨论个体仿真而已,然而它们不曾涉及整体仿真。一个过多模块其中的仿真对象好比一块大切糕,压倒性的仿真信息会让我们喘不过起来,为此笔者开始找寻解决方法。后来笔者又发现到,早期建模会严重影响仿真的表现,如果笔者不规则分化整体模块,仿真很容易会变得一团糟,而且模块也会失去连接性。笔者愈是深入研究仿真,愈是发现以往不曾遇见的细节问题,然而这些细节问题也未曾出现在任何一本参考书的身上。渐渐地,笔者开始认识,那些所谓的权威还有常规,从根本上只是外表好看的纸老虎而已,细节的涉及程度完全不行。笔者非常后悔,为什么自己会浪费那么多时间在它们的身上。可恶的常规!快把笔者的青春还回来! 所以说,常规什么的最讨厌了,最好统统都给我爆炸去吧!呜咕,过多怨气实在一言难尽,欲知详情,读者自己看书去吧...
上传时间: 2022-05-02
上传用户: