A shuttle car is an intelligent robot that can be programmed to perform tasks such as picking up, transporting, and placing goods. It can also communicate with a host computer or WMS system, and combine RFID, barcode, and other recognition technologies to achieve automated recognition, access, and other functions.
At present, our company has three types of shuttle buses: two-way shuttle bus, four-way shuttle bus, and multi-level shuttle bus.
Utilize scheduling, algorithms, and location optimization strategies to improve overall efficiency. It can dynamically manage over 10000 pallet storage locations, connect and schedule at least 100 four-way vehicles in the entire warehouse, and achieve efficient handling of raw materials, semi-finished products, and finished products through multi process dynamic collaboration and flexible scheduling. Widely applicable to nearly a hundred industries including cold chain, food and oil, raw materials, 3C electronics, home building materials, etc.
It is of great significance to connect cross building operations within the park, activate multi story irregular buildings, optimize the economic benefits of high cost sites, upgrade manufacturing factories or idle spaces, etc.
Global scheduling: Coordinated scheduling of multiple vehicles within the same layer and across layers, automatically scheduling empty vehicles to each layer based on historical data to match the number of vehicles with the task book.
Multi layer map support: Supports switching between different maps on each layer through a hoist.
• Capacity allocation: dynamically adjust capacity for hot spot inbound and outbound ports.
• Path planning: bidirectional channel support; Z optimal path search; Deadlock detection and resolution; Dynamically change the path for subsequent tasks after an exception.
• Different handling of empty and heavy vehicles: Empty and heavy vehicles can take different paths.
Charging scheduling: idle charging, forced charging, cross layer charging, regular calibration.
• Automatic leveling: The pallet is automatically leveled through displacement sensors, and the wheels on both sides are driven simultaneously to ensure that the shuttle does not deflect and avoid the risk of cargo tipping over.
Seamless connection: Achieve seamless connection in the production, warehouse, and sorting processes.
Strong scalability: The operating space is not limited, and the shelves can be expanded according to needs to meet the actual needs of customers.

Application scenarios
1. Flexible and easy to deploy, mature and stable, reliable and durable.
2. High homework efficiency, significantly improving beat efficiency.
3. High density storage, with a warehouse utilization rate 30% higher than that of a lane stacking warehouse.
4. The inbound and outbound of goods can be done in a first in, first out or first in, last out manner.

Application scenarios
1. The running speed and pickup speed are both very fast, meeting the high cycle of inbound and outbound demand.
2. The number of shuttle buses can be flexibly increased to further meet peak operational needs.
3. The overall appearance of the machine has a high level of industrial design, with obvious performance advantages such as energy saving and low noise.
4. It can be equipped with automated three-dimensional warehouses such as stacker cranes to achieve efficient management of light, medium, and heavy items in limited spaces.

Application scenarios
Shunli Company is committed to building a "leading enterprise in logistics equipment in China", adhering to a professional, focused, and efficient business policy, providing automated logistics solutions for customers in various industries, and also striving to become a leading integrator of automated logistics equipment in China

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Service Hotline
400-090-1058
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