3BSE019050R1000張力傳感器,PFTL301E使用參數(shù)
接地是提高電子設(shè)備電磁兼容性(EMC)的有效手段之一。正確的接地,既能抑制電磁干擾的影響,又能抑制設(shè)備向外發(fā)出干擾;而錯誤的接地,反而會引入嚴重的干擾信號,使DCS系統(tǒng)將無法正常工作。3BSE019050R1000張力傳感器
DCS控制系統(tǒng)的地線包括系統(tǒng)地、屏蔽地、交流地和保護地等。接地系統(tǒng)混亂對DCS系統(tǒng)的干擾主要是各個接地點電位分布不均,不同接地點間存在地電位差,引起地環(huán)路電流,影響系統(tǒng)正常工作。例如電纜屏蔽層必須一點接地,如果電纜屏蔽層兩端A、B都接地,就存在地電位差,有電流流過屏蔽層,當發(fā)生異常狀態(tài)如雷擊時,地線電流將更大。
此外,屏蔽層、接地線和大地有可能構(gòu)成閉合環(huán)路,在變化磁場的作用下,屏蔽層內(nèi)有會出現(xiàn)感應(yīng)電流,通過屏蔽層與芯線之間的耦合,干擾信號回路。若系統(tǒng)地與其它接地處理混亂,所產(chǎn)生的地環(huán)流就可能在地線上產(chǎn)生不等電位分布,影響DCS內(nèi)邏輯電路和模擬電路的正常工作。DCS工作的邏輯電壓干擾容限較低,邏輯地電位的分布干擾容易影響DCS的邏輯運算和數(shù)據(jù)存貯,造成數(shù)據(jù)混亂、程序跑飛或死機。模擬地電位的分布將導(dǎo)致測量精度下降,引起對信號測控的嚴重失真和誤動作。
2.3來自DCS系統(tǒng)內(nèi)部的干擾
主要由系統(tǒng)內(nèi)部元器件及電路間的相互電磁輻射產(chǎn)生,如邏輯電路相互輻射及其對模擬電路的影響,模擬地與邏輯地的相互影響及元器件間的相互不匹配使用等。這都屬于DCS制造廠對系統(tǒng)內(nèi)部進行電磁兼容設(shè)計的內(nèi)容,比較復(fù)雜,作為應(yīng)用部門是無法改變,可不必過多考慮,但要選擇具有較多應(yīng)用實績或經(jīng)過考驗的系統(tǒng)。3BSE019050R1000張力傳感器,PFTL301E使用參數(shù)
三、DCS控制系統(tǒng)工程應(yīng)用的抗干擾設(shè)計
using PC for system control, in order to meet the remaining 20% of applications through PC and bring more choices to users. In many engineering applications, PC has been able to realize the control function of the original PLC. It also has the advantages of stronger data processing ability, powerful network communication function, more complex control algorithms and almost unlimited storage capacity. However, PC based automatic control also has its shortcomings. The reliability, real-time and stability of its equipment are poor, and these three aspects are the problems that often need to be overcome in the industrial field.
2. Characteristics and advantages of PAC control technology
Because PC and PLC have their own advantages and disadvantages, so; People have developed a new controller to solve 20% of applications, and best combine the characteristics of PLC and PC. The term PAC or programmable automatic controller is first