System for supporting reconditioning, international export, and reuse of agricultural support robots

The robot export support system addresses the lack of a framework for reusing and exporting agricultural robots by refurbishing and redistributing them with multilingual support and cloud-based monitoring, enhancing global reuse and cost-effectiveness.

JP2025157321APending Publication Date: 2025-10-15丸山 貴代
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Patent Information

Application Number
JP2025115016
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-07-08
Publication Date
2025-10-15

AI Technical Summary

Technical Problem

There is no systematic framework for the reuse or international export of agricultural robots after they are no longer needed in Japan, making it difficult to expand internationally and monitor their status post-use.

Method used

A robot export support system that refurbishes, inspects, and redistributes agricultural robots, providing multilingual support, collaboration with multinational subsidy systems, and a support tracking structure via the cloud to optimize distribution and monitor effectiveness.

Benefits of technology

Promotes global reuse of agricultural robots, minimizes implementation costs, and optimally selects target countries for support through multilingual assistance and cloud-based monitoring.

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Abstract

To provide an agricultural support system for reconditioning agricultural support robots that have been domestically used, exporting and distributing the robots safely and efficiently to overseas support destinations in need of the robots, visualizing the usage status, supporting multiple languages, coordinating subsidies, and the like.SOLUTION: An agricultural support system disclosed herein is configured to: recondition used agricultural support robots or AI terminals: add a multi-language support configuration; and then integrate automatic selection of export priorities corresponding to demands and infrastructure conditions of target countries, subsidy coordination, cloud-based operation tracking, and the like.SELECTED DRAWING: None
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Description

[Technical Field]

[0001] This invention relates to the reuse and international export of agricultural support robots or AI terminals, and in particular to an agricultural support system that redistributes used robots to overseas agricultural support organizations after maintenance and inspection, and enables multilingual support, subsidy coordination, and support tracking. [Background technology]

[0002] While the introduction of agricultural robots has progressed, there has been no systematic framework for the reuse or export of robots after they are no longer needed in Japan. In particular, it has been difficult to expand internationally, collaborate with aid recipients, and monitor the status of the robots after use. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] WO2006063314A3 discloses a system for automatically controlling pruning and harvesting using a visual recognition type agricultural robot. [Patent Document 2] US20130204437A1 discloses an autonomous agricultural robot that uses image recognition and a control module, but does not include integrated management of multiple farmlands or conversation support functions using AI characters. [Patent Document 3] US10846843B2 discloses a farmland monitoring and analysis platform based on satellite and UAV images, but does not include a farming operation execution mechanism and an interactive support module. [Patent Document 4] US20170384402A1 discloses technology related to the maintenance and reuse of agricultural machinery, but does not include features such as international exports, subsidy coordination, or support tracking. [Patent Document 5] WO2019088218A1 discloses a cloud connection structure for an agricultural support terminal, but does not explicitly state multilingual support for used robots or the export priority determination configuration. Summary of the Invention [Problem to be solved by the invention]

[0004] The purpose of this invention is to refurbish agricultural support robots that have been used in Japan, export and distribute them safely and efficiently to overseas recipients in need, and provide a support model that includes visualization of usage status, multilingual support, and subsidy linkages, thereby achieving both reuse and international agricultural support. [Means for solving the problem]

[0005] This invention is a robot export support system that has a structure that allows robots to be redistributed after being reconditioned, cleaned, and inspected, and includes local language support, cooperation with multinational subsidy systems, a priority country determination mechanism, and a support tracking structure that visualizes operational status through the cloud. [Effects of the Invention]

[0006] This invention will promote the reuse of agricultural support robots globally, minimize implementation costs, optimally select target countries for support, enable local adoption through multilingual support, and visualize the value of support through effectiveness measurement. DETAILED DESCRIPTION OF THE INVENTION

[0007] In one embodiment, robots no longer needed by domestic farmers and other businesses will be refurbished and inspected at designated facilities, and after adjusting specifications including language settings, they will be exported to the target areas according to their conditions. In collaboration with grant programs from NGOs and international organizations, the effectiveness of the support will be continuously monitored via the cloud.

Claims

1. An agricultural support system with a reuse structure that allows agricultural support robots or AI character-equipped devices used in Japan to be redistributed or exported to overseas agricultural support organizations, local governments, or individual users after undergoing reconditioning, cleaning, inspection, etc.

2. 2. An internationally compatible agricultural support system according to claim 1, characterized in that a multilingual configuration can be applied to the robot or terminal after the reconditioning process, including support such as voice guidance, display, character responses, etc. in the local language or multiple languages.

3. 3. The agricultural support system according to claim 1 or 2, characterized in that it comprises an export support selection means for automatically determining export priority or pricing conditions in accordance with the agricultural support needs, economic situation, infrastructure environment, etc. of the target country or region.

4. An international agricultural support system according to any one of claims 1 to 3, characterized in that it includes a subsidy collaboration structure that enables part or all of export costs to be covered by external funds through subsidy and grant collaboration with international organizations, NGOs, government agencies, etc.

5. 5. A support tracking type agricultural support system according to any one of claims 1 to 4, characterized in that it includes a reporting and monitoring structure that records and visualizes information on the usage status, operational performance, agricultural support effects, etc. of redistributed robots or terminals on the cloud, allowing the provider or related institutions to confirm the support results.

Citation Information

Patent Citations

  • Utilizing artificial intelligence with captured images to detect agricultural failure

    US10846843B2

  • Agricultural robot system and method

    US20130204437A1

  • US20170384402A1

  • Agricultural robot system and method

    WO2006063314A3

  • Component aligning apparatus

    WO2019088218A1