compensator method 中文意思是什麼

compensator method 解釋
補償法
  • compensator : n. 1. 賠償者。2. 【機械工程】補償器;脹縮件;補償棱鏡;【電學】調相機。
  • method : n 1 方法,方式;順序。2 (思想、言談上的)條理,規律,秩序。3 【生物學】分類法。4 〈M 〉【戲劇】...
  1. ( 3 ) modeling of the asymmetrical half bridge converter in the thesis, a small average circuit model of asymmetrical half bridge converter power stage is established by method of state space averaging. in term of it, a system model of total converter is founded. the characteristic of stabilization and dynamic is analysed and the compensator is designed basing of it

    ( 3 )不對稱半橋dc dc變換器的建模分析採用狀態空間平均法建立了不對稱半橋變換器功率級的小信號平均電路模型,在此基礎上建立整個變換器系統模型,對系統的動態特性和穩定性進行了分析並設計了補償器。
  2. Several strategies are shown in this thesis to minimize the torque ripple and achieve the performance. these strategies include dtc control of srm and a fuzzy - logic - based torque ripple reduction method for switched reluctance motors using a turn - off angle compensator approach. simulations show that these strategies can reduce the torque ripple

    本文介紹了能夠消除srm的轉矩脈動,提高srd性能的幾種新型控制策略,即srm的直接轉矩控制、基於模糊邏輯的關斷角_ ( off )的優化控制,並進行了模擬。
  3. This modeling method is applicable to most of facts and hvdc devices, not only to those devices including thyristor - controlled reactor ( tcr ), such as thyristor - controlled series capacitor ( tcsc ) and static var compensator ( svc ), but also to those devices including converter bridge, such as hvdc device and static synchronous compenstor ( statcom ), etc. it deduces the mathematical models of tcsc, hvdc, svc and statcom devices with the proposed method

    該方法能適用於大多數facts裝置和hvdc裝置,不僅可用於含有晶閘管可控電抗器( tcr )元件的裝置如可控串聯電容補償( tcsc ) 、靜止無功補償器( svc )等的建模,也可用於含換流橋的裝置如hvdc裝置、靜止同步補償器( statcom )等的建模。本論文採用動態相量法建立了tcsc 、 svc 、 hvdc及statcom裝置的數學模型。
  4. Some practical method to lifting the rated capacity of vsc - hvdc is discussed. ( 4 ) the subsynchronous oscillation ( sso ) characteristics of a synchronous machine connected to a static var compensator is studied with the complex torque coefficient method realized by time domain simulation, and some important conclusions are obtained which can guide the design and operation of svcs to avoid sso problem

    ( 4 )基於時域模擬實現的復轉矩系數法,對與靜止無功補償器svc相聯接的同步發電機組的次同步振蕩( sso )特性進行了深入的研究,得出了一些重要結論,可為svc的設計和運行提供避免sso的依據。
  5. Method based on the controlled technique of crt, a new split method for fabricating the three - dimensional physics compensator to achieve the imrt was developed

    方法:在適形放射治療技術的基礎上,提出了一種「切片」的方法,從而能利用現有簡單設備製作出三維熔鉛調強檔塊。
  6. In this paper, on the basis of increasingly mature fabrication technologies of planar integrated waveguide and the optical fiber grating, we make use of not only the ( de ) multiplexing and wavelength router characteristic of arrayed waveguide grating ( awg ), but also the dispersion peculiarity of uniform fiber bragg grating ( ufbg ). then a kind of dispersion compensator, which can compensate the dispersion of the optic signal in every channel in the wdm system respectively, is devised. the method makes the compensation efficiency maximum theoretically

    本文結合近幾年來日益成熟起來的平面集成波導製作工藝和光纖光柵製作技術,利用陣列波導光柵( awg )的復用特性和波長路由選擇特性與均勻光纖光柵( ufbg )的色散特性,提出了一種能對wdm系統中各分波光信號分別進行有針對性色散補償的補償器件,該器件使wdm系統中各分波光信號所得到的色散補償在理論上達到很高效率。
  7. When ( c, a, b ) is a minimum phase system with relative degree r > 1, we present a new method of constructing a dynamic compensator such that the closed loop system is asymptotically stable

    當系統的確定性部分為最小相位系統時,提出了一種構造動態補償器的新方法。
  8. Based on the research of siso case, we employ the method of feedforward compensation to decouple multiple input and multiple output ( mimo ) plant. it is the key point to design h2 - optimization compensator with the approach of l2 - norm optimization so as to apply directly the result of siso case to the decoupled system

    在對單輸入單輸出的對象研究基礎之上,作者採用相對增益法和前饋補償方法對多輸入多輸出( mimo )的對象進行前饋補償解耦,在這一過程中關鍵就是引入頻域l _ 2范數優化的方法對補償器進行設計使之具有h _ 2優化的特點。
  9. According to plant model, modified design method based on partly cancellation is adopted for ac power system. because new controller has strong stability, rc system does n ' t need high accurate mathematics model. furthermore, the stability can be improved by using special function in im and compensator

    其次,根據現有數學模型的特點,採用局部對消的思想設計了相應的重復控制器,解決了重復控制器對模型精度要求高、系統不易穩定的問題,並在控制器的設計中引入函數型內模和特殊函數,進一步提高了系統的性能。
  10. ( 2 ) using the method of parameter identification in literature [ 117 - 118 ], selecting gain function : giving the initial value of the parameter observer from the time serial of output variables of the system, the numerical simulation result shows that the parameter observer proposed in this paper can identify the unknown parameters of the system quickly and exactly no matter if the parameters keep invariable or change in some rule, and the identifying speed is faster than the method in [ 117 - 118 ], when the unknown parameters are being identified, vith parameter compensator, it can synchronizes two hyperchaotic systems completely even if some parameters mismatch

    ( 2 )採用文獻[ 117 - 118 ]提出的參數辨識方法,通過選取更一般的增益函數: l _ i ( x _ i ) = kx _ ii = 1 , 2 , 3並根據系統輸出變量的時間序列給出參數觀測器的初始值來進行參數辨識,數值模擬結果表明:採用本文的參數觀測器,在系統參數固定或變化的情況下,都可對系統未知參數實現快速高精度辨識,辨識的速度快于文獻[ 117 - 118 ]提出的方法;在辨識參數的同時,結合參數補償器,使兩個參數不匹配的超混沌系統同步。
  11. The technique of fiber grating made the research, manufacture and integration of all optical fiber devices possible, so fiber grating will act an important part in aon. the applications have caused people ' s great interest and enthusiasm such as optical switch, optical add / drop multiplexer, and optical fiber ' s dispersion compensator, etc. using transfer matrix method and procedure of numerical analysis, the paper analyze theoretically that how grating ' s parameters influence sampled gratings " reflective spectrum

    光纖光柵技術使得全光纖器件的研製和集成成為可能,故光纖光柵將在全光網中扮演十分重要的角色,它在光開關、光的分插復用、光纖的色散補償等關鍵技術中的應用已引起人們的極大興趣和研究熱情。
  12. In this paper, we analyze the statistic characters of time - delay in detail, and put forward to adopt elman nn to forecast time - delay intelligently, design appropriate compensator based on adaptive smith forecast theory. the experiment results prove that this method can improve the forecast accuracy and system ' s dynamic performance. in the application of real time data transmission, forward error correction ( fec ) is a good method to resume the lost data

    針對這個問題本文進行了詳盡的統計特性分析,並且提出採用elman動態神經網路結構對網路時延進行智能預測,並根據自適應smith預估補償控制原理設計合適的時延補償器,並且應用於基於web的二階水位控制系統中,實驗結果證明了採用此方法可以提高預測精度,使時延補償器適應時延變化的動態性更強,從而在保證系統穩定性的基礎上,西安理工大學碩士學位論文提高系統的時延補償精度。
  13. The method to obtain the equivalent inductance of im is proposed, and the small - signal model of the peak - current controlled im - fac converter is founded. based on the presented small signal model, the parameter design of the compensator is accomplished

    提出im中電感的等效方法,依據電感等效值和建立的峰值電流控制fac變換器的小信號模型完成了採用峰值電流控制的im - fac變換器的小信號分析和補償器設計。
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