backup protection造句
例句與造句
- B dep - 535 backup protection for transformers
2dep 535變壓器后備保護(hù) - Circuit local backup protection
自端入力后備保護(hù) - Dep - 535 is used as backup protection for transformers of 110kv or below voltage levels
Dep 535微機(jī)主變后備保護(hù)裝置適用于110kv及以下電壓等級變壓器的后備保護(hù)。 - But the backup protection is still made up of simple protections based on the traditional principle
而對于后備保護(hù),基本上仍然是由一些基于傳統(tǒng)原理的較為簡單的保護(hù)所構(gòu)成。 - Agent protection can prevent the maloperation and accelerate the backup protection . the maloperation of this protection is not a common phenomenon
大型電站agent保護(hù)對于保護(hù)整體性能的提高主要體現(xiàn)在防止保護(hù)的不正確動作和加快后備保護(hù)的動作速度。 - It's difficult to find backup protection in a sentence. 用backup protection造句挺難的
- Backup protection backup protection consists of protective devices , which are intended to operate only after other protective devices have failed to operate or detect a fault
后備保護(hù)裝置后備保護(hù)裝置是在其他保護(hù)裝置動作失敗或發(fā)生故障時動作的保護(hù)裝置。 - This paper brings forward the cooperation scheme of the line backup protection and differential protection of main transformer ; this scheme can improve the performance of the protection
本文提出了對線路后備保護(hù)以及對主變差動保護(hù)的協(xié)調(diào)方案,該方案能夠在特定情形下改善保護(hù)的性能。 - Now , the real time , precision of calculation and the velocity of runningdatum are required to improve on backup protection device for transformer . single - chip system can ’ t satisfy user ’ s requirements in many situations
目前,對變壓器保護(hù)裝置的實時性、計算精度和大量數(shù)據(jù)運算速度的要求不斷提高,單片機(jī)系統(tǒng)在很多場合下已經(jīng)不能很好的滿足用戶要求。 - Firstly , the reliability ofmicro computer protection is analyzed and calculated according to theory . at thesame time , the reliability of backup protection device for transformer with self - examis estimated by constructing state - module
文章在微機(jī)保護(hù)可靠性方面進(jìn)行了較為深入的理論分析與計算,構(gòu)造了狀態(tài)空間模型,為帶自檢的變壓器后備保護(hù)裝置的可靠性作出了估算。 - Results testifiedthat the device has high measuring precision , high correct action , high reliability etc . now , the application of backup protection device for transformer based on dsp isvery wide from its researching
通過對變壓器后備保護(hù)裝置進(jìn)行較全面的動模實驗,驗證了保護(hù)裝置的各項性能指標(biāo),同時實驗結(jié)果表明該裝置具有測量精度高、動作準(zhǔn)確率高、可靠性高等特點。 - Agent protection can also improve the action speed of the backup protection ; this paper puts forward the cooperation scheme of the backup protection of the generator and transformer ; at the same time , the validity of this method is proved in the matlab
Agent保護(hù)的另一個主要功能是提高后備保護(hù)的動作速度,本文提出了發(fā)變組后備保護(hù)的協(xié)調(diào)方案并用matlab驗證了方案的有效性。 - Lastly , based on understanding the structure and function of backup protection device fortransformer , its hardware and software are designed and introduced . the backup protection device for transformer based on dsp was passedperformance criterions of required by using dynamic simulations
最后,在了解變壓器后備保護(hù)裝置的結(jié)構(gòu)和功能的基礎(chǔ)上,文章提出了變壓器后備保護(hù)裝置的設(shè)計方案,介紹了部分硬、軟件的設(shè)計。 - One defines break points based on node degree with comparing the amount of all backup protections in a mutiloop network . it is testified by practice to have legitimacy and feasibility with simple theory and improve efficiency a lot of protection coordination setting
其一,運用網(wǎng)絡(luò)節(jié)點度的概念,通過比較環(huán)網(wǎng)中所有保護(hù)的后備保護(hù)的數(shù)量的大小來確定斷點,理論上簡單合理,實踐證明正確可行,極大的提高了保護(hù)整定配合的效率。 - Here , both electric current protection and distance protection neither be able to satisfaction require , whereas none but pilot protection could realize complete line rapid trip off , the stability and bump feeding power , reduce fault bring about " spoil degree , improvement cooperateing performance with backup protection
此時,電流保護(hù)和距離保護(hù)都不能滿足要求,而只有縱聯(lián)保護(hù)可以實現(xiàn)全線速動,因此它可保證電力系統(tǒng)并列運行的穩(wěn)定性和提高輸送功率、縮小故障造成的損壞程度、改善與后備保護(hù)的配合性能。 - The adaptive protective relays categorically sets up the math model and realized theory of adaptive relay protective settings calculation . the calculation of complex faults solves the computation of all kinds of faults involved in power network . the coordination of directional protective relays in multiloop networks solves the calculation of break points set and the coordination of main protection with backup protection
其中自適應(yīng)定值計算和管理問題分類建立不同元件(線路)自適應(yīng)繼電保護(hù)定值計算的數(shù)學(xué)模型及其實現(xiàn)的理論;復(fù)故障計算問題解決了計算電網(wǎng)中各種故障(包括短路、斷線)的計算問題;復(fù)雜環(huán)網(wǎng)的保護(hù)配合問題解決了大規(guī)模復(fù)雜環(huán)網(wǎng)斷點的求取以及主/后備保護(hù)整定配合的問題。
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