The invention relates in general to a controller and a controlling method thereof, and more particularly to an emergency traffic controller for emergency vehicles and a controlling method thereof.
In an intersection, the emergency vehicles, such as police car, ambulance, fire engine, may not pass through the intersection quickly and safely due to the red traffic light. Therefore, it may delay to save people or extinguish the fire.
In the past, the emergency vehicles may be forced to pass through the intersection to save time. However, the car accident is frequently happened on these vehicles when passing through the red traffic light. Therefore, it is needed to invent a novel emergency traffic controller for emergency vehicles.
The invention is directed to a novel emergency traffic controller for emergency vehicles and a controlling method thereof. When the novel emergency traffic controller is operated in an emergency mode, traffic light signs are controlled for the emergency vehicle to safely and quickly pass through the intersection. Further, the novel emergency traffic controller can be set up without modifying the structure or circuit design of the existing traffic light controller and the traffic light sign, so the novel emergency traffic controller can be adapted to any traffic light system in any country. Moreover, after the emergency vehicle passes through, the novel emergency traffic controller can return to a normal mode which will operate normally with lighting signals provided from the existing traffic light controller.
According to a first aspect of the present invention, an emergency traffic controller is provided. The emergency traffic controller includes an emergency controlling unit, a target redirection unit and a source selection unit. The emergency controlling unit is used for receiving an emergency message and outputting a switching signal according to the emergency message. The target redirection unit is electrically coupled to an existing traffic light controller and the emergency controlling unit. The source selection unit is electrically coupled to the traffic light controller. The target redirection unit is used for receiving a lighting signal from the existing traffic light controller through the source selection unit and working with the emergency controlling unit to transmit the lighting signal to one of a plurality of traffic light signs according to the switching signal.
According to a second aspect of the present invention, a controlling method of an emergency traffic controller is provided. The controlling method includes the following steps. A lighting signal is received from the existing traffic light controller. An emergency message is received. A switching signal is outputted according to the emergency message. The lighting signal is transmitted to one of a plurality of traffic light signs according to the switching signal.
The above and other aspects of the invention will become better understood with regard to the following detailed description of the preferred but non-limiting embodiment(s). The following description is made with reference to the accompanying drawings.
Please refer to
The emergency traffic controllers 100 are connected to the existing traffic light signs 800 respectively. The traffic light signs 800 can be controlled under a normal mode or an emergency mode. As shown in
As shown in
In this embodiment, the emergency traffic controller 100 is disposed between the existing traffic light controller 900 and the traffic light sign 800 without modifying the structure or the circuit design of the existing traffic light controller 900 and the traffic light sign 800. Therefore, the emergency traffic controller 100 can be adapted to any traffic light system in any country.
Please refer to
Please refer to
Then, in step S120, the source detection unit 130 transforms the lighting signal S1 to be a lighting signal S2 having a direct-current voltage level. In one embodiment, the lighting signal S1 may have an alternating current and the source detection unit 130 is an AC-DC converter for transforming the alternating-current to be a direct-current voltage level. Or, in one embodiment, the lighting signal S1 may have a high voltage direct-current and the source detection unit 130 is a DC-DC shifter for transforming the high voltage direct-current to be a low voltage direct-current. Three lines DR, DY, DG connect the source detection unit 130 and the emergency controlling unit 110. The source detection unit 130 transmits the lighting signal S2 to the emergency controlling unit 110 via the line DR.
Afterwards, in step S130, the emergency controlling unit 110 generates a selecting signal S3 according to the lighting signal S2. Three lines D1, D2, S3 connect the emergency controlling unit 110 and the source selection unit 140. The emergency controlling unit 110 transmits the selecting signal S3 to the source selection unit 140 via the line D1.
Then, in step S140, the source selection unit 140 transmits the lighting signal S1 according to the selecting signal S3. Three lines L1, L2, L3 connect the existing traffic light controller 900 and the source selection unit 140. The existing traffic light controller 900 transmits the lighting signal S1 to the source selection unit 140 via the line L1. In this embodiment, the source selection unit 140 includes a plurality of switches SW41, SW42, SW43. Each of the switches SW41, SW42, SW43 is a relay device, such as a magnetic switch. The lighting signal S1 is transmitted to the switch SW41, and the selecting signal S3 is transmitted to the switch SW41 too. The switch SW41 is turned on via the selecting signal S3, so the lighting signal S1 can be transmitted to the target redirection unit 120 via line L4.
Next, in step S150, the emergency controlling unit 110 determines whether an emergency message S4 (shown in
If the emergency controlling unit 110 does not receive the emergency message S4, then the normal mode is entered and the process proceeds to step S160; if the emergency controlling unit 110 receives the emergency message S4, then the emergency mode is entered and the process proceeds to step S180. The steps S160 and S170 of the normal mode are illustrated via
In step S160 of the normal mode, as shown in
In step S170 of the normal mode, the target redirection unit 120 transmits the lighting signal S1 to one of the traffic light signs 800 according to the switching signal S5. In the present embodiment, the target redirection unit 120 includes a plurality of switches SW21, SW22, SW23. The lighting signal S1 is transmitted to all of the switches SW21, SW22, SW23, and the switching signal S5 is transmitted to the switch SW21. The switch SW21 is turned on via the switching signal S5, so the lighting signal S1 can be transmitted to the traffic light sign 800 which is used to emit the red light. As such, in the normal mode, the traffic light signs 800 can be operated according to the control of the existing traffic light controller 900.
In step S180 of the emergency mode, as shown in
In step S190 of the emergency mode, the target redirection unit 120 transmits the lighting signal S1 to one of the traffic light signs 800 according to the switching signal S6. The lighting signal S1 is transmitted to all of the switches SW21, SW22, SW23, and the switching signal S6 is transmitted to the switch SW23. The switch SW23 is turned on via the switching signal S6, so the lighting signal S1 can be transmitted to the traffic light sign 800 which is used to emit the green light. As such, in the emergency mode, the traffic light signs 800 can be operated according to the control of the emergency traffic controller 100.
Moreover, referring to
For example, referring to
Furthermore, referring to
In another embodiment, the switches SW41, SW42, SW43, SW21, SW22, SW23 can be realized by other kinds of devices. Please refer to
Base on the embodiments above, the emergency vehicle 700 can safely and quickly pass through the intersection, while the emergency traffic controller 100 or 200 is operated in the emergency mode. Further, the emergency traffic controller 100 or 200 can be set up without modifying the structure or the circuit design of the existing traffic light controller 900 and the traffic light sign 800, so the emergency traffic controller 100 or 200 can be adapted to any traffic light system in any country. Moreover, after the emergency vehicle 700 leaves, the emergency traffic controller 100 or 200 can return to the normal mode under the same lighting signal S1 provided from the existing traffic light controller 900.
While the invention has been described by way of example and in terms of the preferred embodiment(s), it is to be understood that the invention is not limited thereto. On the contrary, it is intended to cover various modifications and similar arrangements and procedures, and the scope of the appended claims therefore should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements and procedures.
Number | Name | Date | Kind |
---|---|---|---|
4162477 | Munkberg | Jul 1979 | A |
4223295 | Bonner | Sep 1980 | A |
4443783 | Mitchell | Apr 1984 | A |
4704610 | Smith | Nov 1987 | A |
5977883 | Leonard | Nov 1999 | A |
20140368111 | Hebborn | Dec 2014 | A1 |