发明名称 Hybrid vehicle and control method thereof
摘要 A hybrid vehicle includes an engine control unit for controlling an engine, an engaging/disengaging control unit for engaging a clutch when the hybrid vehicle is shifted from a series drive mode to another drive mode in which at least the engine works as a drive source, a required output calculation unit for calculating a required output, and an engaging revolution speed calculation unit for calculating a revolution speed at a drive wheel side of the clutch. The engaging/disengaging control unit engages the clutch when the revolution speed of the engine coincides with the engaging revolution speed as a result of controlling the engine to follow the required output while the hybrid vehicle is running on the series drive mode at a predetermined vehicle speed or faster.
申请公布号 US9428041(B2) 申请公布日期 2016.08.30
申请号 US201013513515 申请日期 2010.12.09
申请人 HONDA MOTOR CO., LTD. 发明人 Tamagawa Yutaka
分类号 B60K6/42;B60K6/442;B60L11/12;B60L11/14;B60L15/20;B60W10/02;B60W10/06;F02D29/02;B60W20/00 主分类号 B60K6/42
代理机构 Westerman, Hattori, Daniels & Adrian, LLP 代理人 Westerman, Hattori, Daniels & Adrian, LLP
主权项 1. A hybrid vehicle including an engine, a generator which is directly connected with the engine and which generates electric power by being driven by the engine, a battery which stores electric power input thereto, an electric motor which is provided separately from the generator which is connected to a drive wheel and which is driven by being supplied with at least one of the electric power stored in the battery and the electric power generated by the generator, a power transmission engaging/disengaging unit which is disposed between the generator and the drive wheel to thereby engage and disengage a power transmission line from the engine to the drive wheel via the generator, an engaging revolution speed calculation unit which calculates an engagement revolution speed at which a drive wheel side and an engine side of the power transmission engaging/disengaging unit are to be engaged, an engine control unit which controls the engine, an engaging/disengaging control unit which controls the power transmission engaging/disengaging unit to be engaged when a revolution speed of the engine coincides with the engaging revolution speed while the hybrid vehicle is shifted from a series drive mode in which the power transmission engaging/disengaging unit is disengaged and the electric motor being driven by the electric power generated from the generator driven by the engine works as a drive source to an engine-directly-connected drive mode in which the power transmission engaging/disengaging unit is engaged and at least the engine works as a drive source, and a required output calculation unit which calculates a required output required of the hybrid vehicle based on an accelerator pedal opening which corresponds to an operation of an accelerator pedal and a running speed of the hybrid vehicle, wherein, when the hybrid vehicle is running on the series drive mode at a predetermined vehicle speed or faster and the revolution speed of the engine is slower than the engaging revolution speed, the engine control unit controls the engine to operate along an equal-output line on an engine performance curve which connects operation points of the engine where the required output is maintained such that, as a result of controlling the engine to operate along the equal-output line, the revolution speed of the engine is increased to coincide with the engaging revolution speed in a region on the engine performance curve where a mechanical efficiency is better than an electrical efficiency as an energy transmission efficiency from the engine to the drive wheel.
地址 Tokyo JP