Agricultural work equipment for paddy fields

The agricultural work device addresses inefficiencies in paddy field weeding robots by using rocking and rotary stirring means for efficient water agitation and automation, improving maneuverability and reducing worker burden through versatile task performance.

JP7812594B2Active Publication Date: 2026-02-10TMSUK CO LTD
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Patent Information

Application Number
JP2025519455
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2023-07-21
Filing Date
2024-05-08
Publication Date
2026-02-10
Estimated Expiration
2044-05-08

AI Technical Summary

Technical Problem

Existing paddy field weeding robots face limitations in stirring range, driving force, and directional control, leading to poor work efficiency and maneuverability, especially when changing direction or turning.

Method used

Agricultural work device with a robot body equipped with rocking and rotary stirring means, enabling efficient water agitation and movement, combined with autonomous and remote operation capabilities, and optional sowing or chemical application functions.

Benefits of technology

Enhances work efficiency by allowing precise direction changes and simultaneous water stirring across large areas, reducing labor through automation and versatility in agricultural tasks.

✦ Generated by Eureka AI based on patent content.

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Abstract

A paddy field farmwork device 10 comprises one or a plurality of working robots 11 each including: a robot body 12 including a moving means 22 for moving in a paddy field; a rocking stirring means 13 attached to the bottom portion of the robot body 12 and stirring the water in the paddy field; and right and left rotary stirring means 14 attached to both side portions in the width direction of the robot body 12 to stir the water in the paddy field. The working robot 11 performs a weeding operation by stirring the water of the paddy field using the rocking stirring means 13 and the rotary stirring means 14 while moving on the water using the moving means 22.
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Description

[Technical Field]

[0001] The present invention relates to an agricultural work device for paddy fields that carries out agricultural work in paddy fields on behalf of a worker. [Background technology]

[0002] Traditionally, various types of equipment or vehicles have been developed to reduce the burden on workers in rice paddy farming, and workers operate these devices or vehicles to perform the work. While chemical weeding methods using herbicides have been the norm for weeding, in recent years, there has been growing interest in reduced or no pesticide use due to health and environmental concerns. Cultivation methods that reduce the frequency or amount of herbicide use and those that do not use herbicides have become popular, and various types of weeding machines are being used. Walk-behind (hand-pushed) weeders reduce the burden on workers compared to manual labor, but they require workers to move (walk) with the weeder, which requires physical strength, especially when working under the hot sun, and is more labor-intensive than conventional farming methods that use herbicides. Riding-type weeders significantly reduce the labor required by workers, but are more expensive than walk-behind types, making their introduction difficult. Therefore, various rice paddy weeding robots that autonomously navigate through rice paddies to remove weeds have been proposed (e.g., Patent Documents 1 to 3). These paddy field weeding robots mainly remove weeds by scraping the soil with rotating fins to remove a portion of the soil along with the weeds, or by crushing the weeds with crawlers and weeding rollers. This requires a large amount of power, resulting in a large overall robot size. Furthermore, these paddy field weeding robots are designed to weed both sides of rice rows while straddling them. Therefore, they require ingenuity to avoid crushing the rice when changing direction or turning or moving to the next row, resulting in a complex mechanism and cumbersome control. Meanwhile, Patent Document 4 discloses a paddy field weeding device that includes a float body and a screw that extends into the water from the underside of the float body. While floating on the water with the float body, the device propels with the screw to agitate the water or mud in the paddy field, stirring up the mud and creating a mud curtain, which inhibits the photosynthesis of weeds below the water surface, thereby preventing or suppressing weed growth. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2011-120573 [Patent Document 2] Japanese Patent Application Laid-Open No. 2015-43718 [Patent Document 3] Japanese Patent Application Laid-Open No. 2011-229463 [Patent Document 4] Patent No. 7193817 Summary of the Invention [Problem to be solved by the invention]

[0004] However, in Patent Document 4, the float body stirs up water or mud while moving on the surface of the water using only two screws, one on each side, that extend into the water from the underside of the float body. This means that the range that can be stirred is limited, the driving force is small, and it is difficult to precisely control the direction of travel. This not only takes time to change direction, but also makes it difficult to maneuver quickly, resulting in poor work efficiency. The present invention has been made in consideration of the above circumstances, and aims to provide a highly labor-saving agricultural work device for paddy fields that has a simple configuration and can effectively suppress or prevent the growth and proliferation of weeds by efficiently stirring and moving the water in the paddy field, thereby reducing the workload of workers working in paddy fields. [Means for solving the problem]

[0005] The agricultural work device for paddy fields according to the present invention, which is in line with the above-mentioned objectives, comprises one or more work robots that have a robot body with a moving means for moving through the paddy field, and a rocking stirring means attached to the bottom of the robot body for stirring the water in the paddy field, and that perform weeding work by moving over the water using the moving means and stirring the water in the paddy field with the rocking stirring means.

[0006] In the paddy field agricultural work device according to the present invention, the working robot preferably has left and right rotary stirring means attached to both sides in the width direction of the robot body for stirring the water in the paddy field.

[0007] In the paddy field agricultural work equipment of the present invention, the oscillating stirring means has a pair of left and right bottom scrapers arranged along the width direction of the robot body and oscillating in the front-to-back direction of the robot body, and it is preferable that each of the rotary stirring means has a rotating shaft arranged along the width direction of the robot body, a plurality of scraper support parts arranged radially on the outer periphery of the rotating shaft, and side scrapers attached to the tip of each scraper support part.

[0008] In the paddy field agricultural work apparatus according to the present invention, the working robot may have a movement path storage means and a collision prevention sensor mounted on the robot body, and may be capable of autonomous movement.

[0009] The paddy field agricultural work apparatus according to the present invention may also have an operating means for remotely operating one or more of the work robots.

[0010] In the paddy field agricultural work apparatus according to the present invention, the working robot may be capable of switching between autonomous movement and movement by remote control.

[0011] In the agricultural work apparatus for paddy fields according to the present invention, it is preferable that a solar panel is attached to the robot body.

[0012] In the agricultural work equipment for paddy fields according to the present invention, the work robot can be provided with a sowing means, instead of the oscillating stirring means, which is provided on the robot body and has a seed rice storage section in which seed rice is stored, and a seed rice discharge section that discharges the seed rice stored in the seed rice storage section. Here, the shape, size, number, arrangement, etc. of the seed rice receiving section and the seed rice discharging section are selected appropriately.

[0013] In the paddy field agricultural work device of the present invention, the work robot may be equipped with, instead of the oscillating stirring means, a chemical application means that is provided on the robot body and has a chemical storage section in which chemicals are stored, and a chemical ejection section that ejects the chemicals stored in the chemical storage section. where: Drugs Storage section and DrugsThe shape, size, number, and arrangement of the discharge portion are selected as appropriate. Chemicals include fertilizers, agricultural chemicals, and pesticides or repellents. The chemicals may be in the form of powder (solid) or liquid, and are discharged (dropped), dripped, scattered, or sprayed depending on the form. [Effects of the Invention]

[0014] In the paddy field agricultural work device of the present invention, the working robot has a swinging mixing means attached to the bottom of the robot body, which allows it to easily change direction and turn with a small turning radius, and it can mix the water throughout the paddy field evenly while moving between the rice plants. In particular, by using multiple working robots at the same time, water can be mixed simultaneously (in parallel) in multiple places in the paddy field, and the water throughout the paddy field can be mixed efficiently in a short amount of time, improving work efficiency and weed prevention effects.

[0015] In the agricultural work equipment for paddy fields according to the present invention, when the work robot has left and right rotary stirring means attached to both sides of the width of the robot body to stir the water in the paddy field, the driving force is large, and the operation of the oscillating stirring means and the rotary stirring means are combined, so that operations such as changing direction and turning can be performed smoothly in a short time, and the work robot can efficiently stir the surrounding water while moving across the entire paddy field in a short time.

[0016] In the paddy field agricultural work device of the present invention, when the oscillating stirring means has a pair of left and right bottom scrapers arranged along the width direction of the robot body and swinging in the front-to-back direction of the robot body, and each rotary stirring means has a rotating shaft arranged along the width direction of the robot body, a plurality of scraper support parts arranged radially on the outer periphery of the rotating shaft, and side scrapers attached to the tip of each scraper support part, it is possible to effectively stir the water in the paddy field in a short time, and it has a fast moving speed, and by selectively driving the left and right bottom scrapers, it is possible to smoothly adjust the direction of travel, turn right or left (change direction), and turn, and it is also possible to selectively drive the left and right rotary stirring means or switch the direction of rotation to quickly change direction and turn, thereby improving work efficiency.

[0017] In the paddy field agricultural work equipment of the present invention, if the work robot has a movement path memory means and a collision prevention sensor mounted on the robot body and is capable of autonomous movement, there is no need for the worker to operate the work robot from the outside (give instructions to the work robot), which is highly labor-saving.

[0018] In the paddy field agricultural work device of the present invention, if it has an operating means for remotely operating one or more work robots, the worker can move the work robot while selecting (changing) the movement route according to the situation, and perform work reliably.

[0019] In the paddy field agricultural work device of the present invention, if the work robot can switch between autonomous movement and remotely controlled movement, even if the work robot becomes unable to move during autonomous movement due to getting stuck or other reasons, or if a malfunction causes the work robot to move on an incorrect route or run out of control, the worker can quickly resume the movement of the work robot by remote control, rescue it, or correct its route.

[0020] In the paddy field agricultural work device of the present invention, if a solar panel is attached to the robot body, the necessary electricity can be generated by solar power, and if the battery is charged in advance on a sunny day, work can be carried out continuously for long periods of time regardless of the weather, allowing work to be carried out in a planned manner without being affected by the weather.

[0021] In the paddy field agricultural work device of the present invention, if the work robot is equipped with a sowing means, instead of a rocking stirring means, that has a seed rice storage section that is provided on the robot body and that stores seed rice, and a seed rice discharge section that discharges the seed rice stored in the seed rice storage section, the same work robot can be used to perform sowing work in addition to weed control work, further reducing the burden on the worker.

[0022] In the paddy field agricultural work equipment of the present invention, if the work robot is equipped with a chemical application means, instead of a rocking stirring means, which has a chemical storage section provided on the robot body for storing chemicals and a chemical discharge section for discharging the chemicals stored in the chemical storage section, the same work robot can be used to perform chemical application work in addition to weed prevention work, further reducing the burden on the worker. [Brief explanation of the drawings]

[0023] [Figure 1] 1 is a block diagram showing the configuration of a paddy field agricultural work apparatus according to one embodiment of the present invention. [Figure 2] FIG. 2 is a perspective view showing a work robot of the same agricultural work apparatus for paddy fields. [Figure 3] FIG. 2 is a front view showing a work robot of the agricultural work apparatus for paddy fields. [Figure 4] FIG. 2 is a side view showing a work robot of the agricultural work apparatus for paddy fields. DETAILED DESCRIPTION OF THE INVENTION

[0024] Next, with reference to the accompanying drawings, an embodiment of the present invention will be described to help understand the present invention. A paddy field agricultural work apparatus 10 according to one embodiment of the present invention shown in FIG. 1 uses a work robot 11 shown in FIGS. 2 to 4 to suppress or prevent the growth and proliferation of weeds in paddy fields. As shown in Figures 2 to 4, the work robot 11 has a robot body 12, a swinging stirring means 13 attached to the bottom of the robot body 12 to stir the water in the paddy field, and left and right rotary stirring means 14 attached to both sides of the width of the robot body 12 to stir the water in the paddy field, and can perform weeding work by stirring the water in the paddy field with the swinging stirring means 13 and the rotary stirring means 14.

[0025] The external shape of the robot body 12 is preferably formed to resemble the body shape of a duck or spot-billed duck, but the shape is not particularly limited. The rocking agitation means 13 has a pair of left and right bottom scrapers 15a, 15b arranged along the width direction of the robot body 12 and rocking in the front-to-back direction of the robot body 12. These bottom scrapers 15a, 15b correspond to the left and right feet (flippers) of a duck or spot-billed duck. Each rotary agitation means 14 has a rotation shaft 17 (see Figure 3) arranged along the width direction of the robot body 12, multiple scraper support members 18 (here, six) arranged radially around the outer periphery of the rotation shaft 17, and side scrapers 19 attached to the tip of each scraper support member 18.

[0026] 1, the robot body 12 has built-in oscillating agitator drive unit 20 and rotary agitator drive unit 21, which cause the oscillating agitator 13 (bottom scrapers 15a, 15b) to oscillate and the rotary agitator 14 (side scraper 19) to rotate. Motors are preferably used as the oscillating agitator drive unit 20 and the rotary agitator drive unit 21. 1 to 4, the robot body 12 has a moving means 22 for moving through the rice paddy. In this embodiment, as shown in Fig. 3, the moving means 22 is configured to have one propeller attached to each side of the robot body 12, and the robot body 12 floating on the water is moved by wind power, but the moving means is not particularly limited, and the configuration, number, and arrangement thereof are selected appropriately. For example, a moving means that moves by water power using a screw attached to the bottom side of the robot body 12 may be used.

[0027] By swinging the swinging stirring means 13 (bottom scrapers 15a, 15b) and rotating the rotary stirring means 14 (side scrapers 19) while the robot body 12 is moving or stopped, the water in the paddy field can be effectively stirred. In addition, the swinging stirring means drive unit 20 and the rotary stirring means drive unit 21 can selectively swing either the bottom scrapers 15a, 15b, rotate one of the left and right rotary stirring means 14 forward and rotate the other reversely, thereby assisting in adjusting the direction of travel of the robot body 12, turning right or left (changing direction), and rotating. In particular, when a rotary stirring means drive unit 21 is provided for each of the left and right rotary stirring means 14 and the rotation shafts 17 of the left and right rotary stirring means 14 are independent, it is possible to rotate only one of the left and right rotary stirring means 14 forward or backward while stopping the other, or to rotate the left and right rotary stirring means 14 at different rotational speeds (rotational velocities), making it possible to perform more complex and precise operations. The shape and size of the bottom scraper and the number, shape, size, and arrangement of the side scrapers can be selected as appropriate. In this embodiment, each scraper support 18 is composed of two support arms 18a, and both sides of the width of the side scraper 19 are sandwiched and fixed between the two support arms 18a, but the structure of the scraper support and the method of fixing the side scrapers to the scraper support can also be selected as appropriate. For example, the scraper support may be one that holds the side scraper with a single support arm.

[0028] As shown in FIG. 1, the working robot 11 is capable of autonomous movement and has a movement path storage means 23 and a collision prevention sensor 24 mounted on the robot body 12. Therefore, if a movement path is stored in the movement path storage means 23 in advance, the working robot 11 can perform mixing work while moving along the stored movement path. The movement path storage means 23 also stores the operation of the oscillating mixing means drive unit 20 and the rotary mixing means drive unit 21 (e.g., control data such as motor rotation speed, rotation time, stop time, and rotation direction) in chronological order, corresponding to the movement path. The oscillating mixing means 13 and the rotary mixing means 14 are driven accordingly. Even though the working robot 11 is capable of autonomous movement, the collision prevention sensor 24 mounted on the robot body 12 reliably prevents the working robots 11 from colliding with each other when multiple working robots 11 are used simultaneously in a single rice paddy.

[0029] In this embodiment, as shown in Figures 2 to 4, a collision prevention sensor 24 is attached to the front (chest) of the robot main body 12. However, the collision prevention sensor 24 may be any sensor capable of detecting the approach of another work robot 11 and preventing a collision, and the detection method, number, and placement of the sensor may be selected as appropriate. For example, if a collision prevention sensor that detects metal is used, the collision prevention sensor can detect the approach of the robot main body if at least a portion of the robot main body (housing) is made of metal or if metal is embedded in the robot main body. Therefore, a collision can be avoided by, for example, temporarily stopping the oscillating stirring means and rotary stirring means based on a signal from the collision prevention sensor. Furthermore, a dedicated chip that can be detected by the collision prevention sensor (and can communicate with the collision prevention sensor) embedded in the robot main body instead of metal can also enable collision avoidance operations similar to those described above.

[0030] Furthermore, as shown in FIG. 1, the paddy field agricultural work apparatus 10 can have an operating means 25 that remotely operates one or more working robots 11. The operating means 25 is preferably one that issues instructions to the working robots 11 via wireless communication. The robot body 12 is equipped with an operating signal receiving means 26, which receives instructions (operation signals) from the operating means 25 and issues the instructions (operation signals) to the oscillating-type mixing means drive unit 20, the rotary-type mixing means drive unit 21, and the moving means 22, causing the working robot 11 to perform a predetermined (instructed) operation. The operating means 25 may be a manual type in which a worker (operator) manually operates a lever, handle, joystick, or the like to issue instructions to the working robot 11, or an automatic type in which an operating program for moving the working robot 11 along a predetermined movement path is stored and instructions are issued to the working robot 11 according to the operating program. The manual operation type requires more effort from the worker than the automatic operation type, but the work robot 11 can be operated remotely, which significantly reduces the worker's workload compared to when the worker moves around with a walk-behind (hand-pushed) weeder. Also, with the manual operation type, the worker can operate the work robot 11 while checking the video captured by the camera mounted on the robot body 12 on a monitor at hand.

[0031] When multiple work robots 11 are used simultaneously in one rice paddy, if the operation means 25 is a manually operated type, there must be a one-to-one correspondence between the work robots 11 and the operation means 25 (an operation means must be prepared for each work robot 11), but if it is an automatically operated type, multiple work robots 11 can be operated with a single operation means 25. For example, to prevent the work robots 11 from interfering with each other (clashing), operation programs created with different movement paths for each work robot 11 can be stored in a single operation means, and instructions can be given to each work robot 11 from the operation means, allowing multiple work robots 11 to work together efficiently to perform tasks.

[0032] It is also preferable that the working robot 11 be able to switch between autonomous movement and remotely controlled movement, allowing the worker to select either autonomous movement or remotely controlled movement as appropriate depending on the size of the paddy field, the number of working robots 11 used simultaneously, the number of workers, etc. As shown in Figures 2 to 4, a solar panel 27 is attached to the top surface of the robot body 12. This allows the robot to generate the necessary power through solar power generation, thereby reducing the amount of commercial power used. As shown in Figure 1, the robot body 12 is also equipped with a built-in battery 28. By charging the battery 28 in advance with power generated by solar power generation on a fine day, the robot can continue working for a long period of time regardless of the weather, allowing the robot to proceed with work according to plan without being affected by the weather. The mounting angle of the solar panel 27 (the angle between the horizontal plane and the surface of the solar panel 27) can be selected as appropriate, and may be either variable or fixed. The shape, size, number, and arrangement of the solar panels can also be selected as appropriate.

[0033] The dimensions of the work robot 11 are, for example, approximately 400 mm in total length (length in the front-to-back direction) and width (length in the left-to-right direction). Because the work robot 11 is so small, workers can use multiple work robots 11 at the same time in one rice paddy, making it possible to efficiently stir the water in the entire paddy field in an extremely short time, improving work efficiency and significantly reducing work time. The dimensions of the work robot 11 are not limited to the above dimensions and can be selected as appropriate.

[0034] Although the embodiments of the present invention have been described above, the present invention is not limited to the configurations described in the above embodiments, and also includes other embodiments and modifications that are possible within the scope of the claims. The housing of the robot body is preferably made of synthetic resins such as polyethylene, ABS resin, polyamide, etc., but is not limited to these. The work robot is designed to float on water in order to move on water, but key areas are waterproofed with gaskets or the like to prevent the electrical system inside the robot body from getting wet. The bottom scraper and side scraper may be made of synthetic resin or rigid rubber. The battery built into the robot body may be rechargeable using a commercial power source.

[0035] If the work robot is driven (operated) solely by remote operation using the operating means, the movement path storage means of the robot body may be omitted. Also, if the operating means is an automatic operation type that stores an operating program for moving the work robot along a preset movement path and issues instructions to the work robot in accordance with that operating program, the operating means itself also functions as the movement path storage means. In the above embodiment, the working robot is described as having both a rocking stirring means and a rotary stirring means, but the rotary stirring means may be omitted. Furthermore, the collision prevention sensor is not an essential component and may be omitted.

[0036] In the above embodiment, we have described weed control work using a working robot. However, by equipping the working robot with a sowing means and / or chemical application means instead of the oscillating agitation means, the working robot can also be used for sowing and / or chemical application. For example, if the working robot has, as sowing means, a seed storage unit provided on the robot body for storing seeds and a seed discharge unit for discharging the seeds stored in the seed storage unit, the working robot can directly sow seeds while moving over the water in a paddy field. Furthermore, if the working robot has, as chemical application means, a chemical storage unit provided on the robot body for storing chemicals and a chemical discharge unit for discharging the chemicals stored in the chemical storage unit, the working robot can discharge the chemicals while moving over the water in a paddy field. The intervals (time intervals and distance intervals) at which the seeds and chemicals are discharged can be selected as appropriate and may be equal or unequal intervals. In particular, a work robot in which an oscillating stirring means, a sowing means, and a chemical application means can be interchangeably attached to the robot body can perform multiple agricultural tasks with a single robot, and is highly versatile and multifunctional, making it possible to improve the efficiency and reduce labor required for agricultural work. [Industrial Applicability]

[0037] By providing a highly labor-saving agricultural work device for paddy fields that can automate or semi-automate agricultural work in paddy fields and reduce the workload of workers, it is possible to alleviate labor shortages at farms and contribute to a stable supply of agricultural products and lower costs. [Explanation of symbols]

[0038] 10: Paddy field agricultural work equipment, 11: Working robot, 12: Robot body, 13: Swinging agitation means, 14: Rotating agitation means, 15a, 15b: Bottom scraper, 17: Rotating shaft, 18: Scraper support part, 18a: Support arm, 19: Side scraper, 20: Swinging agitation means drive part, 21: Rotating agitation means drive part, 22: Moving means, 23: Moving path storage means, 24: Collision prevention sensor, 25: Operating means, 26: Operating signal receiving means, 27: Solar panel, 28: Battery

Claims

1. Agricultural work equipment for paddy fields, characterized in that it is equipped with one or more work robots having a robot body with moving means for moving over paddy fields, and oscillating mixing means that agitates the water in the paddy field with a pair of left and right bottom scrapers that are attached to the bottom of the robot body, arranged along the width direction of the robot body, and oscillate in the front-to-back direction of the robot body, and which perform weeding work by moving over the water on the moving means and agitating the water in the paddy field with the oscillating mixing means.

2. 2. The paddy field agricultural work apparatus according to claim 1, wherein the work robot has left and right rotary stirring means attached to both sides of the robot body in the width direction for stirring the water in the paddy field.

3. In the paddy field agricultural work device described in claim 2, each of the rotary stirring means has a rotating shaft arranged along the width direction of the robot body, a plurality of scraper support parts arranged radially on the outer periphery of the rotating shaft, and side scrapers attached to the tip of each scraper support part.

4. 2. The paddy field agricultural work apparatus according to claim 1, wherein the working robot has a movement path storage means and a collision prevention sensor mounted on the robot body, and is capable of autonomous movement.

5. 2. The agricultural work apparatus for paddy fields according to claim 1, further comprising an operating means for remotely operating one or more of said work robots.

6. 2. The agricultural work apparatus for paddy fields according to claim 1, wherein the working robot is capable of switching between autonomous movement and movement by remote control.

7. 2. The agricultural work apparatus for paddy fields according to claim 1, wherein a solar panel is attached to the robot body.

Citation Information

Patent Citations

  • Paddy field weeding robot

    JP2011120573A

  • Paddy field weeding robot

    JP2011229463A

  • Rice stubble recognition sensor, and paddy field weeding robot equipped with the same

    JP2015043718A

  • Weeder

    JP2016052276A

  • Autonomous travel paddy weeder

    JP2016152775A