ALTERNATOR CONTROLLER AND ITS COMPUTER PROGRAM

PROBLEM TO BE SOLVED: To reconcile the control of hunting phenomena by the idling revolution feedback control at idling, load ripples of an alternator, and at maintenance of battery charge. SOLUTION: This alternator controller is equipped with a generated current regulating means 10j, which regulate...

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Hauptverfasser: FUJIOKA KENJI, TANAKA KENJI, TSUKUDA ATSUNORI, AKUSA KEISUKE
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creator FUJIOKA KENJI
TANAKA KENJI
TSUKUDA ATSUNORI
AKUSA KEISUKE
description PROBLEM TO BE SOLVED: To reconcile the control of hunting phenomena by the idling revolution feedback control at idling, load ripples of an alternator, and at maintenance of battery charge. SOLUTION: This alternator controller is equipped with a generated current regulating means 10j, which regulates the current generated by the alternator by the maximal generated current being set according to the number of revolutions of an engine, and for the generated current regulating means 10j, the maximal generated current is set smaller at low revolutions within an idle revolution range, where idle revolution feedback control is conducted than that at high revolutions. Accordingly, since the maximal generated current is set smaller at low revolutions within the idle revolution range, the use of alternator properties where the torque change of the alternator to the revolution change of an engine becomes large is limited, and the occurrence of hunting phenomena can be suppressed. Moreover, at high revolutions within the idle revolution range, the maximal generated current is set large, so the power generated by the alternator is raised, and this can maintain the battery charge capacity. COPYRIGHT: (C)2004,JPO
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SOLUTION: This alternator controller is equipped with a generated current regulating means 10j, which regulates the current generated by the alternator by the maximal generated current being set according to the number of revolutions of an engine, and for the generated current regulating means 10j, the maximal generated current is set smaller at low revolutions within an idle revolution range, where idle revolution feedback control is conducted than that at high revolutions. Accordingly, since the maximal generated current is set smaller at low revolutions within the idle revolution range, the use of alternator properties where the torque change of the alternator to the revolution change of an engine becomes large is limited, and the occurrence of hunting phenomena can be suppressed. Moreover, at high revolutions within the idle revolution range, the maximal generated current is set large, so the power generated by the alternator is raised, and this can maintain the battery charge capacity. 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SOLUTION: This alternator controller is equipped with a generated current regulating means 10j, which regulates the current generated by the alternator by the maximal generated current being set according to the number of revolutions of an engine, and for the generated current regulating means 10j, the maximal generated current is set smaller at low revolutions within an idle revolution range, where idle revolution feedback control is conducted than that at high revolutions. Accordingly, since the maximal generated current is set smaller at low revolutions within the idle revolution range, the use of alternator properties where the torque change of the alternator to the revolution change of an engine becomes large is limited, and the occurrence of hunting phenomena can be suppressed. Moreover, at high revolutions within the idle revolution range, the maximal generated current is set large, so the power generated by the alternator is raised, and this can maintain the battery charge capacity. 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SOLUTION: This alternator controller is equipped with a generated current regulating means 10j, which regulates the current generated by the alternator by the maximal generated current being set according to the number of revolutions of an engine, and for the generated current regulating means 10j, the maximal generated current is set smaller at low revolutions within an idle revolution range, where idle revolution feedback control is conducted than that at high revolutions. Accordingly, since the maximal generated current is set smaller at low revolutions within the idle revolution range, the use of alternator properties where the torque change of the alternator to the revolution change of an engine becomes large is limited, and the occurrence of hunting phenomena can be suppressed. Moreover, at high revolutions within the idle revolution range, the maximal generated current is set large, so the power generated by the alternator is raised, and this can maintain the battery charge capacity. COPYRIGHT: (C)2004,JPO</abstract><edition>7</edition><oa>free_for_read</oa></addata></record>
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subjects BLASTING
CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTINGELECTRIC POWER
CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TOTRANSPORTATION
COMBUSTION ENGINES
CONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORSOR DYNAMO-ELECTRIC CONVERTERS
CONTROLLING COMBUSTION ENGINES
CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
ELECTRICITY
GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS
GENERATION
HEATING
HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
LIGHTING
MECHANICAL ENGINEERING
SYSTEMS FOR STORING ELECTRIC ENERGY
TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINSTCLIMATE CHANGE
WEAPONS
title ALTERNATOR CONTROLLER AND ITS COMPUTER PROGRAM
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