Enterprise electrical energy method and system based on blockchain
An electric energy, blockchain technology, applied in the blockchain field, can solve problems such as inability to determine the authenticity of data content and sources, large economic losses, and deviations in quantitative data.
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Embodiment 1
[0037] see figure 1 , figure 1 A schematic diagram of the steps of a blockchain-based enterprise power energy method provided by the embodiment of the present invention is as follows:
[0038] Step S100, the transaction sender initiates a transaction request to the transaction receiver on the blockchain network, encrypts the parent transaction on the chain with the receiver's public key, and obtains the transaction hash;
[0039] In some implementations, when creating a transaction, the transaction sender A initiates a transaction request to the transaction receiver B on the blockchain network, encrypts the parent transaction on the chain with the public key of the receiver B, and obtains the transaction hash HashPrevBlock, HashPrevBlock Combining with the private key of the sender A and then performing an asymmetric encryption operation, the result returns the digital signature Signature of the transaction and sends it to the transaction recipient B.
[0040] Step S110, the...
Embodiment 2
[0048] see figure 2 , figure 2 A schematic diagram of the detailed steps of a block chain-based enterprise power energy method provided by the embodiment of the present invention is as follows:
[0049] Step S200, acquire the basic data of the enterprise's electric energy, extract the characteristics of the enterprise's electric energy, construct a characteristic data set, use the load analysis algorithm to classify the groups, distinguish and analyze the operation status of each electrical equipment, and generate a record log.
[0050] Step S210, the feature data set uses the power energy of the enterprise as an index, that is, the power enterprise selects different feature data with different indicators according to different classification requirements for classification, and the formed feature data includes monthly electricity consumption and annual electricity consumption;
[0051] In step S220, the characteristic data set takes the composition of the electric energy l...
Embodiment 3
[0062] see image 3 , image 3 It is a schematic diagram of a block chain-based enterprise power energy system module provided by the embodiment of the present invention. It looks like this:
[0063] The encryption module 10 is used for the transaction sender to initiate a transaction request to the transaction receiver on the blockchain network, and encrypt the parent transaction on the chain through the receiver's public key to obtain the transaction hash;
[0064] The broadcast module 20 is used to broadcast the new transaction created by the transaction sender to all nodes in the P2P network;
[0065] The verification module 30 is used to broadcast the block containing the transaction and the time stamp generated by the attached block to other nodes in the entire network in the P2P network, and each node that is broadcasted verifies the block;
[0066] The synchronization module 40 is used for making the block a part of the block chain after other nodes in the P2P netwo...
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