reactive power compensation中文,reactive power compensation的意思,reactive power compensation翻译及用法

2025-11-24 20:51 浏览次数 13

reactive power compensation

英[ri:ˈæktɪv ˈpauə ˌkɔmpenˈseiʃən]美[riˈæktɪv ˈpaʊɚ ˌkɑmpənˈseʃən]

无功补偿

reactive power compensation 片语

片语

automatic reactive-power compensation动态无功补偿

Reactive power compensation installation无功补偿装置

the reactive power compensation无功补偿

reactive e power compensation无功补偿

unified reactive-power compensation一体化无功补偿

reactive automatic power compensation无功自动补偿

reactive power compensation system无功功率补偿系统

low voltage dynamic reactive-power compensation低压动态无功补偿

reactive power compensation device无功补偿装置

reactive power compensation 例句

英汉例句

  • for a radial distribution grid in consumer side a data base of the reactive power compensation on the spot is built.

    针对辐射状用户侧配电网络,建立了用电企业无功就地补偿数据库。

  • through the single-dynamic load model dynamic reactive power compensation device can change the original system bifurcation point, increase the load limits and improve the system voltage stability.

    通过对单机。动态负荷模型添加无功功率动态补偿装置,可以改变原系统的分岔点,增加了负荷极限,从而提高了系统电压稳定性。

  • dynamic reactive power compensation is a main measure of reducing network dissipation and improving power quality.

    动态无功功率补偿是电网节能降耗和改善电能质量的主要措施之一。

  • this thesis considers the significance of reactive power compensation and analyses the indispensability and economic benefits of reactive power compensation.

    本文从无功补偿的现实意义出发,分析了无功补偿的必要性和经济效益。

  • then through a example, it verifies the effects of svg on the reactive power compensation and voltage fluctuation suppression.

    然后通过一个算例来验证svg对电网具有无功补偿和抑制电压波动的作用。

  • with the popularity of household appliances, a lot of reactive power is consumed, so reactive power compensation for the rural grids has become increasingly important.

    随着家用电器的普及、大量消耗电网的无功,进行农网无功补偿显得越来越重要。

  • traditional design method of reactive power compensation for substation should be reformed.

    传统的变电站无功补偿设计方法应该与时俱进改革。

  • this paper presents a methodology to determine the adequate reactive power compensation for restoring power flow solvability in the unsolvable severe contingencies.

    本文提出了一种方法,以确定适当的无功功率赔偿来恢复在无法解决的严重意外中的潮流解。

  • it became necessary means that reactive power compensation devices were installed in proper position of power network.

    在电网中的适当位置装设无功补偿装置成为满足电网无功需求的必要手段。

  • the thyristor switched capacitor(tsc)is the dynamic reactive power compensation equipment using thyristor as no-contact switch and an important part of the svc technology.

    晶闸管投切电容器(tsc)是一种利用晶闸管作为无触点开关的动态无功补偿装置,是静止无功补偿技术的一个重要组成部分。

  • a reactive power compensation system is essential and an important part for the supply system.

    无功功率补偿装置是电力供电系统中不可缺少的、非常重要的组成部分。

  • influences of improved lc output filter on statcom are discussed from both reactive power compensation ability and transient current tracking ability.

    首次应用微孔薄膜传感法及瞬时跟蹤电路等测量涂料层的破裂强度,使仪器的性能得到很大的提高,并在生产实际中得到应用。

  • reactive power balance of power system is important and reactive power compensation can correct displacement power factor.

    电力系统无功功率平衡非常重要,无功功率补偿能进行基波功率因数校正。

  • in chapter two, the theory and superiority of reactive power compensation is analyzed and a practical mathematic model of optimal capacitor placement is set up.

    第二章分析了无功补偿的原理及优势,并建立了较符合实际的配电网并联电容器优化配置模型。

  • rational allocation of reactive power compensation to reduce the loss distribution network, save power and improve the quality of power supply is important.

    合理配置无功补偿对降低配电网网损、节约电能、提高供电质量有重要意义。

  • on the other hand, properly reactive power compensation is an effective way to saving energy and decreasing loss and improving voltage quality.

    结果表明了配电变压器的节能和经济运行对节能减排、改善电网电能质量具有重要意义。

  • a new type of low voltage reactive power compensation device is introduced, which is simple in design, low in cost and high inc…

    针对以上情况研制的新型低压无功补偿装置电路设计简单、成本低、控制精确且可靠性高。

  • on the basis of the distribution the capacity of the node reactive power compensation can be determined. the validity and accuracy of the algorithm are demonstrated b…

    对于电压控制节点 ,还可以计算出无功注入功率的随机分布 ,并由此确定在这些节点上应配置的无功补偿设备容量。

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