Holographic projection interactive power grid electrical appliance warehousing and ex-warehouse storage warehouse storage system and method based on quantum entanglement state

Through an interactive system combining quantum entangled state and holographic projection technology, classification difficulties and poor information flow in power equipment warehousing management are solved, rapid query and precise positioning of power equipment are achieved, and intelligence and reliability of power grid warehousing management are improved.

CN120278635APending Publication Date: 2025-07-08STATE GRID XINJIANG ELECTRIC POWER COMPANY HAMI POWERSUPPLY COMPANY
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Patent Information

Application Number
CN202510370079.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

There are problems such as classification management difficulties, low search efficiency, insufficient manual inventory accuracy, poor information circulation in the warehousing management of existing power equipment, resulting in poor timeliness and accuracy of power operation and maintenance work, which cannot meet the intelligent needs of modern power grids.

Method used

The holographic projection interactive system based on quantum entangled states is adopted. Through the combination of quantum entangled state generation module, holographic projection module, interaction module, sensor module and data processing module, the rapid query, precise positioning and intelligent management of power equipment are realized, and gravity sensors, displacement sensors and RFID sensors are used for real-time monitoring and data acquisition, combining gestures and voice interactions to achieve efficient inventory management.

Benefits of technology

It realizes a high degree of visualization and intelligence of power equipment warehousing management, improves the real-time and accuracy of inventory information, reduces manual operation errors, ensures the reliability and stability of inventory management, and improves the grid operation efficiency and management level.

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Abstract

The invention discloses a holographic projection interactive power grid electrical appliance warehousing and ex-warehouse storage warehouse storage system and method based on a quantum entanglement state, and relates to the technical field of power grid electrical appliance warehousing management.The method comprises the steps that the quantum entanglement state is generated by a quantum entanglement state generation module, and a quantum basis or a quantum signal is provided; detailed related information of the electric appliance is fed back to a user in a holographic projection form by means of a quantum entanglement state; the interaction module is used for querying, precisely positioning and warehousing and ex-warehouse operation of the electric appliances; the sensor module collects state information and position information of an electric appliance in real time, and the data processing module processes and analyzes data collected by a sensor and data generated in the holographic projection interaction process and displays the data in a holographic projection mode. The method has the advantages that the quantum entanglement state and the holographic projection technology are deeply fused and applied to the field of electric appliance warehouse management, and high visualization and intelligence of warehouse management are achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of storage management of power equipment in power grids, and in particular to a system and method for warehousing, out-of-warehouse and inventory counting of power equipment based on quantum entanglement and holographic projection technology. Background Art

[0002] Under the background of the continuous expansion of the current power grid scale and the increasing variety and quantity of power equipment, in the existing technology, the storage management of power equipment mainly relies on RFID tags and manual operation, and there are the following problems: First, due to the wide variety of materials, the classification management work faces huge challenges, resulting in extremely low efficiency in finding specific power equipment, which seriously affects the timeliness and accuracy of power operation and maintenance; Second, the manual inventory method not only has a slow data update speed, but also the accuracy is difficult to be effectively guaranteed, and it is impossible to provide reliable support for real-time scheduling decisions; Third, between different departments, due to the lack of an effective collaborative management mechanism, information flow is not smooth, making it difficult to achieve efficient and orderly operation of storage management. With the continuous advancement of the intelligent development of power grids, there is an urgent need for a new, more efficient, intelligent and accurate storage management system to meet the strict requirements of modern power grids for the storage and management of power equipment and improve the reliability and stability of the overall operation of the power grid. Summary of the invention

[0003] In order to solve the above technical problems, a holographic projection interactive power grid power equipment warehousing and outbound storage warehouse storage system and method based on quantum entanglement is provided. This technical solution solves the above problems.

[0004] In order to achieve the above purpose, the technical solution adopted by the present invention is:

[0005] A quantum entangled state generation module, which generates a stable and accurate quantum entangled state through a quantum computing device, and provides a quantum basis or quantum signal for the holographic projection module and the sensor module;

[0006] Holographic projection module, which uses optical projection technology to provide users with detailed information about power equipment and the precise spatial layout of the warehouse in the form of holographic projection;

[0007] An interactive module, which realizes quick query, precise positioning and storage and retrieval operations of electric appliances through gesture operation or voice command;

[0008] A sensor module, which collects status information and location information of the electric device in real time and transmits the data to a data processing module via a high-speed and stable communication link;

[0009] A data processing module that deeply processes and analyzes the massive data collected by sensors and various data generated during the interaction with the holographic projection, and displays the data in the form of a holographic projection.

[0010] Preferably, the interaction module interacts with the holographic projection module in real time through gesture operations or voice commands to achieve quick query, precise positioning, and inbound and outbound operations of power appliances, and transmits the operation instructions to the data processing module for processing.

[0011] Preferably, the sensor module specifically includes:

[0012] A gravity sensor that continuously monitors the weight change of the appliance and collects data on whether there is abnormal loss or addition of the appliance;

[0013] A displacement sensor that accurately tracks the position movement of the appliance and collects the position movement data of the appliance;

[0014] An RFID sensor that quickly and accurately identifies the identity information of the appliance to achieve quick positioning and management of the appliance;

[0015] Among them, the sensor module conducts data interaction with the data processing module through quantum entanglement state signals, real-time collects the status information and position information of power appliances, and transmits the data to the data processing module through a high-speed and stable communication link.

[0016] Preferably, the data processing module specifically includes:

[0017] Establish advanced data processing algorithms and intelligent analysis models to screen, integrate, mine, and analyze the data collected by sensors;

[0018] Based on the established algorithms and models, conduct precise management of power appliances, including accurate statistics of inventory quantities, real-time monitoring of appliance status, and optimization and adjustment of storage locations;

[0019] Based on the analysis of the data, conduct intelligent scheduling of the warehouse, and reasonably arrange the inbound and outbound order and storage location of the appliances.

[0020] Furthermore, a method for the inbound of power appliances in a holographic projection interactive power grid based on quantum entanglement state is proposed to implement the holographic projection interactive power grid power appliance inbound system based on quantum entanglement state as described above, including the following steps:

[0021] Prepare the power appliances to enter the warehouse for inbound;

[0022] The quantum entanglement state generation module assigns a unique quantum code to the incoming power appliances, binds the quantum code with the basic information and incoming time of the appliances, and stores them in the database;

[0023] The holographic projection module displays the detailed information of the incoming appliances in the form of holographic images, and recommends the optimal storage location based on the real-time storage situation of the warehouse and intelligent algorithms;

[0024] The sensor module monitors the placement of the appliances in real time. If the appliances are not placed in the correct position, the sensor will issue an alarm and prompt the correct storage location in the holographic projection.

[0025] Furthermore, a method for the outbound of power grid electrical appliances with holographic projection interaction based on quantum entanglement state is proposed to implement the system for the outbound of power grid electrical appliances with holographic projection interaction based on quantum entanglement state as described above, including the following steps:

[0026] The management personnel submit an outbound application through the interaction module and input information such as the name and model of the appliance;

[0027] The holographic projection module locates the specific position of the appliance in the warehouse according to the input information and displays it in the form of holographic projection;

[0028] The management personnel perform the outbound operation according to the instructions of the holographic projection, and the sensor module monitors the movement of the appliance in real time;

[0029] When the appliance leaves a specific area of the warehouse, the sensor feeds the information back to the system, and the system automatically updates the inventory information, recording the outbound time and status of the appliance.

[0030] Furthermore, a method for the inventory check of power grid electrical appliances with holographic projection interaction based on quantum entanglement state is proposed to implement the system for the inventory check of power grid electrical appliances with holographic projection interaction based on quantum entanglement state as described above, including the following steps:

[0031] Based on the unique properties and powerful scanning capabilities of quantum entanglement state, the system quickly and comprehensively scans all the power appliances in the warehouse;

[0032] Obtain the quantum code and detailed status information of each appliance, including the storage location, usage status, whether there is damage, etc. of the appliance;

[0033] Compare the appliance information obtained by scanning with the inventory information pre-stored in the system in detail and precisely. If any differences are found, the system will automatically mark them and conduct further analysis and processing;

[0034] Display the results of the inventory check clearly and intuitively in the form of holographic projection.

[0035] Optionally, the quantum encoding is bound to the basic information of the appliance and the storage time, and stored in the database, providing a reliable identifier for subsequent precise management and tracking of the appliance.

[0036] Optionally, the sensor module monitors the movement of the appliance in real time. When the appliance leaves a specific area of the warehouse, the sensor promptly feeds back the information to the system, and the system automatically updates the inventory information.

[0037] Optionally, the quantum scanning method is efficient, accurate, and comprehensive, capable of obtaining a large amount of appliance information in a short time and displaying the inventory count results through a holographic projection interface.

[0038] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0039] The present invention proposes a holographic projection interactive power grid electrical appliance warehousing, storage, and outbound storage solution based on quantum entanglement states, integrating quantum entanglement states and holographic projection technology into the field of electrical appliance warehousing management, achieving highly visualized and intelligent warehousing management. The interactive module is carefully designed, and through gesture and voice interaction, precise positioning of the appliance is achieved, reducing the possibility of manual operation errors. The sensor module and quantum scanning technology are organically combined, providing strong guarantees for the timeliness and accuracy of inventory information, monitoring the status and location information of the appliance in real time, being able to promptly detect and handle inventory anomalies, avoiding loopholes and risks in inventory management, improving the reliability and stability of warehouse management. The system and method have good scalability and compatibility, can easily be docked and integrated with the management platforms of other power systems, and through data sharing and collaborative work, achieve collaborative management on a larger scale, improving the overall operation efficiency and management level of the power system. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] For ease of understanding by those skilled in the art, the present invention will be further described below with reference to the accompanying drawings;

[0041] Figure 1 It is a schematic diagram of the system structure of the present invention;

[0042] Figure 2 It is a flowchart of the warehousing method of the present invention;

[0043] Figure 3 It is a flowchart of the outbound method of the present invention;

[0044] Figure 4 It is a flowchart of the inventory count method of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0045] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0046] Figure 1 The holographic projection interactive power grid electrical appliance inbound, outbound, and storage warehouse storage system based on the quantum entanglement state of the present invention is provided, including:

[0047] A quantum entanglement state generation module, which generates a stable and accurate quantum entanglement state through a quantum computing device, providing a quantum basis or quantum signal for the holographic projection module and the sensor module;

[0048] A holographic projection module, which feeds back the detailed relevant information of the electrical appliances and the accurate spatial layout of the warehouse to the user in the form of a holographic projection in all directions through optical projection technology;

[0049] An interaction module, which realizes the quick query, precise positioning, and inbound and outbound operations of the electrical appliances through gesture operations or voice commands;

[0050] A sensor module, which collects the status information and position information of the electrical appliances in real time and transmits the data to the data processing module through a high-speed and stable communication link;

[0051] A data processing module, which deeply processes and analyzes the massive data collected by the sensor and various data generated during the interaction with the holographic projection, and displays the data in the form of a holographic projection.

[0052] The quantum entanglement state generation module provides a quantum basis for the system, the holographic projection module realizes the visual display of warehouse information, the interaction module provides a convenient operation method, the sensor module collects data in real time, and the data processing module deeply analyzes and processes the data. Each module works together to achieve highly intelligent, precise, and efficient management of the power grid electrical appliance storage.

[0053] In this embodiment, it should be specifically noted that the interaction module interacts with the holographic projection module in real time through gesture operations or voice commands to realize the quick query, precise positioning, and inbound and outbound operations of the electrical appliances, and transmits the operation instructions to the data processing module for processing.

[0054] The interaction module supports a variety of natural and convenient interaction methods. Users can interact with the system without complex operations. The combination of gesture operations and voice commands enables users to communicate with the system in the most intuitive way, reducing the cumbersome nature of traditional manual operations and improving operation efficiency.

[0055] In this embodiment, it should be specifically noted that the sensor module specifically includes:

[0056] A gravity sensor that continuously monitors the weight change of the appliance and collects data on whether there is abnormal wear or addition of the appliance;

[0057] A displacement sensor that accurately tracks the position movement of the appliance and collects position movement data of the appliance;

[0058] An RFID sensor that quickly and accurately identifies the identity information of the appliance to achieve rapid positioning and management of the appliance;

[0059] Among them, the sensor module conducts data interaction with the data processing module through quantum entanglement state signals, real-time collects the status information and position information of the electrical appliance, and transmits the data to the data processing module through a high-speed and stable communication link.

[0060] The sensor module conducts data interaction with the data processing module through quantum entanglement state signals and transmits the data to the data processing module through a high-speed and stable communication link to ensure the real-time and accuracy of the data. This design enables the system to efficiently and accurately manage the inventory and position information of electrical appliances, improving the intelligent level and reliability of warehouse management.

[0061] In this embodiment, it should be specifically noted that the data processing module specifically includes:

[0062] Establish advanced data processing algorithms and intelligent analysis models to screen, integrate, mine, and analyze the data collected by the sensors;

[0063] Based on the established algorithms and models, conduct precise management of electrical appliances, including accurate statistics of inventory quantities, real-time monitoring of appliance status, and optimized adjustment of storage locations;

[0064] Based on the analysis of the data, conduct intelligent scheduling of the warehouse and reasonably arrange the inbound and outbound order and storage location of the appliances.

[0065] Through the data processing module, the system can real-time count the number of electrical appliances in the warehouse to ensure the accuracy of inventory data.

[0066] In the embodiment, it should be specifically noted that, for example Figure 2As shown, the warehousing method includes the following specific steps:

[0067] Prepare for warehousing the electrical appliances to enter the warehouse;

[0068] The quantum entanglement state generation module assigns a unique quantum code to the warehoused electrical appliances, binds the quantum code with the basic information and warehousing time of the appliances, and stores them in the database;

[0069] The holographic projection module displays the detailed information of the warehoused appliances in the form of a holographic image, and recommends the optimal storage location based on the real-time storage situation of the warehouse and intelligent algorithms;

[0070] The sensor module monitors the placement situation of the appliances in real time. If the appliances are not placed in the correct position, the sensor issues an alarm and prompts the correct storage location in the holographic projection.

[0071] Through the quantum code, not only can the basic information of the appliances, such as name, model, specifications, etc., be closely associated, but also it can be accurately bound with the warehousing time of the appliances and stored in the database of the system. Through this quantum coding method, a reliable identifier can be provided for the subsequent precise management and tracking of the appliances.

[0072] In this embodiment, it should be specifically noted that, as Figure 3 As shown, the outwarehousing method includes the following specific steps:

[0073] The management personnel submit an outwarehousing application through the interaction module, and input information such as the name and model of the appliances;

[0074] The holographic projection module locates the specific position of the appliances in the warehouse according to the input information and displays it in the form of a holographic projection;

[0075] The management personnel perform the outwarehousing operation according to the instructions of the holographic projection, and the sensor module monitors the movement situation of the appliances in real time;

[0076] When the appliances leave a specific area of the warehouse, the sensor feeds back the information to the system, and the system automatically updates the inventory information, records the outwarehousing time and status of the appliances.

[0077] When submitting an outwarehousing application through the interaction module, detailed information such as the name and model of the required electrical appliances can be input by voice. For gesture operations, the corresponding appliances should be selected on the holographic projection interface, and the interaction module will quickly recognize and transmit the application information to the system.

[0078] In this embodiment, it should be specifically noted that, as Figure 4 As shown, the inventory counting method includes the following specific steps:

[0079] Based on the unique properties and powerful scanning capabilities of quantum entanglement states, the system quickly and comprehensively scans all electrical appliances in the warehouse;

[0080] Obtain the quantum encoding and detailed status information of each appliance, including the storage location, usage status, and whether there is damage, etc.;

[0081] Compare the appliance information obtained from the scan with the inventory information pre-stored in the system in detail and precisely. If differences are found, the system will automatically mark them and conduct further analysis and processing;

[0082] Present the results of the inventory count clearly and intuitively in the form of a holographic projection.

[0083] During the quantum scanning process, obtain the quantum encoding and detailed status information of each appliance, including the storage location, usage status, and whether there is damage, etc. This quantum scanning method is efficient, accurate, and comprehensive, capable of obtaining a large amount of appliance information in a short time, and through the holographic projection interface, checking and processing the inventory count results, promptly discovering and solving problems existing in inventory management, and ensuring the accuracy and reliability of inventory information.

[0084] In this embodiment, the quantum encoding is bound to the basic information and warehousing time of the appliance and stored in the database, providing a reliable identifier for subsequent precise management and tracking of the appliance.

[0085] The quantum encoding is a unique identifier assigned to each electrical appliance by the quantum entanglement state generation module. The quantum encoding has uniqueness and non-replicability, ensuring that the identity information of each appliance is unique in the system.

[0086] In this embodiment, the sensor module monitors the movement of the appliance in real time. When the appliance leaves a specific area of the warehouse, the sensor promptly feeds back the information to the system, and the system automatically updates the inventory information.

[0087] The sensor module precisely detects whether the appliance has left the specific area through devices such as displacement sensors and RFID sensors.

[0088] In this embodiment, the quantum scanning method is efficient, accurate, and comprehensive, capable of obtaining a large amount of appliance information in a short time and presenting the inventory count results through the holographic projection interface.

[0089] Compare the appliance information obtained from the scan with the inventory information pre-stored in the system in detail and precisely. If differences are found, the system will automatically mark them and conduct further analysis and processing. The inventory count results are presented through the holographic projection interface, facilitating verification and processing by the management personnel.

[0090] The usage process of the above-mentioned holographic projection interactive power grid electrical appliance storage system for inbound, outbound, and storage in the warehouse based on quantum entanglement states is as follows:

[0091] Step 1: The quantum entanglement state generation module generates a stable and accurate quantum entanglement state through a quantum computing device, providing a quantum basis or quantum signal for the holographic projection module and the sensor module;

[0092] Step 2: The holographic projection module uses optical projection technology to comprehensively feedback the detailed relevant information of the electrical appliances and the precise spatial layout of the warehouse to the user in the form of a holographic projection;

[0093] Step 3: The interaction module conducts real-time interaction with the holographic projection module through gesture operations or voice commands to achieve rapid query, precise positioning, and inbound and outbound operations of electrical appliances, and transmits the operation instructions to the data processing module for processing;

[0094] Step 4: The gravity sensor continuously monitors the weight change of the appliance, collecting data on whether there is abnormal loss or addition of the appliance;

[0095] Step 5: The displacement sensor accurately tracks the position movement of the appliance, collecting the position movement data of the appliance;

[0096] Step 6: The RFID sensor quickly and accurately identifies the identity information of the appliance, realizing rapid positioning and management of the appliance;

[0097] Step 7: Establish advanced data processing algorithms and intelligent analysis models to screen, integrate, mine, and analyze the data collected by the sensors;

[0098] Step 8: Based on the established algorithms and models, conduct precise management of electrical appliances, including accurate statistics of inventory quantities, real-time monitoring of appliance status, and optimized adjustment of storage locations;

[0099] Step 9: Based on the analysis of the data, conduct intelligent scheduling of the warehouse, reasonably arranging the inbound and outbound order and storage location of the appliances.

[0100] To implement the holographic projection interactive power grid electrical appliance storage system and method for inbound, outbound, and storage in the warehouse based on quantum entanglement states, the hardware deployment of the system is specifically as follows:

[0101] Deployment of the quantum entanglement state generation device: At the central position of the warehouse, carefully install a high-performance and high-stability quantum entanglement state generation device. Through reasonable layout and installation, ensure that the device can stably generate high-quality quantum entanglement states, providing a reliable quantum basis for the operation of the entire system. At the same time, conduct regular maintenance and detection of the device to ensure the stability and reliability of its performance;

[0102] Deployment of holographic projection equipment: On the top and walls of the warehouse, install holographic projection equipment reasonably according to the actual size and layout characteristics of the warehouse. Through precise angle adjustment and range setting, ensure that the holographic projection can cover the entire warehouse space and can display holographic images clearly and accurately. At the same time, equip high-resolution display devices and advanced projection technologies to improve the quality and effect of holographic projection;

[0103] Deployment of sensors: Install various types of sensors on each shelf, storage location and every electrical appliance in the warehouse. For gravity sensors, select high-precision models to ensure accurate detection of the weight change of the appliance; displacement sensors are required to have high sensitivity and accurate positioning ability to be able to monitor the position movement of the appliance in real time; RFID sensors should have the functions of fast identification and accurate reading to ensure timely acquisition of the identity information of the appliance. Through reasonable sensor layout and installation, realize all-round and real-time monitoring of electrical appliances in the warehouse;

[0104] Deployment of data processing servers: Configure high-performance servers as the hardware support for the data processing module. The server should have powerful computing capabilities, large-capacity storage devices and high-speed data transmission interfaces to meet the system's requirements for real-time processing and storage of large amounts of data. At the same time, establish a reliable data backup and recovery mechanism to ensure the security and integrity of the data.

[0105] In order to implement a holographic projection interactive power grid electrical appliance inbound, outbound and storage warehouse storage system and method based on quantum entanglement states, the software system development is specifically as follows:

[0106] Development of quantum entanglement state control software: Develop powerful, stable and reliable quantum entanglement state control software. This software should have the ability to accurately generate, flexibly manage and effectively control quantum entanglement states, and be able to realize efficient encoding and decoding of electrical appliance information. Through optimizing algorithms and technical means, improve the generation efficiency and stability of quantum entanglement states to ensure that the system can achieve reliable data transmission and processing at the quantum level;

[0107] Development of holographic projection software: Design advanced holographic projection software. This software can accurately convert the detailed information of electrical appliances and the spatial data of the warehouse to generate high-quality holographic images. At the same time, achieve seamless docking with the interaction module, be able to quickly respond to user operation instructions, and provide a smooth and natural interaction experience. Through optimizing the graphics rendering algorithm and display technology, improve the clarity and realism of holographic projection;

[0108] Development of sensor data acquisition and processing software: Write efficient and intelligent sensor data acquisition and processing software. This software should be able to collect the data uploaded by sensors in real time and accurately, and conduct in-depth analysis and processing of the data. By applying advanced data mining and analysis algorithms, valuable information is extracted to achieve real-time update of inventory information and real-time monitoring of appliance status. At the same time, establish a data anomaly detection mechanism to timely detect and handle data anomaly situations;

[0109] Development of interactive software: Develop interactive software with rich functions and easy to use. This software should support various interaction methods, including gesture recognition, voice recognition, etc., and be able to accurately recognize the operation instructions of users. By optimizing the interaction algorithm and user interface design, the accuracy and convenience of interaction are improved, enabling users to easily and naturally interact with the holographic projection. At the same time, establish a user feedback mechanism to continuously optimize the performance and user experience of the interactive software.

[0110] In summary, the advantages of the present invention are as follows: The deep integration application of quantum entanglement state and holographic projection technology in the field of power appliance warehousing management realizes highly visualized and intelligent warehousing management.

[0111] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification is only the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A holographic projection interactive power grid electrical appliance inbound, outbound and storage warehouse storage system based on quantum entanglement states, characterized in that, Including: A quantum entanglement state generation module that generates a quantum entanglement state through a quantum computing device to provide a quantum basis or quantum signal for the holographic projection module and the sensor module; A holographic projection module that feeds back information related to electrical appliances and the spatial layout of the warehouse to the user in the form of a holographic projection through optical projection technology; An interaction module that realizes queries, positioning, and inbound and outbound operations of electrical appliances through gesture operations or voice commands; A sensor module that collects the status information and position information of electrical appliances in real time and transmits the data to the data processing module through a communication link; A data processing module that processes and analyzes the data collected by the sensor and various data generated during the interaction with the holographic projection, and displays the data in the form of a holographic projection.

2. The holographic projection interactive power grid electrical appliance inbound, outbound and storage warehouse storage system based on quantum entanglement state according to claim 1, characterized in that, The interaction module interacts with the holographic projection module in real time through gesture operations or voice commands to realize queries, positioning, and inbound and outbound operations of electrical appliances, and transmits the operation instructions to the data processing module for processing.

3. The holographic projection interactive power grid electrical appliance inbound, outbound, storage and warehouse storage system based on quantum entanglement state according to claim 1, wherein The sensor module specifically includes: A gravity sensor that monitors the weight change of the appliance in real time and collects data on whether there is abnormal loss or addition of the appliance; A displacement sensor that accurately tracks the position movement of the appliance and collects the position movement data of the appliance; An RFID sensor that identifies the identity information of the appliance to realize the positioning and management of the appliance; Among them, the sensor module performs data interaction with the data processing module through a quantum entanglement state signal, collects the status information and position information of electrical appliances in real time, and transmits the data to the data processing module through a communication link.

4. The holographic projection interactive power grid electrical appliance inbound, outbound and storage warehouse storage system based on quantum entanglement state according to claim 1, characterized in that, The processing process of the data processing module specifically includes the following steps: Establish a data processing algorithm and an intelligent analysis model to screen, integrate, mine, and analyze the data collected by the sensor; Manage electrical appliances based on the established algorithm and model, including statistics of inventory quantity, real-time monitoring of appliance status, and optimization and adjustment of storage locations; Based on the analysis of the data, perform intelligent scheduling of the warehouse, and reasonably arrange the inbound and outbound order and storage location of the appliances.

5. A holographic projection interactive power grid electrical appliance warehousing method based on quantum entanglement states, characterized in that, Including the following steps: Prepare for the inbound of electrical appliances into the warehouse; The quantum entanglement state generation module assigns a unique quantum code to the inbound electrical appliance, binds the quantum code with the basic information and inbound time of the appliance, and stores it in the database; The holographic projection module displays the information of the inbound appliance in the form of a holographic image and recommends the optimal storage location based on the real-time storage situation of the warehouse and intelligent algorithms; The sensor module monitors the placement of the appliance in real time. If the appliance is not placed in the correct position, the sensor issues an alarm and prompts the correct storage location in the holographic projection.

6. A method for the out-of-warehouse of holographic projection interactive power grid electrical appliances based on quantum entanglement states, characterized in that, Including the following steps: The management staff submits an outbound application through the interaction module, inputting information such as the name and model of the appliance; The holographic projection module locates the specific position of the appliance in the warehouse according to the input information and displays it in the form of a holographic projection. The management staff conducts the outbound operation according to the instructions of the holographic projection, and the sensor module monitors the movement of the appliances in real time; When the appliance leaves a specific area of the warehouse, the sensor feeds back the information to the system, and the system automatically updates the inventory information, recording the outbound time and status of the appliance.

7. A holographic projection interactive power grid electrical appliance inventory counting method based on quantum entanglement states, characterized in that, It includes the following steps: Based on the unique properties and powerful scanning ability of the quantum entanglement state, the system quickly and comprehensively scans all the electrical appliances in the warehouse; Obtain the quantum coding and detailed status information of each appliance, including the storage location, usage status, whether there is damage, etc. of the appliance; Compare the appliance information obtained from the scan with the inventory information pre-stored in the system. If any differences are found, the system will automatically mark them and conduct further analysis and processing; Display the result of the inventory in the form of a holographic projection.

8. The holographic projection interactive power grid electrical appliance warehousing method based on quantum entanglement state according to claim 5, wherein The quantum coding is bound to the basic information and inbound time of the appliance and stored in the database, providing a reliable identifier for the subsequent management and tracking of the appliance.

9. The holographic projection interactive power grid electrical appliance outbound method based on quantum entanglement state according to claim 6, wherein The sensor module monitors the movement of the appliance in real time. When the appliance leaves a specific area of the warehouse, the sensor promptly feeds back the information to the system, and the system automatically updates the inventory information.