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- As a main part of PIGA, the design of servo loop is very important. 伺服回路是PIGA的重要環(huán)節,其性能直接影響PIGA的精度;
- If the loop gain is too great the system may go into oscillation. 如果環(huán)路增益過(guò)大,系統可能發(fā)生振蕩。
- This bias divided by the guidance loop gain will be the miss due to this cause. 這個(gè)偏差除以制導回路的放大系數,就是這個(gè)原因所引起的脫靶量。
- The macro stage tracks input signal, actual displacement is measured by linear encoder as inner servo loop. 采用雙伺服環(huán)控制策略,由宏動(dòng)機構跟蹤輸入信號,由精密光柵尺檢測宏動(dòng)機構的實(shí)際位移進(jìn)行反饋構成內伺服環(huán);
- The system uses feedforward terms so we would expect to keep to a given closed loop gain ±10%. 由于系統使用了前饋?lái)?,預期閉環(huán)增益保持在給定值的±10%25之內。
- I also added R29, again to reduce open loop gain and to make the amp more linear open loop. 我也補充說(shuō):r29,再次以減少開(kāi)環(huán)增益,并作出安培更多的線(xiàn)性開(kāi)環(huán)。
- Circuit parameters show a: 81db open loop gain, 82 degree phase margin, 123db CMRR, and power consumption around 6.2mW from 1.5V supply voltage. 電路參數為:81db的開(kāi)環(huán)增益、87度的相位裕度、123db共模抑制比;以及在1.;5V電源電壓下產(chǎn)生了約6
- The compression accuracy of an AAC system depends on its loop gain and the use of an integrator in the system will improve its static characteristic. 本文研究它的靜態(tài)和動(dòng)態(tài)性能及設計方法,證明了系統的靜態(tài)壓縮精度完全取決于環(huán)路增益。如在環(huán)路中使用一個(gè)積分器,系統的靜態(tài)性能將到到改善。
- Based en the concept of integrated electrical and mechanical dynamics, an active vibration control circuit is connected with the servo loop of the antenna system to decrease the lateral vibration using the rotation energy. 本方法主要以機、電一體的觀(guān)念,在天線(xiàn)的電機動(dòng)力伺服系統內,加入一抑制?路,以天線(xiàn)電動(dòng)機的旋轉動(dòng)力抑制天線(xiàn)的振動(dòng)。
- The input stages of the CCII and the operational amplifier in transimpedance implifier are realized with folded cascode amplifier to reach high CMRR , large open loop gain and low offset. 為了提高儀表放大器的電源抑制比,并得到大的開(kāi)環(huán)增益,相對低的失調等性能,電流傳輸器的輸入級和跨阻放大器中運算放大器輸入級均采用折疊共源共柵放大器。
- Decoupling and Robust Control on Servo Loop of DTG 動(dòng)力調諧陀螺平衡回路的全解耦魯棒控制
- Design of PIGA's Servo Loop Based on DSP 基于DSP的陀螺加速度計伺服回路設計
- In this paper,the effect of the angle vibration of platform is introduced,in which the pulse modullation of servo loops is made to reduce the gyroscope drift in the INS. 介紹了在平臺式慣導系統中,由脈沖調寬加矩方式控制的慣性穩定平臺的角振動(dòng)對陀螺漂移所產(chǎn)生的影響。
- In this paper,the effect of the angle vibration of platform isintroduced,in which the pulse modullation of servo loops is made to reduce the gyroscope drift in the INS. 介紹了在平臺式慣導系統中,由脈沖調寬加矩方式控制的慣性穩定平臺的角振動(dòng)對陀螺漂移所產(chǎn)生的影響。
- Analysis and Design of the Servo Loop for Sea Gravimeter Sensor 海洋重力傳感器伺服回路分析與設計
- R.B.Ridley,B.H.Cho,and F.C.Lee,"Analysis and interpretation of loop gains of multiloop-controlled swithing regulators,"IEEE Trans. Power Electron.,pp.489-498,Oct.1988. 希望能夠和樓上兩位多多交流溝通,我正在做的論文中有關(guān)于變換器的模型建立這一部分,感覺(jué)挺難的,還望多指教!樓上的能不能幫著(zhù)找篇文章,正急用,多謝了!
- A Research on PIGA's Digital Servo Loop Based on DSP 基于DSP的陀螺加速度計數字伺服回路研究
- The Sliding Variable Control in the Inertial Platform Servo Loop 平臺穩定回路的變結構控制
- Adaptive Inverse Control Based on Hydraulic Servo Loop 基于液壓伺服回路的自適應逆控制
- On Loop Gain of Oscillator Circuit of Three - Point Capacitance 電容三點(diǎn)式振蕩電路的環(huán)路增益