IP Library › Granted Patent US 9,758,168
Granted Patent B2
US 9,758,168 · App. 14/440,445 · Granted Sep 12, 2017

Idling stop device

Inventors: Taichi Hasegawa (Kanagawa, JP); Shuichi Miyagawa (Kanagawa, JP)
Assignee: Bosch Corporation
B60W30/181B60W10/06B60W10/188B60W30/18109B60W30/192F02D17/04F02D29/02F02N11/0833B60W2510/182B60W2520/105B60W2550/142F02N2200/0801F02N2200/124Y02T10/48
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Quick Facts
Patent No.
US 9,758,168
App. No.
14/440,445
Granted
Sep 12, 2017
Kind
B2
Abstract

A technique for simplifying the structure of an idling stop device. The idling stop device 100 includes a deceleration detector 200 which detects decelerations of a vehicle. The idling stop device 100 also includes an estimation part 350 which acquires, based on the deceleration detected by the deceleration detector 200 , first deceleration when a vehicle is decelerated to a preset speed of less. Based on the acquired first deceleration, the estimation part 350 estimates a first brake pressure applied to the vehicle when the vehicle is decelerated to the preset speed or less.

Claims (20)

1. An idling stop device comprising:

a detection part, the detection part being a vehicle speed sensor mounted to a vehicle which detects a deceleration of the vehicle;

a control unit which acquires, based on the deceleration detected by the detection part, a first deceleration when a vehicle speed is decelerated to a preset speed or less, and wherein the control unit estimates a first brake pressure applied to the vehicle when the vehicle is decelerated to the preset speed or less based on the acquired first deceleration;

a brake pressure control part which maintains a brake pressure applied to the vehicle when the first brake pressure estimated by the control unit is higher than or equal to a preset threshold value; and

an idling stop control part which stops an engine of the vehicle when the first brake pressure estimated by the control unit is higher than or equal to the preset threshold value.

2. The idling stop device according to claim 1 , wherein the control unit estimates the brake pressure applied to the vehicle when the vehicle is decelerated to the preset speed or less based on the acquired first deceleration, a weight of the vehicle, and a brake efficiency of the vehicle.

3. The idling stop device according to claim 1 , wherein the control unit acquires deceleration when the vehicle is decelerated to a speed less than or equal to a speed immediately before the vehicle is stopped as the first deceleration, and estimates a brake pressure applied to the vehicle when the vehicle is decelerated to the speed less immediately before the vehicle is stopped based on the acquired first deceleration.

4. The idling stop device according to claim 1 , further comprising: a gradient detection part which detects deceleration acting on the vehicle corresponding to a gradient of a road surface on which the vehicle travels, wherein

the control unit estimates, after the vehicle is stopped, a second brake pressure applied to the vehicle based on second deceleration detected by the gradient detection part in a state where the vehicle is being stopped, and outputs a higher brake pressure by comparing the estimated second brake pressure and the first brake pressure to each other,

the brake pressure control part maintains the brake pressure applied to the vehicle when the brake pressure outputted from the control unit is higher than or equal to a preset threshold value, and

the idling stop control part stops the engine of the vehicle when the brake pressure outputted from the control unit is higher than or equal to the preset threshold value.

5. The idling stop device according to claim 4 , wherein the control unit estimates the brake pressure applied to the vehicle based on the second deceleration, a weight of the vehicle and a brake efficiency of the vehicle after the vehicle is stopped.

6. The idling stop device according to any claim 1 , wherein the brake pressure control part maintains the brake pressure applied to the vehicle by closing a valve provided to a brake pipe passage through which a master cylinder constituting a generation source of a brake liquid pressure applied to the vehicle and a wheel cylinder of a wheel communicate with each other.

7. The idling stop device according to claim 2 , wherein the control unit acquires deceleration when the vehicle is decelerated to a speed less than or equal to a speed immediately before the vehicle is stopped as the first deceleration, and estimates a brake pressure applied to the vehicle when the vehicle is decelerated to the speed less immediately before the vehicle is stopped based on the acquired first deceleration.

8. The idling stop device according to claim 7 , further comprising: a gradient detection part which detects deceleration acting on the vehicle corresponding to a gradient of a road surface on which the vehicle travels, wherein

the control unit estimates, after the vehicle is stopped, a second brake pressure applied to the vehicle based on second deceleration detected by the gradient detection part in a state where the vehicle is being stopped, and outputs a higher brake pressure by comparing the estimated second brake pressure and the first brake pressure to each other,

the brake pressure control part maintains the brake pressure applied to the vehicle when the brake pressure outputted from the control unit is higher than or equal to a preset threshold value, and

the idling stop control part stops the engine of the vehicle when the brake pressure outputted from the control unit is higher than or equal to the preset threshold value.

9. The idling stop device according to claim 8 , wherein the control unit estimates the brake pressure applied to the vehicle based on the second deceleration, a weight of the vehicle and a brake efficiency of the vehicle after the vehicle is stopped.

10. The idling stop device according to any claim 9 , wherein the brake pressure control part maintains the brake pressure applied to the vehicle by closing a valve provided to a brake pipe passage through which a master cylinder constituting a generation source of a brake liquid pressure applied to the vehicle and a wheel cylinder of a wheel communicate with each other.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 11, 2015
From: HASEGAWA, TAICHI; MIYAGAWA, SHUICHI
To: BOSCH CORPORATION
Reel/Frame 035604/0928 →
Priority Claims (1)
JP 2012-242872 · Nov 2, 2012 · national
Continuity (1)
Related Publication 20150284002A1 · Oct 8, 2015