Planar Antenna Array Mitigating EMF Radiation via Golden Spiral Elements
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Low-intensity EMF radiation has negative impacts on human health, including physiological and psychosomatic effects, for which existing technologies lack effective mitigation solutions.
Innovation Solution
A planar antenna array with close-packed antenna elements arranged in a substantially continuous photonic transducer as an outwardly expanding golden spiral, integrated into substrates such as clothing or electronic devices, which mitigates EMF radiation by organizing and restoring disrupted photonic fields.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Object-affected harmful factors
If conventional technologies are used, then device complexity remains low, but harmful effects of EMF radiation on human health cannot be mitigated
Solution Approach 1:
The antenna array is divided into multiple individually addressable antenna elements arranged in a planar configuration. Each element can be independently controlled to emit electromagnetic energy, allowing the system to segment the mitigation function across multiple simple units rather than requiring a single complex device.
Solution Approach 2:
The antenna array serves multiple functions: it can transmit electromagnetic energy for wireless communication and simultaneously mitigate harmful EMF radiation effects on human health. This multi-functionality reduces the need for separate dedicated devices for each purpose.
2Object-affected harmful factors
If planar antenna array is implemented, then EMF radiation mitigation is achieved, but manufacturing complexity increases
Solution Approach 1:
The planar antenna array consists of multiple discrete antenna elements that can be manufactured separately and then assembled into the final planar configuration. This segmentation enables standardized manufacturing processes for each element type while simplifying quality control and assembly.
Solution Approach 2:
The antenna elements are arranged in a planar (two-dimensional) configuration rather than a three-dimensional structure. This planar arrangement simplifies manufacturing by allowing flat substrate materials to be used, enabling printing or etching techniques, and facilitating integration into wearable articles and portable devices.
3Object-affected harmful factors
If multiple antenna elements are used, then EMF radiation coverage is improved, but device complexity increases
Solution Approach 1:
The system divides the EMF radiation mitigation function across multiple antenna elements distributed in a planar array. Each element contributes to the overall coverage area, and the segmented approach allows independent optimization of each element while achieving collective improvement in coverage.
Solution Approach 2:
Multiple antenna elements are combined into a coordinated array system that functions as a unified EMF radiation mitigation device. The elements work together through coordinated electromagnetic energy emission to provide broader coverage than a single element could achieve alone.
Data Source
AI summary
A planar antenna array and articles of manufacture using the same are disclosed. In one embodiment, close-packed antenna elements, disposed on a substrate, number N where N=3x and x is a positive integer. Each of the close-packed antenna elements includes a substantially continuous photonic transducer arranged as an outwardly expanding generally logarithmic spiral having six turns. Each of the outwardly expanding generally logarithmic spirals may be a golden spiral. As an article of manufacture, the planar antenna array may be incorporated into a chip, such as a cell phone, or an article of clothing, for example.


