peterson coil 中文意思是什麼

peterson coil 解釋
彼得森線圈
  • peterson : 彼得森
  • coil : vt vi 卷,盤繞,(把…)盤[卷]成一圈 (up)。n 1 (一)卷,(一)盤,(一)圈。2 螺旋管,蛇管。3 ...
  1. According to the quickly adjustable characteristic of the peterson coil grounding system, this dissertation proposes a new control strategy. when the system is in operation, the strategy can limit the series resonance over - voltage by using the off - resonance method. when fault occurs, the strategy can conveniently suppressing arc by rapidly adjusting the inductance value of the peterson coil to the point, which the resonance with grounding capacitance of the power network is occurred

    依據可控硅控制消弧線圈接地系統的快速可控性,一改傳統的電網正常運行時調節消弧線圈接近於全補償的預調諧方法,提出正常運行時採用脫諧方法抑制串聯諧振過電壓;故障時立即調節消弧線圈電感量達到與對地電容諧振,以利熄弧的新型調節原理和方法。
  2. With this grounding method, the inductance value of the peterson coil can be adjusted quickly and continuously in real time

    採用這種接地方式,消弧線圈的電感量具有快速、連續可調節性。
  3. Development and application of the peterson coil device

    消弧線圈裝置的發展和應用
  4. In mode selection of middle and large capacity units nowadays, there mainly have two types of peterson coil grounding and distribution transformer with resistor

    在現有大中型發電機中性點接地選擇上,主要有消弧線圈接地方式和接地變高阻接地方式。
  5. After the neutral point is grounded through peterson coil, it can decrease the capacitor current through fault point and the over - voltage caused by the grounding fault, which is advantage for the extinguishments of electric arc

    中性點經消弧線圈接地后,有效地減小了流過故障點的電容電流,減小了弧光接地過電壓,有利於電弧熄滅。
  6. In this paper, the research was made to solute these problems. the peterson coil compensation system has been designed which can measure capacitor current and damp degree ; a fault selection method of distribution network which was put forward that based on ftu

    本課題就這兩方面的問題進行了深入研究,設計了一種消弧線圈自動補償裝置,該裝置可測量系統對地電容電流和阻尼率,具有響應快、準確性高的優點;同時提出了一種基於ftu的配電網接地選線方法。
  7. To solve these problems, the compensating method of neutral point grounding through peterson coil is commonly used in our country

    為了解決這一問題,我國現在普遍採用中性點經消弧線圈接地的補償方式。
  8. In china, neutral isolated and peterson coil grounded system are widely used in 6 kv ~ 35kv medium voltage distribution networks

    我國大多數6 35kv中壓配電網均採用中性點不接地或經消弧線圈接地的運行方式。
  9. This dissertation is based on a novel peterson coil based grounding method, which is temporarily named novel quickly adjustable peterson coil

    本論文基於一種新型消弧線圈接地方式,暫取名為「新型快速可調節消弧線圈」 。
  10. At first, this paper summarized the developing and the present state of peterson coil automatic compensation system, and introduces the basic theory of it

    本文首先綜合比較了各種中性點接地方式的特點,介紹了消弧線圈的基本構成以及調諧原理。
  11. The quick adjustment of the inductance value of the peterson coil is realized by using a method, which can control the trigger angle of the thyristor with power electronics technology

    採用電力電子技術實現消弧線圈的控制是利用可控硅的相控方式對消弧線圈實現電感量可調的原理。
  12. Finally, system ’ s measurement error and error compensation method are analyzed, and some measures of anti - interference are taken to improve system ’ s reliability. the project was finished by combination the theory and the practice, and a new way on peterson coil automatic compensation is available

    本課題將理論運用和實踐相結合,為中性點經消弧線圈接地系統的自動調諧提供了一種新的技術手段,具有廣闊的應用前景。
  13. A novel structure of peterson coil with particular design can fully satisfy above requirements and allow us to use the lower critical voltage - level thyristor in the 6 - 10kv and higher voltage power system. the novel peterson coil design resolves key problems of using thyristor to control the peterson coil, and becomes the foundation of realizing quick adjustment of the inductance value of the peterson coil

    由於其特有的諧波問題、耐壓問題等,本論文涉及的一種新型消弧線圈,通過消弧線圈的特殊設計,使常規耐壓范圍的可控硅技術可以應用於6 - 10kv和更高電壓等級的系統,解決了可控硅控制應用於消弧線圈的根本問題,為實現電感量的快速調節打下了基礎。
  14. Association with the situation of china, the solution is grounding the neuter point by peterson coil which will decrease the fault current and improve the human security. but it also brings two problems : first, the improper compensation will cause over voltage ; second, it ’ s hard to fault select

    但是,中性點經消弧線圈接地后存在兩方面的問題:首先,消弧線圈調諧不當易產生諧振過電壓;其次,在中性點經消弧線圈接地系統中,發生單相接地時故障選線困難。
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