Control system and method thereof
09977410 ยท 2018-05-22
Assignee
Inventors
Cpc classification
H04N23/20
ELECTRICITY
H04R2499/11
ELECTRICITY
H04R1/1041
ELECTRICITY
Y02D30/70
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
G05B2219/25279
PHYSICS
G05B2219/25236
PHYSICS
International classification
H04R1/10
ELECTRICITY
H04B5/00
ELECTRICITY
Abstract
In a control system, when a sensor receives a sensing signal, the sensor sends a notice signal to a preparatory starting device so that the preparatory starting device performs a starting operation. After the starting operation is finished, the preparatory starting device sends an operation command and/or operation power to a starting unit. The starting unit would not pass the operation command and/or the operation power to a receiving end until receiving a control signal.
Claims
1. A control system, comprising: a sensor configured to receive a sensing signal and send a notice signal when a user moves to within a predetermined distance from the sensor; a preparatory starting device configured to receive the notice signal, perform a preparatory starting operation and send an operation command and/or an operation power; a starting unit coupled to the preparatory starting device and configured to receive a control signal, and receive and send the operation command and/or the operation power; and a receiving end coupled to the starting unit, and configured to receive the operation command and/or the operation power and perform a receiving end operation; wherein after the sensor receives the sensing signal, the sensor sends the notice signal to the preparatory starting device, the preparatory starting device performs the preparatory starting operation, the preparatory starting device sends the operation command and/or the operation power to the starting unit, the starting unit sends the operation command and/or the operation power to the receiving end to perform a functional starting operation for the control system to enter an operation-allowed mode for the receiving end to perform the receiving end operation only when the starting unit receives the control signal; and wherein the preparatory starting operation consumes less power than the functional starting operation, and the preparatory starting operation comprises a motor increasing a rotational speed to a specific speed and/or a plurality of devices establishing handshake protocol among one another.
2. The control system of claim 1, wherein the sensor receives the sensing signal wirelessly and/or wiredly.
3. The control system of claim 1, wherein the sensor sends the notice signal wirelessly and/or wiredly.
4. The control system of claim 1, wherein the starting unit receives the control signal wirelessly and/or wiredly.
5. The control system of claim 1, wherein the sensor is an optical sensor, a touch sensor, a proximity sensor, a pressure sensor, a sound sensor, a visual recognition device, a motion sensor, a temperature sensor, a gas sensor, a liquid sensor or a fire alarm sensor.
6. The control system of claim 1, wherein the preparatory starting device comprises the motor, a compressor, an electrical starter device, a mechanical starter device, a capacitor power-storing device or a voltage transformer device.
7. The control system of claim 1, wherein the receiving end is an automatic door, an industrial equipment, an air-conditioning device, a home appliance device, an agriculture control device, a fishery control device, a livestock husbandry control device, a public facility or a monitor alarming device.
8. The control system of claim 1, wherein the starting unit is a voice controlled switch, a touch controlled switch or a sensor switch.
9. The control system of claim 1, wherein the sensor is switched into an operating mode and a sleep mode by turns periodically, the sensor receives the sensing signal in the operating mode, and the sensor does not receive the sensing signal in the sleep mode.
10. A method for controlling a control system, the control system comprising a sensor, a preparatory starting device, a starting unit and a receiving end, the method comprising: the sensor sending a notice signal to the preparatory starting device when the sensor receives a sensing signal when a user moves to within a predetermined distance from the sensor; the preparatory starting device performing a preparatory starting operation when the preparatory starting device receives the notice signal; the preparatory starting device sending an operation command and/or an operation power to the starting unit when the preparatory starting device finishes performing the starting operation; and the starting unit sending the operation command and/or the operation power to the receiving end for the receiving end to perform a functional starting operation for the control system to enter an operation-allowed mode for the receiving end to perform a receiving end operation only when the starting unit receives a control signal; wherein the preparatory starting operation consumes less power than the functional starting operation, and the preparatory starting operation comprises a motor increasing a rotational speed to a specific speed and/or a plurality of devices establishing handshake protocol among one another.
11. The method of claim 10, further comprising the starting unit not sending the operation command and/or the operation power to the receiving end so that the receiving end does not perform the receiving end operation when the starting unit does not receive the control signal after a predetermined time interval.
12. A method for controlling a control system, the control system comprising a sensor, a preparatory starting device, a starting unit and a receiving end, the method comprising: the sensor sending a notice signal to the preparatory starting device when the sensor receives a sensing signal when a user moves to within a predetermined distance from the sensor; the preparatory starting device performing a preparatory starting operation when the preparatory starting device receives the notice signal; the preparatory starting device sending an operation command and/or an operation power to the starting unit when the preparatory starting device finishes performing the starting operation; the starting unit informing the preparatory starting device to stop sending the operation command and/or the operation power to the starting unit and the receiving end not performing a functional starting operation when the starting unit does not receive a control signal after a predetermined time interval; wherein the functional starting operation is for the for the control system to enter an operation-allowed mode for the receiving end to perform the receiving end operation, and the preparatory starting operation consumes less power than the functional starting operation, and the preparatory starting operation comprises a motor increasing a rotational speed to a specific speed and/or a plurality of devices establishing handshake protocol among one another.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(9) In the following description, when a plurality of cases are mentioned and connected with a grammatical conjunction and/or, that means one or more of the cases connected by and/or may occur. For example, when mentioning A and/or B, that may mean a case of only A, another case of only B, or another case of both A and B. Another example is, when mentioning receiving an operation command S.sub.operation and/or an operation power P.sub.operation, that may mean one of the three cases: receiving an operation command S.sub.operation, receiving an operation power P.sub.operation, and receiving an operation command S.sub.operation and also receiving an operation power P.sub.operation. When the grammatical conjunction and/or is used in the following description, the usage is as explained above, and further explanation is omitted for simplicity.
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(12) According to an embodiment relating to the automatic door control system, the sensor 210 may be an infrared (IR) sensor for detecting a longer sensing distance such as 5 meters. When a human body moves within 5 meters from the sensor 210, the sensor 210 receives a sensing signal S.sub.sense at a time t1. The sensing signal S.sub.sense may be an infrared signal with 10 micrometer wavelength radiated from a human body with normal body temperature. After receiving the sensing signal S.sub.sense, the sensor 210 sends the notice signal S.sub.notice to the preparatory starting device 220 that may be a composite device including an electrical starting circuit and a direct current motor. The preparatory starting device 220 then starts performing a starting operation. The starting operation may include, for example, controlling the electrical starting circuit to enter an operating mode from a non-operating mode, and controlling the direct current motor to begin operating to work at a predetermined speed (e.g. 2500 revolutions per minute). After the starting operation is done at a time t2, the preparatory starting device 220 may send the operation command S.sub.operation and/or the operation power P.sub.operation to the starting unit 230. For example, the operation command S.sub.operation may be a door-opening instruction, and the operation power P.sub.operation may be electrical power and mechanical power.
(13) The condition for operating the starting unit 230 is that the starting unit 230 sends the operation command S.sub.operation and/or the operation power P.sub.operation to the receiving end 240 for the receiving end 240 to perform the receiving end operation when the starting unit 230 receives the control signal S.sub.control; and the starting unit 230 does not send the operation command S.sub.operation and/or the operation power P.sub.operation to the receiving end 240 so that the receiving end 240 does not perform the receiving end operation when the starting unit 230 does not receive the control signal S.sub.control.
(14) According to the embodiment of the present application relating to automatic door, the starting unit 230 may an infrared sensor for detecting a shorter sensing distance such as 50 centimeters. When a human body further moves within 50 centimeters from the automatic door control system (that is the control system 200), the starting unit 230 receives the control signal S.sub.control correspondingly. Since the starting unit 230 receives the control signal S.sub.control, the starting unit 230 sends the mentioned operation command S.sub.operation (e.g. the door-opening instruction) and/or the operation power P.sub.operation (e.g. electrical power and mechanical power) to the receiving end 240 for the receiving end 240 to perform the receiving end operation (e.g. opening the automatic door).
(15) The short propagation delay caused by the transmission paths and the starting unit 230 while propagating the operation command S.sub.operation and/or the operation power P.sub.operation from the preparatory starting device 220 to the receiving end 240 through the starting unit 230 may be neglected, thus the preparatory starting device 220 finishes the starting operation at the time t2 to send the operation command S.sub.operation and/or the operation power P.sub.operation to the receiving end 240, and the receiving end 240 receives the operation command S.sub.operation and/or the operation power P.sub.operation at the time t2 for performing the receiving end operation because the starting unit receives the control signal S.sub.control. The preparatory starting device 220 enters an operation-allowed mode (as shown in
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(20) Step 702: the sensor 210 sends a notice signal S.sub.notice to the preparatory starting device 220 when the sensor 210 receives a sensing signal S.sub.sense;
(21) Step 704: the preparatory starting device 220 performs a starting operation when the preparatory starting device 220 receives the notice signal S.sub.notice;
(22) Step 706: the preparatory starting device 220 sends an operation command S.sub.operation and/or an operation power P.sub.operation to the starting unit 230 when the preparatory starting device 220 finishes performing the starting operation;
(23) Step 708: determine if the starting unit 230 receives a control signal S.sub.control after a predetermined time interval? If yes, enter step 710; if no, enter step 712;
(24) Step 710: the starting unit 230 sends the operation command S.sub.operation and/or the operation power P.sub.operation to the receiving end 240 for the receiving end 240 to perform a receiving end operation; enter step 714;
(25) Step 712: the starting unit 230 does not send the operation command S.sub.operation and/or the operation power P.sub.operation to the receiving end 240 so that the receiving end 240 does not perform a receiving end operation; and
(26) Step 714: end.
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(28) Step 802: the sensor 210 sends a notice signal S.sub.notice to the preparatory starting device 220 when the sensor 210 receives a sensing signal S.sub.sense;
(29) Step 804: the preparatory starting device 220 performs a starting operation when the preparatory starting device 220 receives the notice signal S.sub.notice;
(30) Step 806: the preparatory starting device 220 sends an operation command S.sub.operation and/or an operation power P.sub.operation to the starting unit 230 when the preparatory starting device 220 finishes performing the starting operation;
(31) Step 808: determine if the starting unit 230 receives a control signal S.sub.control after a predetermined time interval Tpred? if yes, enter step 810; if no, enter step 812;
(32) Step 810: the starting unit 230 sends the operation command S.sub.operation and/or the operation power P.sub.operation to the receiving end 240 for the receiving end 240 to perform a receiving end operation; enter step 814;
(33) Step 812: the starting unit 230 sends a cancel signal S.sub.cancel for informing the preparatory starting device 220 to stop sending the operation command S.sub.operation and/or the operation power P.sub.operation to the starting unit 230 so that the receiving end 240 does not perform a receiving end operation; and
(34) Step 814: end.
(35) The abovementioned automatic door control system is merely an embodiment of the present application for demonstrating how the control system 200 operates instead of limiting the scope of the present application. The sensor 210 shown in
(36) Take an automatic door control system for example. According to prior art, an electrical power (corresponding to the operation power P.sub.operation shown in
(37) In general, a control system consumes the most power when performing a functional operation such as opening an automatic door or rotating a shaft of a fishery machine, hence the control system may save power when the functional operation is not performed. That is to say, by sending the operation command S.sub.operation and/or the operation power P.sub.operation only to the starting unit 230 but not sending the operation command S.sub.operation and/or the operation power P.sub.operation to the receiving end 240 before receiving the control signal S.sub.control, the control system 200 may both save power and reduce the waiting time in comparison with a control system of prior art which does not perform the described preparatory starting operation.
(38) By means of the control system 200, the method 700 and method 800 disclosed by embodiments of the present application, the delay time a user suffers is effectively reduced so that user experience and convenience are improved. For example, when the control system 200 is used in industrial equipment such as a construction machine, reducing the delay time may help a user to control the industrial equipment more intuitively so that the risk of industrial accident is decreased. Hence, the control system and method thereof disclosed by the present application may bring about better power-saving effect, better industrial safety and improved user experience.
(39) Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.