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本文讨论了电力网络中稳定性的重要性,并提到了如何通过一系列措施来确保电力网络的稳定运行。文中强调了电力网络与各行业之间的紧密联系,以及面对挑战时保持稳定的策略。
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#include <reg52.h> //------------------------- Òý&frac12;Ŷ¨Òå --------------------------// sbit BEEP = P2^0; //·äÃùÆ÷¿ØÖÆÒý&frac12;Å£¬?µçÆ&frac12;ÓÐЧ sbit LED1 = P2^3; //LED1£¬¿ØÖÆÒý&frac12;Å£¬µÍµçÆ&frac12;ÓÐЧ sbit LED2 = P2^2; //LED2£¬¿ØÖÆÒý&frac12;Å£¬µÍµçÆ&frac12;ÓÐЧ sbit LED3 = P2^1; //LED3£¬¿ØÖÆÒý&frac12;Å£¬µÍµçÆ&frac12;ÓÐЧ //ÊýÂë&sup1;ÜÒý&frac12;Ŷ¨Òå #define duanPore P0 //ÊýÂë&sup1;ܶοØÖƶ˿ڣ¬¸ßµçÆ&frac12;ÓÐЧ sbit DIG1 = P2^4; //ÊýÂë&sup1;ܵÚ1λλѡ¿ØÖƶ˿ڣ¬µÍµçÆ&frac12;ÓÐЧ sbit DIG2 = P2^5; //ÊýÂë&sup1;ܵÚ2λλѡ¿ØÖƶ˿ڣ¬µÍµçÆ&frac12;ÓÐЧ sbit DIG3 = P2^6; //ÊýÂë&sup1;ܵÚ3λλѡ¿ØÖƶ˿ڣ¬µÍµçÆ&frac12;ÓÐЧ sbit DIG4 = P2^7; //ÊýÂë&sup1;ܵÚ4λλѡ¿ØÖƶ˿ڣ¬µÍµçÆ&frac12;ÓÐЧ //°´&frac14;üÒý&frac12;Ŷ¨Òå sbit KEY1 = P1^0; //1ºÅÑ¡ÊÖ sbit KEY2 = P1^1; //2ºÅÑ¡ÊÖ sbit KEY3 = P1^2; //3ºÅÑ¡ÊÖ sbit KEY4 = P1^3; //4ºÅÑ¡ÊÖ sbit KEY5 = P1^4; //5ºÅÑ¡ÊÖ sbit KEY6 = P1^5; //6ºÅÑ¡ÊÖ sbit KEY7 = P3^2; //Ö÷&sup3;ÖÈË&frac14;ü sbit KEY8 = P3^3; //ÉèÖÃ&frac14;ü //---------------------- È«&frac34;Ö±äÁ¿¶¨Òå --------------------// //ÊýÂë&sup1;ܶÎÂë±í£¬ÊÊÓÃÓÚ&sup1;²ÒõÊýÂë&sup1;Ü unsigned char code tab_duan[19] = { 0x3f,0x06,0x5b,0x4f,0x66,0x6d,0x7d,0x07,0x7f,0x6f, //0~9 0x77,0x7c,0x39,0x5e,0x79,0x71, //A~F 0x40,0x00,0x48 //&#39;-&#39;£¬&sup1;رÕÏÔÊ&frac34;£¬&#39;=&#39; }; unsigned char dat_buf[4] = {17, 17, 0, 5}; //ÏÔÊ&frac34;Êý&frac34;Ý»º´æÇø£¬Ä¬ÈÏÉϵçÏÔÊ&frac34;" 05" int time = 5, time1 = 5, time2 = 20; //µ&sup1;&frac14;ÆÊ±Ê±&frac14;䣬time1£ºÇÀ´ðµ&sup1;&frac14;ÆÊ±Ê±&frac14;䣬time2£º»Ø´ðµ&sup1;&frac14;ÆÊ±Ê±&frac14;ä unsigned char i = 0; unsigned int count = 0; //&frac14;ÆÊý»º´æ±äÁ¿ bit flag_lock = 1; //&frac14;üÅÌËø¶¨±êÖ&frac34;£¬1£º²»Ëø¶¨£¬0£ºËø¶¨ //------------------------------- º¯ÊýÉùÃ÷ ------------------------------------// void DelayMs(unsigned int ms); //ÑÓʱº¯Êý£¬µ¥Î»£ºms void dig_scan(unsigned char *dat); unsigned char KeyScan(void); //¶ÀÁ¢°´&frac14;üɨÃè void InitTimer0(void); //¶¨Ê±Æ÷0&sup3;õÊ&frac14;»¯ void alarm(void); //±¨&frac34;¯º¯Êý void AnswerTask(void); //ÇÀ´ðÈÎÎñ void SetTime(void); //ÉèÖõ&sup1;&frac14;ÆÊ±Ê±&frac14;ä /* Ö÷º¯Êý */ void main(void) { BEEP = 0; //ÉϵçĬÈÏ&sup1;رշäÃùÆ÷ LED1 = 1; InitTimer0(); //¶¨Ê±Æ÷0&sup3;õÊ&frac14;»¯ time = time1; //ÉϵçĬÈÏÇÀ´ðµ&sup1;&frac14;ÆÊ± while(1) { if(KeyScan() == 7) //Èç&sup1;ûÖ÷&sup3;ÖÈË&frac14;ü°´Ï£¬Ôò&frac12;øÐÐÇÀ´ð { alarm(); //·äÃùÆ÷ÏìÒ»Éù AnswerTask(); //&frac12;øÐÐÇÀ´ðÈÎÎñ } if(KeyScan() == 8) //Èç&sup1;ûÉèÖÃ&frac14;ü°´Ï£¬&frac12;øÈëÉèÖõ&sup1;&frac14;ÆÊ±Ê±&frac14;ä { alarm(); //·äÃùÆ÷ÏìÒ»Éù SetTime(); //&frac12;øÈëÉè&frac14;Ƶ&sup1;&frac14;ÆÊ±Ê±&frac14;ä } dat_buf[0] = 17; dat_buf[1] = 17; dat_buf[2] = time / 10; //È¡&sup3;öµ&sup1;&frac14;ÆÊ±µÄʮλÊý dat_buf[3] = time % 10; //È¡&sup3;öµ&sup1;&frac14;ÆÊ±µÄ¸öλÊý dig_scan(dat_buf); //²âÊÔÊýÂë&sup1;ÜÏÔÊ&frac34; } } /* ÑÓʱº¯Êý£¬µ¥Î»£ºms */ void DelayMs(unsigned int ms) { unsigned char a,b,c; while(--ms) { for(c=1;c>0;c--) for(b=142;b>0;b--) for(a=2;a>0;a--); } } /* ÊýÂë&sup1;ÜÏÔÊ&frac34;ɨÃè */ void dig_scan(unsigned char *dat) { /* ¶¯Ì¬É¨Ãè´¦Àí */ switch(i) { case 0: { duanPore = tab_duan[dat[0]]; //ÏÔÊ&frac34;µÚ1λÊýÂë&sup1;ÜÄÚÈÝ DIG1 = 0; break; } case 1: { duanPore = tab_duan[dat[1]]; //ÏÔÊ&frac34;µÚ2λÊýÂë&sup1;ÜÄÚÈÝ DIG2 = 0; //ѡͨµÚ2λÊýÂë&sup1;Ü break; } case 2: { duanPore = tab_duan[dat[2]]; //ÏÔÊ&frac34;µÚ3λÊýÂë&sup1;ÜÄÚÈÝ DIG3 = 0; //ѡͨµÚ3λÊýÂë&sup1;Ü break; } case 3: { duanPore = tab_duan[dat[3]]; //ÏÔÊ&frac34;µÚ4λÊýÂë&sup1;ÜÄÚÈÝ DIG4 = 0; //ѡͨµÚ4λÊýÂë&sup1;Ü break; } default: break; } DelayMs(5); //ɨÃèÑÓʱ10ms£¬¸ù&frac34;Ýʵ&frac14;ÊÇé¿öÊʵ±Ð޸ĸÄÑÓʱʱ&frac14;ä DIG1 = 1; //ÏûÒþ DIG2 = 1; DIG3 = 1; DIG4 = 1; ++i; //ɨÃè±äÁ¿Ñ­»· if(i > 3) i = 0; } /* ¶ÀÁ¢°´&frac14;üɨÃè */ unsigned char KeyScan(void) { if(KEY1 == 0) //Èç&sup1;û°´&frac14;ü1°´Ï { DelayMs(10); //ÑÓʱ10msÈ¥&sup3;ý°´&frac14;ü¶¶¶¯ if(KEY1 == 0) //ÔÙÈ·ÈÏÒ»´Î°´&frac14;ü°´Ï£¬±íÊ&frac34;µ&frac12;Õâ°´&frac14;üÒÑ&frac34;­Îȶ¨ÁË return 1; //Êä&sup3;ö°´&frac14;üÖµ1 } if(KEY2 == 0) //Èç&sup1;û°´&frac14;ü2°´Ï { DelayMs(10); //ÑÓʱ10msÈ¥&sup3;ý°´&frac14;ü¶¶¶¯ if(KEY2 == 0) //ÔÙÈ·ÈÏÒ»´Î°´&frac14;ü°´Ï£¬±íÊ&frac34;µ&frac12;Õâ°´&frac14;üÒÑ&frac34;­Îȶ¨ÁË return 2; //Êä&sup3;ö°´&frac14;üÖµ2 } if(KEY3 == 0) //Èç&sup1;û°´&frac14;ü3°´Ï { DelayMs(10); //ÑÓʱ10msÈ¥&sup3;ý°´&frac14;ü¶¶¶¯ if(KEY3 == 0) //ÔÙÈ·ÈÏÒ»´Î°´&frac14;ü°´Ï£¬±íÊ&frac34;µ&frac12;Õâ°´&frac14;üÒÑ&frac34;­Îȶ¨ÁË return 3; //Êä&sup3;ö°´&frac14;üÖµ3 } if(KEY4 == 0) //Èç&sup1;û°´&frac14;ü4°´Ï { DelayMs(10); //ÑÓʱ10msÈ¥&sup3;ý°´&frac14;ü¶¶¶¯ if(KEY4 == 0) //ÔÙÈ·ÈÏÒ»´Î°´&frac14;ü°´Ï£¬±íÊ&frac34;µ&frac12;Õâ°´&frac14;üÒÑ&frac34;­Îȶ¨ÁË return 4; //Êä&sup3;ö°´&frac14;üÖµ4 } if(KEY5 == 0) //Èç&sup1;û°´&frac14;ü5°´Ï { DelayMs(10); //ÑÓʱ10msÈ¥&sup3;ý°´&frac14;ü¶¶¶¯ if(KEY5 == 0) //ÔÙÈ·ÈÏÒ»´Î°´&frac14;ü°´Ï£¬±íÊ&frac34;µ&frac12;Õâ°´&frac14;üÒÑ&frac34;­Îȶ¨ÁË return 5; //Êä&sup3;ö°´&frac14;üÖµ5 } if(KEY6 == 0) //Èç&sup1;û°´&frac14;ü6°´Ï { DelayMs(10); //ÑÓʱ10msÈ¥&sup3;ý°´&frac14;ü¶¶¶¯ if(KEY6 == 0) //ÔÙÈ·ÈÏÒ»´Î°´&frac14;ü°´Ï£¬±íÊ&frac34;µ&frac12;Õâ°´&frac14;üÒÑ&frac34;­Îȶ¨ÁË return 6; //Êä&sup3;ö°´&frac14;üÖµ6 } if(KEY7 == 0) //Èç&sup1;û°´&frac14;ü7°´Ï { DelayMs(10); //ÑÓʱ10msÈ¥&sup3;ý°´&frac14;ü¶¶¶¯ if(KEY7 == 0) //ÔÙÈ·ÈÏÒ»´Î°´&frac14;ü°´Ï£¬±íÊ&frac34;µ&frac12;Õâ°´&frac14;üÒÑ&frac34;­Îȶ¨ÁË return 7; //Êä&sup3;ö°´&frac14;üÖµ7 } if(KEY8 == 0) //Èç&sup1;û°´&frac14;ü8°´Ï { DelayMs(10); //ÑÓʱ10msÈ¥&sup3;ý°´&frac14;ü¶¶¶¯ if(KEY8 == 0) //ÔÙÈ·ÈÏÒ»´Î°´&frac14;ü°´Ï£¬±íÊ&frac34;µ&frac12;Õâ°´&frac14;üÒÑ&frac34;­Îȶ¨ÁË return 8; //Êä&sup3;ö°´&frac14;üÖµ8 } return 0; //ÎÞ°´&frac14;ü°´ÏÂÊä&sup3;ö0 } /* ¶¨Ê±Æ÷0&sup3;õÊ&frac14;»¯ */ void InitTimer0(void) { TMOD = 0x01; //ÅäÖö¨Ê±Æ÷0Ϊ&sup1;¤×÷Ä£Ê&frac12;1£¬16λ¶¨Ê±Æ÷ TH0 = (65536 - 10000) / 256; //¶¨Ê±10ms TL0 = (65536 - 10000) % 256; EA = 1; //´ò¿ª×ÜÖÐ¶Ï ET0 = 1; //´ò¿ª¶¨Ê±Æ÷0ÖÐ¶Ï TR0 = 0; //ÉϵçĬÈÏ&sup1;رն¨Ê±Æ÷0 } /* ¶¨Ê±Æ÷0ÖжϷþÎñº¯Êý£¬10ms&frac12;øÒ»´ÎÖÐ¶Ï */ void Timer0Interrupt(void) interrupt 1 { TH0 = (65536 - 10000) / 256; //¶¨Ê±10ms£¬ÖØÐÂ×°ÔØ&frac14;ÆÊýÖµ TL0 = (65536 - 10000) % 256; ++count; if(count > 100) //1sʱ&frac14;ä&frac14;ÆË㣺10ms * 100 = 1s { count = 0; //&frac14;ÆÊýÖµÇåÁã --time; //µ&sup1;&frac14;ÆÊ±Ê±&frac14;ä&frac14;õÒ»´Î if(time <= 0) //Èç&sup1;ûµ&sup1;&frac14;ÆÊ±&frac12;áÊø£¬Ôò&sup1;رն¨Ê±Æ÷0£¬Í£Ö&sup1;µ&sup1;&frac14;ÆÊ±£¬²¢Éù&sup1;ⱨ&frac34;¯ºÍËø¶¨&frac14;üÅÌ { TR0 = 0; //&sup1;رն¨Ê±Æ÷0 BEEP = 1; //Éù&sup1;ⱨ&frac34;¯ LED1 = 0; flag_lock = 0; //Ëø¶¨&frac14;üÅÌ } } } /* ±¨&frac34;¯º¯Êý */ void alarm(void) { BEEP = 1; //·äÃùÆ÷ÏìһϠDelayMs(300); //ÑÓʱ300ms BEEP = 0; } /* ʵÏÖÇÀ´ðÈÎÎñ */ void AnswerTask(void) { unsigned char key_val; //°´&frac14;üÖµ»º´æ TR0 = 1; //Æô¶¯¶¨Ê±Æ÷0£¬¿ªÊ&frac14;µ&sup1;&frac14;ÆÊ± while(1) { if(flag_lock == 1) { key_val = KeyScan(); //»ñÈ¡°´&frac14;üÖµ switch(key_val) { case 1: { dat_buf[0] = key_val; //µÚ1λÊýÂë&sup1;ÜÏÔÊ&frac34;1ºÅ dat_buf[1] = 16; //ÏÔÊ&frac34;&#39;-&#39; time = time2; //»Ø´ðµ&sup1;&frac14;ÆÊ±£¬Ñ¡Êֻشðʱ&frac14;ä alarm(); //·äÃùÆ÷ÏìһϠflag_lock = 0; //Ëø¶¨&frac14;üÅÌ break; } case 2: { dat_buf[0] = key_val; //µÚ2λÊýÂë&sup1;ÜÏÔÊ&frac34;2ºÅ dat_buf[1] = 16; //ÏÔÊ&frac34;&#39;-&#39; time = time2; //»Ø´ðµ&sup1;&frac14;ÆÊ±£¬Ñ¡Êֻشðʱ&frac14;ä alarm(); //·äÃùÆ÷ÏìһϠflag_lock = 0; break; } case 3: { dat_buf[0] = key_val; //µÚ3λÊýÂë&sup1;ÜÏÔÊ&frac34;3ºÅ dat_buf[1] = 16; //ÏÔÊ&frac34;&#39;-&#39; time = time2; alarm(); //·äÃùÆ÷ÏìһϠflag_lock = 0; break; } case 4: { dat_buf[0] = key_val; //µÚ4λÊýÂë&sup1;ÜÏÔÊ&frac34;4ºÅ dat_buf[1] = 16; //ÏÔÊ&frac34;&#39;-&#39; time = time2; alarm(); //·äÃùÆ÷ÏìһϠflag_lock = 0; break; } case 5: { dat_buf[0] = key_val; //µÚ5λÊýÂë&sup1;ÜÏÔÊ&frac34;5ºÅ dat_buf[1] = 16; //ÏÔÊ&frac34;&#39;-&#39; time = time2; alarm(); //·äÃùÆ÷ÏìһϠflag_lock = 0; break; } case 6: { dat_buf[0] = key_val; //µÚ6λÊýÂë&sup1;ÜÏÔÊ&frac34;6ºÅ dat_buf[1] = 16; //ÏÔÊ&frac34;&#39;-&#39; time = time2; alarm(); //·äÃùÆ÷ÏìһϠflag_lock = 0; break; } default: break; } } dat_buf[2] = time / 10; //È¡&sup3;öµ&sup1;&frac14;ÆÊ±µÄʮλÊý dat_buf[3] = time % 10; //È¡&sup3;öµ&sup1;&frac14;ÆÊ±µÄ¸öλÊý dig_scan(dat_buf); //ÊýÂë&sup1;ÜÏÔÊ&frac34;ÄÚÈÝ } } /* ÉèÖõ&sup1;&frac14;ÆÊ±Ê±&frac14;ä */ void SetTime(void) { unsigned char mode = 0; //0£ºµ÷&frac12;ÚÇÀ´ðµ&sup1;&frac14;ÆÊ±£¬1£ºµ÷&frac12;ڻشðµ&sup1;&frac14;ÆÊ±£¬2£ºÍË&sup3;ö while(1) { if(KeyScan() == 8) //Èç&sup1;ûÔٴΰ´ÏÂÉèÖÃ&frac14;ü£¬ÔòÍË&sup3;öÉèÖÃ&sup1;¦ÄÜ { alarm(); //·äÃùÆ÷ÏìÒ»Éù ++mode; if(mode >= 2) break; //Ìø&sup3;öµ±Ç°ËÀÑ­»· } if(KeyScan() == 7) //Èç&sup1;û°´ÏÂ&frac14;Ó&frac14;ü£¬&frac12;øÐе÷ʱ { alarm(); //·äÃùÆ÷ÏìÒ»Éù if(mode == 0) //µ÷&frac12;ÚÇÀ´ðµ&sup1;&frac14;ÆÊ± { ++time1; //µ&sup1;&frac14;ÆÊ±Ê±&frac14;ä&frac14;ÓÒ»´Î if(time1 > 30) //µ÷ʱ·¶Î§£º5s~30s time1 = 5; } if(mode == 1) //µ÷&frac12;ڻشðµ&sup1;&frac14;ÆÊ± { ++time2; //µ&sup1;&frac14;ÆÊ±Ê±&frac14;ä&frac14;ÓÒ»´Î if(time2 > 30) //µ÷ʱ·¶Î§£º5s~30s time2 = 5; } } /* µ÷ʱÏÔÊ&frac34;´¦Àí */ if(mode == 0) { dat_buf[0] = 16; //ÏÔÊ&frac34;&#39;-&#39; dat_buf[1] = time1 / 10; //È¡&sup3;öµ&sup1;&frac14;ÆÊ±µÄʮλÊý dat_buf[2] = time1 % 10; //È¡&sup3;öµ&sup1;&frac14;ÆÊ±µÄ¸öλÊý dat_buf[3] = 16; //ÏÔÊ&frac34;&#39;-&#39; } if(mode == 1) { dat_buf[0] = 18; //ÏÔÊ&frac34;&#39;=&#39; dat_buf[1] = time2 / 10; //È¡&sup3;öµ&sup1;&frac14;ÆÊ±µÄʮλÊý dat_buf[2] = time2 % 10; //È¡&sup3;öµ&sup1;&frac14;ÆÊ±µÄ¸öλÊý dat_buf[3] = 18; //ÏÔÊ&frac34;&#39;=&#39; } dig_scan(dat_buf); //ÊýÂë&sup1;ÜÏÔÊ&frac34;ÄÚÈÝ } time = time1; //»Øµ&frac12;Ö÷&frac12;çÃæÏÔÊ&frac34;ÇÀ´ðµ&sup1;&frac14;ÆÊ± }写出一个这样的代码,主持人是1.0,时间调节是1.1,选手1.2-1.7,蜂鸣器是3.3,LED是3.4,数码管1234是2.0-2.3
09-19
#include "sys.h" #include "delay.h" #include "usart.h" #include "includes.h" #include "led.h" /************************************************ ALIENTEK &frac34;«Ó¢°æSTM32¿ª·¢°åUCOSʵÑé Àý6-1 UCOSIII ÈÎÎñ´´&frac12;¨ÓÚÉ&frac34;&sup3;ý &frac14;&frac14;ÊõÖ§&sup3;Ö£ºwww.openedv.com ÌÔ±¦µêÆÌ£ºhttp://eboard.taobao.com &sup1;Ø×¢Î¢ÐÅ&sup1;«ÖÚÆ&frac12;̨΢Ðźţº"ÕýµãÔ­×Ó"£¬Ãâ·Ñ»ñÈ¡STM32×ÊÁÏ¡£ &sup1;ãÖÝÊÐÐÇÒíµç×Ó¿Æ&frac14;&frac14;ÓÐÏÞ&sup1;«Ë&frac34; ×÷ÕߣºÕýµãÔ­×Ó @ALIENTEK ************************************************/ //UCOSIIIÖÐÒÔÏÂÓÅÏÈ&frac14;¶Óû§&sup3;ÌÐò²»ÄÜÊ&sup1;Óã¬ALIENTEK //&frac12;«ÕâЩÓÅÏÈ&frac14;¶·ÖÅ䏸ÁËUCOSIIIµÄ5¸öϵÍ&sup3;ÄÚ²¿ÈÎÎñ //ÓÅÏÈ&frac14;¶0£ºÖжϷþÎñ·þÎñ&sup1;ÜÀíÈÎÎñ OS_IntQTask() //ÓÅÏÈ&frac14;¶1£ºÊ±ÖÓ&frac12;ÚÅÄÈÎÎñ OS_TickTask() //ÓÅÏÈ&frac14;¶2£º¶¨Ê±ÈÎÎñ OS_TmrTask() //ÓÅÏÈ&frac14;¶OS_CFG_PRIO_MAX-2£ºÍ&sup3;&frac14;ÆÈÎÎñ OS_StatTask() //ÓÅÏÈ&frac14;¶OS_CFG_PRIO_MAX-1£º¿ÕÏÐÈÎÎñ OS_IdleTask() /* ΪÁËʵÏÖÁÙ&frac12;çÇøµÄ±£»¤£¬UCOSIIIÌá&sup1;©ÁËÁ&frac12;¸öºê£ºOS_CRITICAL_ENTER() ºÍOS_CRITICAL_EXIT()¡£ µ±Ò»¸öÈÎÎñ»òÖжÏ&frac12;øÈëÁÙ&frac12;çÇøÊ±£¬Ëü±ØÐëµ÷ÓÃOS_CRITICAL_ENTER()ºêÒÔ»ñµÃÁÙ&frac12;çÇøµÄ±£»¤¡£ Õâ¸öºê&frac12;«&frac12;ûÓÃÖжϣ¬ÒÔÈ·±£Ö´ÐÐÁÙ&frac12;çÇøµÄ´úÂë²»»á±»ÖжϻòÇÀÕ&frac14;£¬´Ó¶ø±£Ö¤ÁËÁÙ&frac12;çÇøµÄÔ­×ÓÐÔ¡£ µ±´úÂëÖ´ÐÐÍê±Ïʱ£¬ÈÎÎñ»òÖжϱØÐëµ÷ÓÃOS_CRITICAL_EXIT()ºêÀ´»Ö¸´Öжϣ¬ÒÔ±ãÆäËûÈÎÎñºÍÖжϿÉÒÔ·ÃÎÊ&sup1;²Ïí×ÊÔ´²¢Ö´ÐÐËüÃǵĴúÂë¡£ Ê&sup1;ÓÃOS_CRITICAL_ENTER()ºÍOS_CRITICAL_EXIT()ºêÀ´±£»¤ÁÙ&frac12;çÇø£¬ ÄÇôÔÚÈÎÎñT1Ö´ÐеÄÕû¸öʱ&frac14;äÄÚ£¬ÖжÏ&frac12;«±»&frac12;ûÓ㬠ÆäËûÈÎÎñ&frac12;«²»ÄÜ·ÃÎÊ&sup1;²Ïí×ÊÔ´²¢ÇÒÁÙ&frac12;çÇøµÄ´úÂë&frac12;«ÒÔÔ­×Ó·&frac12;Ê&frac12;Ö´ÐÐÍê±Ï¡£ ÕâÑù¿ÉÒÔÈ·±£ÁÙ&frac12;çÇø´úÂëµÄÕýÈ·ÐÔ£¬±ÜÃâ&frac34;ºÕùÌõ&frac14;þºÍÆäËûͬ²&frac12;ÎÊÌâ¡£ */ /* ÔÚUCOS IIIÖУ¬ÈÎÎñµÄÖ´ÐÐË&sup3;ÐòÊÇ»ùÓÚÓÅÏÈ&frac14;¶µ÷¶ÈËã·¨¡£ ÿ¸öÈÎÎñ¶&frac14;ÓÐÒ»¸öÓÅÏÈ&frac14;¶£¨0µ&frac12;255£©£¬&frac34;ßÓиü¸ßÓÅÏÈ&frac14;¶µÄÈÎÎñ±ÈµÍÓÅÏÈ&frac14;¶µÄÈÎÎñ¸ü¿ÉÄܵõ&frac12;µ÷¶È¡£ UCOS IIIÊ&sup1;ÓÃÇÀÕ&frac14;Ê&frac12;µ÷¶È£¬ÕâÒâζ×ŵ±ÓÐÒ»¸ö¸ßÓÅÏÈ&frac14;¶µÄÈÎÎñ&frac34;ÍÐ÷ʱ£¬µ±Ç°ÕýÔÚÖ´ÐеÄÈÎÎñ&frac12;«±»Öжϲ¢ÇÒ¸ßÓÅÏÈ&frac14;¶ÈÎÎñ&frac12;«±»Ö´ÐС£ ÕâÈ·±£ÁË&frac34;ßÓиü¸ßÓÅÏÈ&frac14;¶µÄÈÎÎñ¿ÉÒÔ&frac14;°Ê±»ñµÃÖ´ÐУ¬±ÜÃâ&sup3;¤Ê±&frac14;ä±»µÍÓÅÏÈ&frac14;¶ÈÎÎñÕ&frac14;Óô¦ÀíÆ÷µÄÇé¿ö·¢Éú¡£ UCOS IIIÈÎÎñµÄÖ´ÐÐÊÇͨ&sup1;ýÉÏÏÂÎÄÇл»ÊµÏֵġ£ ÉÏÏÂÎÄÇл»ÊÇÖ¸&frac12;«´¦ÀíÆ÷µÄ״̬´ÓÒ»¸öÈÎÎñ±£´æµ&frac12;Äڴ棬Ȼºó&frac12;«ÁíÒ»¸öÈÎÎñµÄ×´Ì¬×°ÔØµ&frac12;´¦ÀíÆ÷ÖУ¬ÒÔÔÚ²»&frac14;ä¶ÏµÄÇé¿öÏÂת»»ÈÎÎñÖ´ÐС£ µ±Ò»¸öÈÎÎñÐèÒª±»ÖÐÖ&sup1;ʱ£¬&frac14;´Ö´ÐÐOS_TaskSuspend()º¯Êýʱ£¬UCOS III´¦ÀíÆ÷»áÖ´ÐÐÒ»¸öÈÎÎñÇл»Öжϲ¢&frac12;«¿ØÖÆÈ¨×ªÒƵ&frac12;ÁíÒ»¸öÈÎÎñ¡£ ÈÎÎñÇл»Í¨&sup3;£·¢ÉúÔÚÒÔÏÂÇé¿öÏ£º µ±ÈÎÎñÖ÷¶¯µ÷ÓÃÁËÈÎÎñ¿ØÖƺ¯Êý£¨ÀýÈ磬OS_Delay()¡¢OS_EventWait()¡¢OS_TaskSuspend()µÈ£©²¢ÍËÈÃCPUʱ£» µ±Ä&sup3;¸öÖжϷþÎñ&sup3;ÌÐò(ISR)ÔÚ&sup1;Ø&frac14;üÈÎÎñÖ´ÐÐÆÚ&frac14;äÖ´ÐУ¨&frac14;´ÖжÏÓÅÏÈ&frac14;¶¸ßÓÚ&sup1;Ø&frac14;üÈÎÎñµÄÓÅÏÈ&frac14;¶£©¡£ */ //¿ªÊ&frac14;ÈÎÎñ£¬´´&frac12;¨ÍêÈÎÎñ¶þºÍÈÎÎñÈý&frac34;ÍÉ&frac34;&sup3;ý×Ô&frac14;º //ÈÎÎñÓÅÏÈ&frac14;¶ #define START_TASK_PRIO 3 //ÈÎÎñ¶ÑÕ»´óС #define START_STK_SIZE 128 //ÈÎÎñ¿ØÖÆ¿é OS_TCB StartTaskTCB; //ÈÎÎñ¶ÑÕ» CPU_STK START_TASK_STK[START_STK_SIZE]; //ÈÎÎñº¯Êý void start_task(void *p_arg); ///ÈÎÎñ¶þÁÁµÆ£¬²¢´òÓ¡&sup3;öÐÅÏ¢ //ÈÎÎñÓÅÏÈ&frac14;¶ #define TASK1_TASK_PRIO 4 //ÈÎÎñ¶ÑÕ»´óС #define TASK1_STK_SIZE 128 //ÈÎÎñ¿ØÖÆ¿é OS_TCB Task1_TaskTCB; //ÈÎÎñ¶ÑÕ» CPU_STK TASK1_TASK_STK[TASK1_STK_SIZE]; void task1_task(void *p_arg); ///ÈÎÎñÈý£¬´òÓ¡ÈÎÎñÈýÖ´ÐÐÐÅÏ¢ //ÈÎÎñÓÅÏÈ&frac14;¶ #define TASK2_TASK_PRIO 5 //ÈÎÎñ¶ÑÕ»´óС #define TASK2_STK_SIZE 128 //ÈÎÎñ¿ØÖÆ¿é OS_TCB Task2_TaskTCB; //ÈÎÎñ¶ÑÕ» CPU_STK TASK2_TASK_STK[TASK2_STK_SIZE]; //ÈÎÎñº¯Êý void task2_task(void *p_arg); volatile u8 key_pressed = 0; volatile u8 current_task = 1; void KEY_Init(void) { GPIO_InitTypeDef GPIO_InitStructure; RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOA, ENABLE); GPIO_InitStructure.GPIO_Pin = GPIO_Pin_0; GPIO_InitStructure.GPIO_Mode = GPIO_Mode_IPU; // ???? GPIO_Init(GPIOA, &GPIO_InitStructure); } void Key_Scan(void) { static u8 key_up = 1; if (key_up && GPIO_ReadInputDataBit(GPIOA, GPIO_Pin_0)) { delay_ms(20); // ?? if (GPIO_ReadInputDataBit(GPIOA, GPIO_Pin_0)) { key_up = 0; key_pressed = 1; // ?????? } } else if (!GPIO_ReadInputDataBit(GPIOA, GPIO_Pin_0)) { key_up = 1; } } //Ö÷º¯Êý int main(void) { OS_ERR err; CPU_SR_ALLOC(); SystemInit();//ÓÉÓÚ±&frac34;&sup1;¤&sup3;ÌÊÇÓÉstm32f103zet6ÒÆÖ²ËùÀ´£¬Òò´ËÕâÀïÒò&frac14;ÓÈë±&frac34;º¯ÊýÈ·±£delayº¯ÊýÕý&sup3;£Ê&sup1;Óà delay_init(); //ʱÖÓ&sup3;õÊ&frac14;»¯ NVIC_PriorityGroupConfig(NVIC_PriorityGroup_2);//ÖжϷÖ×éÅäÖà uart_init(115200); //´®¿Ú&sup3;õÊ&frac14;»¯ LED_Init(); KEY_Init(); // ??????? OSInit(&err); //&sup3;õÊ&frac14;»¯UCOSIII OS_CRITICAL_ENTER(); //&frac12;øÈëÁÙ&frac12;çÇø //´´&frac12;¨¿ªÊ&frac14;ÈÎÎñ OSTaskCreate((OS_TCB * )&StartTaskTCB, //ÈÎÎñ¿ØÖÆ¿é (CPU_CHAR * )"start task", //ÈÎÎñÃû×Ö (OS_TASK_PTR )start_task, //ÈÎÎñº¯Êý (void * )0, //´«µÝ¸øÈÎÎñº¯ÊýµÄ²ÎÊý (OS_PRIO )START_TASK_PRIO, //ÈÎÎñÓÅÏÈ&frac14;¶ (CPU_STK * )&START_TASK_STK[0], //ÈÎÎñ¶ÑÕ»»ùµØÖ· (CPU_STK_SIZE)START_STK_SIZE/10, //ÈÎÎñ¶ÑÕ»Éî¶ÈÏÞλ (CPU_STK_SIZE)START_STK_SIZE, //ÈÎÎñ¶ÑÕ»´óС (OS_MSG_QTY )0, //ÈÎÎñÄÚ²¿ÏûÏ¢¶ÓÁÐÄÜ&sup1;»&frac12;ÓÊÕµÄ×î´óÏûÏ¢ÊýÄ¿,Ϊ0ʱ&frac12;ûÖ&sup1;&frac12;ÓÊÕÏûÏ¢ (OS_TICK )0, //µ±Ê&sup1;ÄÜʱ&frac14;䯬ÂÖתʱµÄʱ&frac14;䯬&sup3;¤¶È£¬Îª0ʱΪĬÈÏ&sup3;¤¶È£¬ (void * )0, //Óû§²&sup1;&sup3;äµÄ´æ´¢Çø (OS_OPT )OS_OPT_TASK_STK_CHK|OS_OPT_TASK_STK_CLR, //ÈÎÎñÑ¡Ïî (OS_ERR * )&err); //´æ·Å¸Ãº¯Êý´íÎóʱµÄ·µ»ØÖµ OS_CRITICAL_EXIT(); //ÍË&sup3;öÁÙ&frac12;çÇø OSStart(&err); //¿ªÆôUCOSIII } //¿ªÊ&frac14;ÈÎÎñÈÎÎñº¯Êý void start_task(void *p_arg) { OS_ERR err; CPU_SR_ALLOC(); p_arg = p_arg; CPU_Init(); #if OS_CFG_STAT_TASK_EN > 0u OSStatTaskCPUUsageInit(&err); //Í&sup3;&frac14;ÆÈÎÎñ #endif #ifdef CPU_CFG_INT_DIS_MEAS_EN //Èç&sup1;ûÊ&sup1;ÄÜÁ˲âÁ¿ÖжÏ&sup1;رÕʱ&frac14;ä CPU_IntDisMeasMaxCurReset(); #endif #if OS_CFG_SCHED_ROUND_ROBIN_EN //µ±Ê&sup1;ÓÃʱ&frac14;䯬ÂÖתµÄʱºò //Ê&sup1;ÄÜʱ&frac14;䯬ÂÖתµ÷¶È&sup1;¦ÄÜ,ʱ&frac14;䯬&sup3;¤¶ÈΪ1¸öϵÍ&sup3;ʱÖÓ&frac12;ÚÅÄ£¬&frac14;È1*5=5ms OSSchedRoundRobinCfg(DEF_ENABLED,1,&err); #endif OS_CRITICAL_ENTER(); //&frac12;øÈëÁÙ&frac12;çÇø //´´&frac12;¨TASK1ÈÎÎñ OSTaskCreate((OS_TCB * )&Task1_TaskTCB, (CPU_CHAR * )"Task1 task", (OS_TASK_PTR )task1_task, (void * )0, (OS_PRIO )TASK1_TASK_PRIO, (CPU_STK * )&TASK1_TASK_STK[0], (CPU_STK_SIZE)TASK1_STK_SIZE/10, (CPU_STK_SIZE)TASK1_STK_SIZE, (OS_MSG_QTY )0, (OS_TICK )0, (void * )0, (OS_OPT )OS_OPT_TASK_STK_CHK|OS_OPT_TASK_STK_CLR, (OS_ERR * )&err); //´´&frac12;¨TASK2ÈÎÎñ OSTaskCreate((OS_TCB * )&Task2_TaskTCB, (CPU_CHAR * )"task2 task", (OS_TASK_PTR )task2_task, (void * )0, (OS_PRIO )TASK2_TASK_PRIO, (CPU_STK * )&TASK2_TASK_STK[0], (CPU_STK_SIZE)TASK2_STK_SIZE/10, (CPU_STK_SIZE)TASK2_STK_SIZE, (OS_MSG_QTY )0, (OS_TICK )0, (void * )0, (OS_OPT )OS_OPT_TASK_STK_CHK|OS_OPT_TASK_STK_CLR, (OS_ERR * )&err); OS_CRITICAL_EXIT(); //ÍË&sup3;öÁÙ&frac12;çÇø OSTaskDel((OS_TCB*)0,&err); //É&frac34;&sup3;ýstart_taskÈÎÎñ×ÔÉí } // ??1:??PB0(LED0) void task1_task(void *p_arg) { OS_ERR err; while (1) { Key_Scan(); if (key_pressed) { current_task = 2; // ?????2 key_pressed = 0; printf("Switch to Task2\n"); } else { // LED0?? GPIO_SetBits(GPIOB, GPIO_Pin_0); // LED0? OSTimeDlyHMSM(0, 0, 0, 5000, OS_OPT_TIME_HMSM_STRICT, &err); // 500ms GPIO_ResetBits(GPIOB, GPIO_Pin_0); // LED0? OSTimeDlyHMSM(0, 0, 0, 5000, OS_OPT_TIME_HMSM_STRICT, &err); // 500ms } } } void task2_task(void *p_arg) { OS_ERR err; while (1) { Key_Scan(); if (key_pressed) { current_task = 1; // ?????1 key_pressed = 0; printf("Switch back to Task1\n"); } else { // ????2??? // ??:LED1?? GPIO_SetBits(GPIOB, GPIO_Pin_1); // LED1? OSTimeDlyHMSM(0, 0, 0, 5000, OS_OPT_TIME_HMSM_STRICT, &err); // 500ms GPIO_ResetBits(GPIOB, GPIO_Pin_1); // LED1? OSTimeDlyHMSM(0, 0, 0, 5000, OS_OPT_TIME_HMSM_STRICT, &err); // 500ms } } }我现在需要刚开始时B0(任务一)LED闪烁,当按下按键后(A0)给予信息量,使得代码进入(任务二),再次摁下按键,两个任务均不执行
06-06
////////////////////////////////////////////////////////////////////////////////// //±&frac34;&sup3;ÌÐòÖ»&sup1;©Ñ§Ï°Ê&sup1;Óã¬Î´&frac34;­×÷ÕßÐí¿É£¬²»µÃÓÃÓÚÆäËüÈκÎÓÃÍ&frac34; //ÐÀÞ±µç×Ó // // ÎÄ &frac14;þ Ãû :yanwu.c // °æ ±&frac34; ºÅ : v1.0 // ×÷ Õß : ÐÀÞ±µç×Ó // Éú&sup3;ÉÈÕÆÚ : 20200101 // ×î&frac12;üÐÞ¸Ä : // &sup1;¦ÄÜÃèÊö :Ö÷º¯Êý // ÐÞ¸ÄÀúÊ· : // ÈÕ ÆÚ : // ×÷ Õß : ÐÀÞ±µç×Ó // ÐÞ¸ÄÄÚÈÝ : ´´&frac12;¨ÎÄ&frac14;þ //°æÈ¨ËùÓУ¬µÁ°æ±Ø&frac34;¿¡£ //Copyright(C) ÐÀÞ±µç×Ó2020/3/16 //All rights reserved //******************************************************************************/. //&sup3;ÌÐòÍ·º¯Êý #include <reg52.h> #include <intrins.h> //°üº¬Í·ÎÄ&frac14;þ //ÏÔÊ&frac34;º¯Êý #include <display.h> //ºê¶¨Òå #define uint unsigned int #define uchar unsigned char //&sup1;Ü&frac12;ÅÉùÃ÷ sbit LED_R= P2^2;//ºìµÆ sbit LED_G= P2^0;//ÂÌµÆ sbit FENG = P2^5;//·äÃùÆ÷ //sbit san=P3^4; //·çÉÈ¿ØÖÆ£¨Ñ¡Å䣩 sbit CS = P1^4; sbit Clk = P1^2; sbit DATI = P1^3; sbit DATO = P1^3; //ADC0832Òý&frac12;Å //°´&frac14;ü sbit Key1=P2^6; //ÉèÖÃ&frac14;ü sbit Key2=P2^7; //&frac14;Ó°´&frac14;ü sbit Key3=P3^7; //&frac14;õ°´&frac14;ü bit bdata flag; //±¨&frac34;¯±êÖ&frac34;λ uchar set; //ÉèÖÃ״̬ /*******************************¶¨ÒåÈ«&frac34;Ö±äÁ¿********************************/ unsigned char dat = 0; //ADÖµ unsigned char CH=0; //ͨµÀ±äÁ¿ unsigned int sum=0; //Æ&frac12;&frac34;ùÖµ&frac14;ÆËãʱµÄ×ÜÊý unsigned char m=0; //º¯ÊýÉùÃ÷ extern uchar ADC0809(); extern void Key(); //&frac34;Æ&frac34;«º¬Á¿±äÁ¿ uchar temp=0; uchar WARNING=25; //±¨&frac34;¯Öµ /**************************************************************************** º¯Êý&sup1;¦ÄÜ:ADת»»×Ó&sup3;ÌÐò Èë¿Ú²ÎÊý:CH &sup3;ö¿Ú²ÎÊý:dat ****************************************************************************/ unsigned char adc0832(unsigned char CH) { unsigned char i,test,adval; adval = 0x00; test = 0x00; Clk = 0; //&sup3;õÊ&frac14;»¯ DATI = 1; _nop_(); CS = 0; _nop_(); Clk = 1; _nop_(); if ( CH == 0x00 ) //ͨµÀÑ¡Ôñ { Clk = 0; DATI = 1; //ͨµÀ0µÄµÚһλ _nop_(); Clk = 1; _nop_(); Clk = 0; DATI = 0; //ͨµÀ0µÄµÚ¶þλ _nop_(); Clk = 1; _nop_(); } else { Clk = 0; DATI = 1; //ͨµÀ1µÄµÚһλ _nop_(); Clk = 1; _nop_(); Clk = 0; DATI = 1; //ͨµÀ1µÄµÚ¶þλ _nop_(); Clk = 1; _nop_(); } Clk = 0; DATI = 1; for( i = 0;i < 8;i++ ) //¶Áȡǰ8λµÄÖµ { _nop_(); adval <<= 1; Clk = 1; _nop_(); Clk = 0; if (DATO) adval |= 0x01; else adval |= 0x00; } for (i = 0; i < 8; i++) //¶ÁÈ¡ºó8λµÄÖµ { test >>= 1; if (DATO) test |= 0x80; else test |= 0x00; _nop_(); Clk = 1; _nop_(); Clk = 0; } if (adval == test) //±È&frac12;Ïǰ8λÓëºó8λµÄÖµ£¬Èç&sup1;û²»ÏàͬÉáÈ¥¡£ÈôÒ»Ö±&sup3;öÏÖÏÔÊ&frac34;ΪÁ㣬Çë&frac12;«¸ÃÐÐÈ¥µô dat = test; nop_(); CS = 1; //ÊÍ·ÅADC0832 DATO = 1; Clk = 1; return dat; } void init() //&sup3;õÊ&frac14;»¯º¯Êý { TMOD=0x01; //&sup1;¤×÷·&frac12;Ê&frac12; TL0=0xb0; TH0=0x3c; //¸&sup3;&sup3;õÖµ£¨12MHz&frac34;§ÕñµÄ50ms£© EA=1; //´ò¿ªÖжÏ×Ü¿ª&sup1;Ø ET0=1; //´ò¿ªÖжÏÔÊÐí¿ª&sup1;Ø TR0=1; //´ò¿ª¶¨Ê±Æ÷¿ª&sup1;Ø } void main() //Ö÷º¯Êý { Init1602();//&sup3;õÊ&frac14;»¯ÏÔÊ&frac34; init(); //&sup3;õÊ&frac14;»¯¶¨Ê±Æ÷ while(1) //&frac12;øÈëÑ­»· { for(m=0;m<50;m++) //¶Á50´ÎADÖµ sum = adc0832(0)+sum; //¶Áµ&frac12;µÄADÖµ£¬&frac12;«¶Áµ&frac12;µÄÊý&frac34;ÝÀÛ&frac14;Óµ&frac12;sum temp=sum/50; //Ìø&sup3;öÉÏÃæµÄforÑ­»·ºó£¬&frac12;«ÀÛ&frac14;ÓµÄ×ÜÊý&sup3;ýÒÔ50µÃµ&frac12;Æ&frac12;&frac34;ùÖµtemp sum=0; //Æ&frac12;&frac34;ùÖµ&frac14;ÆËãÍê&sup3;ɺó£¬&frac12;«×ÜÊýÇåÁã if(set==0) //Ö»ÓÐÔÚ·ÇÉèÖÃ״̬ʱ£¬ Display_1602(temp,WARNING); //²ÅË¢ÐÂÏÔÊ&frac34;ʵʱŨ¶ÈÖµ if(temp<WARNING&&set==0) //·ÇÉèÖÃʱµ±Å¨¶ÈֵСÓÚ±¨&frac34;¯ÖµÊ± { flag=0; //±¨&frac34;¯±êÖ&frac34;λÖÃ0£¬²»±¨&frac34;¯ } else if(temp>WARNING&&set==0) //·ÇÉèÖÃʱµ±Å¨¶ÈÖµ´óÓÚ±¨&frac34;¯ÖµÊ± { flag=1; //±¨&frac34;¯±êÖ&frac34;λÖÃ1 } Key(); //ɨÃè°´&frac14;ü } } void Key() //°´&frac14;üº¯Êý { if(Key1==0) //ÉèÖÃ&frac14;ü°´ÏÂʱ { while(Key1==0); //&frac14;ì²â°´&frac14;üÊÇ·ñÊÍ·Å FENG=0; //·äÃùÆ÷Ïì set++; //ÉèÖÃ״̬±êÖ&frac34;&frac14;Ó flag=0; //Í£Ö&sup1;±¨&frac34;¯ // san=1; //·çÉÈÍ£Ö&sup1;ת¶¯£¨Ñ¡Å䣩 TR0=0; //¶¨Ê±Æ÷Í£Ö&sup1; } if(set==1) //ÉèÖÃʱ { write_com(0x38);//ÆÁÄ»&sup3;õÊ&frac14;»¯ write_com(0x80+0x40+13);//Ñ¡Öб¨&frac34;¯ÖµµÄλÖà write_com(0x0f);//´ò¿ªÏÔÊ&frac34; ÎÞ&sup1;â±ê &sup1;â±êÉÁ˸ write_com(0x06);//µ±¶Á»òдһ¸ö×Ö·ûÊÇÖ¸Õëºóһһλ FENG=1; //·äÃùÆ÷Í£Ö&sup1;ÃùÏì } else if(set>=2) //ÔÙ°´Ò»ÏÂÉèÖÃ&frac14;üʱ£¬ÍË&sup3;öÉèÖà { set=0; //ÉèÖÃ״̬ÇåÁã write_com(0x38);//ÆÁÄ»&sup3;õÊ&frac14;»¯ write_com(0x0c);//´ò¿ªÏÔÊ&frac34; ÎÞ&sup1;â±ê ÎÞ&sup1;â±êÉÁ˸ FENG=1; //·äÃùÆ÷Í£Ö&sup1;Ïì flag=1; //±¨&frac34;¯±êÖ&frac34;λÖÃ1 TR0=1; //¶¨Ê±Æ÷¿ªÊ&frac14;&frac14;ÆÊ± } if(Key2==0&&set!=0) //µ±ÔÚÉèÖÃ״̬ʱ£¬°´ÏÂ&frac14;Ó&frac14;üʱ { while(Key2==0); //°´&frac14;üÊÍ·Å FENG=0; //·äÃùÆ÷ÃùÏì WARNING++; //±¨&frac34;¯ãÐÖµ&frac14;Ó if(WARNING>=255)//ãÐÖµ×î´ó&frac14;Óµ&frac12;255 WARNING=0; //ÇåÁã write_com(0x80+0x40+11); //ÔÚãÐÖµµÄλÖÃдÈëÉèÖõÄÊý&frac34;Ý write_data(&#39;0&#39;+WARNING/100); //ÏÔÊ&frac34;°Ù루&frac12;«123&sup3;ýÒÔ100µÃµ&frac12;µÄÉÌÊÇ1£¬&frac34;ÍÊǰÙλÊý&frac34;Ý£©123ΪÀý×Ó write_data(&#39;0&#39;+WARNING/10%10);//ÏÔÊ&frac34;ʮ루&frac12;«123&sup3;ýÒÔ10µÃµ&frac12;ÉÌÊÇ12£¬&frac12;«12&sup3;ýÒÔ10µÄÓàÊý&frac34;ÍÊÇʮ룩 write_data(&#39;0&#39;+WARNING%10); //ÏÔÊ&frac34;¸ö루&frac12;«123&sup3;ýÒÔ10µÄÓàÊý3&frac34;ÍÊǸöλÊý&frac34;Ý£©123ΪÀý×Ó write_com(0x80+0x40+13);//λÖà FENG=1;//·äÃùÆ÷Í£Ö&sup1; } if(Key3==0&&set!=0) //&frac14;õ°´&frac14;ü×¢ÊͲο&frac14;&frac14;Ó°´&frac14;ü²¿·Ö { while(Key3==0); FENG=0; WARNING--; if(WARNING<=0) WARNING=255; write_com(0x80+0x40+11); write_data(&#39;0&#39;+WARNING/100); write_data(&#39;0&#39;+WARNING/10%10); write_data(&#39;0&#39;+WARNING%10); write_com(0x80+0x40+13);//λÖà FENG=1; } } void time1_int(void) interrupt 1 //¶¨Ê±Æ÷º¯Êý { uchar count; TL0=0xb0; TH0=0x3c; //ÖØÐ¸&sup3;&sup3;õÖµ count++; //&frac14;ÆÊ±±äÁ¿&frac14;Ó if(count==10)//¶¨Ê±Æ÷¶¨Ê±ÊÇ50ms£¬´Ë´¦&frac14;ÆÊý10´Î£¬ÕýºÃÊÇ500ms£¬ÓÃÓÚ±¨&frac34;¯Ê± µÆÁÁºÍ·äÃùÆ÷Ïì { if(flag==0) //±¨&frac34;¯±êÖ&frac34;Ϊ0ʱ { LED_G=0; //Â̵ÆÁÁ LED_R=1; //ºìµÆÃð FENG=1; //·äÃùÆ÷²»Ïì // san=1; //·çÉȲ»×ª£¨Ñ¡Å䣩 } if(flag==1) //±¨&frac34;¯±êÖ&frac34;λΪ1ʱ { LED_G=1; //Â̵ÆÃð LED_R=0; //ºìµÆÁÁ FENG=0; //·äÃùÆ÷Ïì // san=0; //·çÉÈת¶¯£¨Ñ¡Å䣩 } } if(count==20) //&frac14;ÆÊýµ&frac12;20ʱ£¬ÕýºÃÊÇ1000ms£¬&frac34;ÍÊÇ1s£¬ÕâÀï&frac34;ÍÊÇÈõÆÃ𣬷äÃùÆ÷²»Ï죬´Ó¶ø×ö&sup3;öÉÁ˸µÄЧ&sup1;û { count=0; //&frac14;Ƶ&frac12;1sʱ£¬&frac12;«countÇåÁ㣬×&frac14;±¸ÖØÐÂ&frac14;ÆÊý if(flag==0) { LED_G=1; LED_R=1; FENG=1; // san=1; //È«²¿&sup1;Ø±Õ } if(flag==1) { LED_G=1; LED_R=1; FENG=1; // san=0; //±¨&frac34;¯Öµ£¬·çÉÈÊÇһֱת¶¯µÄ£¨Ñ¡Å䣩 } } } 修改为下限报警
07-05
本指南详细阐述基于Python编程语言结合OpenCV计算机视觉库构建实时眼部状态分析系统的技术流程。该系统能够准确识别眼部区域,并对眨眼动作与持续闭眼状态进行判别。OpenCV作为功能强大的图像处理工具库,配合Python简洁的语法特性与丰富的第三方模块支持,为开发此类视觉应用提供了理想环境。 在环境配置阶段,除基础Python运行环境外,还需安装OpenCV核心模块与dlib机器学习库。dlib库内置的HOG(方向梯度直方图)特征检测算法在面部特征定位方面表现卓越。 技术实现包含以下关键环节: - 面部区域检测:采用预训练的Haar级联分类器或HOG特征检测器完成初始人脸定位,为后续眼部分析建立基础坐标系 - 眼部精确定位:基于已识别的人脸区域,运用dlib提供的面部特征点预测模型准确标定双眼位置坐标 - 眼睑轮廓分析:通过OpenCV的轮廓提取算法精确勾勒眼睑边缘形态,为状态判别提供几何特征依据 - 眨眼动作识别:通过连续帧序列分析眼睑开合度变化,建立动态阈值模型判断瞬时闭合动作 - 持续闭眼检测:设定更严格的状态持续时间与闭合程度双重标准,准确识别长时间闭眼行为 - 实时处理架构:构建视频流处理管线,通过帧捕获、特征分析、状态判断的循环流程实现实时监控 完整的技术文档应包含模块化代码实现、依赖库安装指引、参数调优指南及常见问题解决方案。示例代码需具备完整的错误处理机制与性能优化建议,涵盖图像预处理、光照补偿等实际应用中的关键技术点。 掌握该技术体系不仅有助于深入理解计算机视觉原理,更为疲劳驾驶预警、医疗监护等实际应用场景提供了可靠的技术基础。后续优化方向可包括多模态特征融合、深度学习模型集成等进阶研究领域。 资源来源于网络分享,仅用于学习交流使用,请勿用于商业,如有侵权请联系我删除!
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