Smart Sensing System Quick-Release Mounting Mechanism
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Solution Overview
Problem
Existing map data acquisition devices are inefficient to mount and dismount from mobile carriers due to separate product designs, requiring cumbersome bolt and nut fixation, which hampers quick installation and removal processes.
Innovation Solution
A smart sensing system device with a housing containing a detection radar, camera, GPS antenna, USB port, and main board, featuring a guide rail system with a dovetail groove and locking mechanism that allows for easy mounting and dismounting on a mobile carrier without removing the base, enhancing efficiency.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If the data acquisition device is fixed to the mobile carrier via bolts and nuts, then the mounting is secure and stable, but the mounting and dismounting process becomes troublesome and low efficiency
Solution Approach 1:
The mounting system is divided into separate components: a base plate with guide rails that remains fixed on the mobile carrier, and a data acquisition device with a corresponding mounting structure. This segmentation allows the base plate to be installed once for stable mounting, while the data acquisition device can be quickly attached and detached without removing the base plate, thus maintaining reliability while improving mounting efficiency
Solution Approach 2:
The mounting system transitions from a static bolt-and-nut fixation to a dynamic quick-release mechanism using guide rails and locking components. The guide rails enable linear movement for positioning, while the locking means provides secure fixation when engaged and easy release when unlocked, allowing the system to switch between stable mounting and quick dismounting states
2Adaptability or versatility
If the data acquisition device and mobile carrier are designed as separate products, then the device can be universally applied to different carriers, but the mounting process becomes complex and time-consuming
Solution Approach 1:
The base plate with guide rails serves as a universal mounting platform that can be installed on various mobile carriers (vehicles, drones, etc.). The standardized guide rail interface allows different data acquisition devices to be mounted on the same base plate, providing carrier compatibility and device interchangeability without requiring complex custom mounting solutions for each carrier type
Solution Approach 2:
The base plate with guide rails acts as an intermediary component between the mobile carrier and the data acquisition device. It provides a standardized interface that simplifies the mounting process: the base plate attaches once to the carrier, and subsequent device changes only require interacting with the guide rail system, reducing overall mounting complexity while maintaining versatility
Data Source
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AI summary
The present application provides a device of a smart sensing system, and relates to the technical field of map data acquisition. The device includes: an inertial navigation system and a main board provided in a housing; and a wifi antenna, a GPS antenna, a detection radar and a camera provided on the housing. The wifi antenna, an output end of the detection radar, and an output end of the camera are communicatively connected to the main board, respectively. The GPS antenna is communicatively connected to an input end of the inertial navigation system, and an output end of the inertial navigation system is communicatively connected to input ends of the camera and the detection radar. A USB port is provided on the housing and communicatively connected to a memory on the main board. At least one guide rail is provided at the bottom of the housing, a guide groove is provided on the top of a base, and a side wall of the guide groove is provided with a locking means. The guide rail is mounted in the guide groove and locked in the guide groove by the locking means. The device of the smart sensing system provided in the present application improves the efficiency of dismounting a data acquisition device from a vehicle.