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1)  Three-tank
三水箱
1.
Monitoring and Controlling Multi-nonlinear Variables in Experimental Equipment of the Three-tank;
三水箱实验装置多变量在线检测与控制
2)  3D waterphantom system
三维水箱
1.
Objective: To accurately measure the surface and build-up region dose distribution of megavoltage photon beam irradiation, and evaluate the measurements performed in a 3D waterphantom system.
目的:准确测量高能光子射线剂量建成区的剂量分布,评估三维水箱扫描深度剂量曲线在表浅部位的误差。
3)  three-tank system
三容水箱
1.
In the end, using single PC mode, an experiment taking the three-tank system as the controlled obje.
最后应用MATLABRTW得单机型系统结构,以三容水箱作为控制对象验证了该构想的有效性。
4)  three-tank water
三容水箱
1.
Application of RBF-ARX model to three-tank water level control system;
RBF-ARX模型在三容水箱液位控制系统建模中的应用
2.
It is difficult for the conventional PID to effectively control three-tank water which represents a typical plant with non-linearity and large time delay.
三容水箱是较为典型的非线性时延对象,常规PID控制难以取得理想的控制效果,本文结合非线性模型线性化方法、PID控制结构及基于T-S模型的模糊控制技术,提出了基于T-S模型三容水箱的模糊PID控制策略。
3.
Combining the linearizing method for non-linearity plant,PID control structure and fuzzy control based on T-S model,the T-S fuzzy PID control of the three-tank water is devised.
三容水箱是较为典型的非线性、时延对象,具有很强的代表性和工业背景。
5)  three-tank
三容水箱
1.
Research on establish model for experiment system of three-tank;
三容水箱实验系统模型的建立
2.
Study of three-tank liquid level control system experimental platform based on DCS
基于DCS的三容水箱液位控制实验平台的研究
3.
Aimed at the non-linear character of input valve and leak valve of the three-tank water control system, this paper deals with the adoption of nonlinear compensation algorithm related to general object to solve object′s linearization.
针对三容水箱液位控制系统中进水阀和出水阀的非线性特性,提出了基于广义对象的非线性补偿的对象线性化方法,并在系统一阶对象的基础上,利用解析法对系统建立了精确的数学模型。
6)  D water tank scanning system
三维水箱系统
1.
Using the dose film analyzing system and the 3D water tank scanning system to measure some parameter of LINAC in this research, The both obtained results have good coherence in the scope of errors.
用三维水箱系统和剂量胶片分析系统分别对医用直线加速器的一些性能参数进行了检测 ,两者所得结果在 3%误差范围内有较好的一致性。
补充资料:水箱聚合
分子式:
CAS号:

性质:又称水浴聚合。聚合反应在水箱中进行的聚合方法。是甲基丙烯酸酯铸型本体聚合的重要方法之一。由于水的热容量大,传热效果好,热量传递可以依靠自然对流,故聚合操作方便,控制容易。但要求铸型密封性好,少量水的渗入容易造成产品质量不稳定;铸型密封性太差,可能使聚合反应失败。

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