電氣技術論文范文10篇

時間(jian):2024-04-26 01:29:09

導語:這(zhe)里是公務(wu)員之家根據多年的文秘經驗,為你(ni)推薦的十(shi)篇電(dian)氣技術論文范文,還可以咨詢客服(fu)老師(shi)獲取更(geng)多原創文章,歡迎參考。

電氣技術論文

安裝電氣技術論文

摘要:電氣(qi)安(an)裝工程主要由線管、線盒(he)的預(yu)留預(yu)埋,管內(nei)穿線,電纜敷設(she),照明(ming)器具(ju)安(an)裝配電箱(xiang)(柜)的安(an)裝,設(she)備(bei)接(jie)線,防雷(lei)接(jie)地安(an)裝,電氣(qi)系統調(diao)試等幾個分項組成。

關(guan)鍵詞:電氣(qi)安(an)裝施(shi)工

引言

隨(sui)著科(ke)技的(de)不斷發展,電氣(qi)安裝工程的(de)項目也日新月異(yi),本文就在實(shi)際(ji)施(shi)(shi)工操作中(zhong)所(suo)掌握的(de)知識,簡單研究介紹了一(yi)下電氣(qi)安裝中(zhong)強電的(de)施(shi)(shi)工方法和技術措(cuo)施(shi)(shi)。

一(yi)、電(dian)氣安裝施工工序

安裝(zhuang)準備→管路預制(zhi)加(jia)工(gong)→箱盒定位(wei)→管路連接→穿(chuan)帶鐵絲→掃管→帶護(hu)口→穿(chuan)線→電纜敷設→配電箱安裝(zhuang)→照(zhao)明器具安裝(zhuang)→防雷接地安裝(zhuang)→系統調試。

查看全文

電氣工程電子技術使用研究論文

編(bian)者按:本(ben)論(lun)文(wen)主要(yao)從實(shi)(shi)(shi)踐(jian)(jian)(jian)教學(xue)的(de)(de)現狀和改(gai)進措施(shi);實(shi)(shi)(shi)踐(jian)(jian)(jian)教學(xue)改(gai)進后的(de)(de)實(shi)(shi)(shi)施(shi)方案等進行講述,包括了實(shi)(shi)(shi)踐(jian)(jian)(jian)課(ke)程簡介(jie)、實(shi)(shi)(shi)踐(jian)(jian)(jian)教學(xue)存(cun)在的(de)(de)不(bu)足之(zhi)處、實(shi)(shi)(shi)踐(jian)(jian)(jian)教學(xue)改(gai)進措施(shi)、實(shi)(shi)(shi)踐(jian)(jian)(jian)教學(xue)內容、教學(xue)實(shi)(shi)(shi)施(shi)方案、激(ji)發學(xue)生(sheng)興(xing)趣的(de)(de)方法、確(que)定(ding)靈活、直觀(guan)的(de)(de)教學(xue)方法、采用不(bu)同的(de)(de)考(kao)核標(biao)準、實(shi)(shi)(shi)行多(duo)方位的(de)(de)獎勵制度等,具體資料請(qing)見:

【摘要】分(fen)析我院在電(dian)氣工(gong)程訓練實(shi)踐(jian)教學(xue)中存在的(de)不足,提(ti)(ti)出一項教學(xue)改進措(cuo)施,即對原(yuan)有的(de)實(shi)踐(jian)教學(xue)內容進行提(ti)(ti)煉和整合(he),增加有關電(dian)子產品(pin)制作方面的(de)內容,加強電(dian)工(gong)電(dian)子技術在訓練中的(de)應用,推進實(shi)踐(jian)教學(xue)和現代(dai)生產實(shi)踐(jian)的(de)緊密結合(he)。

【關鍵詞】電工電子技術實(shi)踐教學生(sheng)產實(shi)踐

1引言

電氣工程訓練是(shi)我院面向工科非(fei)電專(zhuan)業(ye)及(ji)大(da)文科專(zhuan)業(ye)開設的(de)一門公共實踐課程,學習的(de)主要內容就是(shi)安全用電常識和基本的(de)電工電子技術知識及(ji)實踐操作(zuo)技能。

2實踐教(jiao)學的現狀和改(gai)進措施

查看全文

電廠電氣自動化技術論文3篇

第一篇

1初探電廠電氣(qi)自(zi)動化系(xi)統主(zhu)要內容構成

所謂的(de)(de)(de)(de)(de)(de)(de)(de)電(dian)(dian)(dian)(dian)氣(qi)(qi)(qi)自(zi)(zi)(zi)動化系統簡單來(lai)(lai)說就是(shi)(shi)(shi)將(jiang)電(dian)(dian)(dian)(dian)廠(chang)(chang)設(she)(she)(she)備監(jian)(jian)控(kong)(kong)(kong)(kong)(kong)和設(she)(she)(she)備檢測(ce)以及設(she)(she)(she)備的(de)(de)(de)(de)(de)(de)(de)(de)通(tong)訊保(bao)護(hu)等方面的(de)(de)(de)(de)(de)(de)(de)(de)功能綜合(he)統一(yi)起來(lai)(lai)的(de)(de)(de)(de)(de)(de)(de)(de)系統,目前我國電(dian)(dian)(dian)(dian)廠(chang)(chang)的(de)(de)(de)(de)(de)(de)(de)(de)電(dian)(dian)(dian)(dian)氣(qi)(qi)(qi)自(zi)(zi)(zi)動化一(yi)般采(cai)用集(ji)散型的(de)(de)(de)(de)(de)(de)(de)(de)電(dian)(dian)(dian)(dian)氣(qi)(qi)(qi)控(kong)(kong)(kong)(kong)(kong)制體系來(lai)(lai)完成,以往電(dian)(dian)(dian)(dian)廠(chang)(chang)使用的(de)(de)(de)(de)(de)(de)(de)(de)較為傳統的(de)(de)(de)(de)(de)(de)(de)(de)、滯后(hou)的(de)(de)(de)(de)(de)(de)(de)(de)電(dian)(dian)(dian)(dian)氣(qi)(qi)(qi)系統根本不能用集(ji)散型控(kong)(kong)(kong)(kong)(kong)制體系完成電(dian)(dian)(dian)(dian)廠(chang)(chang)電(dian)(dian)(dian)(dian)氣(qi)(qi)(qi)自(zi)(zi)(zi)動化。通(tong)常(chang)情(qing)況(kuang)下還是(shi)(shi)(shi)只(zhi)能用水平較低的(de)(de)(de)(de)(de)(de)(de)(de)半自(zi)(zi)(zi)動相關硬件(jian)來(lai)(lai)和監(jian)(jian)測(ce)儀表進行(xing)(xing)連(lian)接(jie)后(hou)再進行(xing)(xing)監(jian)(jian)控(kong)(kong)(kong)(kong)(kong),這種“低水平半自(zi)(zi)(zi)動化技術”只(zhi)能監(jian)(jian)控(kong)(kong)(kong)(kong)(kong)相應的(de)(de)(de)(de)(de)(de)(de)(de)一(yi)臺設(she)(she)(she)備,并不能同(tong)時對多(duo)臺電(dian)(dian)(dian)(dian)氣(qi)(qi)(qi)設(she)(she)(she)備進行(xing)(xing)同(tong)時的(de)(de)(de)(de)(de)(de)(de)(de)監(jian)(jian)控(kong)(kong)(kong)(kong)(kong),也(ye)就是(shi)(shi)(shi)說不能“一(yi)對多(duo)”的(de)(de)(de)(de)(de)(de)(de)(de)監(jian)(jian)控(kong)(kong)(kong)(kong)(kong)。電(dian)(dian)(dian)(dian)廠(chang)(chang)的(de)(de)(de)(de)(de)(de)(de)(de)電(dian)(dian)(dian)(dian)氣(qi)(qi)(qi)自(zi)(zi)(zi)動化系統具體來(lai)(lai)說主(zhu)要由(you)三層內容(rong)構成:其(qi)一(yi),“間隔(ge)層”中的(de)(de)(de)(de)(de)(de)(de)(de)設(she)(she)(she)備通(tong)常(chang)是(shi)(shi)(shi)分(fen)層間隔(ge),一(yi)般在(zai)開(kai)關層放置(zhi)(zhi)“電(dian)(dian)(dian)(dian)保(bao)護(hu)測(ce)控(kong)(kong)(kong)(kong)(kong)裝(zhuang)(zhuang)置(zhi)(zhi)”從而減少(shao)各個(ge)設(she)(she)(she)備之間的(de)(de)(de)(de)(de)(de)(de)(de)連(lian)接(jie),保(bao)證(zheng)設(she)(she)(she)備的(de)(de)(de)(de)(de)(de)(de)(de)使用獨立(li)性,減少(shao)“二(er)次接(jie)線(xian)數”可以更高地保(bao)證(zheng)節省電(dian)(dian)(dian)(dian)廠(chang)(chang)的(de)(de)(de)(de)(de)(de)(de)(de)實際成本,將(jiang)設(she)(she)(she)備的(de)(de)(de)(de)(de)(de)(de)(de)維(wei)護(hu)工(gong)作(zuo)(zuo)次數降到最(zui)低;其(qi)二(er),“網絡通(tong)訊層”包括通(tong)訊裝(zhuang)(zhuang)置(zhi)(zhi)以及網絡交換裝(zhuang)(zhuang)置(zhi)(zhi)和中繼器裝(zhuang)(zhuang)置(zhi)(zhi)等等,其(qi)主(zhu)要的(de)(de)(de)(de)(de)(de)(de)(de)作(zuo)(zuo)用是(shi)(shi)(shi)將(jiang)信(xin)息在(zai)各個(ge)設(she)(she)(she)備系統之間進行(xing)(xing)良(liang)好(hao)的(de)(de)(de)(de)(de)(de)(de)(de)傳遞(di);其(qi)三,“站(zhan)控(kong)(kong)(kong)(kong)(kong)層”一(yi)般采(cai)用“分(fen)布開(kai)放式”結構,其(qi)作(zuo)(zuo)用主(zhu)要是(shi)(shi)(shi)能夠對電(dian)(dian)(dian)(dian)廠(chang)(chang)的(de)(de)(de)(de)(de)(de)(de)(de)所有設(she)(she)(she)備進行(xing)(xing)一(yi)定的(de)(de)(de)(de)(de)(de)(de)(de)監(jian)(jian)控(kong)(kong)(kong)(kong)(kong),這種“監(jian)(jian)控(kong)(kong)(kong)(kong)(kong)能力”也(ye)是(shi)(shi)(shi)“站(zhan)控(kong)(kong)(kong)(kong)(kong)層”的(de)(de)(de)(de)(de)(de)(de)(de)主(zhu)要功能。

2分(fen)析電(dian)廠電(dian)氣自動(dong)化技術應用的實際(ji)意義(yi)

2.1市(shi)場經(jing)濟(ji)意義(yi)

眾所周知,電廠(chang)電氣自動化技術的應用(yong)不僅可以(yi)提(ti)高設備的使用(yong)價值(zhi),還能(neng)為電廠(chang)和(he)電力市(shi)場架起(qi)一(yi)座(zuo)溝(gou)通的橋梁,促(cu)使電廠(chang)得到(dao)比較系統(tong)的規范,電力市(shi)場也形成(cheng)比較完善的發展模式。在經濟方面電廠(chang)對電氣自動化的應用(yong),可以(yi)對電廠(chang)的經營過程(cheng)進行很好的監督(du)和(he)控制,對生產過程(cheng)中的成(cheng)本資(zi)(zi)(zi)料以(yi)及生產資(zi)(zi)(zi)源都能(neng)及時地(di)(di)監控,切實地(di)(di)保證了(le)成(cheng)本資(zi)(zi)(zi)源的合理(li)應用(yong),大(da)大(da)地(di)(di)提(ti)高了(le)資(zi)(zi)(zi)源的使用(yong)價值(zhi),進而對電廠(chang)的經濟起(qi)到(dao)了(le)推波(bo)助瀾的作用(yong)。

查看全文

變電站電氣自動化技術論文

1變電(dian)站電(dian)氣自動化(hua)技術應用的現狀及未來的發展趨勢

1.1變電(dian)站(zhan)(zhan)(zhan)電(dian)氣(qi)(qi)(qi)自(zi)(zi)動化(hua)技(ji)(ji)(ji)術(shu)(shu)應(ying)用(yong)的(de)現狀(zhuang)。電(dian)氣(qi)(qi)(qi)自(zi)(zi)動化(hua)技(ji)(ji)(ji)術(shu)(shu)是通(tong)過計算機、信(xin)號處理(li)以(yi)(yi)及(ji)電(dian)子通(tong)信(xin)等技(ji)(ji)(ji)術(shu)(shu),對(dui)(dui)變電(dian)站(zhan)(zhan)(zhan)二(er)次側的(de)電(dian)氣(qi)(qi)(qi)設(she)備進(jin)行(xing)自(zi)(zi)動監測,這種自(zi)(zi)動監測可以(yi)(yi)實時(shi)的(de)反映變電(dian)站(zhan)(zhan)(zhan)電(dian)氣(qi)(qi)(qi)設(she)備的(de)運(yun)行(xing)情況(kuang),當系(xi)統故障(zhang)時(shi)可以(yi)(yi)及(ji)時(shi)的(de)發出故障(zhang)信(xin)號,工作人員(yuan)可以(yi)(yi)在(zai)第一時(shi)間(jian)準確地對(dui)(dui)故障(zhang)進(jin)行(xing)處理(li),從而保證變電(dian)站(zhan)(zhan)(zhan)安全可靠的(de)運(yun)行(xing)。變電(dian)站(zhan)(zhan)(zhan)自(zi)(zi)動化(hua)技(ji)(ji)(ji)術(shu)(shu)還可以(yi)(yi)提供原始數據(ju)幫助工作人員(yuan)對(dui)(dui)電(dian)氣(qi)(qi)(qi)設(she)備進(jin)行(xing)檢修(xiu)和維護。電(dian)氣(qi)(qi)(qi)自(zi)(zi)動化(hua)技(ji)(ji)(ji)術(shu)(shu)對(dui)(dui)變電(dian)站(zhan)(zhan)(zhan)的(de)安全運(yun)行(xing)具有(you)非常重要的(de)作用(yong),所以(yi)(yi)電(dian)氣(qi)(qi)(qi)自(zi)(zi)動化(hua)技(ji)(ji)(ji)術(shu)(shu)在(zai)變電(dian)站(zhan)(zhan)(zhan)建(jian)設(she)中得到(dao)了廣泛(fan)應(ying)用(yong)。

1.2變電(dian)(dian)(dian)(dian)站(zhan)(zhan)(zhan)電(dian)(dian)(dian)(dian)氣自動(dong)(dong)化(hua)技(ji)(ji)(ji)術(shu)(shu)未(wei)來的(de)(de)(de)(de)(de)發展趨勢。科(ke)學(xue)(xue)技(ji)(ji)(ji)術(shu)(shu)的(de)(de)(de)(de)(de)發展是非常(chang)迅速的(de)(de)(de)(de)(de),數字(zi)化(hua)已成為(wei)現(xian)(xian)實,變電(dian)(dian)(dian)(dian)站(zhan)(zhan)(zhan)電(dian)(dian)(dian)(dian)氣自動(dong)(dong)化(hua)技(ji)(ji)(ji)術(shu)(shu)也將迎來新的(de)(de)(de)(de)(de)局面。隨(sui)著計算機技(ji)(ji)(ji)術(shu)(shu)、信(xin)號處理技(ji)(ji)(ji)術(shu)(shu)、網絡技(ji)(ji)(ji)術(shu)(shu)和通信(xin)技(ji)(ji)(ji)術(shu)(shu)等科(ke)學(xue)(xue)技(ji)(ji)(ji)術(shu)(shu)的(de)(de)(de)(de)(de)發展和完善,與電(dian)(dian)(dian)(dian)氣自動(dong)(dong)化(hua)技(ji)(ji)(ji)術(shu)(shu)的(de)(de)(de)(de)(de)融(rong)合一(yi)定會在不(bu)久的(de)(de)(de)(de)(de)將來實現(xian)(xian),有了這些高端科(ke)學(xue)(xue)技(ji)(ji)(ji)術(shu)(shu)的(de)(de)(de)(de)(de)融(rong)入(ru),電(dian)(dian)(dian)(dian)氣自動(dong)(dong)化(hua)技(ji)(ji)(ji)術(shu)(shu)一(yi)定具有大(da)幅度水平的(de)(de)(de)(de)(de)提高。這樣就可以更加科(ke)學(xue)(xue)合理的(de)(de)(de)(de)(de)對變電(dian)(dian)(dian)(dian)站(zhan)(zhan)(zhan)進行(xing)(xing)設(she)計和規劃,同(tong)時(shi)也可以大(da)大(da)提高變電(dian)(dian)(dian)(dian)站(zhan)(zhan)(zhan)運(yun)行(xing)(xing)的(de)(de)(de)(de)(de)自動(dong)(dong)化(hua)水平,從而(er)使(shi)變電(dian)(dian)(dian)(dian)站(zhan)(zhan)(zhan)系(xi)統運(yun)行(xing)(xing)時(shi)能夠快速的(de)(de)(de)(de)(de)自動(dong)(dong)處理各(ge)種(zhong)問(wen)題,使(shi)變電(dian)(dian)(dian)(dian)站(zhan)(zhan)(zhan)的(de)(de)(de)(de)(de)運(yun)行(xing)(xing)更為(wei)有效和安(an)全。

2電(dian)氣自動化技術在變電(dian)站中(zhong)的應用

2.1電(dian)(dian)氣(qi)自(zi)動化(hua)技(ji)(ji)術(shu)(shu)應用(yong)于(yu)變電(dian)(dian)站計(ji)算(suan)(suan)機(ji)(ji)監(jian)(jian)控(kong)系統。現如(ru)今計(ji)算(suan)(suan)機(ji)(ji)技(ji)(ji)術(shu)(shu)已經發展到(dao)(dao)了相當高的(de)(de)水平,社會各(ge)行(xing)各(ge)業都必(bi)須要(yao)用(yong)到(dao)(dao)計(ji)算(suan)(suan)機(ji)(ji)技(ji)(ji)術(shu)(shu)。計(ji)算(suan)(suan)機(ji)(ji)技(ji)(ji)術(shu)(shu)對(dui)變電(dian)(dian)站運(yun)(yun)行(xing)具有非(fei)常重要(yao)的(de)(de)作用(yong),它可(ke)(ke)以(yi)實現對(dui)變電(dian)(dian)站系統內(nei)各(ge)電(dian)(dian)氣(qi)設備的(de)(de)運(yun)(yun)行(xing)監(jian)(jian)控(kong)、監(jian)(jian)測(ce)(ce),有利于(yu)提高變電(dian)(dian)站運(yun)(yun)行(xing)的(de)(de)安全性。通過與網絡(luo)技(ji)(ji)術(shu)(shu)和通信(xin)技(ji)(ji)術(shu)(shu)的(de)(de)融合,電(dian)(dian)氣(qi)自(zi)動化(hua)技(ji)(ji)術(shu)(shu)應用(yong)于(yu)變電(dian)(dian)站的(de)(de)計(ji)算(suan)(suan)機(ji)(ji)監(jian)(jian)測(ce)(ce)系統可(ke)(ke)以(yi)有效的(de)(de)擴大變電(dian)(dian)站計(ji)算(suan)(suan)機(ji)(ji)監(jian)(jian)控(kong)系統的(de)(de)范圍。與此同時(shi),還可(ke)(ke)以(yi)及時(shi)地對(dui)變電(dian)(dian)站運(yun)(yun)行(xing)中(zhong)出現的(de)(de)各(ge)種問題和故障(zhang)做出相應的(de)(de)處理(li)。

2.2電氣(qi)(qi)自(zi)動(dong)化(hua)技(ji)術(shu)應(ying)用(yong)于變電站(zhan)中(zhong)等(deng)(deng)電位(wei)連(lian)接。等(deng)(deng)電位(wei)連(lian)接就是將電氣(qi)(qi)結構中(zhong),相適應(ying)的(de)(de)電氣(qi)(qi)設備(bei)間(jian)的(de)(de)導(dao)電部位(wei)進行連(lian)接,這樣做(zuo)可以保證變電站(zhan)運行時電源充足。等(deng)(deng)電位(wei)連(lian)接對于變電站(zhan)的(de)(de)運行、維護的(de)(de)安全(quan)性具有重(zhong)要(yao)的(de)(de)作用(yong),它可以有效避(bi)免變電安全(quan)問題。所以將電氣(qi)(qi)自(zi)動(dong)化(hua)技(ji)術(shu)應(ying)用(yong)到變電站(zhan)等(deng)(deng)電位(wei)連(lian)接非常重(zhong)要(yao)。

查看全文

火電廠電氣自動化技術論文

1當(dang)下火力發電廠監控系統存在(zai)的問題

1.1監(jian)控(kong)系統落后

目前,國內多數(shu)發電(dian)(dian)廠的(de)監(jian)控系(xi)統較(jiao)為落后,其采用的(de)主要設備為中央信(xin)號(hao)光字牌。這種監(jian)測設備很難滿足故(gu)障信(xin)息(xi)的(de)監(jian)測需求,使火電(dian)(dian)廠設備的(de)運行和(he)使用受到了極(ji)大的(de)限制,同(tong)時也導致了生產效率低(di)下、安全性無法保障等一系(xi)列現實問題。

1.2控制系統(tong)缺陷

在大(da)多(duo)(duo)數發電廠內,升壓站(zhan)依舊采用傳統(tong)(tong)的硬搬把(ba)(按鈕)進行生(sheng)產操(cao)作(zuo)(zuo)(zuo)。硬搬把(ba)在工(gong)作(zuo)(zuo)(zuo)時間(jian)較長的情況下(xia)會產生(sheng)磨(mo)損等問題,從而導(dao)致操(cao)作(zuo)(zuo)(zuo)失(shi)敗,容易(yi)引起操(cao)作(zuo)(zuo)(zuo)事故,因此存(cun)(cun)在的風險系數較大(da)。除此之外,公用操(cao)作(zuo)(zuo)(zuo)系統(tong)(tong)存(cun)(cun)在諸(zhu)多(duo)(duo)不便。公用系統(tong)(tong)是(shi)由機組工(gong)作(zuo)(zuo)(zuo)人員進行輪流(liu)操(cao)作(zuo)(zuo)(zuo)的,并(bing)且其無法納入DCS系統(tong)(tong),這樣一來,就(jiu)容易(yi)造成疏忽,導(dao)致操(cao)作(zuo)(zuo)(zuo)事故的發生(sheng)。

2電氣自動化技術在火(huo)電廠的基本作用

查看全文

電氣自動化節能技術論文

1電(dian)氣(qi)自動化及節能(neng)設計概念(nian)

電(dian)(dian)氣(qi)自動化(hua)節(jie)能(neng)技(ji)(ji)術(shu)(shu)是順應時代潮流的(de)(de)(de)產(chan)物,更(geng)(geng)是電(dian)(dian)氣(qi)信(xin)息領域(yu)的(de)(de)(de)一門新(xin)興技(ji)(ji)術(shu)(shu),不(bu)僅(jin)僅(jin)在有效(xiao)的(de)(de)(de)降低生產(chan)成(cheng)(cheng)(cheng)本(ben),提高勞動生產(chan)率,創造勞動條(tiao)件等方面起到(dao)了(le)很大(da)(da)(da)的(de)(de)(de)作用,而且在當前經濟建設的(de)(de)(de)重要目標節(jie)能(neng)方面更(geng)(geng)是成(cheng)(cheng)(cheng)為了(le)中堅力(li)量,是推動各行業節(jie)能(neng)減(jian)排的(de)(de)(de)有效(xiao)武器(qi)(qi)(qi)。對于當前電(dian)(dian)氣(qi)自動化(hua)系(xi)統(tong)的(de)(de)(de)應用現(xian)狀來看,城(cheng)市電(dian)(dian)網的(de)(de)(de)不(bu)斷擴大(da)(da)(da)和增容,導(dao)致變(bian)頻器(qi)(qi)(qi)、整流器(qi)(qi)(qi)造成(cheng)(cheng)(cheng)大(da)(da)(da)量的(de)(de)(de)諧波(bo)產(chan)生,給我國電(dian)(dian)網帶來了(le)很大(da)(da)(da)的(de)(de)(de)不(bu)利影響(xiang)。對此(ci),為了(le)更(geng)(geng)好的(de)(de)(de)起到(dao)消(xiao)除諧波(bo),提高節(jie)能(neng)效(xiao)果(guo),電(dian)(dian)氣(qi)自動化(hua)節(jie)能(neng)技(ji)(ji)術(shu)(shu)通過(guo)減(jian)少(shao)電(dian)(dian)路的(de)(de)(de)傳輸(shu)損耗(hao)、優選變(bian)壓器(qi)(qi)(qi)、補償無(wu)功、使用有源濾波(bo)器(qi)(qi)(qi)等方法(fa)進行深入研究,大(da)(da)(da)大(da)(da)(da)的(de)(de)(de)提高了(le)電(dian)(dian)氣(qi)系(xi)統(tong)的(de)(de)(de)有效(xiao)運(yun)行,節(jie)能(neng)效(xiao)果(guo)較為顯著。

2電氣自(zi)動化節能技術(shu)的重要意義

2.1新(xin)技術領域(yu)的重要組成部分

電(dian)(dian)氣自動(dong)化與(yu)人(ren)們(men)的(de)(de)生(sheng)產和生(sheng)活可謂是息息相關,隨著科學技(ji)(ji)術(shu)的(de)(de)不斷(duan)革新,電(dian)(dian)氣自動(dong)化系統技(ji)(ji)術(shu)方面也有(you)了(le)極大的(de)(de)改變,為(wei)了(le)更好的(de)(de)順應節(jie)能(neng)時代(dai)的(de)(de)發(fa)展大主(zhu)題,電(dian)(dian)氣自動(dong)化節(jie)能(neng)技(ji)(ji)術(shu)越(yue)來越(yue)被人(ren)們(men)所重(zhong)視,逐步成為(wei)了(le)新技(ji)(ji)術(shu)領域當中(zhong)的(de)(de)重(zhong)要(yao)組(zu)成部(bu)分,在電(dian)(dian)氣自動(dong)化中(zhong)的(de)(de)地位就顯得尤為(wei)重(zhong)要(yao)。

2.2有(you)效的(de)減少了各(ge)類能(neng)源(yuan)的(de)消耗(hao)

查看全文

化工生產中電氣自動化技術論文

1化(hua)工生產(chan)中(zhong)電(dian)氣自(zi)動化(hua)技(ji)術的應用

1.1先進控制

1.1.1先進(jin)控制(zhi)的(de)(de)(de)特點(dian)在化(hua)工的(de)(de)(de)生(sheng)產當中,往(wang)往(wang)生(sheng)產過程較為復雜多樣,這樣就很難(nan)的(de)(de)(de)建(jian)立起數(shu)學模型。一旦沒(mei)有(you)完(wan)善(shan)的(de)(de)(de)數(shu)學模型,就會導致預測和(he)推斷(duan)的(de)(de)(de)失(shi)誤。與傳統(tong)的(de)(de)(de)控制(zhi)技術相比,先進(jin)的(de)(de)(de)控制(zhi)技術能(neng)夠更加的(de)(de)(de)抓準(zhun)將(jiang)要預測和(he)推斷(duan)的(de)(de)(de)難(nan)點(dian)。

1.1.2先進(jin)控(kong)制(zhi)的應用

先(xian)進(jin)(jin)控制的(de)(de)應(ying)用(yong)(yong)在當今(jin)的(de)(de)自動化(hua)(hua)技(ji)(ji)術當中(zhong)得(de)到過廣泛的(de)(de)應(ying)用(yong)(yong),與傳(chuan)統的(de)(de)技(ji)(ji)術水平相比,現如今(jin)的(de)(de)技(ji)(ji)術手(shou)(shou)段(duan)不(bu)僅僅應(ying)用(yong)(yong)到了(le)(le)信(xin)息(xi)化(hua)(hua)技(ji)(ji)術手(shou)(shou)段(duan),還應(ying)用(yong)(yong)到了(le)(le)很多數學模型之類(lei)的(de)(de)知識。因為只有建立(li)了(le)(le)完善(shan)的(de)(de)數學模型,才能夠(gou)對采集到的(de)(de)變(bian)量(liang)進(jin)(jin)行精確的(de)(de)統計(ji)和計(ji)算(suan)。再加上信(xin)息(xi)化(hua)(hua)的(de)(de)先(xian)進(jin)(jin)技(ji)(ji)術,這(zhe)些是保障先(xian)進(jin)(jin)控制應(ying)用(yong)(yong)的(de)(de)有效技(ji)(ji)術手(shou)(shou)段(duan)之一。

1.2現場總線

查看全文

電氣自動化節能設計技術論文

1我國現(xian)階段鋼鐵冶煉系統的節能問題

鋼(gang)鐵(tie)(tie)(tie)(tie)冶(ye)(ye)(ye)煉系(xi)(xi)(xi)統(tong)中,節(jie)(jie)(jie)能(neng)技(ji)(ji)術(shu)(shu)的(de)(de)(de)(de)問(wen)(wen)題,主(zhu)要表現(xian)在(zai)(zai)方法(fa)單一(yi)(yi)上。我國鋼(gang)鐵(tie)(tie)(tie)(tie)冶(ye)(ye)(ye)煉行(xing)業運營中,節(jie)(jie)(jie)能(neng)一(yi)(yi)直(zhi)是(shi)社(she)會(hui)關(guan)注(zhu)的(de)(de)(de)(de)問(wen)(wen)題,雖(sui)然鋼(gang)鐵(tie)(tie)(tie)(tie)冶(ye)(ye)(ye)煉行(xing)業積(ji)極提倡節(jie)(jie)(jie)能(neng),但是(shi)其(qi)在(zai)(zai)實(shi)際節(jie)(jie)(jie)能(neng)中,仍舊采用的(de)(de)(de)(de)是(shi)單一(yi)(yi)的(de)(de)(de)(de)節(jie)(jie)(jie)能(neng)技(ji)(ji)術(shu)(shu),無法(fa)在(zai)(zai)根(gen)本上降(jiang)低鋼(gang)鐵(tie)(tie)(tie)(tie)冶(ye)(ye)(ye)煉的(de)(de)(de)(de)能(neng)源消耗(hao),很難提高(gao)鋼(gang)鐵(tie)(tie)(tie)(tie)冶(ye)(ye)(ye)煉生產(chan)的(de)(de)(de)(de)效率。鋼(gang)鐵(tie)(tie)(tie)(tie)冶(ye)(ye)(ye)煉系(xi)(xi)(xi)統(tong)中,如果(guo)要引入先進(jin)的(de)(de)(de)(de)節(jie)(jie)(jie)能(neng)途徑,就要以冶(ye)(ye)(ye)煉系(xi)(xi)(xi)統(tong)的(de)(de)(de)(de)整體(ti)為主(zhu),需要消耗(hao)大(da)量的(de)(de)(de)(de)資(zi)(zi)金(jin),如果(guo)缺乏資(zi)(zi)金(jin)支持,鋼(gang)鐵(tie)(tie)(tie)(tie)冶(ye)(ye)(ye)煉系(xi)(xi)(xi)統(tong)的(de)(de)(de)(de)節(jie)(jie)(jie)能(neng)技(ji)(ji)術(shu)(shu),就無法(fa)落實(shi)到位。鋼(gang)鐵(tie)(tie)(tie)(tie)冶(ye)(ye)(ye)煉行(xing)業,綜合考(kao)慮到鋼(gang)鐵(tie)(tie)(tie)(tie)利(li)(li)用率、節(jie)(jie)(jie)能(neng)減排指標(biao)等,已經注(zhu)意(yi)到成本投入在(zai)(zai)冶(ye)(ye)(ye)煉系(xi)(xi)(xi)統(tong)節(jie)(jie)(jie)能(neng)中的(de)(de)(de)(de)重要性,關(guan)鍵問(wen)(wen)題是(shi),社(she)會(hui)對(dui)鋼(gang)鐵(tie)(tie)(tie)(tie)的(de)(de)(de)(de)利(li)(li)用率,不能(neng)為鋼(gang)鐵(tie)(tie)(tie)(tie)冶(ye)(ye)(ye)煉行(xing)業帶去足夠的(de)(de)(de)(de)資(zi)(zi)金(jin)效益,進(jin)而阻礙了(le)節(jie)(jie)(jie)能(neng)新技(ji)(ji)術(shu)(shu)的(de)(de)(de)(de)發展,增加(jia)了(le)鋼(gang)鐵(tie)(tie)(tie)(tie)冶(ye)(ye)(ye)煉系(xi)(xi)(xi)統(tong)的(de)(de)(de)(de)節(jie)(jie)(jie)能(neng)壓(ya)力(li)。

2電氣工程及其自動化中存(cun)在的問(wen)題

2.1能(neng)(neng)耗大(da)(da)(da)(da)。雖然電(dian)(dian)氣(qi)(qi)(qi)(qi)(qi)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)自(zi)(zi)動(dong)(dong)化(hua)(hua)技(ji)(ji)術的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)出現(xian)(xian)為(wei)人(ren)類的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)發(fa)(fa)展(zhan)(zhan)(zhan)進步做出了巨大(da)(da)(da)(da)貢獻,但是(shi)(shi)我(wo)們(men)不(bu)(bu)能(neng)(neng)因此就(jiu)看(kan)不(bu)(bu)到其本(ben)(ben)身(shen)存在(zai)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)弊端(duan)(duan),其中,擺(bai)在(zai)當前(qian)最為(wei)棘手的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)問題就(jiu)是(shi)(shi)對(dui)于(yu)能(neng)(neng)源(yuan)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)消耗過大(da)(da)(da)(da)。在(zai)電(dian)(dian)氣(qi)(qi)(qi)(qi)(qi)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)自(zi)(zi)動(dong)(dong)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)發(fa)(fa)展(zhan)(zhan)(zhan)系(xi)統本(ben)(ben)身(shen)帶有(you)復(fu)雜(za)性,被應用的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)范圍逐步擴(kuo)大(da)(da)(da)(da),對(dui)于(yu)能(neng)(neng)源(yuan)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)需(xu)求(qiu)量(liang)也與日俱增。電(dian)(dian)氣(qi)(qi)(qi)(qi)(qi)自(zi)(zi)動(dong)(dong)化(hua)(hua)是(shi)(shi)以(yi)消耗電(dian)(dian)能(neng)(neng)為(wei)主,作(zuo)(zuo)為(wei)當下最為(wei)先進的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)技(ji)(ji)術之(zhi)一(yi),對(dui)其本(ben)(ben)身(shen)最為(wei)基礎(chu)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)要求(qiu)就(jiu)是(shi)(shi)要做到在(zai)運作(zuo)(zuo)過程(cheng)(cheng)(cheng)中保(bao)證誤差小(xiao),并且準確有(you)效(xiao),所以(yi),就(jiu)需(xu)要大(da)(da)(da)(da)批量(liang)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)電(dian)(dian)氣(qi)(qi)(qi)(qi)(qi)設(she)備(bei)共(gong)同運作(zuo)(zuo),如(ru)此,對(dui)于(yu)電(dian)(dian)能(neng)(neng)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)消耗可謂是(shi)(shi)不(bu)(bu)計其數(shu),與我(wo)們(men)國家(jia)提出的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)走綠色(se)節能(neng)(neng)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)可持續(xu)發(fa)(fa)展(zhan)(zhan)(zhan)道(dao)路存在(zai)差距。2.2質(zhi)量(liang)水平(ping)較低。就(jiu)現(xian)(xian)階(jie)段(duan)(duan)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)發(fa)(fa)展(zhan)(zhan)(zhan)而(er)言,電(dian)(dian)氣(qi)(qi)(qi)(qi)(qi)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)自(zi)(zi)動(dong)(dong)化(hua)(hua)技(ji)(ji)術已(yi)經(jing)得到的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)飛速的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)提升,但縱觀整體發(fa)(fa)展(zhan)(zhan)(zhan)情(qing)況而(er)言,其質(zhi)量(liang)水平(ping)還(huan)(huan)處在(zai)發(fa)(fa)展(zhan)(zhan)(zhan)低端(duan)(duan)。尤其是(shi)(shi)最近幾年,人(ren)們(men)對(dui)于(yu)生活追(zhui)求(qiu)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)品(pin)質(zhi)不(bu)(bu)斷攀升,相應地(di)也加大(da)(da)(da)(da)了對(dui)電(dian)(dian)氣(qi)(qi)(qi)(qi)(qi)自(zi)(zi)動(dong)(dong)化(hua)(hua)水平(ping)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)要求(qiu),但是(shi)(shi)我(wo)國對(dui)這一(yi)領域研究的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)時(shi)間還(huan)(huan)不(bu)(bu)是(shi)(shi)很(hen)(hen)長,對(dui)于(yu)相應的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)管(guan)理流程(cheng)(cheng)(cheng)和先進的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)發(fa)(fa)展(zhan)(zhan)(zhan)模式還(huan)(huan)不(bu)(bu)能(neng)(neng)很(hen)(hen)好的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)予以(yi)把(ba)控(kong),特別是(shi)(shi)在(zai)自(zi)(zi)動(dong)(dong)化(hua)(hua)工(gong)(gong)(gong)(gong)廠的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)生產環節,相關人(ren)員(yuan)只關心(xin)結果(guo)而(er)忽略過程(cheng)(cheng)(cheng)中的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)質(zhi)量(liang)問題。但是(shi)(shi),眾所周(zhou)知的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)是(shi)(shi),如(ru)果(guo)電(dian)(dian)氣(qi)(qi)(qi)(qi)(qi)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)生產質(zhi)量(liang)得不(bu)(bu)到有(you)效(xiao)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)保(bao)證,就(jiu)會發(fa)(fa)生一(yi)系(xi)列的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)用電(dian)(dian)事故,嚴重(zhong)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)會造(zao)成(cheng)(cheng)(cheng)爆炸、火(huo)災(zai)等重(zhong)大(da)(da)(da)(da)安全事故出現(xian)(xian),需(xu)要引起人(ren)們(men)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)深思。2.3集成(cheng)(cheng)(cheng)化(hua)(hua)程(cheng)(cheng)(cheng)度低。 顧名(ming)思義,集成(cheng)(cheng)(cheng)化(hua)(hua)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)主要運作(zuo)(zuo)原理就(jiu)是(shi)(shi)把(ba)所有(you)需(xu)要的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)東(dong)西做還(huan)(huan)集合工(gong)(gong)(gong)(gong)作(zuo)(zuo),上(shang)文已(yi)經(jing)提到過,雖然電(dian)(dian)氣(qi)(qi)(qi)(qi)(qi)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)自(zi)(zi)動(dong)(dong)化(hua)(hua)近年來的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)發(fa)(fa)展(zhan)(zhan)(zhan)勢頭迅猛,但由(you)于(yu)起步過晚, 雖然在(zai)努力的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)向集成(cheng)(cheng)(cheng)化(hua)(hua)方(fang)面靠攏(long),確切的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)來說,現(xian)(xian)在(zai)還(huan)(huan)處于(yu)自(zi)(zi)動(dong)(dong)化(hua)(hua)階(jie)段(duan)(duan),技(ji)(ji)術水平(ping)發(fa)(fa)展(zhan)(zhan)(zhan)有(you)限,集成(cheng)(cheng)(cheng)化(hua)(hua)技(ji)(ji)術還(huan)(huan)不(bu)(bu)成(cheng)(cheng)(cheng)熟(shu),各個(ge)體系(xi)和功(gong)(gong)能(neng)(neng)之(zhi)間還(huan)(huan)無法(fa)做到有(you)效(xiao)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)集成(cheng)(cheng)(cheng)連接。所以(yi),還(huan)(huan)達不(bu)(bu)到及時(shi)實(shi)現(xian)(xian)資源(yuan)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)有(you)效(xiao)共(gong)享,在(zai)一(yi)定程(cheng)(cheng)(cheng)度上(shang)影(ying)響了電(dian)(dian)氣(qi)(qi)(qi)(qi)(qi)自(zi)(zi)動(dong)(dong)化(hua)(hua)功(gong)(gong)能(neng)(neng)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)發(fa)(fa)揮(hui),使電(dian)(dian)氣(qi)(qi)(qi)(qi)(qi)自(zi)(zi)動(dong)(dong)化(hua)(hua)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)技(ji)(ji)術滯(zhi)后(hou)。

3對電(dian)氣自動化工(gong)程中節能設計技術

3.1減(jian)(jian)少(shao)線(xian)路傳輸產(chan)生(sheng)的(de)(de)(de)(de)(de)耗(hao)損。由(you)于(yu)無(wu)法(fa)對線(xian)路上的(de)(de)(de)(de)(de)電(dian)(dian)(dian)(dian)(dian)(dian)流做(zuo)出改變,所以(yi)(yi)也只能(neng)通過(guo)(guo)減(jian)(jian)少(shao)電(dian)(dian)(dian)(dian)(dian)(dian)阻(zu)來(lai)(lai)(lai)有效(xiao)(xiao)降低電(dian)(dian)(dian)(dian)(dian)(dian)能(neng)在(zai)(zai)(zai)(zai)(zai)傳輸中(zhong)產(chan)生(sheng)的(de)(de)(de)(de)(de)耗(hao)損。所以(yi)(yi),可以(yi)(yi)從(cong)這幾(ji)方面做(zuo)起,減(jian)(jian)少(shao)導(dao)線(xian)電(dian)(dian)(dian)(dian)(dian)(dian)阻(zu):(1)使用(yong)(yong)功(gong)(gong)(gong)(gong)(gong)率(lv)(lv)(lv)(lv)較小導(dao)線(xian);(2)使用(yong)(yong)相(xiang)對較短的(de)(de)(de)(de)(de)導(dao)線(xian)。這樣做(zuo)可以(yi)(yi)避免在(zai)(zai)(zai)(zai)(zai)布線(xian)過(guo)(guo)程(cheng)(cheng)(cheng)(cheng)中(zhong)少(shao)走彎路,減(jian)(jian)少(shao)人員(yuan)的(de)(de)(de)(de)(de)工(gong)(gong)作(zuo)量(liang)(liang),有效(xiao)(xiao)減(jian)(jian)少(shao)電(dian)(dian)(dian)(dian)(dian)(dian)能(neng)耗(hao)損,同(tong)時(shi)(shi)(shi)在(zai)(zai)(zai)(zai)(zai)安(an)裝(zhuang)變壓(ya)器(qi)(qi)(qi)時(shi)(shi)(shi)候(hou)(hou)(hou)與(yu)負荷中(zhong)心保(bao)持較短的(de)(de)(de)(de)(de)距(ju)離,也是(shi)減(jian)(jian)少(shao)供電(dian)(dian)(dian)(dian)(dian)(dian)的(de)(de)(de)(de)(de)距(ju)離;(3)使用(yong)(yong)截面積大(da)(da)較大(da)(da)的(de)(de)(de)(de)(de)導(dao)線(xian),如(ru)果(guo)條件允許,可以(yi)(yi)選(xuan)用(yong)(yong)較大(da)(da)截面積的(de)(de)(de)(de)(de)導(dao)線(xian),有效(xiao)(xiao)減(jian)(jian)少(shao)電(dian)(dian)(dian)(dian)(dian)(dian)阻(zu)產(chan)生(sheng)的(de)(de)(de)(de)(de)耗(hao)損。3.2無(wu)功(gong)(gong)(gong)(gong)(gong)補(bu)(bu)償(chang)(chang)(chang)。電(dian)(dian)(dian)(dian)(dian)(dian)力系統在(zai)(zai)(zai)(zai)(zai)運行的(de)(de)(de)(de)(de)過(guo)(guo)程(cheng)(cheng)(cheng)(cheng)中(zhong),配電(dian)(dian)(dian)(dian)(dian)(dian)設(she)備中(zhong)的(de)(de)(de)(de)(de)無(wu)功(gong)(gong)(gong)(gong)(gong)功(gong)(gong)(gong)(gong)(gong)率(lv)(lv)(lv)(lv)占有較大(da)(da)的(de)(de)(de)(de)(de)容量(liang)(liang),所以(yi)(yi)存在(zai)(zai)(zai)(zai)(zai)較為嚴(yan)重的(de)(de)(de)(de)(de)電(dian)(dian)(dian)(dian)(dian)(dian)能(neng)耗(hao)損的(de)(de)(de)(de)(de)情況,不(bu)僅(jin)影(ying)響到(dao)電(dian)(dian)(dian)(dian)(dian)(dian)壓(ya),還對整個(ge)電(dian)(dian)(dian)(dian)(dian)(dian)能(neng)的(de)(de)(de)(de)(de)質(zhi)量(liang)(liang)造成不(bu)良的(de)(de)(de)(de)(de)影(ying)響。對使用(yong)(yong)者來(lai)(lai)(lai)說,無(wu)功(gong)(gong)(gong)(gong)(gong)功(gong)(gong)(gong)(gong)(gong)率(lv)(lv)(lv)(lv)主要(yao)(yao)表現在(zai)(zai)(zai)(zai)(zai)功(gong)(gong)(gong)(gong)(gong)率(lv)(lv)(lv)(lv)低,尤其是(shi)當功(gong)(gong)(gong)(gong)(gong)率(lv)(lv)(lv)(lv)過(guo)(guo)低的(de)(de)(de)(de)(de)時(shi)(shi)(shi)候(hou)(hou)(hou),用(yong)(yong)戶需(xu)要(yao)(yao)向相(xiang)關部門繳納(na)一(yi)定的(de)(de)(de)(de)(de)罰款,因(yin)此(ci)(ci)如(ru)果(guo)說能(neng)夠使用(yong)(yong)合(he)適的(de)(de)(de)(de)(de)無(wu)功(gong)(gong)(gong)(gong)(gong)補(bu)(bu)償(chang)(chang)(chang)設(she)備,就可以(yi)(yi)保(bao)證功(gong)(gong)(gong)(gong)(gong)率(lv)(lv)(lv)(lv)的(de)(de)(de)(de)(de)平(ping)衡,有效(xiao)(xiao)提高供電(dian)(dian)(dian)(dian)(dian)(dian)質(zhi)量(liang)(liang)。工(gong)(gong)作(zuo)人員(yuan)在(zai)(zai)(zai)(zai)(zai)操作(zuo)中(zhong)要(yao)(yao)盡量(liang)(liang)減(jian)(jian)少(shao)對電(dian)(dian)(dian)(dian)(dian)(dian)能(neng)不(bu)必要(yao)(yao)的(de)(de)(de)(de)(de)耗(hao)損,從(cong)而確保(bao)電(dian)(dian)(dian)(dian)(dian)(dian)氣工(gong)(gong)程(cheng)(cheng)(cheng)(cheng)的(de)(de)(de)(de)(de)安(an)全運行。如(ru)果(guo)導(dao)線(xian)受到(dao)電(dian)(dian)(dian)(dian)(dian)(dian)阻(zu)的(de)(de)(de)(de)(de)影(ying)響,那(nei)么由(you)電(dian)(dian)(dian)(dian)(dian)(dian)機產(chan)生(sheng)的(de)(de)(de)(de)(de)電(dian)(dian)(dian)(dian)(dian)(dian)能(neng)就不(bu)能(neng)被(bei)變壓(ya)器(qi)(qi)(qi)更好的(de)(de)(de)(de)(de)吸收,同(tong)時(shi)(shi)(shi)沒被(bei)吸收的(de)(de)(de)(de)(de)那(nei)些電(dian)(dian)(dian)(dian)(dian)(dian)能(neng)在(zai)(zai)(zai)(zai)(zai)電(dian)(dian)(dian)(dian)(dian)(dian)流傳輸的(de)(de)(de)(de)(de)過(guo)(guo)程(cheng)(cheng)(cheng)(cheng)中(zhong)會(hui)被(bei)釋放出來(lai)(lai)(lai)。同(tong)時(shi)(shi)(shi)由(you)于(yu)無(wu)功(gong)(gong)(gong)(gong)(gong)功(gong)(gong)(gong)(gong)(gong)率(lv)(lv)(lv)(lv)產(chan)生(sheng)了(le)一(yi)定的(de)(de)(de)(de)(de)作(zuo)用(yong)(yong),因(yin)此(ci)(ci)可以(yi)(yi)讓電(dian)(dian)(dian)(dian)(dian)(dian)容器(qi)(qi)(qi)和(he)無(wu)功(gong)(gong)(gong)(gong)(gong)功(gong)(gong)(gong)(gong)(gong)率(lv)(lv)(lv)(lv)進行抵消(xiao)。利(li)用(yong)(yong)電(dian)(dian)(dian)(dian)(dian)(dian)氣相(xiang)關設(she)備在(zai)(zai)(zai)(zai)(zai)進行無(wu)功(gong)(gong)(gong)(gong)(gong)補(bu)(bu)償(chang)(chang)(chang)時(shi)(shi)(shi)候(hou)(hou)(hou),有幾(ji)處要(yao)(yao)格(ge)外注意:(1)利(li)用(yong)(yong)電(dian)(dian)(dian)(dian)(dian)(dian)容器(qi)(qi)(qi)在(zai)(zai)(zai)(zai)(zai)進行無(wu)功(gong)(gong)(gong)(gong)(gong)補(bu)(bu)償(chang)(chang)(chang)的(de)(de)(de)(de)(de)時(shi)(shi)(shi)候(hou)(hou)(hou),一(yi)定要(yao)(yao)根據電(dian)(dian)(dian)(dian)(dian)(dian)壓(ya)容量(liang)(liang),電(dian)(dian)(dian)(dian)(dian)(dian)壓(ya)負荷,自然功(gong)(gong)(gong)(gong)(gong)率(lv)(lv)(lv)(lv),目(mu)標(biao)功(gong)(gong)(gong)(gong)(gong)率(lv)(lv)(lv)(lv)等參數來(lai)(lai)(lai)確定電(dian)(dian)(dian)(dian)(dian)(dian)容器(qi)(qi)(qi)的(de)(de)(de)(de)(de)容量(liang)(liang),同(tong)時(shi)(shi)(shi)如(ru)果(guo)在(zai)(zai)(zai)(zai)(zai)無(wu)功(gong)(gong)(gong)(gong)(gong)補(bu)(bu)償(chang)(chang)(chang)的(de)(de)(de)(de)(de)環節中(zhong)發現產(chan)生(sheng)了(le)諧波,需(xu)要(yao)(yao)通過(guo)(guo)串聯定量(liang)(liang)電(dian)(dian)(dian)(dian)(dian)(dian)抗器(qi)(qi)(qi)來(lai)(lai)(lai)消(xiao)除諧波;(2)以(yi)(yi)參數的(de)(de)(de)(de)(de)物理量(liang)(liang)來(lai)(lai)(lai)確定無(wu)功(gong)(gong)(gong)(gong)(gong)的(de)(de)(de)(de)(de)電(dian)(dian)(dian)(dian)(dian)(dian)流,功(gong)(gong)(gong)(gong)(gong)率(lv)(lv)(lv)(lv)的(de)(de)(de)(de)(de)參數,從(cong)而有效(xiao)(xiao)避免投(tou)切振蕩現象。

查看全文

電氣工程自動化技術論文3篇

第一篇

1.電(dian)氣工(gong)程及其(qi)自(zi)動化技術的設計

1.1電氣工程(cheng)及其(qi)自動化(hua)技術設計概(gai)述

電(dian)(dian)(dian)氣(qi)(qi)(qi)(qi)工(gong)(gong)(gong)程(cheng)最早的(de)(de)(de)(de)(de)定(ding)義是產生電(dian)(dian)(dian)氣(qi)(qi)(qi)(qi)和(he)電(dian)(dian)(dian)子系統的(de)(de)(de)(de)(de)學科的(de)(de)(de)(de)(de)總和(he),而(er)隨著電(dian)(dian)(dian)氣(qi)(qi)(qi)(qi)工(gong)(gong)(gong)程(cheng)的(de)(de)(de)(de)(de)發(fa)(fa)展與應(ying)用(yong),它的(de)(de)(de)(de)(de)范疇已(yi)經遠遠超出了原(yuan)來的(de)(de)(de)(de)(de)范圍。從電(dian)(dian)(dian)氣(qi)(qi)(qi)(qi)工(gong)(gong)(gong)程(cheng)的(de)(de)(de)(de)(de)發(fa)(fa)展歷程(cheng)來看,它的(de)(de)(de)(de)(de)影響因(yin)(yin)素主要有(you)兩(liang)點,一(yi)(yi)個是信息(xi)技術,另(ling)一(yi)(yi)個是物(wu)理科學。信息(xi)技術的(de)(de)(de)(de)(de)發(fa)(fa)展使電(dian)(dian)(dian)氣(qi)(qi)(qi)(qi)工(gong)(gong)(gong)程(cheng)的(de)(de)(de)(de)(de)軟(ruan)件建(jian)設得(de)到提高(gao),而(er)物(wu)理科學的(de)(de)(de)(de)(de)發(fa)(fa)展使電(dian)(dian)(dian)氣(qi)(qi)(qi)(qi)工(gong)(gong)(gong)程(cheng)的(de)(de)(de)(de)(de)硬件建(jian)設得(de)以加強。西方發(fa)(fa)達國(guo)(guo)家(jia)因(yin)(yin)工(gong)(gong)(gong)業革(ge)命起步早,所(suo)以電(dian)(dian)(dian)氣(qi)(qi)(qi)(qi)工(gong)(gong)(gong)程(cheng)的(de)(de)(de)(de)(de)發(fa)(fa)展時(shi)間比較(jiao)早。相對而(er)言,電(dian)(dian)(dian)氣(qi)(qi)(qi)(qi)工(gong)(gong)(gong)程(cheng)在我(wo)國(guo)(guo)的(de)(de)(de)(de)(de)發(fa)(fa)展時(shi)間并不長,而(er)電(dian)(dian)(dian)氣(qi)(qi)(qi)(qi)工(gong)(gong)(gong)程(cheng)自動化(hua)技術的(de)(de)(de)(de)(de)發(fa)(fa)展時(shi)間則(ze)更短。總體上來看,我(wo)國(guo)(guo)電(dian)(dian)(dian)氣(qi)(qi)(qi)(qi)工(gong)(gong)(gong)程(cheng)的(de)(de)(de)(de)(de)發(fa)(fa)展水(shui)平比較(jiao)低。

1.2電(dian)氣工(gong)程及其自(zi)動化技術的設計

前文(wen)已(yi)述,在電氣工(gong)程及其自動化的(de)設(she)(she)計(ji)(ji)(ji)過程中,信(xin)息(xi)(xi)技術和(he)物理科學起到了至關重要的(de)作(zuo)(zuo)用,因(yin)此,在設(she)(she)計(ji)(ji)(ji)方(fang)(fang)(fang)面(mian),要綜合信(xin)息(xi)(xi)技術與物理科學兩個(ge)(ge)方(fang)(fang)(fang)面(mian)的(de)因(yin)素來(lai)設(she)(she)計(ji)(ji)(ji)。信(xin)息(xi)(xi)技術方(fang)(fang)(fang)面(mian)的(de)設(she)(she)計(ji)(ji)(ji)內容我們(men)可以(yi)稱之(zhi)(zhi)為軟(ruan)(ruan)件設(she)(she)計(ji)(ji)(ji),而(er)物理科學方(fang)(fang)(fang)面(mian)的(de)設(she)(she)計(ji)(ji)(ji)內容我們(men)可以(yi)稱之(zhi)(zhi)為硬件設(she)(she)計(ji)(ji)(ji)。在硬件設(she)(she)計(ji)(ji)(ji)方(fang)(fang)(fang)面(mian),首先要建立一(yi)個(ge)(ge)中央控制(zhi)(zhi)系(xi)(xi)統,使(shi)用電子(zi)計(ji)(ji)(ji)算機作(zuo)(zuo)為控制(zhi)(zhi)力(li)量;之(zhi)(zhi)后通過連接(jie)輔助設(she)(she)備的(de)方(fang)(fang)(fang)式(shi)將整個(ge)(ge)控制(zhi)(zhi)系(xi)(xi)統加以(yi)完善;同時(shi),設(she)(she)計(ji)(ji)(ji)的(de)時(shi)候還要考慮中央控制(zhi)(zhi)系(xi)(xi)統的(de)可行性,例如(ru)場(chang)地的(de)大小(xiao)、生產設(she)(she)備的(de)大小(xiao)等(deng)。一(yi)般(ban)情況下(xia),為了使(shi)硬件設(she)(she)計(ji)(ji)(ji)符合現實(shi)(shi)的(de)需要,設(she)(she)計(ji)(ji)(ji)人員要到現場(chang)進(jin)行考察,收集所需數據資料。而(er)在軟(ruan)(ruan)件設(she)(she)計(ji)(ji)(ji)方(fang)(fang)(fang)面(mian),企業可以(yi)根據自身的(de)情況來(lai)選擇(ze)自主研(yan)發(fa)或在市場(chang)上購買自動化控制(zhi)(zhi)系(xi)(xi)統軟(ruan)(ruan)件。若企業有雄厚的(de)資金實(shi)(shi)力(li),則可以(yi)自行設(she)(she)計(ji)(ji)(ji)控制(zhi)(zhi)軟(ruan)(ruan)件,使(shi)自動化技術更加貼合企業的(de)實(shi)(shi)際需要。

查看全文

電氣工程智能化技術論文

摘要:在科學技(ji)(ji)術飛(fei)速發(fa)展的當前階段,科技(ji)(ji)水平的提高為我國帶來(lai)了(le)可觀的經濟(ji)收益。我國的電(dian)(dian)(dian)力生(sheng)產要想進一步(bu)發(fa)展,關鍵在于電(dian)(dian)(dian)氣(qi)(qi)(qi)工(gong)程(cheng)(cheng)自(zi)動(dong)化(hua)的優化(hua)升級。只有充分(fen)運(yun)(yun)(yun)用先進的科學技(ji)(ji)術,才(cai)能(neng)將電(dian)(dian)(dian)氣(qi)(qi)(qi)工(gong)程(cheng)(cheng)的運(yun)(yun)(yun)行(xing)(xing)效率提高,保證電(dian)(dian)(dian)氣(qi)(qi)(qi)工(gong)程(cheng)(cheng)自(zi)動(dong)化(hua)智(zhi)能(neng)化(hua)運(yun)(yun)(yun)行(xing)(xing)的實現。為了(le)發(fa)揮電(dian)(dian)(dian)氣(qi)(qi)(qi)工(gong)程(cheng)(cheng)運(yun)(yun)(yun)行(xing)(xing)時(shi)的更好效益,需要對電(dian)(dian)(dian)氣(qi)(qi)(qi)工(gong)程(cheng)(cheng)進行(xing)(xing)不斷完善。本(ben)文主要對電(dian)(dian)(dian)氣(qi)(qi)(qi)工(gong)程(cheng)(cheng)自(zi)動(dong)化(hua)和智(zhi)能(neng)化(hua)技(ji)(ji)術進行(xing)(xing)探(tan)討(tao),并分(fen)析電(dian)(dian)(dian)氣(qi)(qi)(qi)工(gong)程(cheng)(cheng)自(zi)動(dong)化(hua)的智(zhi)能(neng)化(hua)技(ji)(ji)術應用。

關鍵詞(ci):技術應(ying)用;自動(dong)化;電(dian)氣(qi)工程;智能(neng)化

在(zai)(zai)信(xin)息(xi)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)快速發展(zhan)(zhan)的(de)21世紀(ji),信(xin)息(xi)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)和電(dian)氣(qi)工(gong)程(cheng)進行了(le)(le)有效(xiao)融合,電(dian)氣(qi)工(gong)程(cheng)的(de)自(zi)(zi)(zi)(zi)動(dong)化(hua)(hua)得到(dao)了(le)(le)發展(zhan)(zhan)。在(zai)(zai)電(dian)氣(qi)工(gong)程(cheng)發展(zhan)(zhan)早期,自(zi)(zi)(zi)(zi)動(dong)化(hua)(hua)控(kong)制(zhi)這一方面是(shi)存在(zai)(zai)缺陷(xian)的(de),為了(le)(le)改(gai)進不足開始將智能化(hua)(hua)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)引(yin)進到(dao)電(dian)氣(qi)工(gong)程(cheng)自(zi)(zi)(zi)(zi)動(dong)化(hua)(hua)控(kong)制(zhi)中,不僅可以(yi)提升電(dian)氣(qi)工(gong)程(cheng)的(de)整體(ti)自(zi)(zi)(zi)(zi)動(dong)化(hua)(hua)水平,還能加(jia)快電(dian)氣(qi)工(gong)程(cheng)的(de)發展(zhan)(zhan)。智能化(hua)(hua)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)應用(yong)(yong)范圍廣泛,比(bi)如在(zai)(zai)GPS定位技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)和計算機技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)中,智能化(hua)(hua)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)都得到(dao)了(le)(le)體(ti)現。電(dian)氣(qi)工(gong)程(cheng)自(zi)(zi)(zi)(zi)動(dong)化(hua)(hua)控(kong)制(zhi)中智能化(hua)(hua)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)的(de)應用(yong)(yong)尚處于初(chu)始階段,其潛在(zai)(zai)的(de)發展(zhan)(zhan)價(jia)值是(shi)很大的(de)。

1電(dian)氣工程自動化及智(zhi)能化

1.1分(fen)(fen)(fen)析電氣(qi)工(gong)(gong)(gong)程自(zi)動(dong)化(hua)(hua)(hua)的(de)(de)(de)(de)(de)(de)(de)(de)(de)特點。在(zai)(zai)(zai)(zai)(zai)電氣(qi)工(gong)(gong)(gong)程建設(she)的(de)(de)(de)(de)(de)(de)(de)(de)(de)過(guo)程中(zhong)(zhong),采(cai)用(yong)(yong)的(de)(de)(de)(de)(de)(de)(de)(de)(de)大(da)(da)多數(shu)都(dou)是(shi)(shi)獨立的(de)(de)(de)(de)(de)(de)(de)(de)(de)配(pei)(pei)(pei)件(jian),各(ge)個配(pei)(pei)(pei)件(jian)需(xu)要相互合(he)作(zuo)(zuo)(zuo)(zuo)(zuo)、相互連接才能(neng)(neng)保(bao)(bao)證正常工(gong)(gong)(gong)作(zuo)(zuo)(zuo)(zuo)(zuo),從(cong)而(er)達到(dao)控(kong)制(zhi)(zhi)、計(ji)(ji)(ji)量和(he)(he)(he)保(bao)(bao)護電氣(qi)設(she)備(bei)的(de)(de)(de)(de)(de)(de)(de)(de)(de)目的(de)(de)(de)(de)(de)(de)(de)(de)(de)。通過(guo)硬件(jian)和(he)(he)(he)軟件(jian)的(de)(de)(de)(de)(de)(de)(de)(de)(de)共同(tong)作(zuo)(zuo)(zuo)(zuo)(zuo)用(yong)(yong),可以(yi)(yi)實(shi)(shi)現(xian)設(she)備(bei)的(de)(de)(de)(de)(de)(de)(de)(de)(de)管(guan)理和(he)(he)(he)控(kong)制(zhi)(zhi)。工(gong)(gong)(gong)作(zuo)(zuo)(zuo)(zuo)(zuo)人(ren)(ren)員在(zai)(zai)(zai)(zai)(zai)設(she)計(ji)(ji)(ji)電氣(qi)設(she)備(bei)時,應(ying)該站在(zai)(zai)(zai)(zai)(zai)用(yong)(yong)戶的(de)(de)(de)(de)(de)(de)(de)(de)(de)角度(du)(du),考慮全(quan)面,綜合(he)分(fen)(fen)(fen)析設(she)備(bei)的(de)(de)(de)(de)(de)(de)(de)(de)(de)特征。工(gong)(gong)(gong)作(zuo)(zuo)(zuo)(zuo)(zuo)人(ren)(ren)員還應(ying)考慮用(yong)(yong)戶對用(yong)(yong)電的(de)(de)(de)(de)(de)(de)(de)(de)(de)實(shi)(shi)際(ji)需(xu)求,對電氣(qi)系統實(shi)(shi)行(xing)二次(ci)保(bao)(bao)護。除此(ci)之外(wai),工(gong)(gong)(gong)作(zuo)(zuo)(zuo)(zuo)(zuo)人(ren)(ren)員必須在(zai)(zai)(zai)(zai)(zai)設(she)計(ji)(ji)(ji)自(zi)動(dong)化(hua)(hua)(hua)時明確設(she)計(ji)(ji)(ji)要求,了解設(she)備(bei)各(ge)方面的(de)(de)(de)(de)(de)(de)(de)(de)(de)性能(neng)(neng)和(he)(he)(he)特點,避免設(she)備(bei)相互干擾(rao)。部分(fen)(fen)(fen)電氣(qi)企(qi)(qi)(qi)業(ye)(ye)在(zai)(zai)(zai)(zai)(zai)現(xian)代化(hua)(hua)(hua)技(ji)(ji)(ji)(ji)術(shu)(shu)(shu)不(bu)斷應(ying)用(yong)(yong)的(de)(de)(de)(de)(de)(de)(de)(de)(de)過(guo)程中(zhong)(zhong),逐步將創新電氣(qi)產品定(ding)(ding)為(wei)企(qi)(qi)(qi)業(ye)(ye)發(fa)展的(de)(de)(de)(de)(de)(de)(de)(de)(de)目標(biao),并將大(da)(da)量的(de)(de)(de)(de)(de)(de)(de)(de)(de)精(jing)力投入于(yu)(yu)(yu)研發(fa)新產品。在(zai)(zai)(zai)(zai)(zai)電氣(qi)系統集(ji)成(cheng)(cheng)過(guo)程和(he)(he)(he)研究(jiu)電氣(qi)自(zi)動(dong)化(hua)(hua)(hua)技(ji)(ji)(ji)(ji)術(shu)(shu)(shu)中(zhong)(zhong),對電氣(qi)企(qi)(qi)(qi)業(ye)(ye)提(ti)(ti)出了加(jia)強社會配(pei)(pei)(pei)合(he)協調工(gong)(gong)(gong)作(zuo)(zuo)(zuo)(zuo)(zuo)的(de)(de)(de)(de)(de)(de)(de)(de)(de)要求。研究(jiu)相關(guan)(guan)技(ji)(ji)(ji)(ji)術(shu)(shu)(shu)時,需(xu)要制(zhi)(zhi)定(ding)(ding)具(ju)體(ti)(ti)計(ji)(ji)(ji)劃,合(he)理配(pei)(pei)(pei)置(zhi)各(ge)種資源[1]。管(guan)理電氣(qi)企(qi)(qi)(qi)業(ye)(ye)時,可以(yi)(yi)通過(guo)不(bu)斷完(wan)善的(de)(de)(de)(de)(de)(de)(de)(de)(de)保(bao)(bao)護機(ji)制(zhi)(zhi)保(bao)(bao)障計(ji)(ji)(ji)算(suan)機(ji)傳(chuan)輸數(shu)據時的(de)(de)(de)(de)(de)(de)(de)(de)(de)穩定(ding)(ding)與(yu)安全(quan),從(cong)而(er)改善企(qi)(qi)(qi)業(ye)(ye)整(zheng)體(ti)(ti)的(de)(de)(de)(de)(de)(de)(de)(de)(de)管(guan)理情況。1.2智(zhi)(zhi)(zhi)能(neng)(neng)化(hua)(hua)(hua)技(ji)(ji)(ji)(ji)術(shu)(shu)(shu)及(ji)其應(ying)用(yong)(yong)優勢(shi)。1956年,人(ren)(ren)工(gong)(gong)(gong)智(zhi)(zhi)(zhi)能(neng)(neng)的(de)(de)(de)(de)(de)(de)(de)(de)(de)概(gai)念被第一(yi)次(ci)提(ti)(ti)出,將機(ji)器(qi)設(she)計(ji)(ji)(ji)成(cheng)(cheng)擁(yong)有(you)(you)人(ren)(ren)工(gong)(gong)(gong)智(zhi)(zhi)(zhi)能(neng)(neng)的(de)(de)(de)(de)(de)(de)(de)(de)(de)功(gong)能(neng)(neng)特點,使(shi)其能(neng)(neng)夠在(zai)(zai)(zai)(zai)(zai)脫離人(ren)(ren)為(wei)操控(kong)下完(wan)成(cheng)(cheng)一(yi)些正常人(ren)(ren)類難以(yi)(yi)做到(dao)或者具(ju)有(you)(you)危險性的(de)(de)(de)(de)(de)(de)(de)(de)(de)任(ren)務。基于(yu)(yu)(yu)這(zhe)一(yi)優勢(shi),人(ren)(ren)工(gong)(gong)(gong)智(zhi)(zhi)(zhi)能(neng)(neng)在(zai)(zai)(zai)(zai)(zai)各(ge)行(xing)各(ge)業(ye)(ye)都(dou)得(de)到(dao)了廣(guang)泛的(de)(de)(de)(de)(de)(de)(de)(de)(de)應(ying)用(yong)(yong)。人(ren)(ren)工(gong)(gong)(gong)智(zhi)(zhi)(zhi)能(neng)(neng)是(shi)(shi)以(yi)(yi)人(ren)(ren)類大(da)(da)腦為(wei)原型制(zhi)(zhi)造出來的(de)(de)(de)(de)(de)(de)(de)(de)(de),在(zai)(zai)(zai)(zai)(zai)計(ji)(ji)(ji)算(suan)機(ji)編程的(de)(de)(de)(de)(de)(de)(de)(de)(de)過(guo)程中(zhong)(zhong),需(xu)要進(jin)(jin)行(xing)信息的(de)(de)(de)(de)(de)(de)(de)(de)(de)收(shou)集(ji)、整(zheng)理和(he)(he)(he)分(fen)(fen)(fen)析,并對內容進(jin)(jin)行(xing)及(ji)時的(de)(de)(de)(de)(de)(de)(de)(de)(de)反饋。大(da)(da)量數(shu)據顯示(shi),在(zai)(zai)(zai)(zai)(zai)電氣(qi)工(gong)(gong)(gong)程自(zi)動(dong)化(hua)(hua)(hua)控(kong)制(zhi)(zhi)領域這(zhe)一(yi)領域當(dang)中(zhong)(zhong),智(zhi)(zhi)(zhi)能(neng)(neng)化(hua)(hua)(hua)技(ji)(ji)(ji)(ji)術(shu)(shu)(shu)取得(de)的(de)(de)(de)(de)(de)(de)(de)(de)(de)效果頗為(wei)顯著。智(zhi)(zhi)(zhi)能(neng)(neng)化(hua)(hua)(hua)技(ji)(ji)(ji)(ji)術(shu)(shu)(shu)不(bu)僅(jin)可以(yi)(yi)使(shi)工(gong)(gong)(gong)作(zuo)(zuo)(zuo)(zuo)(zuo)效率得(de)到(dao)提(ti)(ti)高,還能(neng)(neng)節約工(gong)(gong)(gong)程的(de)(de)(de)(de)(de)(de)(de)(de)(de)成(cheng)(cheng)本,減少控(kong)制(zhi)(zhi)人(ren)(ren)員的(de)(de)(de)(de)(de)(de)(de)(de)(de)工(gong)(gong)(gong)作(zuo)(zuo)(zuo)(zuo)(zuo)負擔。另外(wai),應(ying)用(yong)(yong)智(zhi)(zhi)(zhi)能(neng)(neng)化(hua)(hua)(hua)技(ji)(ji)(ji)(ji)術(shu)(shu)(shu)有(you)(you)利于(yu)(yu)(yu)工(gong)(gong)(gong)程質量的(de)(de)(de)(de)(de)(de)(de)(de)(de)提(ti)(ti)升,可以(yi)(yi)對人(ren)(ren)們(men)的(de)(de)(de)(de)(de)(de)(de)(de)(de)生命(ming)安全(quan)起(qi)到(dao)保(bao)(bao)障作(zuo)(zuo)(zuo)(zuo)(zuo)用(yong)(yong)。智(zhi)(zhi)(zhi)能(neng)(neng)化(hua)(hua)(hua)技(ji)(ji)(ji)(ji)術(shu)(shu)(shu)主要是(shi)(shi)通過(guo)機(ji)器(qi)完(wan)成(cheng)(cheng)人(ren)(ren)類難以(yi)(yi)完(wan)成(cheng)(cheng)的(de)(de)(de)(de)(de)(de)(de)(de)(de)各(ge)種高風險、高難度(du)(du)工(gong)(gong)(gong)作(zuo)(zuo)(zuo)(zuo)(zuo)任(ren)務,當(dang)前電氣(qi)自(zi)動(dong)化(hua)(hua)(hua)行(xing)業(ye)(ye)在(zai)(zai)(zai)(zai)(zai)發(fa)展方面已經智(zhi)(zhi)(zhi)能(neng)(neng)化(hua)(hua)(hua)技(ji)(ji)(ji)(ji)術(shu)(shu)(shu)作(zuo)(zuo)(zuo)(zuo)(zuo)為(wei)重點研究(jiu)內容。相關(guan)(guan)實(shi)(shi)驗表明,智(zhi)(zhi)(zhi)能(neng)(neng)化(hua)(hua)(hua)技(ji)(ji)(ji)(ji)術(shu)(shu)(shu)具(ju)有(you)(you)適應(ying)性和(he)(he)(he)實(shi)(shi)用(yong)(yong)性等特點。智(zhi)(zhi)(zhi)能(neng)(neng)化(hua)(hua)(hua)技(ji)(ji)(ji)(ji)術(shu)(shu)(shu)在(zai)(zai)(zai)(zai)(zai)IT行(xing)業(ye)(ye)中(zhong)(zhong)屬(shu)于(yu)(yu)(yu)高端分(fen)(fen)(fen)支,使(shi)用(yong)(yong)智(zhi)(zhi)(zhi)能(neng)(neng)化(hua)(hua)(hua)技(ji)(ji)(ji)(ji)術(shu)(shu)(shu)不(bu)僅(jin)可以(yi)(yi)提(ti)(ti)高工(gong)(gong)(gong)作(zuo)(zuo)(zuo)(zuo)(zuo)效率、縮小(xiao)工(gong)(gong)(gong)作(zuo)(zuo)(zuo)(zuo)(zuo)成(cheng)(cheng)本,還能(neng)(neng)有(you)(you)效降(jiang)低工(gong)(gong)(gong)作(zuo)(zuo)(zuo)(zuo)(zuo)人(ren)(ren)員的(de)(de)(de)(de)(de)(de)(de)(de)(de)勞(lao)動(dong)負擔,使(shi)物資與(yu)人(ren)(ren)力資源得(de)到(dao)合(he)理的(de)(de)(de)(de)(de)(de)(de)(de)(de)配(pei)(pei)(pei)置(zhi)。

2分析(xi)電氣工程自動(dong)化的智能化技(ji)術應用

查看全文