2) integrated energy storage and attitude control
储能/姿控一体化
1.
Experimental study on power loss of integrated energy storage and attitude control flywheel;
储能/姿控一体化飞轮能耗试验研究
3) attitude control and energy storage flywheel
姿控储能飞轮
5) satellite attitude control flywheel
姿控飞轮
1.
To shorten the design period of control system of a satellite attitude control flywheel,and to verify the feasibility and effectiveness of design schemes,a control model based on a mathematics model for flywheels was established combined with acceleration techniques,reversal connection braking control and commutation control for the control system of flywheels.
为了缩短姿控飞轮控制系统的设计周期和快速验证设计方案的可行性及有效性,在分析姿控飞轮电机本体数学模型的基础上,结合该姿控飞轮控制系统所采用的加速控制、制动控制、换相控制,建立了姿控飞轮控制系统模型。
6) integrated power/attitude control system
能量/姿态一体化控制
1.
This paper deals with the singularity problem and steering law design of integrated power/attitude control system (IPACS) with variable-speed control moment gyros (VSCMGs).
研究使用变速控制力矩陀螺群(VSCMGs)的能量/姿态一体化控制系统(IPACS)的奇异性分析与操纵律设计问题。
补充资料:超导储能(storedenergyofsuperconductivity)
超导储能(storedenergyofsuperconductivity)
由于超导磁体环流在零电阻下无能耗运行,所以超导线圈中可持久地储存电磁能,且在短路情况下运行,称超导储能。它的优点在于:⑴一次储能可长期无损耗地保存,又可瞬时放出;⑵储存能量高,现已可达107J/m3以上;⑶用低压电源励磁即可;⑷装置体积小;⑸节省了常规所需的送变电设备和减少送变电损耗。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条