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Intercropping is an efficient cultivation model that maximizes the utilization of land resources, and the intelligentization of plant protection machinery is a crucial aspect in promoting its widespread adoption. This paper analyzes the development direction of intelligent pesticide application system for intercropping based on advancements in monoculture systems. Based on the characteristics of intercropping systems, this study proposes solutions such as multi-sensor data fusion, lightweight recognition algorithms, and field management robot to reduce data fusion time and minimize algorithmic redundancy. Two major development directions are highlighted: (1) The design of field management robots that integrate multi-source data fusion and high performance algorithms to recognize complex field information and achieve precision operations requiring the establishment of large datasets, efficient lightweight algorithms, and integrated models for perception, decision making, and execution; and (2) The genetic enhancement of crops by introducing herbicide resistance genes to simplify pesticide application and reduce the complexity of intelligent machinery in intercropping systems. In summary, the intelligentization of pesticide application machinery for intercropping should be achieved through the integration of agronomic practices and agricultural machinery, addressing intercropping specific challenges based on the technological foundation established for monoculture intelligent spraying systems.
Zhong et al. (Thu,) studied this question.