HYBRID VEHICLE

PROBLEM TO BE SOLVED: To appropriately protect a battery in a hybrid vehicle in which external charging can be performed.SOLUTION: A battery 100 includes a plurality of blocks 101 to 10n connected in series. Each of the plurality of blocks 101 to 10n has a plurality of cells 110 connected in paralle...

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Bibliographic Details
Main Author IZUMI JUNTA
Format Patent
LanguageEnglish
Japanese
Published 24.08.2017
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Summary:PROBLEM TO BE SOLVED: To appropriately protect a battery in a hybrid vehicle in which external charging can be performed.SOLUTION: A battery 100 includes a plurality of blocks 101 to 10n connected in series. Each of the plurality of blocks 101 to 10n has a plurality of cells 110 connected in parallel. A vehicle 1 has an ECU 300 that controls charging and discharging of the battery 100 so as to prevent power charged into the battery 100 from exceeding a charged-power upper limit value Win and also prevent power discharged from the battery 100 from exceeding a discharged-power upper limit value Wout. Using an elapsed time T after external charging and the probability that any of the plurality of cells 110 may fail per unit time (failure occurrence probability), the ECU 300 calculates the number of cells that have failed (the number N of open failures). The larger the number N of open failures is, the lower the charged-power upper limit value Win and the discharged-power upper limit value Wout are set.SELECTED DRAWING: Figure 7 【課題】外部充電を実施可能に構成されたハイブリッド車両において、バッテリを適切に保護する。【解決手段】バッテリ100は、互いに直列に接続された複数のブロック101〜10nを含む。複数のブロック101〜10nの各々は、互いに並列に接続された複数のセル110を有する。車両1は、バッテリ100への充電電力が充電電力上限値Winを上回らず、かつ、バッテリ100からの放電電力が放電電力上限値Woutを上回らないようにバッテリ100の充放電を制御するECU300を備える。ECU300は、外部充電実施後の経過時間Tと、単位時間当たりに複数のセル110のうちのいずれかのセルに故障が発生する確率(故障発生確率)とを用いて、故障したセルの数(オープン故障数N)を算出し、オープン故障数Nが大きいほど、充電電力上限値Winおよび放電電力上限値Woutを低く設定する。【選択図】図7
Bibliography:Application Number: JP20160027707