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EN
Shaft alignment analysis indicates that the most common cause associated with the operation of propulsion systems in the industry is poor alignment of the shafts cooperating. It generates losses that arise in the production and repair shutdowns caused generate increased operating costs. Shaft alignment is a very important element in the process of monitoring and maintenance machines. Regular diagnosis and verification should be good practice in maintenance departments.
EN
Recent technological and organizational solutions help ensure an adequate level of security maintenance, in addition, include the development and application of technology. These processes help maintain high production efficiency and lowest possible operating costs. Therefore, the diagnosis and risk analysis allows estimates of the reliability of industrial processes. So you can make strategic decisions aimed at providing technical safety and reduce costs.
EN
Need of control of speeds and rotatory moment in driving system results from technological regards and economies of energy. Search of suitable models for electromechanical systems joins with designing of electric motors, exploational methods as well as prognostic solutions for present driving arrangements. Modelling of driving systems, which include in their construction the roller tables, permits onto introduction of supplementary measures for opinion of efficiency for analysed arrangement, this is: partial performance and total, coefficients of economy of electric energy, etc. The practical aspect of investigation of driving arrangements it can be selection of optimum parameters of driving system.
EN
Owing to a great variety of industrial electro-machine systems, it becomes more and more crucial to assess correctly electro-machine systems offered by their suppliers. It has been proved in this paper that by assessing systems offered to them exclusively on the basis of bivalent rules, purchasers are likely to incur economical losses. It is essential to apply elements of fuzzy (or multivalent) logics while performing such on assessment. With this purpose the notion of Hamming distance, applied in the theory of mathematical sets has been used in the easiest possible way. The Hamming distance, which defines an agreed distance between two sets of certain quantities, turned out to be useful for proposing a way of assessment of offered electro-machine systems. Considering same characteristics of electro-machine systems as quantities included in sets defined by a Hamming distance a theoretical basis of such an assessment can be obtained. The paper presents a simple and interesting geometric interpretation of the abovementioned solutions. It also reveals a method of assessment and reciprocal comparison of offered electro-machine systems.
EN
Article introduces dynamic states in RTAE of type 2SM-HCS for choose burden of roller tables of transporting line. Analysis is accomplished with of system for power supply as well as from converter of frequency.
EN
The report presents the procedures of the choice of an electromechanical systems optimum based on its econominal mathematical. First procedure presents the relation between joint outlays which are to be destined for a given systems variant and outlays both for its purchase and its operation costs. It is variant choice in the case when outlay category is substituted for another. In other words this economical and mathematical model relates the joint outlays with the type and power of electric driving motor, the characteristic of the working machine driven by this motor, the characteristic of the working machine driven by this motor, the time of operation, etc... The report present also criterions for choosing a systems variant by means of the point method. This point method of assessing electromechanical drive systems properties allows us to include both of the measurable and nonmeasurable features of the systems investigated into one joint calculus. The possibility to describe different values of the intensity of properties of systems did draw the author attention to minimax method based upon Wald' s matrix. This method consist in finding the maximum and minimum value of function of many variables in a certain set of events (searching of the saddle point). In some case the determination of the optimum variant is possible by means mathematical regret minimax method. Mathematical regret method propose the choice of such a possible action that the level of regret for not choosing a best variant should be the smallest. The auxiliary methods can be used simultaneously with other ways of choosing.
EN
To assess an diagnostic system for electromechanical system and choose its best variant requires formulate of criterion determination. This process consists of formulating the criterion function and then finding critical variable values. Technological, economical and, sometimes, praxeologic criterions are presents in this report. Basing on the consideration should be applied when data used for calculation are multivalent (fuzzy) nature. The idea of linguistic variables is identified with the idea of linguistic terms. This means: -an appropriate of number of linguistic variables shall be determined, - a value of the membership function is subordinated to each linguistic variable. The set of linguistic variables describing the diagnostic state of electromechanical systems is admitted depending of the origin if its components: good - medium - bad. The upper number of linguistic variables should be suggested. In practice distinct limits exist. These limits may be set by the perceptive capacity of person responsible for the assessment of system. This number of linguistic variables applied in the diagnostic of a electromechanical system is determined at three (good -medium - bad), maximum at five (good - mediocre - medium - weak - bad). The thus suggested number of linguistic variables may be applied rather easily for arriving at multivalent logics. However, the rules of bivalent logics impell the choice of only two state: good - bad.
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