Wind Vibration Isolating Enclosure for Surveillance Systems
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Outdoor surveillance systems face issues with blurry images due to wind-induced vibrations, false motion alarms, and high costs associated with multiple enclosures and pole installations.
Innovation Solution
A surveillance apparatus featuring a base anchor structure, elongated core structure, and an elongated enclosure that isolates surveillance equipment from wind vibrations, using a base anchor structure extending from the ground with an elongated core structure and enclosure that surrounds the equipment, providing structural isolation and protection while being cost-effective and easy to install.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If cameras and sensors are mounted on a pole exposed to wind, then the surveillance system can be installed, but wind vibration causes blurry images and false motion alarms
Solution Approach 1:
The patent introduces an intermediary damping mechanism between the pole and the camera mounting bracket. This intermediary layer absorbs and dissipates wind-induced vibrations, preventing them from reaching the camera. The damping mechanism acts as a mediator that isolates the sensitive optical equipment from the harmful vibrational environment, thereby improving image quality without requiring complete enclosures.
2Reliability
If multiple separate enclosures are used for each camera and sensor, then each piece of equipment is protected from elements and vandalism, but the system cost increases significantly
Solution Approach 1:
The patent merges multiple protective functions into a single integrated pole structure. Instead of using separate enclosures for each camera and sensor, the design combines equipment mounting, environmental protection, and vibration damping into one unified pole assembly. This consolidation maintains equipment protection while significantly reducing the number of components needed, thereby lowering manufacturing and installation costs.
Solution Approach 2:
The pole structure is designed with multi-functionality, serving as both a structural support, a protective enclosure, and a vibration-damping mechanism. By making the pole universal in its functions, the design eliminates the need for separate protective housings for each device, reducing overall system complexity and cost while maintaining reliable equipment protection.
3Reliability
If separate enclosures are provided for each camera and sensor, then equipment is protected, but the number of components and installation complexity increase
Solution Approach 1:
The patent merges multiple protective functions into a single integrated pole structure. Instead of using separate enclosures for each camera and sensor, the design combines equipment mounting, environmental protection, and vibration damping into one unified pole assembly. This consolidation maintains equipment protection while significantly reducing the number of components needed, thereby lowering manufacturing and installation costs.
4Ease of operation
If traditional pole installations are used, then equipment can be mounted, but installation and maintenance costs are high
Solution Approach 1:
The patent segments the mounting system into modular components that can be easily assembled and disassembled. The camera bracket and damping mechanisms are designed as separate, interchangeable modules that can be attached to the pole without requiring complex welding or specialized installation equipment. This segmentation enables quick installation and maintenance while reducing labor costs.
Solution Approach 2:
The design incorporates self-adjusting and self-aligning features that reduce the need for skilled labor during installation and maintenance. The modular components are designed to automatically align during assembly, and the damping mechanisms require no adjustment after installation. These self-service features simplify the installation process and reduce ongoing maintenance requirements, thereby lowering overall costs.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The solution effectively reduces wind-induced vibrations, minimizes false alarms, and lowers installation and maintenance costs, enhancing the reliability and versatility of outdoor surveillance systems.
Implementation Method 1
the elongated enclosure is completely spaced from the elongated core structure and the surveillance equipment carried thereby whereby the elongated core structure and the surveillance equipment carried thereby are structurally isolated from the elongated enclosure and protected from vibration caused by wind impacting the elongated enclosure
Data Source
AI summary
Surveillance apparatus including an elongated base anchor structure, elongated core structure carrying surveillance equipment and having a lower end fixed against movement relative to the ground, and an elongated enclosure attached to the base anchor structure and surrounding the elongated core structure and the surveillance equipment, the elongated core structure and the surveillance equipment structurally isolated from the elongated enclosure and protected from vibration caused by wind impacting the elongated enclosure.


