CN109579070B - Safety toughened glass range - Google Patents

Safety toughened glass range Download PDF

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Publication number
CN109579070B
CN109579070B CN201811457886.7A CN201811457886A CN109579070B CN 109579070 B CN109579070 B CN 109579070B CN 201811457886 A CN201811457886 A CN 201811457886A CN 109579070 B CN109579070 B CN 109579070B
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image
toughened glass
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scene image
scene
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CN109579070A (en
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邱迪
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Dongguan Xinyijia Glass Co ltd
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C3/00Stoves or ranges for gaseous fuels
    • F24C3/12Arrangement or mounting of control or safety devices
    • F24C3/126Arrangement or mounting of control or safety devices on ranges

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Induction Heating Cooking Devices (AREA)
  • Emergency Alarm Devices (AREA)

Abstract

The invention relates to a safety type toughened glass kitchen range, which comprises: the toughened glass cooker comprises a furnace foot, a toughened glass panel, a rotary switch, a burner, a fan and an open type air outlet, wherein the rotary switch is arranged on the toughened glass panel; and the leakage prevention equipment is arranged in the toughened glass cooker and used for automatically starting the gas leakage prevention function when receiving a first control command and stopping starting the gas leakage prevention function when receiving a second control command. By the invention, the safety performance of the toughened glass kitchen range can be further improved.

Description

Safety toughened glass range
Technical Field
The invention relates to the field of toughened glass cooking utensils, in particular to a safe toughened glass cooking utensil.
Background
The toughened glass kitchen range must use professional gas pipe to connect, in order to guarantee safe in utilization, its use needs to be changed after one year (because of old gas pipe if crack or interface are not hard up, can lead to gas leakage).
When the toughened glass stove is installed, the gas stove interface prohibits the rotation direction. When air leakage occurs, the gas main switch is closed, the door and the window are opened, air is circulated, and at the moment, the ignition cannot be performed or the electrical appliance cannot be started, so that the gas is prevented from being ignited by the spark to cause explosion. When the gas stove is used, a user does not need to open the gas stove, the gas stove is closed and a gas main switch after the gas stove is used, and whether the switch is closed or not is checked repeatedly before the user falls asleep or goes out. Checking whether boiling overflow falls on the fire cover and the stove head, and if yes, cleaning in time to ensure the normal combustion of the stove. When the ignition spark of the gas stove is weakened or the discharge speed is reduced, the battery is required to be replaced. Do not scratch the panel with a hard, sharp object.
Disclosure of Invention
In order to solve the technical problem that the safety performance of the current toughened glass kitchen range needs to be further improved, the invention provides the safe toughened glass kitchen range, which establishes a selection mechanism of reference image fragments for executing subsequent image processing based on the complexity of image content, can select the image fragments with the richest content to participate in processing, and reduces the load of equipment operation; the gas leakage prevention device is particularly characterized in that high-precision and high-efficiency human body recognition is carried out in the scene where the toughened glass cooker is located, so that the gas leakage prevention function of the leakage prevention device is automatically started when a human body is recognized, and the safety of the toughened glass cooker is further improved.
According to an aspect of the present invention, there is provided a safety tempered glass cooktop comprising:
a toughened glass cooker comprises a furnace foot, a toughened glass panel, a rotary switch, a burner, a fan and an open air outlet.
More specifically, in the safety tempered glass cooker: the rotary switch is arranged on the toughened glass panel, the burner is arranged at the central position of the toughened glass panel, and the fan is arranged below the open air outlet.
More specifically, in the safety tempered glass cooker: the stove foot sets up the below of toughened glass panel, the combustor includes fire outlet, interior fire lid and outer fire lid.
More specifically, in safe type toughened glass cooking utensils, still include:
the anti-leakage device is arranged in the toughened glass cooker and used for automatically starting the gas anti-leakage function when receiving a first control command and stopping starting the gas anti-leakage function when receiving a second control command; the three-dimensional imaging device is arranged at the top of the toughened glass cooker and used for imaging the scene where the toughened glass cooker is located, and comprises a left side imager and a right side imager which are horizontally arranged and used for respectively outputting a left side scene image and a right side scene image; the first processing device is connected with the stereo imaging device and used for receiving the left scene image and the right scene image, facing to any one of the left scene image and the right scene image, and respectively identifying the content complexity of each image fragment with a preset size in the scene image so as to obtain each content complexity corresponding to each image fragment; respectively identifying the content complexity of each image fragment with a preset size in the scene image comprises the following steps: judging the corresponding content complexity based on the proximity degree between the data in each image fragment; the second processing device is connected with the first processing device and is used for receiving each content complexity facing to any one of the left scene image and the right scene image, performing numerical comparison on each content complexity to take image fragments corresponding to a plurality of content complexities with maximum numerical values as a plurality of reference image fragments and outputting the plurality of reference image fragments; an image combining device, connected to the second processing device, configured to receive a plurality of reference image fragments corresponding to each of the left scene image and the right scene image, combine the plurality of reference image fragments corresponding to the left scene image and the plurality of reference image fragments corresponding to the right scene image to obtain a corresponding combined image, and send the combined image; the characteristic distinguishing equipment is respectively connected with the leakage-preventing equipment and the image combining equipment and is used for receiving the combined image, distinguishing the human body characteristic from the combined image, and sending a first control command when the distinguishing is successful, or sending a second control command when the distinguishing is not successful; the image combination equipment consists of data receiving sub-equipment, fragment combination sub-equipment and data sending sub-equipment; wherein, in the second processing device, the number of the selected plurality of reference image patches is determined based on the value of the content complexity of the largest value among the respective content complexities; wherein determining the number of the selected plurality of reference image patches based on the value of the content complexity with the largest value among the respective content complexities comprises: the larger the value of the content complexity of the maximum value in the content complexities is, the larger the number of the selected multiple reference image fragments is; wherein, within each image slice, the higher the proximity between the respective data, the lower the corresponding content complexity.
Detailed Description
The embodiment of the safety type toughened glass kitchen range of the invention will be explained in detail.
In the prior art, the toughened glass cooker adopts a gas-electricity integrated design, two cooking modes enable users to enjoy a light kitchen at will, a safety shield system perfectly integrates two leading-edge technologies of main fire middle-placing and magnetic purification, and the life of people is facilitated. The bionic fire power regulation of the left gas and the right electricity is more in line with the use habit of people, the safety separation of the gas and the electricity is ensured by the gas and the electricity safety separation chamber, the independent three-channel design is arranged at the rear part, the oxygen supply and the heat dissipation are independent, and the full air inlet of the gas and the electricity dual cycle is realized.
In order to overcome the defects, the invention builds a safe toughened glass cooker, and can effectively solve the corresponding technical problems.
The safety type toughened glass cooker shown according to the embodiment of the invention comprises:
a toughened glass cooker comprises a furnace foot, a toughened glass panel, a rotary switch, a burner, a fan and an open air outlet.
Next, the specific structure of the safety tempered glass cooker of the present invention will be further described.
In the safety type toughened glass cooker: the rotary switch is arranged on the toughened glass panel, the burner is arranged at the central position of the toughened glass panel, and the fan is arranged below the open air outlet.
In the safety type toughened glass cooker: the stove foot sets up the below of toughened glass panel, the combustor includes fire outlet, interior fire lid and outer fire lid.
In the safe type toughened glass cooking utensils, still include:
the anti-leakage device is arranged in the toughened glass cooker and used for automatically starting the gas anti-leakage function when receiving a first control command and stopping starting the gas anti-leakage function when receiving a second control command;
the three-dimensional imaging device is arranged at the top of the toughened glass cooker and used for imaging the scene where the toughened glass cooker is located, and comprises a left side imager and a right side imager which are horizontally arranged and used for respectively outputting a left side scene image and a right side scene image;
the first processing device is connected with the stereo imaging device and used for receiving the left scene image and the right scene image, facing to any one of the left scene image and the right scene image, and respectively identifying the content complexity of each image fragment with a preset size in the scene image so as to obtain each content complexity corresponding to each image fragment; respectively identifying the content complexity of each image fragment with a preset size in the scene image comprises the following steps: judging the corresponding content complexity based on the proximity degree between the data in each image fragment;
the second processing device is connected with the first processing device and is used for receiving each content complexity facing to any one of the left scene image and the right scene image, performing numerical comparison on each content complexity to take image fragments corresponding to a plurality of content complexities with maximum numerical values as a plurality of reference image fragments and outputting the plurality of reference image fragments;
an image combining device, connected to the second processing device, configured to receive a plurality of reference image fragments corresponding to each of the left scene image and the right scene image, combine the plurality of reference image fragments corresponding to the left scene image and the plurality of reference image fragments corresponding to the right scene image to obtain a corresponding combined image, and send the combined image;
the characteristic distinguishing equipment is respectively connected with the leakage-preventing equipment and the image combining equipment and is used for receiving the combined image, distinguishing the human body characteristic from the combined image, and sending a first control command when the distinguishing is successful, or sending a second control command when the distinguishing is not successful;
the image combination equipment consists of data receiving sub-equipment, fragment combination sub-equipment and data sending sub-equipment;
wherein, in the second processing device, the number of the selected plurality of reference image patches is determined based on the value of the content complexity of the largest value among the respective content complexities;
wherein determining the number of the selected plurality of reference image patches based on the value of the content complexity with the largest value among the respective content complexities comprises: the larger the value of the content complexity of the maximum value in the content complexities is, the larger the number of the selected multiple reference image fragments is;
wherein, within each image slice, the higher the proximity between the respective data, the lower the corresponding content complexity.
In the safety type toughened glass cooker: the fragment combining sub-device is respectively connected with the data receiving sub-device and the data sending sub-device,
in the image combining device, the data receiving sub-device is configured to receive a plurality of reference image fragments corresponding to each of the left scene image and the right scene image, and the data sending sub-device is configured to send the combined image.
In the safety type toughened glass cooker: in the image combining device, the fragment combining sub-device is configured to combine the plurality of reference image fragments corresponding to the left scene image and the plurality of reference image fragments corresponding to the right scene image to obtain a corresponding combined image.
In the safe type toughened glass cooking utensils, still include:
and the area processing device is positioned between the stereo imaging device and the first processing device and used for processing any image of the left scene image and the right scene image as a scene image to obtain a corresponding area processing image and replacing the left scene image and the right scene image with the obtained left area processing image and right area processing image to output the left area processing image and right area processing image to the first processing device.
In the safety type toughened glass cooker: the area processing device is used for receiving a scene image, determining whether each pixel in the scene image belongs to a target pixel based on a preset target brightness threshold range, forming all target pixels in the scene image into a preliminary target area, increasing the brightness value levels of all pixels in the preliminary area in the scene image to obtain a contrast-improved image, enhancing a bright part area in the contrast-improved image, reducing a dark part area in the contrast-improved image to obtain a target enhanced image, and performing image smoothing on the target enhanced image to obtain an area processing image.
In the safe type toughened glass cooking utensils, still include:
and the SDRAM memory chip is connected with the regional processing equipment and used for storing a preset target brightness threshold range and sending the preset target brightness threshold range to the regional processing equipment.
In the safety type toughened glass cooker: the region processing device comprises a pixel judgment sub-device, a contrast extraction sub-device, a target enhancement sub-device and a smoothing sub-device;
wherein, in the region processing device, the contrast extraction sub-device is connected to the pixel determination sub-device and the target enhancement sub-device, respectively, and the smoothing sub-device is connected to the target enhancement sub-device.
Synchronous Dynamic Random Access Memory, wherein the Synchronous means that a Synchronous clock is needed for Memory work, and the sending of internal commands and the transmission of data take the Synchronous clock as a reference; dynamic means that the memory array needs to be refreshed continuously to ensure that data is not lost; random means that data are not stored linearly and sequentially, but data are read and written by freely appointing addresses. The clock frequency of the SDR SDRAM is the frequency of data storage. The operating voltage of the SDRAM is 3.3V.
By adopting the safe toughened glass cooker, aiming at the technical problem that the safety performance of the toughened glass cooker in the prior art needs to be further improved, a selection mechanism of a reference image fragment for executing subsequent image processing based on the complexity of image content is established, the image fragment with the richest content can be selected to participate in processing, and the load of equipment operation is reduced; the gas leakage prevention device is particularly characterized in that high-precision and high-efficiency human body recognition is carried out in the scene where the toughened glass cooker is located, so that the gas leakage prevention function of the leakage prevention device is automatically started when a human body is recognized, and the safety of the toughened glass cooker is further improved.
It is to be understood that while the present invention has been described in conjunction with the preferred embodiments thereof, it is not intended to limit the invention to those embodiments. It will be apparent to those skilled in the art from this disclosure that many changes and modifications can be made, or equivalents modified, in the embodiments of the invention without departing from the scope of the invention. Therefore, any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present invention are still within the scope of the protection of the technical solution of the present invention, unless the contents of the technical solution of the present invention are departed.

Claims (7)

1. A safety type toughened glass cooking utensil, the cooking utensil includes:
the toughened glass cooker comprises a furnace foot, a toughened glass panel, a rotary switch, a burner, a fan and an open air outlet;
the method is characterized in that:
the rotary switch is arranged on the toughened glass panel, the burner is arranged in the center of the toughened glass panel, and the fan is arranged below the open air outlet;
the furnace foot is arranged below the toughened glass panel, and the burner comprises a fire outlet, an inner fire cover and an outer fire cover;
the cooking appliance comprises:
the anti-leakage device is arranged in the toughened glass cooker and used for automatically starting the gas anti-leakage function when receiving a first control command and stopping starting the gas anti-leakage function when receiving a second control command;
the three-dimensional imaging device is arranged at the top of the toughened glass cooker and used for imaging the scene where the toughened glass cooker is located, and comprises a left side imager and a right side imager which are horizontally arranged and used for respectively outputting a left side scene image and a right side scene image;
the first processing device is connected with the stereo imaging device and used for receiving the left scene image and the right scene image, facing to any one of the left scene image and the right scene image, and respectively identifying the content complexity of each image fragment with a preset size in the scene image so as to obtain each content complexity corresponding to each image fragment; respectively identifying the content complexity of each image fragment with a preset size in the scene image comprises the following steps: judging the corresponding content complexity based on the proximity degree between the data in each image fragment;
the second processing device is connected with the first processing device and is used for receiving each content complexity facing to any one of the left scene image and the right scene image, performing numerical comparison on each content complexity to take image fragments corresponding to a plurality of content complexities with maximum numerical values as a plurality of reference image fragments and outputting the plurality of reference image fragments;
an image combining device, connected to the second processing device, configured to receive a plurality of reference image fragments corresponding to each of the left scene image and the right scene image, combine the plurality of reference image fragments corresponding to the left scene image and the plurality of reference image fragments corresponding to the right scene image to obtain a corresponding combined image, and send the combined image;
the characteristic distinguishing equipment is respectively connected with the leakage-preventing equipment and the image combining equipment and is used for receiving the combined image, distinguishing the human body characteristic from the combined image, and sending a first control command when the distinguishing is successful, or sending a second control command when the distinguishing is not successful;
the image combination equipment consists of data receiving sub-equipment, fragment combination sub-equipment and data sending sub-equipment;
wherein, in the second processing device, the number of the selected plurality of reference image patches is determined based on the value of the content complexity of the largest value among the respective content complexities;
wherein determining the number of the selected plurality of reference image patches based on the value of the content complexity with the largest value among the respective content complexities comprises: the larger the value of the content complexity of the maximum value in the content complexities is, the larger the number of the selected multiple reference image fragments is;
wherein, within each image slice, the higher the proximity between the respective data, the lower the corresponding content complexity.
2. The safety type toughened glass cooking utensil of claim 1, wherein:
the fragment combining sub-device is respectively connected with the data receiving sub-device and the data sending sub-device,
in the image combining device, the data receiving sub-device is configured to receive a plurality of reference image fragments corresponding to each of the left scene image and the right scene image, and the data sending sub-device is configured to send the combined image.
3. The safety type toughened glass cooking utensil of claim 2, wherein:
in the image combining device, the fragment combining sub-device is configured to combine the plurality of reference image fragments corresponding to the left scene image and the plurality of reference image fragments corresponding to the right scene image to obtain a corresponding combined image.
4. The safety tempered glass cooker of claim 3, wherein the cooker comprises:
and the area processing device is positioned between the stereo imaging device and the first processing device and used for processing any image of the left scene image and the right scene image as a scene image to obtain a corresponding area processing image and replacing the left scene image and the right scene image with the obtained left area processing image and right area processing image to output the left area processing image and right area processing image to the first processing device.
5. The safety type toughened glass cooking utensil of claim 4, wherein:
the area processing device is used for receiving a scene image, determining whether each pixel in the scene image belongs to a target pixel based on a preset target brightness threshold range, forming all target pixels in the scene image into a preliminary target area, increasing the brightness value levels of all pixels in the preliminary area in the scene image to obtain a contrast-improved image, enhancing a bright part area in the contrast-improved image, reducing a dark part area in the contrast-improved image to obtain a target enhanced image, and performing image smoothing on the target enhanced image to obtain an area processing image.
6. The safety tempered glass cooker of claim 5, wherein the cooker comprises:
and the SDRAM memory chip is connected with the regional processing equipment and used for storing a preset target brightness threshold range and sending the preset target brightness threshold range to the regional processing equipment.
7. The safety type toughened glass cooking utensil of claim 6, wherein:
the region processing device comprises a pixel judgment sub-device, a contrast extraction sub-device, a target enhancement sub-device and a smoothing sub-device;
wherein, in the region processing device, the contrast extraction sub-device is connected to the pixel determination sub-device and the target enhancement sub-device, respectively, and the smoothing sub-device is connected to the target enhancement sub-device.
CN201811457886.7A 2018-11-30 2018-11-30 Safety toughened glass range Active CN109579070B (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101697067A (en) * 2009-07-02 2010-04-21 倪文谦 Automatic control system of combustible gas
JP6168791B2 (en) * 2013-02-21 2017-07-26 大阪瓦斯株式会社 Cooking system and application program for cooking system
CN107784295B (en) * 2017-11-20 2018-12-21 惠州太初科技有限公司 The camera camera system stretched based on human body distance
CN108151075A (en) * 2017-12-21 2018-06-12 珠海智星荟科技服务有限公司 A kind of novel energy-saving environment-friendly cooker
CN208075038U (en) * 2018-04-13 2018-11-09 云南振楠科技有限公司 A kind of gas-cooker

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Effective date of registration: 20200511

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