Electronic device and control method thereof
US-2017363097-A1 · Dec 21, 2017 · US
US9670933B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9670933-B2 |
| Application number | US-201313752591-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 29, 2013 |
| Priority date | Jan 30, 2012 |
| Publication date | Jun 6, 2017 |
| Grant date | Jun 6, 2017 |
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A compressor control apparatus, and a refrigerator including the same are provided. The operation of two compressors may be controlled using an alternating current (AC) switch, thereby minimizing a number of components, as well as increasing compressor capacity and enhancing operation efficiency. A plurality of operation modes may be used to correspond to a load or freezing capacity using two compressors, and the two compressors may be operated in a separate or simultaneous manner using a drive including two (AC) switches, thereby simplifying the configuration of the system.
Opening claim text (preview).
What is claimed is: 1. A compressor control apparatus, comprising a first alternating current (AC) switch and a second AC switch switched in response to a first control signal and a second control signal to drive a first compressor and a second compressor; a controller configured to generate the first and second control signals based on a load of the first and second compressors and to output the first and second control signals to the first and second AC switches, wherein the controller is configured to selectively operate the first and second compressors in a simultaneous mode in which the first and second compressors operate together, in a first separate mode in which only the first compressor operates, and in a second separate mode in which only the second compressor operates; a first current detector and a second current detector configured to detect a first motor drive current and a second motor drive current applied to a first motor and a second motor provided in the first compressor and the second compressor, respectively; a first voltage detector and a second voltage detector configured to detect a first motor drive voltage and a second motor drive voltage applied to the first and second motors, respectively; a first stroke calculator and a second stroke calculator configured to calculate a first stroke and second stroke of the first compressor and the second compressor, respectively, using the first and second motor drive currents and the first and second motor drive voltages; and a direct current (DC) power supply configured to convert the commercial alternating current power into direct current power and to apply the converted power to the controller and the first and second alternating current switches, wherein the load of the first and second compressors is detected using any one of a phase difference between the first and second motor drive currents and the first stroke and second stroke, a phase difference between the first and second motor drive voltages and the first stroke and second stroke, a gas spring constant, or a gas damping constant. 2. The compressor control apparatus of claim 1 , further including: an input voltage detector to detect a voltage of commercial AC power to be supplied to the first and second AC switches. 3. The compressor control apparatus of claim 1 , wherein the first compressor or the second compressor is a reciprocating compressor. 4. A refrigerator, comprising a main body; a first compressor and a second compressor provided in the main body; a first alternating current (AC) switch and a second AC switch being switched in response to a first control signal and a second control signal to drive the first and second compressors, respectively; a controller configured to generate the first and second control signals based on a load of the first and second compressors and output the first and second control signals to the first and second AC switches, wherein the first and second compressors are operated in a simultaneous mode in which the first and second compressors are operated together, or in a separate mode in which only the first compressor or only the second compressor is operated; a first current detector and a second current detector configured to detect a first motor drive current and a second motor drive current applied to a first motor and a second motor provided in the first compressor and the second compressor, respectively; a first voltage detector and a second voltage detector configured to detect a first motor drive voltage and a second motor drive voltage applied to the first and second motors, respectively; a first stroke calculator and a second stroke calculator configured to calculate a first stroke and second stroke of the first compressor and the second compressor, respectively, using the first and second motor drive currents and the first and second motor drive voltages; and a direct current (DC) power supply configured to convert the commercial alternating current power into direct current power and to apply the converted power to the controller and the first and second alternating current switches, wherein the load of the first and second compressors is detected using any one of a phase difference between the first and second motor drive currents and the first stroke and second stroke, a phase difference between the first and second motor drive voltages and the first stroke and second stroke, a gas spring constant, or a gas damping constant. 5. The refrigerator of claim 4 , further including: an input voltage detector to detect a voltage of incoming commercial AC power.
Calculation of parameters · CPC title
Stopping, starting, unloading or idling control · CPC title
by changing flow path between different stages or between a plurality of compressors; load distribution between compressors · CPC title
arranged in parallel · CPC title
Cross-Sectional Technologies · mapped topic
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