Hydrogen Smart Grid Control Using Segmented Device Parameters
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Solution Overview
Problem
Existing systems for managing smart energy grids, particularly those incorporating hydrogen devices, are not fully satisfactory in terms of precision and efficiency.
Innovation Solution
A system comprising a smart energy grid with hydrogen devices and a data processing system that monitors and implements decision steps based on device parameters, optimizing energy management through real-time monitoring and decision-making.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If existing energy management systems are used, then the system is simpler to implement, but the management precision and efficiency are insufficient
Solution Approach 1:
The system segments device parameters into four distinct categories (material inputs, energy source inputs, internal data inputs, and outputs), allowing for systematic monitoring and analysis of each parameter type while maintaining overall system manageability through structured organization
Solution Approach 2:
The data processing system continuously monitors device parameters and implements decision steps based on this feedback, creating a closed-loop control system that automatically adjusts energy management decisions based on real-time device status and performance data
2Productivity
If comprehensive device parameters are monitored, then energy management efficiency improves, but data processing complexity increases
Solution Approach 1:
By dividing device parameters into four categories, the system enables targeted monitoring and analysis of specific parameter groups, allowing efficient processing of comprehensive data through structured organization that simplifies data handling and decision-making processes
Solution Approach 2:
The data processing system is designed to handle multiple types of parameters (material, energy source, internal data, and output parameters) through a unified monitoring and decision-making framework, enabling the system to manage diverse device types and scenarios with a single versatile platform
Data Source
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AI summary
The invention concerns a system (1) for managing a smart energy grid (10) on a territory (30), wherein the system (1) comprises: the smart energy grid (10); and a data processing system (20); wherein the smart energy grid (10) comprises several hydrogen devices (12), including at least: a hydrogen storage device (14), and a hydrogen consumption device (15); wherein each hydrogen device (12) has device parameters arranged in four categories: material inputs, energy source inputs, internal data inputs, and outputs. The data processing system (20) is configured for monitoring the device parameters; and for implementing a decision step, acting on the smart energy grid (10), based on decision parameters including the device parameters. The invention also concerns a method for managing a smart energy grid (10) on a territory (30).