CN110844074A - Pesticide sprays unmanned aerial vehicle - Google Patents

Pesticide sprays unmanned aerial vehicle Download PDF

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Publication number
CN110844074A
CN110844074A CN201911157993.2A CN201911157993A CN110844074A CN 110844074 A CN110844074 A CN 110844074A CN 201911157993 A CN201911157993 A CN 201911157993A CN 110844074 A CN110844074 A CN 110844074A
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elastic rod
unmanned aerial
aerial vehicle
current frame
rod
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CN110844074B (en
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李旭东
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Chongqing Normal University
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Chongqing Normal University
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64DEQUIPMENT FOR FITTING IN OR TO AIRCRAFT; FLIGHT SUITS; PARACHUTES; ARRANGEMENTS OR MOUNTING OF POWER PLANTS OR PROPULSION TRANSMISSIONS IN AIRCRAFT
    • B64D1/00Dropping, ejecting, releasing, or receiving articles, liquids, or the like, in flight
    • B64D1/16Dropping or releasing powdered, liquid, or gaseous matter, e.g. for fire-fighting
    • B64D1/18Dropping or releasing powdered, liquid, or gaseous matter, e.g. for fire-fighting by spraying, e.g. insecticides
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01MCATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
    • A01M7/00Special adaptations or arrangements of liquid-spraying apparatus for purposes covered by this subclass
    • A01M7/0025Mechanical sprayers
    • A01M7/0032Pressure sprayers
    • A01M7/0042Field sprayers, e.g. self-propelled, drawn or tractor-mounted
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01MCATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
    • A01M7/00Special adaptations or arrangements of liquid-spraying apparatus for purposes covered by this subclass
    • A01M7/005Special arrangements or adaptations of the spraying or distributing parts, e.g. adaptations or mounting of the spray booms, mounting of the nozzles, protection shields
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01MCATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
    • A01M7/00Special adaptations or arrangements of liquid-spraying apparatus for purposes covered by this subclass
    • A01M7/0082Undercarriages, frames, mountings, couplings, tanks

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Pest Control & Pesticides (AREA)
  • Insects & Arthropods (AREA)
  • Wood Science & Technology (AREA)
  • Zoology (AREA)
  • Environmental Sciences (AREA)
  • Mechanical Engineering (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • Catching Or Destruction (AREA)

Abstract

The invention discloses a pesticide spraying unmanned aerial vehicle, which belongs to the field of unmanned aerial vehicle spraying and comprises a machine body and a propeller connected with the machine body, wherein the unmanned aerial vehicle further comprises a pesticide box and a fixing frame, the pesticide box is a cylinder, the cylinder is horizontally fixed on the machine body along the central axis of the cylinder, the pesticide box comprises a liquid storage cavity for storing pesticide liquid, the liquid storage cavity is communicated with a nozzle pipe, the nozzle pipe is provided with a horizontal section connected with the liquid storage cavity and a vertical section for downwards spraying the pesticide liquid, rollers are arranged on two sides of the pesticide box, a fixing piece is arranged on the side surface of the pesticide box, a channel is arranged in the middle of the fixing piece, and an internal.

Description

Pesticide sprays unmanned aerial vehicle
Technical Field
The invention relates to the field of unmanned aerial vehicle spraying.
Background
The unmanned plane is called unmanned plane for short, and is an unmanned plane operated by radio remote control equipment and a self-contained program control device. The machine has no cockpit, but is provided with an automatic pilot, a program control device and other equipment. The personnel on the ground, the naval vessel or the mother aircraft remote control station can track, position, remotely control, telemeter and digitally transmit the personnel through equipment such as a radar. The aircraft can take off like a common airplane under the radio remote control or launch and lift off by a boosting rocket, and can also be thrown into the air by a mother aircraft for flying. During recovery, the aircraft can land automatically in the same way as the common aircraft landing process, and can also be recovered by a parachute or a barrier net for remote control. Can be repeatedly used for many times. The method is widely used for aerial reconnaissance, monitoring, communication, anti-submergence, electronic interference and the like.
Some unmanned aerial vehicles are used in the agricultural field now, like unmanned aerial vehicle sprays insecticide, unmanned aerial vehicle seeding etc. when unmanned aerial vehicle sprayed insecticide, because the liquid medicine sprays along with gravity, the liquid medicine rocks easily in the medical kit to because the consumption of liquid medicine, the pressure of the liquid medicine of spout department is more and more little, makes the average volume that begins to spray be greater than the average volume that sprays at the back, and the inhomogeneous of spraying
Disclosure of Invention
The invention aims to disclose a pesticide spraying unmanned aerial vehicle, which comprises a body and a propeller connected with the body, and the unmanned aerial vehicle further comprises:
the medical kit is a cylinder, the cylinder is horizontally fixed on the machine body along the central axis of the cylinder, the medical kit comprises a liquid storage cavity for storing liquid medicine, the liquid storage cavity is communicated with a nozzle pipe, the nozzle pipe is provided with a horizontal section connected with the liquid storage cavity and a vertical section for spraying liquid downwards, the two sides of the medical kit are provided with rolling wheels, the side surface of the medical kit is provided with a fixing piece, the middle of the fixing piece is provided with a channel, and the side wall of the channel is provided with internal threads;
the fixing frame comprises a fixing plate, the fixing plate is fixedly connected with an elastic rod assembly, the elastic rod assembly partially extends into the medicine box, a piston is arranged at the tail end of the elastic rod assembly, a liquid storage cavity is formed by the piston and the side wall of the medicine box, a motor is arranged on the fixing plate and connected with a screw rod, the screw rod is driven by the motor to rotate, the screw rod is in threaded connection with a channel of the fixing plate, a track is arranged on the fixing frame, and the roller can horizontally move along the;
the elastic rod assembly comprises a first elastic rod connected with the fixing plate, a third elastic rod connected with the piston and a second elastic rod positioned between the first elastic rod and the third elastic rod, the second elastic rod is provided with a concave part, the first elastic rod is provided with a connecting rod extending into the concave part of the second elastic rod, a fastener is arranged on the connecting rod, a spring is arranged between the second elastic rod and the first elastic rod, the fastener is fastened on the connecting rod to enable the spring to be in a compression state, when the extrusion force of the first elastic rod on the second elastic rod is smaller than the compression force of elastic preload, the first elastic rod and the second elastic rod are fixed, and when the extrusion force of the first elastic rod on the second elastic rod is larger than the compression force of the elastic preload, the first elastic rod is far away from the second elastic rod to enable the elastic rod assembly to have elasticity;
the piston on be equipped with the pressure sensor of response liquid storage chamber pressure, pressure sensor is connected with the controller, the controller is connected with the motor to can control the motor, when the liquid storage chamber pressure chamber that pressure sensor sensed is less, the controller control motor, the motor drive screw rod rotates, the screw rod rotates and moves near the fixed plate through controlling the stationary blade with the drive medical kit, so that the piston extrudes the liquid medicine, in order to increase the pressure of liquid medicine, make the pressure of liquid medicine keep at the stable level, further make spray more even.
As an improvement, the track is provided with an upper track and a lower track, and the roller is positioned between the upper track and the lower track.
As the improvement, the elastic rod assembly on the cover be equipped with stopper (5), stopper and medical kit fixed connection, when the medical kit was close to the fixed plate and is reached the limit, the stopper can restrict the medical kit and continue to move to the fixed plate.
As the improvement, be connected with two stationary blades on the medical kit, the stationary blade is followed the medical kit lateral surface protrusion, and two stationary blades correspond and are connected with two screws, and two screws correspond and are connected with two motors.
As the improvement, mount bottom be equipped with and stop the pole, stop the pole and contact with ground when unmanned aerial vehicle stops.
As an improvement, the machine body is uniformly connected with four propellers.
As an improvement, the medicine chest is provided with a liquid adding port, and the liquid adding port can add liquid medicine to the medicine chest and can be closed.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view from the other side;
FIG. 3 is a cross-sectional view of a medicine box;
FIG. 4 is a sectional view of the medicine chest in another state;
FIG. 5 is a cross-sectional view of the resilient rod assembly
The labels in the figure are: 1-machine body, 2-propeller, 3-medicine chest, 31-roller, 32-nozzle pipe, 33-fixing piece, 4-fixing frame, 41-track, 42-fixing plate, 43-elastic rod assembly, 431-first elastic rod, 432-second elastic rod, 433-concave part, 434-connecting rod, 435-fastening piece, 436-spring, 437-third elastic rod, 44-piston, 45-motor, 46-screw rod and 5-limiting block.
Detailed Description
Example 1:
the present invention will be described in detail below with reference to the accompanying drawings.
The embodiment discloses an unmanned aerial vehicle is sprayed to pesticide, including organism 1, the screw 2 of being connected with organism 1, the organism on be equipped with control unmanned aerial vehicle operation such as controlling means, 2 rotations of screw are in order to provide flight power for unmanned aerial vehicle. Be connected with the medical kit on current unmanned aerial vehicle's the organism, be equipped with the liquid medicine in the medical kit, the medical kit bottom is equipped with the spout, and the liquid medicine is because action of gravity or pump is spout in the spout, under the effect of gravity, the liquid medicine rocks easily to along with the consumption of liquid medicine, what spray more and more rare, the inhomogeneous that sprays around, if use the pump, make unmanned aerial vehicle's weight bigger on the one hand, consume more electricity, simultaneously, the pump is stopped up easily when spraying.
The machine body of the invention is connected with a medicine box 3 which is a cylinder, as shown in fig. 1 and 2, the cylinder is horizontally fixed on the machine body along the central axis of the cylinder, as shown in fig. 3 and 4, the medicine box comprises a liquid storage cavity 30 for storing liquid medicine, the liquid storage cavity is communicated with a nozzle pipe 32, as shown in fig. 3, the nozzle pipe is provided with a horizontal section connected with the liquid storage cavity and a vertical section for spraying liquid downwards, the horizontal section is communicated with the liquid storage cavity, the vertical section sprays liquid, and the vertical section is provided with some parts capable of spraying liquid.
As shown in fig. 3, rollers 31 are provided on both sides of the medicine box, fixing pieces 33 are provided on the side surfaces of the medicine box, a channel is provided in the middle of the fixing pieces, and an internal thread is provided on the side wall of the channel.
The machine body of the invention is also connected with a fixed frame 4, the fixed frame comprises a fixed plate 42, the fixed plate is fixedly connected with an elastic rod assembly 43, the elastic rod assembly partially extends into the medicine box, the tail end of the elastic rod assembly is provided with a piston 44, the piston and the side wall of the medicine box form a liquid storage cavity 30, the fixed plate is provided with a motor 45, the motor is connected with a screw rod 46, the screw rod is driven by the motor to rotate, the screw rod 46 is in threaded connection with a channel of the fixed plate, the fixed frame is provided with a track 41;
the elastic rod assembly comprises a first elastic rod 431 connected with the fixing plate, a third elastic rod 437 connected with the piston, and a second elastic rod positioned between the first elastic rod and the third elastic rod, wherein the second elastic rod is provided with a concave part 433, the first elastic rod is provided with a connecting rod 434 extending into the concave part of the second elastic rod, the connecting rod is provided with a fastener 435, a spring 436 is arranged between the second elastic rod and the first elastic rod, the fastener is fastened on the connecting rod to enable the spring to be in a compression state, when the extrusion force of the first elastic rod on the second elastic rod is smaller than the compression force of elastic preload, the first elastic rod and the second elastic rod are fixed, and when the extrusion force of the first elastic rod on the second elastic rod is larger than the compression force of the elastic preload, the first elastic rod is far away from the second elastic rod to enable the elastic rod assembly to have elasticity;
the piston on be equipped with the pressure sensor of response liquid storage chamber pressure, pressure sensor is connected with the controller, the controller is connected with the motor to can control the motor, when the liquid storage chamber pressure chamber that pressure sensor sensed is less, the controller control motor, motor drive screw rod 46 rotates, the screw rod rotates and moves near the fixed plate through controlling the stationary blade with the drive medical kit, so that the piston extrudes the liquid medicine, in order to increase the pressure of liquid medicine, make the pressure of liquid medicine keep at the stable level, further make spray more even.
The track is provided with an upper track and a lower track, and the roller is positioned between the upper track and the lower track. Elastic rod subassembly on the cover be equipped with stopper 5, stopper and medical kit fixed connection, when the medical kit was close to the fixed plate and reaches the limit, the stopper can restrict the medical kit and continue to remove to the fixed plate.
Two stationary blades correspond be connected with two screws, two screws correspond be connected with two motors. The mount bottom be equipped with and stop the pole, stop the pole and contact with ground when unmanned aerial vehicle stops. The machine body is evenly connected with four propellers 2. The medicine chest is provided with a filling opening 34 which can be closed and can be used for filling medicine liquid into the medicine chest.
Example 2: the embodiment discloses a pest detection method, when an unmanned aerial vehicle sprays pesticides, the pest distribution situation is determined according to the pest detection method, the unmanned aerial vehicle comprises a pest detection system, and the pest detection system executes the following method when realizing the functions:
acquiring a video of a region to be detected, wherein the video is acquired through a camera on an inorganic person;
obtaining a residual error area based on a previous frame image and a next frame image of a current frame image in the pest video;
fusing the residual error area with the current frame image to obtain a fused current frame image;
carrying out high-pass filtering on the fused current frame image to obtain a high-frequency current frame image;
carrying out low-pass filtering on the fused current frame image to obtain a low-frequency current frame image;
fusing the high-frequency current frame image and the low-frequency frame image to obtain a composite current frame image;
performing target detection on the current frame image based on a first convolution neural network to obtain a current frame target area;
performing target detection on the composite current frame image based on a second convolutional neural network to obtain a composite target area;
obtaining the distance between the current frame target area and the composite target area;
and if the distance is smaller than a set threshold value, acquiring a target to be detected based on the current frame target area and the composite target area.
The unmanned aerial vehicle determines the distribution condition of pests according to the pest detection method when spraying pesticides, and sprays pesticides to the region where the pests are located.
The method comprises the following steps of obtaining a residual error region based on a previous frame image and a next frame image of a current frame image in a pest video: and obtaining a front pixel point of the previous frame of image and a rear pixel point corresponding to the position of the front pixel point in the next frame of image. And obtaining first difference value information between the front pixel point and the rear pixel point through absolute difference value sum operation based on the front block and the rear block corresponding to the front pixel point. The front block is a block in the previous frame of image and the rear block is an area in the next frame of image. The front area block comprises a plurality of pixel points. When the previous block corresponding to the pixel point is a rectangular block with the previous pixel point as the center and the size is set, for example, the current block is a rectangular block of a block of 2 × 2. If the position of the previous pixel point is at the edge of the current frame image, the previous block comprises a plurality of pixel points which are adjacent to the current pixel point and are obtained by taking the current pixel point as the center, and a determined block formed by the pixel points is the current block. For example, if the front pixel is (0, 0), the front block is a block composed of (0, 0), (0, 1), (1, 0), and (1, 1). Aiming at each pixel point in the previous block, obtaining the difference value between the value of each pixel point and the value of the pixel point corresponding to the position of each pixel point in the later block; and carrying out summation operation on the absolute values of the differences to obtain first difference information, wherein a plurality of front pixel points correspond to a plurality of first difference information, and the plurality of first difference information form a residual block according to the corresponding relation with the front pixel points. Each pixel point in each previous block corresponds to a difference, and specifically, the absolute value of each difference is summed. In order to obtain a rear block corresponding to the position of the front block in the previous frame of image, a rear block corresponding to the position of the front block is obtained in the next frame of image, and each pixel point in the current block corresponds to each pixel point in the rear block in a one-to-one position. The position correspondence refers to position one-to-one correspondence, for example, the position of the front pixel point is the same as the position of the rear pixel point, which is specifically embodied that the value of the position of the front pixel point is the same as the value of the position of the rear pixel point, for example, if the value of the position of the front pixel point is (1, 2) and the value of the position of the rear pixel point is (1, 2), the front pixel point corresponds to the position of the rear pixel point. Thus, the sizes of the front and rear blocks are consistent. Specifically, the first difference information is obtained by the following formula (1).
Figure BDA0002285321620000051
Wherein a (i, j) represents the value of the pixel point (i, j) in the front block corresponding to the front pixel point (m, n), b (i, j) represents the value of the pixel point corresponding to the position of the pixel point (i, j) in the rear block, k represents the number of the pixel points of the front block in the horizontal axis direction, and s1(m, n) represents the first difference information. The method comprises the steps of obtaining the absolute value of an obtained difference value by adopting the value of each pixel point in a front block corresponding to a front pixel point, subtracting the value of each pixel point corresponding to each pixel point of the front block in a rear block corresponding to the front pixel point, summing the absolute values corresponding to the pixel points, obtaining first difference value information, and enabling the obtained residual block to accurately represent the difference of a front frame image relative to a rear frame image.
The method for fusing the residual error region with the current frame image to obtain a fused current frame image specifically comprises the following steps:
firstly, the sum of the pixel value of the pixel point (i, j) in the residual region and the pixel value of the pixel point (i, j + k) in the current frame image is obtained, wherein i, j is a positive integer, and k is an integer greater than or equal to 0. Then, if the sum is greater than 255, the pixel value of the pixel point (i, j) of the fused current frame image is a first difference value, and the first difference value is a difference value between 255 and a remainder of a quotient of the sum and 255. For example, the sum of the pixel value of the pixel point (i, j) in the residual region and the pixel value of the pixel point (i, j + k) in the current frame image is Y, Y >255, and the remainder of Y/255 is X, then the first difference value is equal to 255-X. If the sum is not more than 255, the pixel value of the pixel point (i, j) of the fused current frame image is the sum. Namely, the pixel value of the pixel point (i, j) of the fused current frame image is Y. By adopting the scheme, the characteristics that the pixel values of the current frame image are fused with the pixel values of the residual error region and the pixel points of the current frame image are fused, the characteristics of the fused current frame image are enhanced, meanwhile, the fidelity of the fused current frame image is ensured, and further, a foundation is laid for improving the precision of target detection.
The method comprises the following steps of fusing a high-frequency current frame image and a low-frequency frame image to obtain a composite current frame image, and specifically comprises the following steps: obtaining the pixel value of a pixel point (i, j) in the high-frequency current frame image and the average value of the pixel point (i, j) in the low-frequency current frame image; and determining the average value as the pixel value of the pixel point (i, j) of the composite current frame image. The accuracy of the characteristics of the composite current frame image is improved.
As an optional implementation manner, the step of fusing the high-frequency current frame image and the low-frequency frame image to obtain the composite current frame image specifically includes: if the pixel value of the pixel point (i, j) in the high-frequency current frame image is equal to the pixel value of the pixel point (i, j) in the low-frequency current frame image, and the pixel value of the pixel point is a first value, the pixel value of the pixel point (i, j) of the composite current frame image is assigned to be a second value; if the pixel value of the pixel point (i, j) in the high-frequency current frame image is the same as that of the pixel point (i, j) in the low-frequency current frame image, and the pixel value of the pixel point is not a first value, the pixel point (i, j) of the composite current frame image is expanded, so that the pixel point (i, j) comprises a fusion channel; and assigning the fusion channel so as to enable the value of the fusion channel to be a second value, wherein the second value is different from the pixel value of the pixel point and the first value. By adopting the scheme, the obtained composite current frame image comprises the pixel information in the high-frequency current frame image and the pixel information in the low-frequency current frame image, the characteristics of the composite current frame image are enhanced, and the accuracy of the detected target is improved.
In the embodiment of the present invention, the step of performing target detection on the current frame image based on the first convolution neural network to obtain the current frame target area specifically includes: after performing convolution processing on the current frame image for at least one time, obtaining first output data; performing pooling processing on the first output data twice to obtain second output data; after carrying out convolution processing on the second output data for at least two times, obtaining third output data; performing pooling processing on the third output data for at least three times to obtain fourth output data; and classifying the fourth output data to obtain the current target area.
Optionally, the first convolutional neural network comprises at least four convolutional layers, at least five pooling layers, and one classification layer. The first convolutional neural network may have a structure of a convolutional layer, a pooling layer, a convolutional layer, a pooling layer, and a classification layer. The first convolutional neural network may also have a structure of a convolutional layer, a pooling layer, a convolutional layer, a pooling layer, or a classification layer. Wherein the classification layer may be a support vector machine model. And the pooling layer connected with the classification layer outputs an image characteristic vector, and the classification layer classifies and identifies the image characteristic vector to obtain a current frame target area.
By adopting the scheme, the long convolution kernel pooling operation is carried out on the current frame image, and finally the classification layer carries out classification and identification on the image feature vectors to obtain the current frame target area, so that the accuracy of identifying and detecting the current frame target area is improved.
Optionally, the target detection is performed on the composite current frame image based on the second convolutional neural network to obtain a composite target region, specifically: performing pooling processing on the composite current frame image for at least three times to obtain fifth output data; performing convolution processing on the fifth output data for at least two times to obtain sixth output data; performing pooling processing and convolution processing on the sixth output data to obtain seventh output data; fusing the sixth output data and the seventh output data to obtain eighth output data; performing pooling processing and convolution processing at least twice on the eighth output data to obtain ninth output data; and classifying the ninth output data to obtain a composite target area.
The second convolutional neural network at least comprises six pooling layers, at least five convolutional layers, a fusion layer and a classification layer. And (4) optional. The structure of the second convolutional neural network may be a pooling layer, a convolutional layer, a pooling layer, a convolutional layer, a fusion layer, a pooling layer, a convolutional layer, a classification layer. The structure of the second convolutional neural network may be a pooling layer, a convolutional layer, a pooling layer, a convolutional layer, a fusion layer, a pooling layer, a convolutional layer, a sorting layer. Wherein the classification layer may be a support vector machine model as described above. The fusion layer is used for respectively carrying out merging processing on the output of the neurons of the convolution layer connected with the fusion layer, the merging mode can be weighted accumulation or OR operation and the like to obtain a merging processing result, and then the merging processing result is output to the pooling layer for pooling processing. And finally, outputting the region vector by the convolution layer, and classifying the region vector through a classification layer to obtain a composite target region.
By adopting the scheme, the composite current frame image is subjected to multi-length convolution kernel pooling operation, the final convolution layer outputs the region vector, the region vector is classified through the classification layer to obtain the target region, and the precision of identifying and detecting the composite target region is improved.
Optionally, a specific implementation manner of obtaining the distance between the current frame target region and the composite target region is as follows:
acquiring circumscribed circles of a current frame target area and a composite target area; obtaining the Euclidean distance between the circle center of the circumscribed circle of the current frame target area and the circle center of the circumscribed circle of the composite target area; and determining the Euclidean distance as the distance between the current frame target area and the composite target area. The method for obtaining the distance between the current frame target area and the composite target area specifically comprises the following steps: respectively obtaining the gravity centers of a current frame target area and a composite target area; obtaining the Euclidean distance between the gravity center of the current frame target area and the gravity center of the composite target area; and determining the Euclidean distance as the distance between the current frame target area and the composite target area.
The specific implementation of obtaining the target to be detected based on the current frame target region and the composite target region may be: acquiring a cross region of a current frame target region and a composite target region; and determining the cross region as a target to be detected. Thus, the accuracy of the target to be detected is improved.
In order to further improve the accuracy of the target to be detected, before determining the intersection region as the target to be detected, the pest image target detection method further includes: and rendering the intersection area. The rendering method can be color rendering according to pathological features and color features of the examined part, for example, if the part is a lung of a pest image, the rendered object to be detected is a colorful lung image. If the head is the pest image, the rendered target to be detected is a head skeleton image and the like.
In order to improve the rendering accuracy and further improve the target detection accuracy, before the rendering is performed on the intersection region, the pest image target detection method further includes: and performing expansion processing on the intersection area so as to enable the size of the intersection area to be close to that of the target to be measured. And expanding the intersection area to enable the size of the intersection area to be close to that of the target to be detected, so that the definition of the rendered intersection area is improved, and the accuracy of target detection is improved.
In the embodiment of the present invention, the target value may be a preset value, for example, 0.2, according to experience. In order to further improve the accuracy of target detection, the target value is obtained by: obtaining a first target vector based on a current frame target area; obtaining a second target vector based on the composite target region; classifying the first target vector based on the trained support vector machine model to obtain a first target value; classifying the second target vector based on the trained support vector machine model to obtain a second target value; and obtaining the difference between the first target value and the second target value to obtain a target difference value, and taking the target difference value as a target value. The second target value may be 0.3.
As an alternative embodiment, the pest image target detecting method includes: and acquiring a pest video of the to-be-detected area scanned by the pest scanner. And obtaining a residual error area based on a previous frame image and a next frame image of the current frame image in the pest video. And fusing the residual error area with the current frame image to obtain a fused current frame image. And carrying out high-pass filtering on the fused current frame image to obtain a high-frequency current frame image. And carrying out low-pass filtering on the fused current frame image to obtain a low-frequency current frame image. And fusing the high-frequency current frame image and the low-frequency frame image to obtain a composite current frame image. And performing target detection on the current frame image based on the first convolution neural network to obtain a current frame target area. A first target vector is obtained based on a current frame target region. And performing target detection on the composite current frame image based on the second convolutional neural network to obtain a composite target area. A second target vector is obtained based on the composite target region. Classifying the first target vector based on the trained support vector machine model to obtain a first target value; classifying the second target vector based on the trained support vector machine model to obtain a second target value; and obtaining the difference between the first target value and the second target value to obtain a target difference value, and taking the target difference value as the target value. And obtaining the distance between the current frame target area and the composite target area. And if the distance is smaller than the target value, obtaining a pest image to be detected based on the current frame target area and the composite target area.
By adopting the scheme, the residual error region is obtained by adopting the scheme based on the previous frame image and the next frame image of the current frame image in the video, the residual error region and the current frame image are fused to obtain the fused current frame image, and the characteristic information of the current frame image is enhanced. The high-pass filtering is carried out on the fused current frame image to obtain a high-frequency current frame image, the high-frequency current frame image reserves the high-frequency characteristic information of the current frame image, the low-pass filtering is carried out on the fused current frame image to obtain a low-frequency current frame image, the low-frequency current frame image reserves the low-frequency characteristic information of the current frame image, the high-frequency current frame image and the low-frequency frame image are fused to obtain a composite current frame image, the characteristic information in the composite current frame image is enhanced, and meanwhile the fidelity of the characteristic information is improved. Performing target detection on the current frame image based on the first convolution neural network to obtain a current frame target area; and performing target detection on the composite current frame image based on the second convolutional neural network to obtain a composite target region, further improving the probability of the target in the target region, and improving the accuracy of target detection. Obtaining a first target vector based on a current frame target area, obtaining a second target vector based on a composite target area, and classifying the first target vector based on a trained support vector machine model to obtain a first target value; classifying the second target vector based on the trained support vector machine model to obtain a second target value; and obtaining the difference between the first target value and the second target value to obtain a target difference value, and taking the target difference value as the target value. The method comprises the steps of obtaining the distance between a current frame target area and a composite target area, obtaining a target to be detected based on the current frame target area and the composite target area if the distance is smaller than a target value, combining a target detection result of a traditional neural network and a target detection result of a second neural network with high accuracy, improving the accuracy of target detection and improving the precision of the target to be detected. Meanwhile, the target value is obtained based on the target area of the previous frame and the composite target area, and the target value is used as a judgment reference, so that the target detection accuracy can be improved.
The invention has the beneficial effects that:
1. the medicine chest is horizontally arranged, the horizontal height of the liquid medicine cannot be changed in the process of consumption of the liquid medicine, so that the pressure intensity of the height change on the nozzle cannot be influenced, and further the spraying uniformity is influenced;
2. according to the invention, the liquid medicine is extruded by the piston, so that the pressure in the liquid medicine can be maintained at a stable level, and the liquid medicine is sprayed more uniformly;
3. the elastic rod assembly has the functions of rigidity and elasticity, when the extrusion force applied to the elastic rod assembly is small, the first elastic rod and the second elastic rod cannot move, the whole elastic rod is kept in a rigid state, and a sufficient extrusion piston is provided.
4. The pest detection system and the pest detection method can realize accurate detection of pests, obtain the distribution condition of the pests, and carry out pesticide spraying density and area according to the distribution condition of the pests, so that the pesticides can be saved, and the damage to the environment can be prevented.

Claims (7)

1. The utility model provides a pesticide sprays unmanned aerial vehicle, includes organism (1), screw (2) be connected with organism (1), its characterized in that, unmanned aerial vehicle still including:
the medical kit (3) is cylindrical and is horizontally fixed on the machine body (1) along the central axis of the cylinder, the medical kit (3) comprises a liquid storage cavity (30) for storing liquid medicine, the liquid storage cavity is communicated with a nozzle pipe (32), the nozzle pipe is provided with a horizontal section connected with the liquid storage cavity and a vertical section for spraying liquid downwards, rollers (31) are arranged on two sides of the medical kit, a fixing piece (33) is arranged on the side surface of the medical kit, a channel is arranged in the middle of the fixing piece, and internal threads are arranged on the side wall of the channel;
the fixing frame (4) comprises a fixing plate (42), the fixing plate is fixedly connected with an elastic rod assembly (43), the elastic rod assembly extends into the medicine box, a piston (44) is arranged at the tail end of the elastic rod assembly, a liquid storage cavity (30) is formed by the piston and the side wall of the medicine box, a motor (45) is arranged on the fixing plate, the motor is connected with a screw rod (46), the screw rod is driven by the motor to rotate, the screw rod (46) is in threaded connection with a channel of the fixing plate, a track (41) is arranged on the fixing frame, and;
the elastic rod assembly comprises a first elastic rod (431) connected with the fixing plate, a third elastic rod (437) connected with the piston, and a second elastic rod positioned between the first elastic rod and the third elastic rod, wherein the second elastic rod is provided with a concave part (433), the first elastic rod is provided with a connecting rod (434) extending into the concave part of the second elastic rod, the connecting rod is provided with a fastener (435), a spring (436) is arranged between the second elastic rod and the first elastic rod, the fastener is fastened on the connecting rod to enable the spring to be in a compressed state, when the extrusion force of the first elastic rod on the second elastic rod is smaller than the compressive force of elastic preload, the first elastic rod and the second elastic rod are fixed, and when the extrusion force of the first elastic rod on the second elastic rod is larger than the compressive force of the elastic preload, the first elastic rod is far away from the second elastic rod to enable the elastic rod assembly to have elasticity;
the piston on be equipped with the pressure sensor of response liquid storage chamber pressure, pressure sensor is connected with the controller, the controller is connected with the motor to can control the motor, when the liquid storage chamber pressure chamber that pressure sensor sensed is less, controller control motor, motor drive screw rod (46) rotate, the screw rod rotates and moves near the fixed plate through controlling the stationary blade with the drive medical kit, so that the piston extrudees the liquid medicine, in order to increase the pressure of liquid medicine, make the pressure of liquid medicine keep at the stable level, further make spray more even.
2. The unmanned aerial vehicle for pesticide spraying of claim 1, wherein the rail is provided with an upper rail and a lower rail, and the roller is positioned between the upper rail and the lower rail.
3. The pesticide sprays unmanned aerial vehicle of claim 2, characterized in that, the elastic rod subassembly on the cover be equipped with stopper (5), stopper and medical kit fixed connection, when the medical kit was close to the fixed plate and is reached the limit, the stopper can restrict the medical kit and continue to move to the fixed plate.
4. The pesticide sprays unmanned aerial vehicle of claim 3, characterized in that, is connected with two stationary blades on the medical kit, and the stationary blade is followed medical kit lateral surface protrusion, and two stationary blades correspond and are connected with two screw rods, and two screw rods correspond and are connected with two motors.
5. The pesticide spraying unmanned aerial vehicle of claim 4, wherein the bottom of the fixing frame is provided with a stop rod, and the stop rod is in contact with the ground when the unmanned aerial vehicle stops.
6. The pesticide spraying unmanned aerial vehicle of claim 5, characterized in that four propellers (2) are connected to the body evenly.
7. Unmanned aerial vehicle for pesticide spraying according to claim 6, characterized in that the pesticide box is provided with a filling opening (34) which can be used for filling pesticide into the pesticide box and can be closed.
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