Wireless Power Transactions Using Two-Part Blockchain Currency
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Solution Overview
Problem
There is a need for systems and methods to facilitate global space-based solar power transactions, which involve the efficient transfer of energy and data across long distances while ensuring security and simultaneous communication.
Innovation Solution
A wireless powered transaction system utilizing a distributed blockchain application that enables wireless power transactions between buyers and suppliers, incorporating a two-part blockchain currency and quantum-entangled laser beams for secure communication among semi-autonomous aircraft, satellites, and ground-based devices.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Length of moving object
If wireless power transmission over long distances is implemented, then energy delivery capability is improved, but transmission loss and efficiency deteriorate
Solution Approach 1:
The patent introduces blockchain technology as an intermediary layer that mediates power transactions between suppliers and consumers. The blockchain network enables secure, trustless verification of power delivery and payment without requiring direct long-distance wireless power transmission for every transaction, thereby reducing transmission losses while maintaining global energy delivery capability
Solution Approach 2:
The patent replaces traditional mechanical/power-based verification systems with quantum-entangled laser beam verification. This substitution allows for instantaneous, secure verification of power delivery and transaction authenticity without requiring continuous high-power transmission, thereby reducing energy loss while maintaining transmission distance
2Reliability
If secure communication over long distances is implemented, then transaction security is improved, but communication complexity increases
Solution Approach 1:
The patent introduces blockchain as an intermediary that provides secure transaction verification without requiring complex point-to-point encryption between all parties. The distributed ledger and consensus mechanisms enable trustless security while simplifying the communication architecture compared to traditional secure multi-party systems
Solution Approach 2:
The quantum-entangled laser beam system provides self-verifying security through the inherent properties of quantum entanglement. The verification process is self-contained and automatic, eliminating the need for complex external verification protocols and reducing overall system complexity while maintaining high security
3Productivity
If simultaneous communication among multiple devices is implemented, then transaction efficiency is improved, but coordination difficulty increases
Solution Approach 1:
The blockchain network acts as a mediator that coordinates simultaneous transactions among multiple devices through its consensus mechanism. Multiple power transactions can be processed in parallel blocks, enabling high throughput while the blockchain's native coordination protocols eliminate the need for complex external synchronization systems
Solution Approach 2:
The patent replaces traditional coordination mechanisms (such as centralized schedulers or complex handshake protocols) with quantum-entangled verification. The entangled laser beams provide instantaneous correlation verification that enables simultaneous transactions to be coordinated automatically without complex timing or synchronization infrastructure
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 system effectively facilitates secure, simultaneous, and efficient wireless power and data transactions globally, leveraging blockchain technology for secure currency exchange and quantum entanglement for secure communication, thus addressing the challenges of long-distance energy transfer in space-based solar power systems.
Implementation Method 1
the aircraft, satellite, and ground-based devices are configured to transmit and receive quantum-entangled laser beams in order to exchange information
Implementation Method 2
at least one power transmitter comprises at least one solar powered satellite
Implementation Method 3
Space-based and high-altitude solar power generation and transmission is a promising technology
Implementation Method 4
transferring electromagnetic radiation from at least one solar powered satellite to at least one receiving station
Data Source
AI summary
Provided is a powered transaction system and method. The system includes a distributed blockchain application which facilitates wireless powered transactions between a buyer and a supplier, wherein the blockchain application includes at least one blockchain ledger, a wireless powered two-part blockchain currency, the two-part currency comprising a first currency and a second currency, a trust server which stores the two-part currency and fiat currency, and a first server, wherein the first server receives fiat currency from a buyer transaction device in a first transaction recorded on the at least one blockchain ledger and exchanges the fiat currency for two-part currency from the trust server, and wherein the first currency is provided to the buyer transaction device and the second currency is retained by the first server.


