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AMPLITUDE METHODS FOR CONTROL OF GAS GENERATORS WATER SAVING SYSTEMS

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The methods of control of the technical station of gas generators of systems for saving and supplying water are examined, which are based on the variation of their amplitude-frequency characteristics. The first method of control is based on a variety of information on the a priori set frequency of hundred and fifty constant and harmonic warehouse vices in empty gas generators. A priori, the frequency is set to be collected for the mind, which is the most important turning point for the constant hour of the gas generator of the water saving system. Another method of control is the transmission of the formation of test signals at two a priori given frequencies and the assignment of an additional value of the amplitude-frequency characteristics of gas generators at these frequencies of the values ​​of their constant hours. It is shown that for the implementation of these methods in the control of the technical station of gas generators in systems for saving water supply, it is necessary to ensure the value of their amplitude-frequency characteristics or their equivalents in terms of the amplitude values ​​of the vice in empty gas generators. In accordance with the criteria for the designation of a technical plant for gas generators of systems for saving and supplying water, tolerance criteria are met. The third method for controlling gas generators based on different physical models, as described by the operator, which results from the mathematical model of gas generators in systems for saving and supplying water. In this way, the implementation of the method of control of gas generators is carried out until the values ​​of the amplitude-frequency characteristics of the gas generator of that physical model are equal at a priori set frequencies. It should be noted that when choosing a control method for a technical station of gas generators in systems for saving and supplying water to the first line, one should give precedence to the third of the considered methods.
O.M.Beketov National University of Urban Economy in Kharkiv
Title: AMPLITUDE METHODS FOR CONTROL OF GAS GENERATORS WATER SAVING SYSTEMS
Description:
The methods of control of the technical station of gas generators of systems for saving and supplying water are examined, which are based on the variation of their amplitude-frequency characteristics.
The first method of control is based on a variety of information on the a priori set frequency of hundred and fifty constant and harmonic warehouse vices in empty gas generators.
A priori, the frequency is set to be collected for the mind, which is the most important turning point for the constant hour of the gas generator of the water saving system.
Another method of control is the transmission of the formation of test signals at two a priori given frequencies and the assignment of an additional value of the amplitude-frequency characteristics of gas generators at these frequencies of the values ​​of their constant hours.
It is shown that for the implementation of these methods in the control of the technical station of gas generators in systems for saving water supply, it is necessary to ensure the value of their amplitude-frequency characteristics or their equivalents in terms of the amplitude values ​​of the vice in empty gas generators.
In accordance with the criteria for the designation of a technical plant for gas generators of systems for saving and supplying water, tolerance criteria are met.
The third method for controlling gas generators based on different physical models, as described by the operator, which results from the mathematical model of gas generators in systems for saving and supplying water.
In this way, the implementation of the method of control of gas generators is carried out until the values ​​of the amplitude-frequency characteristics of the gas generator of that physical model are equal at a priori set frequencies.
It should be noted that when choosing a control method for a technical station of gas generators in systems for saving and supplying water to the first line, one should give precedence to the third of the considered methods.

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