Method and apparatus for detecting abnormal state of battery
US-2016018345-A1 · Jan 21, 2016 · US
US2018192580A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2018192580-A1 |
| Application number | US-201815868662-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jan 11, 2018 |
| Priority date | Jan 12, 2017 |
| Publication date | Jul 12, 2018 |
| Grant date | — |
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A zero turn radius (ZTR) mower that includes an electric powertrain. The electric powertrain of the ZTR mower includes one or more electric storage batteries, a plurality of electric wheel drive motors that each drives one of the rear wheels of the ZTR mower and a plurality of electric blade motors that each drives one of the plurality of cutting blades mounted to a mower deck. The electric powertrain includes a master controller operable to selectively control the supply of electric power from the electric storage battery to the pair of electric wheel drive motors and the plurality of electric blade motors. The master controller controls the speed and direction of movement of the ZTR mower through user inputs. The master controller is able to separately control the operational speed of each of the electric blade motors based upon the direction and speed of movement of the ZTR mower.
Opening claim text (preview).
1 . A zero turn radius (ZTR) mower having a pair of rear drive wheels and a mowing deck including a plurality of cutting blades, comprising: an electric storage battery; a pair of electric wheel motors each operable to rotate one of the rear drive wheels; a plurality of electric blade motors each operable to rotate one of the plurality of cutting blades; and a master controller in communication with each of the pair of wheel motors and the plurality of blade motors, wherein the master controller is operable to control the speed and rotational direction of each of the pair of wheel motors and the plurality of blade motors. 2 . The ZTR mower of claim 1 wherein the master controller is operable to receive user inputs and to control the rotational direction and speed of the pair of wheel motors based on the user inputs. 3 . The ZTR mower of claim 1 wherein the master controller is operable to adjust the rotational speed of the blade motors based on the speed and direction of the wheel motors. 4 . The ZTR mower of claim 1 wherein the master controller is operable to adjust the rotational speed of the plurality of blade motors separately such that the cutting blades selectively rotate at different speeds. 5 . The ZTR mower of claim 4 wherein the plurality of blade motors include a first outer blade motor and a second outer blade motor positioned on opposite sides of the mowing deck, wherein the master controller operates the first outer blade motor at a higher speed than the second outer blade motor when the mower turns in a first direction and operates the first outer blade motor at a lower speed than the second outer blade motor when the mower turns in a second direction. 6 . The ZTR mower of claim 1 wherein the master controller is operable to stop rotation of the cutting blades when the wheel motors are operating below a threshold speed. 7 . An electric powertrain for use with a zero turn radius (ZTR) mower having a pair of rear drive wheels and a mowing deck including a plurality of cutting blades, comprising: an electric storage battery; a pair of electric wheel motors each operable to rotate one of the rear drive wheels; a plurality of electric blade motors each operable to rotate one of the plurality of cutting blades; and a master controller in communication with each of the pair of wheel motors and the plurality of blade motors, wherein the master controller is operable to control the speed and rotational direction of each of the pair of wheel motors and the plurality of blade motors. 8 . The electric powertrain of claim 7 wherein the master controller is operable to receive user inputs and to control the rotational direction and speed of the pair of wheel motors based on the user inputs. 9 . The electric powertrain of claim 7 wherein the master controller is operable to adjust the rotational speed of the blade motors based on the speed of the wheel motors. 10 . The electric powertrain of claim 7 wherein the master controller is operable to adjust the rotational speed of the plurality of blade motors separately such that the cutting blades selectively rotate at different speeds. 11 . The electric powertrain of claim 10 wherein the plurality of blade motors include a first outer blade motor and a second outer blade motor positioned on opposite sides of the mowing deck, wherein the master controller operates the first outer blade motor at a higher speed than the second outer blade motor when the mower turns in a first direction and operates the first outer blade motor at a lower speed than the second outer blade motor when the mower turns in a second direction. 12 . The electric powertrain of claim 7 wherein the master controller is operable to stop rotation of the cutting blades when the wheel motors are operating below a threshold speed. 13 . A method of operating a zero turn radius (ZTR) mower having a pair of rear drive wheels and a mowing deck including a plurality of cutting blades, comprising the steps of: mounting a plurality of electric blade motors on the mower deck in a position such that each of the electric blade motors rotates one of the cutting blades; mounting a pair of electric wheel motors in a position such that each electric wheel motor rotates one of the rear drive wheels; providing an electric storage battery on the mower; connecting a single master controller to the battery and the plurality of electric blade motors and the pair of electric wheel motors; operating the master controller to supply electric power from the battery to control the speed and rotational direction of each of the pair of electric wheel motors and the plurality of electric blade motors. 14 . The method of claim 13 wherein the master controller adjusts the rotational speed of the plurality of electric blade motors based on the rotation speed of the pair of electric wheel motors. 15 . The method of claim 14 wherein the rotational speed of the plurality of electric blade motors is adjusted independently from each other. 16 . The method of claim 15 wherein the plurality of blade motors includes a first outer blade motor and a second outer blade motor positioned on opposite sides of the mowing deck, wherein the master controller operates the first outer blade motor at a higher speed than the second outer blade motor when the motor turns in a first direction and the master controller operates the first outer blade motor at a lower speed than the second outer blade motor when the mower turns in a second direction. 17 . The method of claim 13 wherein the master controller stops rotation of the electric blade motors when the electric wheel motors are rotating below a threshold speed. 18 . The method of claim 13 wherein the electric power is supplied to the electric wheel motors and the electric blade mowers in a series of pulses to control the rotational speed of the motors. 19 . The method of claim 13 further comprising the step of adjusting the rotational speed of the electric blade motors as the mower turns.
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