Coherent Transformer for EM Radiation Protection
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Solution Overview
Problem
Existing methods for protecting biological objects from technogenic electromagnetic radiation in a wide range of frequencies often result in signal loss, distortion, or inconvenience, and fail to maintain the effectiveness of radiation sources.
Innovation Solution
The method involves transforming technogenic electromagnetic radiation into a coherent form using a coherent transformer, such as a self-affine lattice resonator, which harmonizes the amplitudes, phases, frequencies, and polarization vectors of the radiation, making it safe for biological objects without reducing the effectiveness of the radiation sources.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Object-affected harmful factors
If traditional shielding methods (layers, meshes, absorbers) are used to block electromagnetic radiation, then protection from radiation is achieved, but signal loss and distortion occur
Solution Approach 1:
The patent transforms harmful incoherent EM radiation into beneficial coherent radiation through the resonator device. The resonator converts the harmful random-phase electromagnetic waves into useful coherent waves with synchronized phases, frequencies, and polarizations, thereby protecting biological objects while maintaining signal integrity and even enhancing the radiation's usefulness.
Solution Approach 2:
The resonator acts as an intermediary device positioned between the EM radiation source and the biological object. It mediates the interaction by receiving incoherent radiation, transforming it into coherent radiation, and then delivering the transformed radiation to the biological object, thus solving both protection and signal preservation requirements.
2Object-affected harmful factors
If distance is increased between radiation source and biological object, then radiation exposure is reduced, but effectiveness of radiation source is reduced
Solution Approach 1:
The resonator serves as a mediator that allows close proximity positioning without increasing harmful exposure. It enables the radiation source to remain near the biological object for effective communication while the resonator ensures that only beneficial coherent radiation reaches the biological object, maintaining both effectiveness and safety.
3Object-affected harmful factors
If shielding materials are placed between radiation source and biological object, then radiation protection is provided, but inconvenience and complexity of use increase
Solution Approach 1:
The resonator is a passive device that automatically transforms incoherent radiation into coherent radiation without requiring external control, adjustment, or power supply. It self-regulates the radiation properties based on the incident incoherent radiation, making it simple to use and free from operational complexity.
Solution Approach 2:
The resonator provides multiple functions simultaneously: it shields biological objects from harmful radiation, preserves signal integrity, maintains source effectiveness, and can be positioned flexibly (on the object, near the source, or between them). This multi-functionality eliminates the need for multiple separate protective measures.
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
This approach effectively protects biological objects from the negative effects of technogenic electromagnetic radiation while maintaining the effectiveness of radiation sources, ensuring that the interaction between the radiation and biological objects is conflict-free and adaptive.
Implementation Method 1
transforming it into a form safe for the BO, without losing its effectiveness. The restructuring of technogenic EM radiation in the proposed method implies changing its amplitude-frequency spectrum from an arbitrary form to a coherent form through the influence of a coherent field created by a transformer that initiates the process of counter-harmonization of amplitudes, phases, frequencies, polarization vectors
Implementation Method 2
This process, which is implemented by using a coherent transformer (resonator), is proven and protected
Data Source
AI summary
The method for protecting biological objects (BO) from the negative influence of technogenic electromagnetic (EM) radiation in a wide range of frequencies, which consists of creating a coherent field in the form of a fractal matrix around a biological object using a fractal-matrix as coherent transducer based on a self-affine annular raster lattice (resonator) formed from ringed topological lines, which create a slit-like raster, and is a universal Fourier transformer that harmonizes the amplitude, phase, frequency and polarization vector of external technogenic radiation and the BO's own EM radiation. The transformation of external radiation occurs in accordance with the Fourier transform with the formation of a coherent matrix of EM wave superpositions. The coherent matrix does not conflict with the BO. The transformation does not affect the functioning of the technical devices. The coherent transformer can be placed on the BO, or between the BO and the source.


