Agricultural Robot Development: How to Solve Chassis Issues?
Have you ever encountered this situation—an agricultural robot that has been developed over a long period of time, whose algorithm runs perfectly in the laboratory, but then has problems in the actual farmland: the wheels slip, the steering is off course, or it gets stuck in the row spacing and can't move when changing ridges in the field?
The core of the problem often lies not in the upper-level algorithms or vision systems, but in the "base" that supports them—the robot chassis.
This is precisely our focus.
As a manufacturer of agricultural robot chassis, we are committed to the research, development, production and sales of wheeled chassis, tracked chassis and explosion-proof chassis. All products have been tested in real farmland scenarios, including muddy and bumpy conditions, to ensure stable and reliable operation.
Product highlights
Take our four-wheel drive, four-wheel steering chassis RMP-WL300 as an example—it was developed specifically for the agricultural sector.
1. Addressing the common problem of non-standard row spacing in planting areas, this four wheel drive chassis adopts an adjustable wheelbase and track design, which can flexibly adapt to narrow rows of field vegetables, wide row spacing in orchards, or limited space in greenhouses.
2. The chassis adopts a modular design, and the superstructure can be equipped with various agricultural implements such as sprayers, seeders, and weeders, effectively solving the problem of agricultural implement diversification and significantly improving equipment utilization.
3. The chassis can be integrated with the Beidou navigation system. Through a self-developed APP, it can accurately plan the operation path and realize unmanned autonomous operation with a positioning accuracy of up to centimeter level, providing reliable technical support for precision agriculture.
4. The four wheel drive chassis is equipped with an internal VCU controller and supports the CAN communication protocol. The integrators or professional technical teams do not need to build the chassis motion control system from scratch; they can quickly complete the secondary development and the adaptation of the upper structure.
Actual application scenarios
Currently, our robot development platform has been integrated into the following mature equipment and is running in actual production:
Laser weeding robot
Seedling transplanting robot
Soil testing robot
Field monitoring platform
And other customized agricultural automation solutions
If you are facing any of the following situations
1. The labor costs on the farm are continuously rising, and an assessment is being made of automation alternatives.
2. You are developing or upgrading agricultural robots and need a stable and reliable robot development platform.
3. You are looking for a reliable robot chassis supplier who can support customization and establish a long-term strategic partnership.
We look forward to building a successful partnership with you.
If you'd like to dive deeper into technical specifications or see how our solutions perform in real-world applications, please don't hesitate to get in touch.




