scholarly journals KUBER: THE CONTROL PROGRAM FOR THE USAEC AMES LABORATORY ON-LINE MEASURING SYSTEM.

1969 ◽  
Author(s):  
A.H. Klein ◽  
W.J. Higby
2013 ◽  
Vol 333-335 ◽  
pp. 167-171
Author(s):  
Peng Qing Wang ◽  
Hong Jun Wang ◽  
He Peng Gao

In order to measure the rotating machinery fault quickly and conveniently at a construction site, a new measuring system of rotating accuracy of spindle was developed according to three point method. With summarizing the principle of error separation technique based on three point method, the function, hardware construction and software module of this module were introduced. The problem of harmonic suppression is relieved by changing the sensor arrangement. The measuring system mainly consists of three eddy current sensors ,a acquisition card and a personal computer. After a few parameters were inputted, the rotation accuracy of calculation and display could be carried out automatically on line at a construction site.


Author(s):  
R. Polanský ◽  
J. Pihera ◽  
J. Komárek ◽  
R. Pavlica ◽  
P. Prosr ◽  
...  

Author(s):  
Víctor Sánchez-Margalet ◽  
Manuel Rodriguez-Oliva ◽  
Cristina Sánchez-Pozo ◽  
María Francisca Fernández-Gallardo ◽  
Raimundo Goberna

AbstractPortable meters for blood glucose concentrations are used at the patients bedside, as well as by patients for self-monitoring of blood glucose. Even though most devices have important technological advances that decrease operator error, the analytical goals proposed for the performance of glucose meters have been recently changed by the American Diabetes Association (ADA) to reach <5% analytical error and <7.9% total error. We studied 80meters throughout the Virgen Macarena Hospital and we found most devices with performance error higher than 10%. The aim of the present study was to establish a new system to control portable glucose meters together with an educational program for nurses in a 1200-bed University Hospital to achieve recommended analytical goals, so that we could improve the quality of diabetes care. We used portable glucose meters connected on-line to the laboratory after an educational program for nurses with responsibilities in point-of-care testing. We evaluated the system by assessing total error of the glucometers using high- and low-level glucose control solutions. In a period of 6months, we collected data from 5642 control samples obtained by 14 devices (Precision PCx) directly from the control program (QC manager). The average total error for the low-level glucose control (2.77mmol/l) was 6.3% (range 5.5–7.6%), and even lower for the high-level glucose control (16.66mmol/l), at 4.8% (range 4.1–6.5%). In conclusion, the performance of glucose meters used in our University Hospital with more than 1000 beds not only improved after the intervention, but the meters achieved the analytical goals of the suggested ADA/National Academy of Clinical Biochemistry criteria for total error (<7.9% in the range 2.77–16.66mmol/l glucose) and optimal total error for high glucose concentrations of <5%, which will improve the quality of care of our patients.


2012 ◽  
Vol 220-223 ◽  
pp. 1817-1822
Author(s):  
Zhong Liu ◽  
Deng Liu ◽  
Lan Zhong Guo

A manipulator's hydraulic driven system is an uncertain and nonlinear complex dynamics. Its research is not much at present. The report designed an electro-hydraulic driven control program that high speed on/off valve is worked as the pilot valve for logical cone valve, making up hydraulic driven system of high-power manipulator. For its control problem such as complex, uncertain and nonlinear dynamic, use a fuzzy immune PID control method that the PID controller parameters are on-line tuned by immune feedback mechanism and fuzzy reasoning respectively. With the harsh conditions of the square wave as an input signal, respectively examine response curve of the system using control strategy of the traditional PID and the fuzzy immune PID. Simulation results show that fuzzy immune PID obtains better control performance and robustness, and is superior to the traditional PID. It is fit for control of hydraulic driven system for manipulator.


2015 ◽  
Vol 1 (1) ◽  
pp. 70-74
Author(s):  
Miroslav Gutten ◽  
◽  
Jozef Jurcik ◽  
Dalibor Barta ◽  
◽  
...  
Keyword(s):  

Volume 3 ◽  
2004 ◽  
Author(s):  
G. Ambrogio ◽  
L. De Napoli ◽  
L. Filice ◽  
M. Muzzupappa

Incremental forming is nowadays increasing its presence in industry as a new but interesting process, especially for production of small batches or unique components. Anyway, relevant efforts have to be spent in order to reduce the typical incremental forming processes drawbacks that risk to belittle the high advantages in terms of costs and simplicity. In fact, the process duration, usually equal to several minutes even if the operations are carried out on high speed numerical controlled units, and a certain tendency to produce no precise parts, can reduce industrial interest about incremental forming. A possible strategy to reduce the latter item is the design of modified trajectories able to take into account both the springback effects and the stiffness reduction due to the particular clamping equipment. In this paper the above introduced strategy is pursued integrating an on-line measuring system, based on a digital inspector, and a CNC open program. The actual geometry is acquired in some remarkable points and a compensation routine modifies the coordinates of the future punch path. The modification policy has been developed by using an effective FE code. An experimental verification shows the good potentiality of the suggested methodology.


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