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本文介绍了基于双闭环直流调速控制系统的设计,选择功率为2.. 翻译

原文(简体中文):
本文介绍了基于双闭环直流调速控制系统的设计,选择功率为2.8KW的电动机,根据直流调速双闭环控制系统的工作原理,介绍了直流调速系统的电流调节器与转速调节器 更多:https://www.bmcx.com/ ,详细分析了系统的起动过程及参数设计,经过较为精密的数学计算,运用MATLAB对直流电动机双闭环调速系统进行数学建模和系统仿真。根据仿真结果分析该调速系统满足我们的设计要求。
翻译结果(英语)1:
In this paper, based on double closed loop DC control system design, select power 2.8kw motor, according to DC converter closed-loop control system works to introduce the DC drive system current regulator and speed regulator 更多:https://www.bmcx.com/ , detailed start the process and parameter design of the system, after a more sophisticated mathematical calculation, the use of Matlab double closed-loop DC motor speed control system, mathematical modeling and system simulation. The speed control system according to the analysis of simulation results meet our design requirements.

翻译结果(英语)2:
This describes has based on double closed ring DC adjustable speed control system of design, select power for 2.8KW of motor, under DC adjustable speed double closed ring control system of work principle, describes has DC adjustable speed system of current regulator and speed regulator 更多:https://www.bmcx.com/ , more analysis has system of up dynamic process and the parameter design, after more precision of mathematics calculation, using MATLAB on DC motor double closed ring adjustable speed system for mathematics built die and system simulation. Based on the simulation results of the speed regulation system to meet our design requirements.

翻译结果(英语)3:
This paper introduces the dc speed control based on double closed loop control system design, the choice of the power of 2.8 KW motor, according to dc speed control double closed loop control system work principle 更多:https://www.bmcx.com/ , and introduces the dc speed control system of current regulator and the speed regulator, a detailed analysis of the system starting process and parameter design,After more precise calculation of dc motor using MATLAB double closed loop speed regulation system for mathematical modeling and simulation system. According to the simulation result analysis of the speed control system to satisfy our design requirements.





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