Energy dispersion and allocation system and method

By using a distributed energy allocation system and consortium blockchain technology, the problem of poor coordination in multi-entity energy dispatching has been solved, achieving fair, just, efficient, and secure resource allocation. This addresses the issue of poor dispatching coordination in existing technologies and enables efficient interaction and optimized allocation of resources.

CN121328958APending Publication Date: 2026-01-13STATE GRID ZHEJIANG ELECTRIC POWER CO LTD JIAXING POWER SUPPLY CO
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Patent Information

Application Number
CN202411983494.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-13

AI Technical Summary

Technical Problem

The existing multi-entity energy dispatching system suffers from poor coordination, unfair distribution of benefits, insufficient resource utilization, and difficulty in solving coordination optimization models.

Method used

The system employs a decentralized energy allocation system, which includes an energy sharing terminal, a shared dispatch platform, a digital display platform, a decentralized allocation module, and an allocation accounting module. Data is encrypted through a consortium blockchain, and the decentralized exchange model takes into account the needs and preferences of both parties in the resource exchange. Private and public ledgers are set up to record allocation information, achieving decentralization, trustlessness, and high security.

Benefits of technology

It reduces intermediary costs in the allocation process, ensures fairness and impartiality, achieves efficient interaction and optimal allocation of resources, and features decentralization and high security.

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Patent Text Reader

Abstract

The system comprises an energy sharing end which is provided with a plurality of energy sharing units which perform Internet of Things with an energy sharing scheduling platform; the energy sharing scheduling platform gives the control right to the energy sharing unit to the registered user; the energy digital display platform is used for visualizing the energy supply requests and the energy consumption requests of the registered users and publicizing the allocation among the registered users; the decentralized allocation module is used for providing an allocation environment for registered users; the allocation bookkeeping module is used for recording allocation; the registered user side is provided with a plurality of registered users and provides registration and login environments; the energy digital display platform, the registered user side, the decentralized allocation module and the allocation bookkeeping module serve as nodes to be added into the alliance chain for data encryption; according to the invention, reasonable energy scheduling is carried out on different user main bodies and different energy supply units, and the energy utilization efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of energy decentralized allocation, in particular to an energy decentralized allocation system and method. BACKGROUND

[0002] The energy digital display platform is a key component of the development of energy digital economy, a product of the integration of traditional energy infrastructure and digital technology, and a transformation and upgrading of traditional energy infrastructure.

[0003] Therefore, how to coordinate the energy transactions of different user subjects has become a key problem that needs to be solved for the current energy digital platform. Although there are some centralized coordination control strategies, the traditional top-down single subject decision-making centralized control strategy faces problems such as unfair distribution of benefits, insufficient utilization of resources, and difficulty in solving the coordination optimization model. Under this background, how to build a multi-subject energy transaction system, propose an energy transaction method based on demand relationship and value contribution, and realize efficient energy interaction, optimized resource allocation, and reasonable value distribution has become an inevitable requirement for multi-subject energy transaction. SUMMARY

[0004] The present application solves the problem of poor coordination of multi-subject energy scheduling in the prior art, and proposes an energy decentralized allocation system and method to reasonably schedule energy for different user subjects and different energy supply units, thereby improving energy utilization efficiency.

[0005] To achieve the above-mentioned purpose, the following technical scheme is proposed: An energy decentralized allocation system, comprising: An energy sharing end, provided with a plurality of energy sharing units connected to an energy sharing scheduling platform through the Internet of Things; An energy sharing scheduling platform, which gives registered users control over the energy sharing units; An energy digital display platform, which visualizes the energy supply requests and energy use requests of registered users and publicizes the allocation between registered users; A decentralized allocation module, which provides an allocation environment for registered users; An allocation accounting module, which records the allocation; A registered user end, provided with a plurality of registered users, which provides a registration and login environment; The energy digital display platform and the registered user end, as well as the decentralized allocation module and the allocation accounting module, are nodes added to the alliance chain for data encryption.

[0006] The present application uses a decentralized exchange mode, considers the demand preferences of both parties in resource exchange, and records resource allocation, thereby reducing the intermediary cost of the allocation process, ensuring fairness, and making resource allocation decentralized, trustless, and highly secure.

[0007] As preferred, the deployment accounting module is provided with a private ledger and a public ledger, private data in the deployment information is recorded in the private ledger, and public data is recorded in the public ledger, the public ledger is uploaded to the energy digital display platform, and the private ledger is fed back to the registered user.

[0008] The deployment accounting module of the present application is provided with two ledgers, namely a private ledger and a public ledger, the private ledger is used to record private data in the deployment information, and the public ledger is used to record public data in the deployment information, after the deployment is completed, the private ledger recording the private data is uploaded to the registered user, and the public ledger recording the public data is uploaded to the energy digital display platform. The function of setting a private ledger in the present application is to leave evidence when there is a dispute in the public ledger, thereby avoiding disputes.

[0009] As preferred, the energy sharing unit is provided with a control program and a control right list, the registered users on the control right list enjoy the control right of the control program, and the energy sharing scheduling platform adds or deletes the registered users from the control right list.

[0010] The energy sharing unit of the present application is provided with a control program, the control program is correspondingly provided with a control right list, the energy sharing scheduling platform is used to add the registered users to the control right list, or delete the registered users from the control right list, only the registered users on the control right list enjoy the control right of the control program.

[0011] As preferred, the energy sharing unit includes hydrogen energy or electric energy or water energy or natural gas.

[0012] The energy sharing unit of the present application includes one or more of hydrogen energy, electric energy, water energy, and natural gas. Each registered user can be correspondingly provided with multiple energy sharing units, and the types of the multiple energy sharing units are not limited.

[0013] As preferred, the energy supply request and the energy use request include the energy type of energy supply or energy use and the expected exchange equivalent.

[0014] The energy supply request of the present application should include the energy type of energy supply, and the expected exchange equivalent for exchanging the energy. The energy use request of the present application should include the energy type of energy use, and the equivalent for providing the energy for exchanging the energy. The equivalent includes energy or carbon credit or other valuable resources.

[0015] As preferred, the deployment information includes the exchanged equivalent, the control time of the energy sharing unit, the maximum output rate of the energy sharing unit, and the total output amount.

[0016] The deployment information of the application includes exchanged equivalents, maximum output rate of the energy sharing unit, total output of the energy sharing unit and control time of the energy sharing unit.

[0017] An energy decentralized deployment method using the above energy decentralized deployment system, comprising the following steps: The alliance chain environment is constructed, and the energy digital display platform, the registered user end, the decentralized deployment module and the deployment accounting module are taken as nodes of the alliance chain. The registered user registers and logs in on the registered user end, and the registered user end allocates a unique corresponding digital tag; The registered user publishes the energy use or supply request on the energy digital display platform; The registered user makes a deployment request according to the energy use or supply request, and the energy digital display platform encrypts and stores the deployment information after the deployment is completed.

[0018] As a preferred, when the energy supply request is published on the energy digital display platform, the specific process is as follows: The energy supply registered user makes an energy supply request; The registered user connects the energy sharing unit to which the registered user belongs to the energy sharing scheduling platform through the Internet of Things; The energy sharing scheduling platform newly creates a control right list and sends the control right list to the energy digital display platform; The energy digital display platform publicly displays the energy supply request.

[0019] The specific process of the registered user of the application publishing the energy supply request is as follows: The energy supply registered user makes an energy supply request on the energy digital display platform; After the energy digital display platform receives the energy supply request, the energy supply registered user first connects the energy sharing unit to which the energy supply registered user belongs to the energy sharing scheduling platform, and the energy sharing scheduling platform is connected to the energy sharing unit through the Internet of Things; The energy sharing scheduling platform newly creates a control right list and sends the control right list to the energy digital display platform; After the energy digital display platform receives the control right list, the energy supply request of the energy supply registered user is publicly displayed.

[0020] As a preferred, when the energy supply request is published on the energy digital display platform, the specific process is as follows: The energy supply registered user makes an energy supply request; It is judged whether there is a deployment request within a set time, if yes, the deployment is made, and if no, the energy use request is automatically revoked.

[0021] The specific process of the registered user of the application publishing the energy supply request is as follows: The energy supply registered user makes an energy supply request on the energy digital display platform; The energy digital display platform judges whether there is other registered user's allocation request within a set time, if not, it is considered as overdue automatic cancellation of energy use request; if yes, it is allocated with other registered users.

[0022] When the allocation is carried out, it is judged whether the allocation request is only one, if yes, it is judged whether the allocation is successful, if not, the competitive allocation is carried out, each registered user who proposes the allocation request competes for the allocation, and then it is judged whether the allocation is successful; If the allocation is not successful, it is returned to judge whether there is an allocation request within a set time; If the allocation is successful, the allocation information is recorded on the public ledger and the private ledger respectively, the public ledger is uploaded to the energy digital display platform, and the private ledger is uploaded to the registered user; The alliance chain encrypts and stores the public ledger; The registered user who proposes the allocation request carries out the Internet of Things with the energy sharing scheduling platform, and gives up the control right; the energy sharing scheduling platform adds the energy use registered user to the newly established control right list.

[0023] As preferred, if the energy use registered user meets the energy supply request of the energy use on the energy digital display platform, the energy use registered user can propose the allocation request to the energy supply registered user, and then it is judged whether the allocation is successful.

[0024] It is judged whether the energy use registered user meets the energy supply request of the energy use on the energy digital display platform, if not, the energy use registered user proposes the energy use request again; if yes, the energy use registered user can directly propose the allocation request on the energy digital display platform, the energy digital display platform feeds back the allocation request to the energy supply registered user, and further judges whether the allocation is successful, if the allocation is successful, the allocation information is recorded on the public ledger and the private ledger respectively, the public ledger is uploaded to the energy digital display platform, and the private ledger is uploaded to the registered user; the alliance chain encrypts and stores the public ledger; the energy sharing scheduling platform adds the energy use registered user to the newly established control right list.

[0025] The beneficial effects of the present application are: the present application uses the mode of dispersed exchange, considers the demand preferences of both resource exchange parties, and records the resource allocation, reduces the intermediary cost in the allocation process, ensures fairness and justice, and makes the resource allocation have the characteristics of decentralization, trustlessness and high security. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 It is a system structure diagram of the present application.

[0027] Figure 2 It is a method flow chart of the present application. DETAILED DESCRIPTION

[0028] Embodiment 1: The embodiment provides an energy decentralized allocation system, which refers to Figure 1 , comprising an energy sharing end, an energy sharing scheduling platform, an energy digital display platform, a decentralized allocation module, an allocation accounting module and a registered user end, the energy digital display platform, the registered user end, the decentralized allocation module and the allocation accounting module are added to the consortium chain as one of the nodes of the consortium chain, and the consortium chain encrypts the data of the energy digital display platform, the registered user end, the decentralized allocation module and the allocation accounting module. The energy sharing end is provided with a plurality of energy sharing units, and the energy sharing units are connected with the energy sharing scheduling platform through the Internet of Things. The energy digital display platform is used for visually displaying the energy supply request and the energy use request of the registered user, and publicly posting the energy allocation between the registered users. The decentralized allocation module provides an allocation environment for the energy allocation between the registered users. The allocation accounting module is used for recording the information of the energy allocation between the registered users. The registered user end is used for providing a registration and login environment, and the registered user accesses the consortium chain through the registered user end to view the information of the energy digital display platform. The present application utilizes the decentralized exchange mode, considers the demand preferences of both parties of resource exchange, records the resource allocation, reduces the intermediary cost of the allocation process, ensures fairness and justice, and makes the resource allocation have the characteristics of decentralization, trustlessness and high security.

[0029] The allocation accounting module of the present application is provided with two ledgers, namely a private ledger and a public ledger, the private ledger is used for recording private data in the allocation information, and the public ledger is used for recording public data in the allocation information, when the allocation is completed, the private ledger recording the private data will be uploaded to the registered user, and the public ledger recording the public data will be uploaded to the energy digital display platform. The function of the private ledger is to provide evidence when there is a dispute in the public ledger, so as to avoid disputes.

[0030] The energy sharing unit of the present application is provided with a control program, the control program is provided with a control right list, the energy sharing scheduling platform is used for adding the registered user to the control right list or deleting the registered user from the control right list, only the registered user on the control right list has the control right of the control program.

[0031] The present application also provides an energy decentralized allocation method, which adopts the energy decentralized allocation system described above, and refers to Figure 2 , comprising the following steps: Firstly, a consortium chain environment is constructed, the energy digital display platform, the registered user end, the decentralized allocation module and the allocation accounting module are added to the consortium chain as nodes.

[0032] Second step, the user needs to register and log in as a registered user at the registered user end. When registering, the registered user end will assign a unique corresponding digital tag, and bind the digital tag with the registered user; Third step, the registered user publishes energy use request or energy supply request on the energy digital display platform according to the demand.

[0033] Third step, other registered users match the energy use request or energy supply request on the energy digital display platform according to their own needs, and submit a deployment request on the energy digital display platform after successful matching. When the deployment is completed, the energy digital display platform will encrypt and store the deployment information.

[0034] Determine whether the energy use registered user meets the energy supply request on the energy digital display platform. If not, the energy use registered user submits an energy use request again. If yes, the energy use registered user can directly submit a deployment request on the energy digital display platform. The energy digital display platform feeds back the deployment request to the energy supply registered user, further judges whether the deployment is successful, and if so, records the deployment information in the public ledger and the private ledger respectively, uploads the public ledger to the energy digital display platform, and uploads the private ledger to the registered user. The alliance chain encrypts and stores the public ledger. The energy sharing scheduling platform adds the energy use registered user to the newly created control list.

[0035] Embodiment 2: This embodiment optimizes the decentralized publishing of energy supply or energy use request of the registered user based on embodiment 1, and proposes an energy decentralized deployment system, which refers to Figure 1 , including an energy sharing end, an energy sharing scheduling platform, an energy digital display platform, a decentralized deployment module, a deployment accounting module, and a registered user end. The energy digital display platform, the registered user end, the decentralized deployment module, and the deployment accounting module are one of the nodes of the alliance chain and are added to the alliance chain. The alliance chain encrypts the data of the energy digital display platform, the registered user end, the decentralized deployment module, and the deployment accounting module. The energy sharing end is provided with a plurality of energy sharing units, and the energy sharing units are connected with the energy sharing scheduling platform through the Internet of Things. The energy digital display platform is used for visual display of the energy supply request and the energy use request of the registered user, and publicizes the energy deployment between the registered users. The decentralized deployment module provides a deployment environment for the energy deployment between the registered users. The deployment accounting module is used for recording the information of the energy deployment between the registered users. The registered user end is used for providing a registration and login environment, and the registered user accesses the alliance chain through the registered user end to view the information of the energy digital display platform. The present application uses a decentralized exchange mode, considers the demand preferences of both parties of resource exchange, records the resource deployment, reduces the intermediary cost of the deployment process, ensures fairness and justice, and makes the resource deployment have the characteristics of decentralization, trustlessness and high security.

[0036] The deployment accounting module of the present application is provided with two account books, namely a private account book and a public account book, the private account book is used for recording private data in the deployment information, and the public account book is used for recording public data in the deployment information, when the deployment is completed, the private account book recording the private data will be uploaded to the registered user, and the public account book recording the public data will be uploaded to the energy digital display platform. The function of setting the private account book is to leave evidence when there is a dispute in the public account book, so as to avoid the dispute.

[0037] The energy sharing unit of the present application is provided with a control program, the control program is correspondingly provided with a control right list, the energy sharing scheduling platform is used for adding the registered user to the control right list or deleting the registered user from the control right list, only the registered user on the control right list can enjoy the control right of the control program.

[0038] The present application also proposes an energy decentralized deployment method, using the above-mentioned energy decentralized deployment system, referring to Figure 2 , comprising the following steps: Firstly, the alliance chain environment is constructed, the energy digital display platform, the registered user end, the decentralized deployment module and the deployment accounting module are taken as nodes and added to the alliance chain.

[0039] Secondly, the user needs to register and log in to become a registered user on the registered user end, when registering, the registered user end will allocate a unique corresponding digital tag, and the digital tag will be bound with the registered user; Thirdly, the registered user publishes the energy request or the energy supply request on the energy digital display platform according to the demand.

[0040] Thirdly, other registered users match the energy request or the energy supply request on the energy digital display platform according to their own needs, and propose a deployment request on the energy digital display platform after the matching is successful, and the energy digital display platform will encrypt and store the deployment information after the deployment is completed.

[0041] The specific process of the registered user publishing the energy supply request of the present application is as follows: The energy supply registered user proposes an energy supply request on the energy digital display platform; After the energy digital display platform receives the energy supply request, the energy supply registered user first connects the energy sharing unit to which it belongs to the energy sharing scheduling platform, and the energy sharing scheduling platform and the energy sharing unit are connected through the Internet of Things; The energy sharing scheduling platform newly creates a control right list, and sends the control right list to the energy digital display platform; After the energy digital display platform receives the control right list, the energy supply request of the energy supply registered user is publicly displayed.

[0042] The specific process of the energy use request of the registered user of the present application is as follows: The energy use registered user proposes an energy use request on the energy digital display platform. The energy digital display platform judges whether there is other registered user's allocation request within a set time, if not, the energy use request is automatically revoked as overdue; if yes, the energy use request is allocated with other registered users.

[0043] When the allocation is performed, it is judged whether the allocation request is only one, if yes, it is judged whether the allocation is successful, if not, the competitive allocation is performed, the registered users of each party proposing the allocation request compete for the allocation, and then it is judged whether the allocation is successful. If the allocation is not successful, it is returned to the judgment of whether there is an allocation request within a set time. If the allocation is successful, the allocation information is recorded on the public ledger and the private ledger respectively, the public ledger is uploaded to the energy digital display platform, and the private ledger is uploaded to the registered user. The alliance chain encrypts and stores the public ledger. The registered user proposing the allocation request connects the energy sharing unit with the energy sharing scheduling platform through the Internet of Things, and gives up the control right; the energy sharing scheduling platform adds the energy use registered user to the newly established control right list.

[0044] It is judged whether the energy use registered user on the energy digital display platform meets the energy supply request of the energy use, if not, the energy use registered user proposes the energy use request again; if yes, the energy use registered user can directly propose the allocation request on the energy digital display platform, the energy digital display platform feeds back the allocation request to the energy supply registered user, and further judges whether the allocation is successful, if the allocation is successful, the allocation information is recorded on the public ledger and the private ledger respectively, the public ledger is uploaded to the energy digital display platform, and the private ledger is uploaded to the registered user; the alliance chain encrypts and stores the public ledger; the energy sharing scheduling platform adds the energy use registered user to the newly established control right list.

[0045] Embodiment 3: This embodiment limits the energy sharing unit on the basis of embodiment 2, proposes an energy dispersion allocation system, and refers to Figure 1The energy sharing end, the energy sharing scheduling platform, the energy digital display platform, the distributed allocation module, the allocation accounting module and the registered user end are included, the energy digital display platform, the registered user end, the distributed allocation module and the allocation accounting module are added to the alliance chain as one of the nodes of the alliance chain, and the data of the energy digital display platform, the registered user end, the distributed allocation module and the allocation accounting module are encrypted by the alliance chain. The energy sharing end is provided with a plurality of energy sharing units, and the energy sharing units are connected with the energy sharing scheduling platform through the Internet of Things. The energy digital display platform is used for visually displaying the energy supply request and the energy use request of the registered user, and publicly posting the energy allocation between the registered users. The distributed allocation module provides an allocation environment for the energy allocation between the registered users. The allocation accounting module is used for recording the information of the energy allocation between the registered users. The registered user end is used for providing a registration and login environment, and the registered user accesses the alliance chain through the registered user end to view the information of the energy digital display platform. The present application uses the mode of distributed exchange, considers the demand preferences of both parties of resource exchange, records the resource allocation, reduces the intermediary cost of the allocation process, guarantees fairness and justice, and makes the resource allocation have the characteristics of decentralization, trustlessness and high security.

[0046] The allocation accounting module of the present application is provided with two ledgers, namely a private ledger and a public ledger, the private ledger is used for recording private data in the allocation information, and the public ledger is used for recording public data in the allocation information, when the allocation is completed, the private ledger recording the private data will be uploaded to the registered user, and the public ledger recording the public data will be uploaded to the energy digital display platform. The function of the private ledger is to provide evidence when there is a dispute in the public ledger, so as to avoid disputes.

[0047] The energy sharing unit of the present application is provided with a control program, the control program is provided with a control right list, the energy sharing scheduling platform is used for adding the registered user to the control right list, or deleting the registered user from the control right list, only the registered user on the control right list has the control right of the control program.

[0048] The energy sharing unit of the present application includes one or more of hydrogen energy, electric energy, water energy and natural gas. Each registered user can be provided with a plurality of energy sharing units, and the types of the plurality of energy sharing units are not limited.

[0049] The energy supply request of the present application should include the energy type of energy supply and the expected equivalent exchange for exchanging the energy. The energy use request of the present application should include the energy type of energy use and the equivalent for exchanging the energy. The equivalent includes energy or carbon credit or other valuable resources.

[0050] The deployment information of the application includes exchanged equivalents, the maximum output rate of the energy sharing unit, the total output of the energy sharing unit and the control time of the energy sharing unit.

[0051] The application further provides an energy decentralized deployment method, which adopts the energy decentralized deployment system and refers to Figure 2 , and comprises the following steps: Firstly, a consortium chain environment is constructed, and the energy digital display platform, the registered user end, the decentralized deployment module and the deployment accounting module are taken as nodes and added to the consortium chain.

[0052] Secondly, the user needs to register and log in to become a registered user on the registered user end, and the registered user end will assign a unique corresponding digital label and bind the digital label with the registered user during the registration; Thirdly, the registered user publishes the energy request or the energy supply request on the energy digital display platform according to the demand.

[0053] Thirdly, other registered users match the energy request or the energy supply request on the energy digital display platform according to the demand, and propose a deployment request on the energy digital display platform after the matching is successful, and the energy digital display platform will encrypt and store the deployment information after the deployment is completed.

[0054] The specific process of the registered user publishing the energy supply request is as follows: The energy supply registered user proposes an energy supply request on the energy digital display platform; After the energy digital display platform receives the energy supply request, the energy supply registered user first connects the energy sharing unit to which the energy supply registered user belongs to the energy sharing scheduling platform, and the energy sharing scheduling platform is connected to the energy sharing unit through the Internet of Things; The energy sharing scheduling platform newly creates a control right list and sends the control right list to the energy digital display platform; After the energy digital display platform receives the control right list, the energy supply request of the energy supply registered user is publicly displayed.

[0055] The specific process of the registered user publishing the energy supply request is as follows: The energy supply registered user proposes an energy supply request on the energy digital display platform; The energy digital display platform judges whether there is a deployment request of other registered users within a set time, if not, the energy request is automatically revoked as overdue, and if yes, the energy digital display platform is deployed with other registered users.

[0056] When the deployment is performed, it is judged whether the deployment request is only one, if yes, it is judged whether the deployment is successful, if not, the deployment is performed through bidding, the registered users of each party proposing the deployment request compete for the deployment, and then it is judged whether the deployment is successful; If the allocation is unsuccessful, it is determined whether there is an allocation request within a set time; If the allocation is successful, the allocation information is recorded on the public ledger and the private ledger respectively, the public ledger is uploaded to the energy digital display platform, and the private ledger is uploaded to the registered user; The alliance chain encrypts and stores the public ledger; The registered user who proposes the allocation request connects its energy sharing unit to the energy sharing scheduling platform through the Internet of Things and hands over its control right; the energy sharing scheduling platform adds the energy-using registered user to the newly created control right list.

[0057] It is determined whether the energy-using registered user meets the energy supply request on the energy digital display platform; if not, the energy-using registered user proposes an energy-using request again; if yes, the energy-using registered user can directly propose an allocation request on the energy digital display platform, the energy digital display platform feeds back the allocation request to the energy supply registered user, further determines whether the allocation is successful, and if the allocation is successful, the allocation information is recorded on the public ledger and the private ledger respectively, the public ledger is uploaded to the energy digital display platform, and the private ledger is uploaded to the registered user; the alliance chain encrypts and stores the public ledger; the energy sharing scheduling platform adds the energy-using registered user to the newly created control right list.

Claims

1. A distributed energy allocation system, characterized in that, include: The decentralized allocation module provides an allocation environment for registered users; the allocation accounting module records the allocations. The user registration interface has several registered users and provides a registration and login environment. The energy sharing terminal is equipped with several energy sharing units that are connected to the energy sharing dispatch platform via the Internet of Things; the energy sharing dispatch platform grants registered users control over the energy sharing units; the energy digital display platform visualizes the energy supply and consumption requests of registered users and publicizes the allocation among registered users. The energy digital display platform, registered user terminal, distributed allocation module, and allocation accounting module are added as nodes to the consortium blockchain for data encryption.

2. The energy distributed allocation system according to claim 1, characterized in that, The allocation and accounting module has a private ledger and a public ledger. Private data in the allocation information is recorded in the private ledger, and public data is recorded in the public ledger. The public ledger is uploaded to the energy digital display platform, and the private ledger is fed back to the registered user.

3. The energy distributed allocation system according to claim 2, characterized in that, The allocation information includes the exchanged equivalents, the control time of the energy sharing unit, the maximum output rate of the energy sharing unit, and the total output.

4. The energy distributed allocation system according to claim 1, characterized in that, The energy sharing unit is equipped with a control program and a control rights list. Registered users on the control rights list have control rights over the control program. The energy sharing dispatch platform can add or delete registered users from the control rights list.

5. The energy distributed allocation system according to claim 4, characterized in that, The energy sharing unit includes hydrogen energy, electric energy, water energy, or natural gas.

6. An energy distributed allocation system according to any one of claims 1-5, characterized in that, The energy supply request and energy consumption request include the type of energy supplied or consumed and the equivalent value expected to be exchanged.

7. A method for distributed energy allocation, employing an distributed energy allocation system as described in any one of claims 1-5, characterized in that, Includes the following steps: Construct a consortium blockchain environment, using the energy digital display platform, registered user terminals, distributed allocation module, and allocation accounting module as nodes of the consortium blockchain; Registered users register and log in through the registration client, and the registration client is assigned a unique corresponding numerical tag; Registered users post their energy consumption or supply requests on the energy digital display platform. Registered users submit dispatch requests based on their energy consumption or supply requests. Once dispatch is completed, the energy digital display platform encrypts and stores the dispatch information.

8. The energy distributed allocation method according to claim 7, characterized in that, in When energy supply requests are distributed across different platforms on the energy digital display platform, the specific process is as follows: Registered users submit energy supply requests; Registered users connect their energy-sharing units to the energy-sharing dispatch platform via the Internet of Things (IoT). The list of newly established control rights on the energy sharing and dispatching platform is sent to the energy digital display platform; The energy digital display platform publicly displays energy supply requests.

9. The energy distributed allocation method according to claim 7, characterized in that, in When energy consumption requests are distributed across different platforms, the specific process is as follows: Registered users submit energy consumption requests; The system checks within a set time period whether there is a request for energy allocation. If so, it allocates the energy; otherwise, it automatically cancels the energy request.

10. A method for decentralized energy allocation according to claim 8 or 9, characterized in that, If a registered energy user fulfills their energy supply request on the energy digital display platform, the registered energy user can submit a dispatch request to the registered energy supplier, and then determine whether the dispatch is successful.