6ES7416-2FK02-0AB0使用數(shù)據(jù),模塊
在事故狀態(tài)下啟動風(fēng)機(jī),操作人員要往返于各個就地控制點(diǎn),勞動強(qiáng)度大,操作速度慢,需要人員多,大大延長了風(fēng)機(jī)啟動時間,不符合《煤礦安全規(guī)程》第121條規(guī)定:“備用通風(fēng)機(jī)必須能在10min內(nèi)開動”的要求;同時采用繼電器、接觸器作為控制器件,可靠性差,故障率高,經(jīng)常有繼電器燒壞,造成風(fēng)機(jī)停機(jī)事故,且排查故障用時較長。必須用新技術(shù)改造、完善南風(fēng)井主通風(fēng)機(jī)電控系統(tǒng),保證礦井通風(fēng)安全,適應(yīng)現(xiàn)代化礦井信息化、智能化發(fā)展要求。
6ES7416-2FK02-0AB0使用數(shù)據(jù)基于S7-300PLC的礦山主通風(fēng)機(jī)智能化電控系統(tǒng)主要實(shí)現(xiàn)主通風(fēng)機(jī)的自動啟動、停止及在線監(jiān)測和保護(hù)功能。該系統(tǒng)采用主控PLC和西門子MP377觸摸屏組成監(jiān)控模式,由主控臺、UPS、輔助設(shè)備控制分站以及壓力、溫度傳感器等組成。
1、主控臺:
(1)PLC控制器:采用數(shù)字量輸入模塊采集現(xiàn)場的開關(guān)量信息,包括高壓開關(guān)柜斷路器分、合閘,頻敏變阻器短接接觸器閉合等信號,潤滑站油泵電機(jī)運(yùn)行信號,冷卻泵電機(jī)運(yùn)行信號,立風(fēng)門、平風(fēng)門、反風(fēng)門的到位信號;開關(guān)量輸出模塊負(fù)責(zé)控制高壓合閘、風(fēng)門啟/閉、潤滑站的啟/停、冷卻水泵的啟/停,立風(fēng)門、平風(fēng)門、反風(fēng)門的啟/停;模擬量輸入模塊負(fù)責(zé)監(jiān)測進(jìn)風(fēng)口風(fēng)壓、潤滑站出口油壓等;實(shí)現(xiàn)主通風(fēng)機(jī)的主軸承溫度、電動機(jī)定子的三相繞組溫度、軸端軸承溫度信號的監(jiān)測與保護(hù);對主通風(fēng)機(jī)配套潤滑站的油溫、油位、壓力、流量信號進(jìn)行監(jiān)測和保護(hù)。
(2)上位機(jī):以西門子MP377觸摸屏作為核心部件,是系統(tǒng)的主控設(shè)備和操作主界面,實(shí)現(xiàn)“集控”狀態(tài)時的設(shè)備開??刂坪瓦\(yùn)行顯示,包括開機(jī)界面、風(fēng)機(jī)控制參數(shù)設(shè)置界面、系統(tǒng)監(jiān)控總界面、主風(fēng)機(jī)監(jiān)控界面、稀油站、冷卻泵監(jiān)控界面、 高低壓配電系統(tǒng)監(jiān)控界面、 高壓繼電保護(hù)參數(shù)設(shè)置界面、網(wǎng)絡(luò)通訊狀態(tài)圖、操作與報(bào)警信息歷史記錄表。實(shí)現(xiàn)以下功能:
1)實(shí)時顯示、記錄所有的監(jiān)測數(shù)據(jù),繪制歷史曲線,并提供歷史數(shù)據(jù)的查詢。
2)根據(jù)監(jiān)測到的負(fù)壓、差壓、溫度信號,計(jì)算主通風(fēng)機(jī)的風(fēng)量,繪制實(shí)時主通風(fēng)機(jī)特性曲線、功率風(fēng)量曲線、綜合效率曲線,并提供歷史數(shù)據(jù)查詢功能。
3)實(shí)時顯示系統(tǒng)的報(bào)警信息,實(shí)時報(bào)警打印,并提供報(bào)警歷史信息查詢功能。
4)與高壓綜合保護(hù)裝置通信,實(shí)現(xiàn)對高壓開關(guān)柜的遙測、遙控、遙信、一次回路及故障狀態(tài)監(jiān)視、電能參數(shù)包括有功、無功、頻率、電壓、電流、功率因數(shù)等數(shù)據(jù)的監(jiān)測。
uses the interface of 850nm wavelength laser, which is only applicable to multimode fiber. 1000base LX uses 1300nm wavelength laser interface, which is suitable for single-mode and multimode fiber. 1000base SX is mainly used for campus network and enterprise network backbone.
1000base LX is mainly used in man. At present, another application in man is the optical interface of 1000base LH long-distance Gigabit Ethernet switch. Generally, laser with wavelength of 1300nm or 1550nm is used, which can reach a relay free transmission distance of more than 50km or even 100km.
It should be noted that since IEEE gives the transmission distance of Gigabit Ethernet under the worst transmission conditions, in practical application, the transmission distance of products of various manufacturers far exceeds the provisions of the standard. For example, the 1000base-lx interface of Alcatel's powerrail Gigabit routing switch can transmit 22km without relay in practical test.
Gigabit industrial switch efficiency
The efficiency problem of half duplex Gigabit industrial switch has always been its weakness. After the number of workstations (such as computers) in a half duplex Ethernet