Design and Realization of Seeding Quality Monitoring System for Air-Suction Vibrating Disc Type Seed Meter

Author:

Cheng Junhui,Li Yaoming,Chen Jin,Liu Yanbin,Ji Kuizhou,Chen Tiaotiao

Abstract

To improve the seeding qualification rate and stability of the air-suction vibrating disc type seed meter on the rice seedling raising line, in this paper, an improved wireless sensor network node layout optimization algorithm was proposed, and the operation monitoring system of the seed meter was designed using the Internet of Things and configuration software. In the system, the upper computer software adopted the Kingview software, the lower computer took the STM32F429IGT and CC2530 as the core controllers, and ZigBee was selected for data transmission to build the wireless sensor network. The acquisition of field status information and the sending of control instructions were realized through the sensor nodes constructed by the CC2530 core controller. The data was sent to the coordinator node in real-time through the wireless sensor network. The coordinator node realized the bidirectional transmission of data with Kingview and the upper computer control instructions forwarding using the ASCII protocol The host computer monitoring and management software was developed based on configuration software to realize real-time data monitoring, access database storage, fault alarm, control command sending and other functions. The experimental results showed that the detection accuracy of the system for the seeding amount and missed seeding amount was 94.3% and 95.6%, respectively, which could realize the monitoring of the primary working status of the seed meter. The system realized effective data transmission and data remote wireless transmission function, which provided sufficient theoretical and data support for the performance optimization of the seed meter, and laid a good foundation for the visualization and intelligence of information data.

Funder

National Natural Science Foundation of China

Jiangsu graduate research innovation program

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference41 articles.

1. Research on field monitoring system of saline-alkali land based on ZigBee and TCP/IP;Wang;J. Agric. Mach.,2019

2. Device and Method Suitable for Matching and Adjusting Reel Speed and Forward Speed of Multi-Crop Harvesting

3. Design and Test of Combined Air Suction Cotton Breed Seeder

4. Design and Development of New Type Conductor Delivery of Air-Suction Metering Device;Wang,2015

5. Design and experiment of an air-suction potato seed metering device;Lü;Int. J. Agric. Biol. Eng.,2016

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