Abstract

Currently, four methods are mainly used to evaluate the parameters of an asynchronous motor with a short-circuited rotor(AD with a short-circuited rotor): according to catalog data, according to test results, preliminary parameter estimation and dynamic identification. Each of the above methods has its advantages and disadvantages, however, the only method that allows you to evaluate the parameters of the AD model with a short-circuited rotor without stopping the process is the method of dynamic parameter identification. The advantages of the method of dynamic identification of parameters of the asynchronous motor replacement circuit (AD), in addition to the absence of the need to stop the technological process, include the ability to evaluate the parameters of the AD model taking into account its dynamically changing temperature state. In turn, the disadvantage of this method of parameter estimation is the need to build a complex identification procedure, which requires taking into account many factors and does not have a generally recognized mathematical description. In connection with the identified problems, it can be argued that expanding the arsenal of tools that allow determining blood pressure parameters without stopping the technological process is an urgent and timely task

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