Portable Antenna With Solar Panel And Level Indicator
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Solution Overview
Problem
The existing communication infrastructure, including conventional wire and fiber landlines and geostationary satellite systems, is insufficient to meet the increasing demand for communication access, and lacks coverage in certain areas, necessitating innovative solutions for reliable and efficient communication networks.
Innovation Solution
A portable antenna system comprising a solar panel and a signal receiver panel pivotally coupled with a coupler, allowing 360-degree rotation, equipped with a level indicator for precise alignment and power storage capabilities, enabling flexible deployment and operation in various environments.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a conventional satellite dish antenna is used, then communication with satellites is achieved, but the system lacks portability and flexibility for deployment in remote areas
Solution Approach 1:
The antenna system is divided into separate panels that can be folded together to form a complete antenna structure. The antenna comprises multiple panels including reflector panels and signal receiver panels that can be stored in a compact configuration and deployed when needed, enabling portability while maintaining full antenna functionality.
Solution Approach 2:
The antenna panels are designed to nest within each other when in the folded state, creating a compact portable form factor. The panels can be stored inside a carrying case or bundled together, allowing the entire antenna system to be transported easily to remote locations and then deployed for communication.
2Ease of operation
If the antenna is designed for portability, then ease of transportation is improved, but mounting stability and alignment precision may be compromised
Solution Approach 1:
The antenna system includes self-aligning features such as level indicators and alignment marks that enable the user to properly orient and level the antenna without requiring complex external equipment or specialized knowledge. The system performs its own alignment function, ensuring precise positioning for optimal satellite communication while maintaining portability.
3Adaptability or versatility
If the antenna operates in remote areas without power infrastructure, then accessibility to remote locations is improved, but power supply reliability deteriorates
Solution Approach 1:
The antenna system is designed with multi-functional capabilities including integrated solar panels for power generation and battery storage for energy retention. This allows the antenna to operate independently in remote areas without relying on external power infrastructure, while maintaining reliable operation through stored energy reserves.
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 antenna system provides a cost-effective, adaptable, and efficient means to establish communication links with satellites and high-altitude communication balloons, ensuring reliable connectivity even in remote areas by utilizing solar power and storage, and facilitating easy mounting and transportation.
Implementation Method 1
The antenna includes a solar panel and a signal receiver panel pivotally coupled to and in electrical communication with the solar panel
Implementation Method 2
The level indicator indicates whether a top surface of the signal receiver panel is horizontally level with respect to a direction of gravity
Data Source
AI summary
An antenna includes a solar panel and a signal receiver panel pivotally coupled to and in electrical communication with the solar panel. The antenna also includes a level indicator disposed on the signal receiver panel. The level indicator indicates whether a top surface of the signal receiver panel is horizontally level with respect to a direction of gravity.


