An overhead sliding rail vehicle charging management system
Patent Information
- Authority / Receiving Office
- TW · TW
- Patent Type
- Utility models
- Current Assignee / Owner
- 江信儀
- Filing Date
- 2026-03-07
- Publication Date
- 2026-08-01
Smart Images

Figure TWG2TB001904452_001 
Figure TWG2TB001904452_002 
Figure TWG2TB001904452_003
Abstract
Claims
1. An overhead sliding rail vehicle charging management system for a parking area having one of multiple parking spaces, comprising: a vehicle detection module disposed in the parking area for obtaining parking location information of a vehicle parked in one of the parking spaces within the parking area; a field control module electrically connected to the vehicle detection module for generating a sliding rail scheduling command based on the parking location information; a sliding rail drive module electrically connected to the field control module for receiving the sliding rail scheduling command and driving at least one sliding rail module to move along an overhead sliding rail disposed above the parking area to the parking space; and a charging control module electrically connected to the field control module and the sliding rail drive module for controlling the charging operation of the vehicle.
2. The overhead sliding rail vehicle charging management system as described in claim 1, wherein the sliding rail drive module includes a position sensor for real-time detection of the coordinate position of the trolley module on the overhead sliding rail and reporting it to the field control module.
3. The aerial rail-type vehicle charging management system as described in claim 2, wherein the field control module includes: a path planning unit that generates at least one candidate path based on the path of the aerial rail, and selects the shortest and safest path based on the weighted cost of distance weight and safety weight.
4. The aerial rail-type vehicle charging management system as described in claim 3, the field control module further includes: a node occupancy management unit for maintaining the node occupancy status and scheduling the passage priority and yield rules of a trolley device to avoid collisions or blockages.
5. The overhead sliding rail type vehicle charging management system as described in claim 1, wherein, The charging control module includes a charging safety monitoring unit, which monitors voltage, current, temperature and communication protocol status during the charging process. When an abnormality or error is detected, it issues an alert and triggers a charging operation stoppage or fault recovery procedure to ensure the safety and reliability of the charging operation.
6. The overhead rail-type vehicle charging management system as described in claim 1 further includes an anomaly monitoring module for monitoring system malfunctions and triggering warning and safety response procedures.
7. The aerial rail-type vehicle charging management system as described in claim 1 further includes a positioning correction module to provide position correction and attitude adjustment assistance for a trolley device and a charging device.
8. The overhead sliding rail vehicle charging management system as described in claim 1 further includes a return module, which controls a trolley device to move a charging device back to a preset docking position after charging is completed or abnormally stopped, and performs docking locking and safety checks to ensure the safe and stable operation of the system.
9. The aerial rail-mounted vehicle charging management system as described in claim 1 further includes a green energy management interface module connected to the field control module for monitoring the status of a solar power generation module and an energy storage system module.
10. The system as described in claim 9 further includes a cloud management interface module connected to the field control module for collecting charging behavior, device status and fault data, and providing remote maintenance and alarm functions.