零相位誤差 的英文怎麼說

中文拼音 [língxiāngwèichā]
零相位誤差 英文
null phase error
  • : Ⅰ數詞1 (零數) zero2 (數的空位) zero sign (0); nought 3 (表示沒有數量;無) nil; nought 4 (...
  • : 相Ⅰ名詞1 (相貌; 外貌) looks; appearance 2 (坐、立等的姿態) bearing; posture 3 [物理學] (相位...
  • : Ⅰ名詞1 (所在或所佔的地方) place; location 2 (職位; 地位) position; post; status 3 (特指皇帝...
  • : Ⅰ名詞(錯誤) mistake; error Ⅱ動詞1 (弄錯) mistake; misunderstand 2 (耽誤) miss 3 (使受損害...
  • : 差Ⅰ名詞1 (不相同; 不相合) difference; dissimilarity 2 (差錯) mistake 3 [數學] (差數) differ...
  • 相位 : phase position; phase
  • 誤差 : error
  1. Then one of the methods of rotor position detection - bemf zero crossing point detection is explained in detail. in succession, the chapter dissertates the method of measuring phase voltage and supply voltage, and analyses the error of rotor position using this method

    對轉子置檢測方法中的反電勢過點法作了比較詳細的介紹,討論了反電勢法中電壓和端電壓的檢測方法,並分析了利用該方法時而產生的轉子置檢測
  2. " misalignment error ", which is caused by misalignment during null test adjustment, together with fabrication errors is shown in test results, and it is important to separate these two errors so that the test results can be used in ccos process. asic software is developed for eliminating nonlinear error and separating misalignment error, and a high accuracy, suitable format data file is generated by asic for further analysis for ccos process

    在非球面測量技術方面,主要針對補償檢驗過程中測量坐標的「非線性」的形成原因及其補償演算法由光學調整量引起的測量以及調整量的擬和方法等問題進行了討論,並編制了應的干涉檢驗數據處理軟體asic ,干涉檢驗結果經分析、處理后能夠滿足ccos的技術要求並指導加工。
  3. For the feedforward controller design, zero error characteristic of the step response of system with zero phase error tracking controller ( zpetc ) is proved and its application is studied

    對於前饋控制器設計,證明了零相位誤差跟蹤演算法在階躍輸入下的無性並研究了該特性的應用。
  4. A mathematical model in the grinding technology of explosion - proof surface is worked out to find out vibration characteristics, amplitude and phase, and educe the relation curve between shape error and technical parameter

    進而討論箱體件加工工藝過程轉換模型、形狀精度特徵、傳遞圖、描述方程、轉換結構圖;提出防爆面磨削工藝系統的數學模型;求解出振動特性、幅值和,得出了形狀與工藝參數的關系曲線。
  5. Many kinds of the heat sources ( frictional heat, cutting heat, ambient temperature, etc ) in machining system produce a kind of temperature distribution. this temperature distribution induces thermal deformation between machine tools, tool, work - piece and work holding fixture. this deformation affects the relative displacement between the work piece and the cutter, causes the manufacturing errors, and influences the machining accuracy of the work - piece

    在機械加工中,工藝系統在各種熱源(摩擦熱、切削熱、環境溫度、熱輻射等)的作用下,產生溫度場,致使機床、刀具、工件、夾具等產生熱變形,從而影響工件與刀具間的移,造成加工,進而影響件的加工精度。
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