CN110859015A - Control method of Bluetooth wireless pyroelectric infrared sensor control system - Google Patents
Control method of Bluetooth wireless pyroelectric infrared sensor control system Download PDFInfo
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- CN110859015A CN110859015A CN201810933946.1A CN201810933946A CN110859015A CN 110859015 A CN110859015 A CN 110859015A CN 201810933946 A CN201810933946 A CN 201810933946A CN 110859015 A CN110859015 A CN 110859015A
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- bluetooth module
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- pyroelectric infrared
- infrared sensor
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Abstract
The invention discloses a control method of a Bluetooth wireless pyroelectric infrared sensor control system, which comprises a transmitting part and a receiving part, wherein the transmitting part is connected with the receiving part through a wireless network; the transmitting part comprises a sampling control unit, a photosensitive element, a pyroelectric infrared sensor, a Bluetooth module and a key switch, wherein the sampling control unit comprises a processor, an anti-interference filtering processing unit and an average value plus median filtering algorithm unit; the receiving part comprises a lamp power supply circuit, a Bluetooth module and an LED lamp; the control method of the Bluetooth wireless pyroelectric infrared sensor control system has the advantages of simple circuit, high detection precision, high reliability, strong practicability and convenience in installation.
Description
Technical Field
The invention relates to the technical field of lighting control systems, in particular to a control method of a Bluetooth wireless pyroelectric infrared sensor control system.
Background
With the wider application range of LED lamps, high-power and high-brightness LED chips are produced; in recent years, with the successful development of high-power high-brightness LED chips and the continuous improvement of light reflection efficiency, more and more high-power high-brightness LEDs are beginning to enter the illumination field.
There are various forms of LED lighting control systems in the prior art; however, for the existing LED lighting control system, the defects of unreasonable design, complex circuit, poor reliability and inconvenient installation are common.
Disclosure of Invention
The invention aims to provide a control method of a Bluetooth wireless pyroelectric infrared sensor control system aiming at the defects of the prior art, and the control method of the Bluetooth wireless pyroelectric infrared sensor control system has the advantages of simple circuit, high detection precision, high reliability, strong practicability and convenience in installation.
In order to achieve the above object, the present invention is achieved by the following technical solutions.
A control method of a Bluetooth wireless pyroelectric infrared sensor control system comprises a transmitting part and a receiving part;
the emission part comprises a sampling control unit, a photosensitive element, a pyroelectric infrared sensor, a Bluetooth module and a key switch, wherein the sampling control unit comprises a processor, an anti-interference filtering processing unit and an average value plus median filtering algorithm unit; the Bluetooth module is electrically connected with the processor of the sampling control unit, and the key switch is electrically connected with the Bluetooth module;
the receiving part comprises a lamp power supply circuit, a Bluetooth module and an LED lamp, wherein the Bluetooth module and the LED lamp are respectively electrically connected with the lamp power supply circuit;
the control method of the Bluetooth wireless pyroelectric infrared sensor control system comprises the following steps:
a. pressing the key switch, and timing the key time by the Bluetooth module of the transmitting part;
b. when the time for pressing the key switch is less than 1s, the Bluetooth module of the transmitting part is in a pairing mode, and lamps which are not paired in the detection range are configured; when the time for pressing the key switch is more than 2s and less than 9s, the Bluetooth module of the transmitting part enters a mobile phone control mode, at the moment, a user carries out pyroelectric infrared induction and light control mode setting through a mobile phone APP, and the Bluetooth module of the transmitting part and the pyroelectric infrared induction enter a detection mode; when the time for pressing the key switch is more than 10s, the Bluetooth module of the transmitting part is restored to factory settings, and the Bluetooth module of the transmitting part enters a deep sleep state and waits for a command of the key switch or a command of the sampling control unit;
c. when the Bluetooth module of the transmitting part is in a pairing mode, if no paired lamp is detected, the Bluetooth module of the transmitting part enters a deep sleep state and waits for a command of a key switch or a command of a sampling control unit; if the lamps and lanterns that do not pair are detected, then the bluetooth module of emission part sets up and releases the infrared inductor for the default, and the bluetooth module of emission part and release infrared induction this moment enter into the detection mode.
When the Bluetooth module of the transmitting part is in a pairing mode and is used for configuring lamps which are not paired in the detection range, the Bluetooth module of the transmitting part is configured with the Bluetooth module of the receiving part.
Wherein, the bluetooth module of emission part disposes the LED pilot lamp, LED pilot lamp and emission part's bluetooth module electric connection.
The invention has the beneficial effects that: the invention relates to a control method of a Bluetooth wireless pyroelectric infrared sensor control system, which comprises a transmitting part and a receiving part, wherein the transmitting part is connected with the receiving part; the emission part comprises a sampling control unit, a photosensitive element, a pyroelectric infrared sensor, a Bluetooth module and a key switch, wherein the sampling control unit comprises a processor, an anti-interference filtering processing unit and an average value plus median filtering algorithm unit; the Bluetooth module is electrically connected with the processor of the sampling control unit, and the key switch is electrically connected with the Bluetooth module; the receiving part comprises a lamp power supply circuit, a Bluetooth module and an LED lamp, wherein the Bluetooth module and the LED lamp are respectively electrically connected with the lamp power supply circuit; the control method of the Bluetooth wireless pyroelectric infrared sensor control system comprises the following steps: a. pressing the key switch, and timing the key time by the Bluetooth module of the transmitting part; b. when the time for pressing the key switch is less than 1s, the Bluetooth module of the transmitting part is in a pairing mode, and lamps which are not paired in the detection range are configured; when the time for pressing the key switch is more than 2s and less than 9s, the Bluetooth module of the transmitting part enters a mobile phone control mode, at the moment, a user carries out pyroelectric infrared induction and light control mode setting through a mobile phone APP, and the Bluetooth module of the transmitting part and the pyroelectric infrared induction enter a detection mode; when the time for pressing the key switch is more than 10s, the Bluetooth module of the transmitting part is restored to factory settings, and the Bluetooth module of the transmitting part enters a deep sleep state and waits for a command of the key switch or a command of the sampling control unit; c. when the Bluetooth module of the transmitting part is in a pairing mode, if no paired lamp is detected, the Bluetooth module of the transmitting part enters a deep sleep state and waits for a command of a key switch or a command of a sampling control unit; if the lamps and lanterns that do not pair are detected, then the bluetooth module of emission part sets up and releases the infrared inductor for the default, and the bluetooth module of emission part and release infrared induction this moment enter into the detection mode. The control method of the Bluetooth wireless pyroelectric infrared sensor control system has the advantages of simple circuit, high detection precision, high reliability, strong practicability and convenience in installation.
Drawings
The invention will be further described with reference to the drawings to which, however, the embodiments shown in the drawings do not constitute any limitation.
FIG. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a flow chart of the operation of the present invention.
Detailed Description
The present invention will be described below with reference to specific embodiments.
As shown in fig. 1, a control method of a bluetooth wireless pyroelectric infrared sensor control system includes a transmitting portion and a receiving portion.
The emission part comprises a sampling control unit, a photosensitive element, a pyroelectric infrared sensor, a Bluetooth module and a key switch, wherein the sampling control unit comprises a processor, an anti-interference filtering processing unit and an average value plus median filtering algorithm unit; the Bluetooth module is electrically connected with the processor of the sampling control unit, and the key switch is electrically connected with the Bluetooth module.
In addition, the receiving part comprises a lamp power supply circuit, a Bluetooth module and an LED lamp, and the Bluetooth module and the LED lamp are respectively electrically connected with the lamp power supply circuit.
As shown in fig. 2, the control method of the bluetooth wireless pyroelectric infrared sensor control system includes the following steps:
a. pressing the key switch, and timing the key time by the Bluetooth module of the transmitting part;
b. when the time for pressing the key switch is less than 1s, the Bluetooth module of the transmitting part is in a pairing mode, and lamps which are not paired in the detection range are configured; when the time for pressing the key switch is more than 2s and less than 9s, the Bluetooth module of the transmitting part enters a mobile phone control mode, at the moment, a user carries out pyroelectric infrared induction and light control mode setting through a mobile phone APP, and the Bluetooth module of the transmitting part and the pyroelectric infrared induction enter a detection mode; when the time for pressing the key switch is more than 10s, the Bluetooth module of the transmitting part is restored to factory settings, and the Bluetooth module of the transmitting part enters a deep sleep state and waits for a command of the key switch or a command of the sampling control unit;
c. when the Bluetooth module of the transmitting part is in a pairing mode, if no paired lamp is detected, the Bluetooth module of the transmitting part enters a deep sleep state and waits for a command of a key switch or a command of a sampling control unit; if the lamps and lanterns that do not pair are detected, then the bluetooth module of emission part sets up and releases the infrared inductor for the default, and the bluetooth module of emission part and release infrared induction this moment enter into the detection mode.
It should be explained that, when the bluetooth module of the transmitting part performs the pairing mode and configures the lamps which are not paired in the detection range, the bluetooth module of the transmitting part and the bluetooth module of the receiving part are configured.
In addition, the bluetooth module of emission part disposes the LED pilot lamp, LED pilot lamp and emission part's bluetooth module electric connection. When the Bluetooth module works, the state of the Bluetooth module of the transmitting part can be indicated through the LED indicating lamp.
The invention has the advantages that the emission part is an independent sensor without an LED lamp, which comprises a Bluetooth module, a pyroelectric infrared sensor, a sampling control unit and a photosensitive element, can be arranged at any position, does not need wiring and can be moved; the receiving part of the invention is provided with the Bluetooth module without the pyroelectric infrared sensor and the photosensitive element, and has low cost and convenient installation.
The control method of the Bluetooth wireless pyroelectric infrared sensor control system has the advantages of simple circuit, high detection precision, high reliability, strong practicability and convenience in installation.
The above description is only a preferred embodiment of the present invention, and for those skilled in the art, the present invention should not be limited by the description of the present invention, which should be interpreted as a limitation.
Claims (3)
1. A control method of a Bluetooth wireless pyroelectric infrared sensor control system is characterized by comprising the following steps: the Bluetooth wireless pyroelectric infrared sensor control system comprises a transmitting part and a receiving part;
the emission part comprises a sampling control unit, a photosensitive element, a pyroelectric infrared sensor, a Bluetooth module and a key switch, wherein the sampling control unit comprises a processor, an anti-interference filtering processing unit and an average value plus median filtering algorithm unit; the Bluetooth module is electrically connected with the processor of the sampling control unit, and the key switch is electrically connected with the Bluetooth module;
the receiving part comprises a lamp power supply circuit, a Bluetooth module and an LED lamp, wherein the Bluetooth module and the LED lamp are respectively electrically connected with the lamp power supply circuit;
the control method of the Bluetooth wireless pyroelectric infrared sensor control system comprises the following steps:
a. pressing the key switch, and timing the key time by the Bluetooth module of the transmitting part;
b. when the time for pressing the key switch is less than 1s, the Bluetooth module of the transmitting part is in a pairing mode, and lamps which are not paired in the detection range are configured; when the time for pressing the key switch is more than 2s and less than 9s, the Bluetooth module of the transmitting part enters a mobile phone control mode, at the moment, a user carries out pyroelectric infrared induction and light control mode setting through a mobile phone APP, and the Bluetooth module of the transmitting part and the pyroelectric infrared induction enter a detection mode; when the time for pressing the key switch is more than 10s, the Bluetooth module of the transmitting part is restored to factory settings, and the Bluetooth module of the transmitting part enters a deep sleep state and waits for a command of the key switch or a command of the sampling control unit;
c. when the Bluetooth module of the transmitting part is in a pairing mode, if no paired lamp is detected, the Bluetooth module of the transmitting part enters a deep sleep state and waits for a command of a key switch or a command of a sampling control unit; if the lamps and lanterns that do not pair are detected, then the bluetooth module of emission part sets up and releases the infrared inductor for the default, and the bluetooth module of emission part and release infrared induction this moment enter into the detection mode.
2. The control method of the Bluetooth wireless pyroelectric infrared sensor control system as claimed in claim 1, wherein: when the Bluetooth module of the transmitting part is in a pairing mode and the lamps which are not paired in the detection range are configured, the Bluetooth module of the transmitting part and the Bluetooth module of the receiving part are configured.
3. The control method of the Bluetooth wireless pyroelectric infrared sensor control system as claimed in claim 1, wherein: the bluetooth module of emission part disposes the LED pilot lamp, LED pilot lamp and emission part's bluetooth module electric connection.
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CN105554981A (en) * | 2015-12-31 | 2016-05-04 | 深圳还是威健康科技有限公司 | Table lamp adjusting method and device |
CN105848392A (en) * | 2016-06-15 | 2016-08-10 | 东莞市铭皓照明有限公司 | Human body induction single-chip microcomputer control system and control method for lamp |
CN106937460A (en) * | 2016-11-17 | 2017-07-07 | 庞卓洋 | A kind of wearable luminaire of terminal control |
CN207281992U (en) * | 2017-07-10 | 2018-04-27 | 上海顿格电子贸易有限公司 | A kind of blue Tooth remote controller and lighting device for being used to dim color-temperature regulating |
CN108391340A (en) * | 2017-02-03 | 2018-08-10 | 朗德万斯公司 | For creating and/or the lighting system of extended network, light source, sensor and method |
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2018
- 2018-08-16 CN CN201810933946.1A patent/CN110859015B/en active Active
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
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CA2318671C (en) * | 1999-09-20 | 2003-07-29 | Lucent Technologies Inc. | Adaptive microwave oven |
CN105554981A (en) * | 2015-12-31 | 2016-05-04 | 深圳还是威健康科技有限公司 | Table lamp adjusting method and device |
CN105848392A (en) * | 2016-06-15 | 2016-08-10 | 东莞市铭皓照明有限公司 | Human body induction single-chip microcomputer control system and control method for lamp |
CN106937460A (en) * | 2016-11-17 | 2017-07-07 | 庞卓洋 | A kind of wearable luminaire of terminal control |
CN108391340A (en) * | 2017-02-03 | 2018-08-10 | 朗德万斯公司 | For creating and/or the lighting system of extended network, light source, sensor and method |
CN207281992U (en) * | 2017-07-10 | 2018-04-27 | 上海顿格电子贸易有限公司 | A kind of blue Tooth remote controller and lighting device for being used to dim color-temperature regulating |
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