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ASP120000電源模塊
NS2PTOC還可以用作備份保護(hù)也就是說(shuō),在線路保護(hù)或斷路器無(wú)法清除不平衡系統(tǒng)故障的情況下保護(hù)發(fā)電機(jī)。為了在外部不平衡條件下為發(fā)電機(jī)提供有效保護(hù),NS2PTOC能夠直接測(cè)量負(fù)序電流。NS2PTOC還有一個(gè)延時(shí)特性,它與標(biāo)準(zhǔn)IEEE C50.13中定義的發(fā)電機(jī)2 2 I t K=的加熱特性相匹配。其中:I2是以每單位額定發(fā)電機(jī)電流表示的負(fù)序電流t是以秒為單位的運(yùn)行時(shí)間K是一個(gè)常數(shù),取決于發(fā)電機(jī)的尺寸和設(shè)計(jì)NS2PTOC具有廣泛的K設(shè)置范圍和靈敏度負(fù)序電流檢測(cè)和跳閘能力,直至發(fā)電機(jī)的連續(xù)能力。單獨(dú)的輸出可用作警報(bào)功能,警告操作員潛在的危險(xiǎn)情況。同步發(fā)電機(jī)AEGGAPC的意外通電保護(hù)由于操作錯(cuò)誤、斷路器頭閃絡(luò)、控制電路故障或這些原因的組合,離線發(fā)電機(jī)的意外或意外通電經(jīng)常發(fā)生。意外通電的發(fā)電機(jī)作為感應(yīng)電機(jī)運(yùn)行,從系統(tǒng)中吸取大量電流。電壓監(jiān)控過(guò)電流保護(hù)用于保護(hù)意外通電的發(fā)電機(jī)。同步發(fā)電機(jī)意外通電保護(hù)(AEGGAPC)采用發(fā)電機(jī)端子側(cè)或發(fā)電機(jī)中性點(diǎn)側(cè)的最大相電流輸入和端子側(cè)的最大相間電壓輸入。當(dāng)終端電壓在預(yù)設(shè)時(shí)間內(nèi)降至指定電壓水平以下時(shí),AEGGAPC啟用。
電壓保護(hù)
兩步欠壓保護(hù)UV2PTUV在故障或異常情況下,電力系統(tǒng)可能會(huì)出現(xiàn)欠壓。兩步欠壓保護(hù)(UV2PTUV)功能可用于斷開(kāi)斷路器,為斷電時(shí)的系統(tǒng)恢復(fù)做好準(zhǔn)備,或作為主保護(hù)的長(zhǎng)期延遲備份。UV2PTUV有兩個(gè)電壓階躍,每個(gè)電壓階躍具有反向或定時(shí)限延時(shí)。兩步過(guò)電壓保護(hù)OV2PTOV在異常情況下,如突然斷電、分接開(kāi)關(guān)調(diào)節(jié)故障、長(zhǎng)線路線路端部開(kāi)路等,電力系統(tǒng)中可能會(huì)發(fā)生過(guò)電壓。兩步過(guò)壓保護(hù)(OV2PTO)功能可用于檢測(cè)線路端部的開(kāi)路,通常與定向無(wú)功過(guò)功率功能相結(jié)合,以監(jiān)控系統(tǒng)電壓。當(dāng)觸發(fā)時(shí),該功能將引發(fā)警報(bào)、接通電抗器或斷開(kāi)電容器組。OV2PTOV有兩個(gè)電壓階躍,每個(gè)電壓階躍都具有反時(shí)限或定時(shí)延時(shí)。OV2PTOV具有極高的復(fù)位比,允許設(shè)置接近系統(tǒng)工作電壓。兩步剩余過(guò)電壓保護(hù)ROV2PTOV接地故障期間,電力系統(tǒng)中可能會(huì)出現(xiàn)剩余電壓。兩步剩余過(guò)電壓保護(hù)ROV2PTOV功能計(jì)算來(lái)自三相電壓輸入變壓器的剩余電壓,或測(cè)量來(lái)自開(kāi)口三角形或中性點(diǎn)電壓變壓器饋電的單電壓輸入變壓器。ROV2PTOV有兩個(gè)電壓階躍,每個(gè)電壓階躍具有反時(shí)限或定時(shí)限延時(shí)。復(fù)位延遲可確保間歇性接地故障的運(yùn)行。
NS2PTOC can also be used as a backup protection
that is, to protect the generator in case line protections or circuit breakers fail to clear unbalanced system faults. To provide an effective protection for the generator for external unbalanced conditions, NS2PTOC is able to directly measure the negative sequence current. NS2PTOC also has a time delay characteristic which matches the heating characteristic of the generator 2 2 I t K= as defined in standard IEEE C50.13. where: I2 is negative sequence current expressed in per unit of the rated generator current t is operating time in seconds K is a constant which depends of the generators size and design NS2PTOC has a wide range of K settings and the sensitivity and capability of detecting and tripping for negative sequence currents down to the continuous capability of a generator. A separate output is available as an alarm feature to warn the operator of a potentially dangerous situation. Accidental energizing protection for synchronous generator AEGGAPC Inadvertent or accidental energizing of off-line generators has occurred often enough due to operating errors, breaker head flashovers, control circuit malfunctions, or a combination of these causes. Inadvertently energized generator operates as induction motor drawing a large current from the system. The voltage supervised overcurrent protection is used to protect the inadvertently energized generator. Accidental energizing protection for synchronous generator (AEGGAPC) takes the maximum phase current input from the generator terminal side or from generator neutral side and maximum phase to phase voltage inputs from the terminal side. AEGGAPC is enabled when the terminal voltage drops below the specified voltage level for the preset time.
Voltage protection
Two step undervoltage protection UV2PTUV Undervoltages can occur in the power system during faults or abnormal conditions. Two step undervoltage protection (UV2PTUV) function can be used to open circuit breakers to prepare for system restoration at power outages or as longtime delayed back-up to primary protection. UV2PTUV has two voltage steps, each with inverse or definite time delay. Two step overvoltage protection OV2PTOV Overvoltages may occur in the power system during abnormal conditions such as sudden power loss, tap changer regulating failures, open line ends on long lines etc. Two step overvoltage protection (OV2PTOV) function can be used to detect open line ends, normally then combined with a directional reactive over-power function to supervise the system voltage. When triggered, the function will cause an alarm, switch in reactors, or switch out capacitor banks. OV2PTOV has two voltage steps, each of them with inverse or definite time delayed. OV2PTOV has an extremely high reset ratio to allow settings close to system service voltage. Two step residual overvoltage protection ROV2PTOV Residual voltages may occur in the power system during earth faults. Two step residual overvoltage protection ROV2PTOV function calculates the residual voltage from the three-phase voltage input transformers or measures it from a single voltage input transformer fed from an open delta or neutral point voltage transformer. ROV2PTOV has two voltage steps, each with inverse or definite time delay. Reset delay ensures operation for intermittent earth faults.
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