基于微生物菌肥的燕麦培育方法、装置、设备及存储介质

By conducting a categorized fertilization experiment on oat seedlings under the same soil conditions, and using decision trees and feature extraction models, the microbial fertilizer method was determined, which solved the problem that existing fertilizers could not increase oat yield and achieved a combination of high yield and soil health.

CN115392884BActive Publication Date: 2026-07-17INSTITUTE OF GRASSLAND RESEARCH OF CAAS +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
INSTITUTE OF GRASSLAND RESEARCH OF CAAS
Filing Date
2022-09-22
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing fertilizers have a single composition, which cannot further increase oat yield, and improper fertilization may damage soil structure and reduce crop yield.

Method used

By transplanting oat seedlings into experimental fields with the same soil conditions, decision tree models and feature extraction models were used for classification. The microbial fertilizer application method was determined based on the field characteristics and recorded in the cultivation table. The yields of different fields were compared to determine the optimal fertilization method.

Benefits of technology

It increased oat yield, identified the most suitable microbial fertilizer application method, ensured soil health, and avoided soil damage caused by improper fertilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明涉及人工智能技术,揭露了一种基于微生物菌肥的燕麦培育方法,包括:培养燕麦幼苗,将燕麦幼苗移植到N块实验田中,并唯一编号;统计实验田内燕麦幼苗的数量,计算幼苗密度与种植间距,并生成种植标签;对验田进行分类,提取实验田的田地特征;确定实验田的微生物菌肥施肥方式,得到每块所述实验田的培育表;回收实验田内的燕麦,根据结果计算每块实验田的籽粒产量;将籽粒产量大于预设产量阈值的实验田定为高产田地,并确定高产田地对应的施肥方式为目标培育方法。此外,本发明还涉及区块链技术,田地特征及培育表可存储于区块链的节点。本发明还提出一种基于微生物菌肥的燕麦培育装置、电子设备以及存储介质。本发明可以提高燕麦产量。
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