Autonomous operation control system
An autonomous operation control system is provided with a higher-level breaker (5), a lower-level breaker (8), an inverter (10), a battery (12), an electric wire (7), a plurality of switches (16), a plurality of loads (2), and a controller (3). The controller (3) intermittently receives the SOC corr...
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creator | YAMABE KENTA |
description | An autonomous operation control system is provided with a higher-level breaker (5), a lower-level breaker (8), an inverter (10), a battery (12), an electric wire (7), a plurality of switches (16), a plurality of loads (2), and a controller (3). The controller (3) intermittently receives the SOC correlation value of the battery (12). The controller (3) sends an open/close signal having a first pattern to the plurality of switches (16) during a period in which an autonomous operation is in execution and the SOC correlation value is higher than a first threshold value. The controller (3) sends anopen/close signal having a second pattern to the plurality of switches (16) during a period in which an autonomous operation is in execution and the SOC correlation value is less than or equal to thefirst threshold value and higher than a second threshold value, that is lower than the first threshold value. The number of loads connected by the open/close signal having the second pattern is one or more and is less than th |
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The controller (3) intermittently receives the SOC correlation value of the battery (12). The controller (3) sends an open/close signal having a first pattern to the plurality of switches (16) during a period in which an autonomous operation is in execution and the SOC correlation value is higher than a first threshold value. The controller (3) sends anopen/close signal having a second pattern to the plurality of switches (16) during a period in which an autonomous operation is in execution and the SOC correlation value is less than or equal to thefirst threshold value and higher than a second threshold value, that is lower than the first threshold value. 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The controller (3) intermittently receives the SOC correlation value of the battery (12). The controller (3) sends an open/close signal having a first pattern to the plurality of switches (16) during a period in which an autonomous operation is in execution and the SOC correlation value is higher than a first threshold value. The controller (3) sends anopen/close signal having a second pattern to the plurality of switches (16) during a period in which an autonomous operation is in execution and the SOC correlation value is less than or equal to thefirst threshold value and higher than a second threshold value, that is lower than the first threshold value. 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The controller (3) intermittently receives the SOC correlation value of the battery (12). The controller (3) sends an open/close signal having a first pattern to the plurality of switches (16) during a period in which an autonomous operation is in execution and the SOC correlation value is higher than a first threshold value. The controller (3) sends anopen/close signal having a second pattern to the plurality of switches (16) during a period in which an autonomous operation is in execution and the SOC correlation value is less than or equal to thefirst threshold value and higher than a second threshold value, that is lower than the first threshold value. The number of loads connected by the open/close signal having the second pattern is one or more and is less than th</abstract><oa>free_for_read</oa></addata></record> |
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language | chi ; eng |
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subjects | APPARATUS FOR CONVERSION BETWEEN AC AND AC, BETWEEN AC AND DC,OR BETWEEN DC AND DC, AND FOR USE WITH MAINS OR SIMILAR POWERSUPPLY SYSTEMS CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTINGELECTRIC POWER CONTROL OR REGULATION THEREOF CONVERSION OF DC OR AC INPUT POWER INTO SURGE OUTPUTPOWER CONVERSION OR DISTRIBUTION OF ELECTRIC POWER ELECTRICITY GENERATION SYSTEMS FOR STORING ELECTRIC ENERGY |
title | Autonomous operation control system |
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