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This paper presents a telemedicine support system developed by implementing an integrated disaster management protocol, and providing specialized expertise in local/remote affected regions (affected civilians, soldiers, rescuers, explorers, people in remote areas, etc.). The system has a modular structure consisting in: a containerized management system (regional / local), a mobile monitoring-rescue...
Present paper presents an application designed to help paramedics or other intervention personal to diagnose and monitor the state of victims in remote or difficult to access areas using Windows 8 tablet computers. The application is written in Visual C# and uses the latest programming technologies and security features. It will help measure the Glasgow Coma Scale, respiration, pulse, blood pressure...
Neurologists frequently use X-ray angiographic techniques in order to establish the optimal treatment or intervention procedure. Neurosurgeries performed at blood vessels level are difficult procedures because of the low accessibility in the human brain. Therefore, the establishment of a correct diagnosis based on angiographies is of paramount importance. Enhanced visualization of blood vessels by...
The paper describes an overview of the existing and future market for wireless remote patient monitoring applications, and presents the differences between the most well-known implementations, i.e., WMTS and WLAN. There are presented results and useful information from official reports and reliable sources, such as Frost & Sullivan and AAMI, results which revealed the clear evidence of continuing...
Modern aero-naval traction systems contain two or more propulsion elements. One of the main challenges consist steering control in case one or more propulsion elements fails. The paper presents solution of real time (re)balancing a parallel control structure and maintaining the ratio between two engines groups. Applicability is proved on a control structure of the ratio where using two groups of propellers,...
The distributed parameters systems, represent an active direction of practical and theoretical research, in the control engineering domain, due to the multiple applications in which they can be used [2–12, 30–34] and the rapid development of digital computers and electrical components. The present paper, presents a solution for the identification of a distributed parameters system, represented by...
The standard dampers used by more than 90% of the vehicles have damping coefficients constant along the stroke, so they can't solve simultaneously all of them, the situation was solved practically using a relative damping coefficient able to make a compromise between them. This paper presents a new self-adaptive suspension system multi-model. The performances are compared to those obtained with classical...
This paper presents high automated control solutions implemented on a unique software platform designed for real-time data acquisition, system identification and control. In the same time a comparison study between pole placement method and LQG optimal control for a MIMO industrial process will be presented. A special module for data process, developed for robust Matlab algorithms integration, is...
The aim of this paper, is to study the performances of closed-loop identification techniques, and choose an optimal closed-loop identification solution, for a flexible transmission system using two recursive closed-loop identification class of methods: the direct closed-loop identification class of methods, called CLOE (Closed Loop Output Error) and the indirect closed-loop identification class of...
The article represents a performance solution of (re)balancing a parallel control structure and maintaining the ratio between two adjustment quantities. The solution is based on the structures introduced by Visioli [1]. Applicability is proved on a control structure of the ratio where using two groups of tanks, a situation that has been encountered in the chemical industry, pharmaceutical industry...
This paper proposes a precise structure solution for the ratio control of nonlinear processes blend stations. The main feature of the proposed structure is to give a good ratio performance for both set-point changes and load disturbances that might occur in any one of the loops. For each loops (two or more) a nonlinear structure based on a multiple model and nonlinearity compensator is proposed. The...
This paper analyses classic solutions and proposes a precise structure solution for the ratio control of nonlinear processes blend stations. The main feature of the proposed structure is to give a good ratio performance for both set-point changes and load disturbances that might occur in any one of the loops. For two or more included loops a nonlinearity compensator or multiple model structure is...
The paper proposes a multiple model structure as control solution for some classes of hysteretic processes. This is developed using the nonlinear geometric characteristic of the process and a classical multiple model control algorithm. The components of the proposed structure are designed based on experimental tests, classic identification and closed loop pole placement methods. The applicability...
Systems with multiple models or multi-controller structure represent one of the successful solutions for the real-time control of the nonlinear or multi-regime processes. The use of these structures imposes solving some specific problems, like best algorithm selection or control algorithm switching. The paper proposes a method for switching the algorithms of the multiple-models structure, based on...
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