Control apparatus for internal combustion engine
US-2015377164-A1 · Dec 31, 2015 · US
US9764632B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9764632-B2 |
| Application number | US-98663211-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 7, 2011 |
| Priority date | Jan 7, 2010 |
| Publication date | Sep 19, 2017 |
| Grant date | Sep 19, 2017 |
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A plugin hybrid electric vehicle includes an internal combustion engine, a battery, an electric machine, and a controller. The vehicle is operable in a primary electric vehicle driving mode (EV mode) and in a hybrid electric vehicle driving mode (HEV mode). The controller is programmed to receive input from the driver representing a desired operating mode and a desired energy reservation. If the desired operating mode is HEV mode, then a state of charge (SOC) offset is established as the smaller of a maximum SOC offset and an allowable SOC offset, otherwise, the SOC offset is established based on the desired energy reservation. The vehicle is operated based on the SOC offset.
Opening claim text (preview).
What is claimed: 1. A method of controlling a plugin hybrid electric vehicle including an internal combustion engine, a battery, and an electric machine, the vehicle being operable in a primary electric vehicle driving mode (EV mode) and in a hybrid electric vehicle driving mode (HEV mode), the method comprising: receiving driving mode input from the driver selecting the EV mode or the HEV mode; receiving energy reservation input from the driver specifying a desired energy reservation; in response to the HEV mode being selected, establishing a state of charge (SOC) offset as the lesser of a maximum SOC offset and an allowable SOC offset; in response to the EV mode being selected, establishing the SOC offset based on the desired energy reservation; and operating the vehicle based on the SOC offset. 2. The method of claim 1 wherein the desired energy reservation is an absolute energy amount. 3. The method of claim 1 wherein the desired energy reservation is a relative SOC level with respect to a minimum charge sustaining SOC. 4. The method of claim 1 wherein the allowable SOC offset is based on a minimum charge sustaining SOC and a present SOC when the driver requests HEV mode. 5. The method of claim 1 wherein establishing the SOC offset based on the desired energy reservation is further based on a minimum charge sustaining SOC and a present SOC. 6. The method of claim 1 wherein operating the vehicle based on the SOC offset further comprises: determining an energy management battery SOC as a present SOC less the SOC offset; and operating the vehicle based on the energy management battery SOC. 7. The method of claim 6 wherein operating the vehicle based on the energy management battery SOC further comprises: operating the vehicle in battery charge depletion mode when the energy management battery SOC is greater than a minimum charge sustaining SOC. 8. The method claim 6 wherein operating the vehicle based on the energy management battery SOC further comprises: operating the vehicle in battery charge sustaining mode when the energy management battery SOC is not greater than a minimum charge sustaining SOC. 9. A plugin hybrid electric vehicle including an internal combustion engine, a battery, and an electric machine, the vehicle being operable in a primary electric vehicle driving mode (EV mode) and in a hybrid electric vehicle driving mode (HEV mode), the vehicle further comprising a controller programmed to: receive driving mode input from the driver selecting the EV mode or the HEV mode; receive energy reservation input from the driver specifying a desired energy reservation; in response to the HEV mode being selected, then establish a state of charge (SOC) offset as the lesser of a maximum SOC offset and an allowable SOC offset; in response to the EV mode being selected, establish the SOC offset based on the desired energy reservation; and operate the vehicle based on the SOC offset. 10. The vehicle of claim 9 wherein the desired energy reservation is an absolute energy amount. 11. The vehicle of claim 9 wherein the desired energy reservation is a relative SOC level with respect to a minimum charge sustaining SOC. 12. The vehicle of claim 9 wherein the allowable SOC offset is based on a minimum charge sustaining SOC and a present SOC when the driver requests HEV mode. 13. The vehicle of claim 9 wherein establishing the SOC offset based on the desired energy reservation is further based on a minimum charge sustaining SOC and a present SOC. 14. The vehicle of claim 9 wherein operating the vehicle based on the SOC offset further comprises: determining an energy management battery SOC as a present SOC less the SOC offset; and operating the vehicle based on the energy management battery SOC. 15. The vehicle of claim 14 wherein operating the vehicle based on the energy management battery SOC further comprises: operating the vehicle in battery charge depletion mode when the energy management battery SOC is greater than a minimum charge sustaining SOC. 16. The vehicle of claim 14 wherein operating the vehicle based on the energy management battery SOC further comprises: operating the vehicle in battery charge sustaining mode when the energy management battery SOC is not greater than a minimum charge sustaining SOC. 17. A hybrid electric vehicle operable in an electric mode and in a hybrid mode, comprising a controller programmed to: receive driving mode input selecting the electric mode or the hybrid mode; receive energy reservation input specifying a desired energy reservation; and operate the vehicle based on an SOC offset, wherein, when the operating mode is selected as the hybrid mode, the SOC offset is the smaller of a maximum SOC offset and an allowable SOC offset, otherwise, the SOC offset is based on the specified energy reservation. 18. The vehicle of claim 17 wherein operating the vehicle based on the SOC offset further comprises: determining an energy management battery SOC as a present SOC less the SOC offset; and operating the vehicle based on the energy management battery SOC.
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