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- This dissertation studies the applications of backstepping control design method on spacecraft attitude control system. 本論文研究退步控制設計方法在航天器姿態(tài)控制系統中的應用問(wèn)題。
- Sequential control design method is an advanced( regular) design method for design of PLC ladder diagram, and it is a powerful tool. 順序控制設計法是設計plc梯形圖的一種先進(jìn)規范的方法和有力工具。
- Research on control design method on wind-induced vibrating comfort of cylindrical TLD-tall steel structure systems is made. 研究了四柱形TLD-高層鋼結構系統的風(fēng)振舒適度控制設計方法。
- Research on control design method on wind-induced vibrating comfort of TMD-tall steel structure system is made in this paper. 研究了TMD-高層鋼結構系統的風(fēng)振舒適度控制設計方法。
- Abstract: Based on the theory of feedback-linearization and the simplified bank-to-turn (BTT) control design model, a BTT missile autopilot design method is presented. 文摘:提出基于反饋線(xiàn)性化理論的BTT導彈自動(dòng)駕駛儀設計方法。
- Based on the theory of feedback-linearization and the simplified bank-to-turn (BTT) control design model, a BTT missile autopilot design method is presented. 提出基于反饋線(xiàn)性化理論的BTT導彈自動(dòng)駕駛儀設計方法。
- Hif document format, introduced seven of the digital control design methods. 你好,管理員,我十分需要貴網(wǎng)站的一個(gè)程序,請為我開(kāi)通下載。
- Simulation results show the effectiveness of the controller design method to the NCS. 仿真研究表明該設計方法應用到網(wǎng)絡(luò )控制系統的有效性。
- Lastly, simulation and field tests results on prototype vehicle demonstrate the validity of controller design method, braking method and ABS/ASR control strategies of EV. 最后,通過(guò)對電動(dòng)車(chē)制動(dòng)和ABS/ASR控制過(guò)程的仿真及在樣車(chē)上的相關(guān)實(shí)驗證明本文電動(dòng)車(chē)控制器設計合理,電動(dòng)車(chē)制動(dòng)和ABS/ASR控制策略正確,能夠實(shí)現對四電動(dòng)輪獨立驅動(dòng)電動(dòng)車(chē)良好的調速控制。
- To solve the attitude tracking problem of a rigid satellite, a fuzzy sliding mode controller design method is addressed. 摘要針對剛體衛星的姿態(tài)跟蹤問(wèn)題,提出了一種模糊滑模變結構控制器設計方法。
- In the design of feedback compensation loop, the LQG/LTR controller design method, which has the advantage of robustness, has been adopted. 而在穩壓補償迴路的 設計上,采用具有穩健性特點(diǎn)的LQG/LTR設計方法,使系統于不同工作點(diǎn)皆能正常工作,并且提高其性能。
- A robust-optimal controller design method is proposed based on T-S fuzzy model to deal with the nonlinear and uncertainty problems on the flight simulation turntable system. 針對飛行器仿真轉臺系統的非線(xiàn)性以及不確定性問(wèn)題,提出了基于T-S模糊模型的魯棒最優(yōu)控制器設計方法。
- We will use the fuzzy theory to the application of the PID controller design,and produced the fuzzy PID controller design method,in which the parameters might adjust. 我們將模糊控制理論應用于PID控制器的設計,給出了參數可調整的模糊PID控制器的設計方法。
- Finally, from the point of delay-dependent robust stabilization, a controller design method is proposed to make sure the asymptotical stability for the system. 仿真和實(shí)驗結果證明了所提出方法的有效性。
- The design method of traffic light control system by using Very-High-Speed Integrated Circuit Hardware Description Language(VHDL) is introduced,and the downloading of the controller design to the FPGA/CPLD chip in MAX+PLUS II is fulfilled. 用VHDL語(yǔ)言設計交通燈控制系統,并在MAX+PLUSII系統對FPGA/CPLD芯片進(jìn)行下載,由于生成的是集成化的數字電路,沒(méi)有傳統設計中的接線(xiàn)問(wèn)題,所以故障率低、可靠性高,而且體積小。
- Based on RBF neural networks and backstepping control techniques, a nonlinear adaptive controller design method is proposed for missile control systems with a general set of uncertainties. 在導彈系統存在廣義不確定性情況下,提出了一種基于反演設計技術(shù)和RBF神經(jīng)網(wǎng)絡(luò )的導彈非線(xiàn)性自適應控制系統設計方法。
- Based on RBF neural networks and backstepping control techniques, a nonlinear robust controller design method is proposed for missile control systems with input unmodeled dynamics in pitch channel. 在導彈系統俯仰通道中存在輸入未建模動(dòng)態(tài)情況下,提出了一種基于RBF神經(jīng)網(wǎng)絡(luò )和反演控制技術(shù)的非線(xiàn)性魯棒控制器的設計方法。
- In low level intelligence, using the basic research way, this paper proposes the nonlinear PID (NPID) controller design method based on HSIC and the improving way in P-I-D control parts. 本文在低層次智能的實(shí)現上,運用仿人智能控制的基本研究方法和手段,提出了基于HSIC思想的NPID控制器的設計原理,給出了比例-積分-微分三個(gè)分量改進(jìn)的基本方法;
- active optimal control design method 主動(dòng)最優(yōu)控制設計方法
- Compared with the traditional controller design methods, the proposed approach for PSS design is more simple, convenient, intelligent and robust. 與傳統的控制器設計方法相比,所提出的方法具有設計簡(jiǎn)便、智能化程度高、魯棒性好的優(yōu)點(diǎn)。