Performance allocation DApp system based on confidence level weighted integration operator
A confidence level and confidence technology, applied in the blockchain field, can solve problems such as easy tampering and insecure performance evaluation data, and achieve the effect of safe performance evaluation data storage
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Embodiment 1
[0056] The embodiment of the present invention provides a performance distribution DApp system based on confidence level weighted integrated operators, as shown in the accompanying drawings figure 1 As shown, the structure of the system mainly includes: a hardware structure and a software structure, the hardware structure is a distributed server, and the software structure is a block chain module, a smart contract module, and a client module.
[0057] Wherein, the blockchain module is a private blockchain built within an enterprise, which exists as a software backend of the system and is responsible for storing system data and running smart contracts.
[0058] Among them, the hardware structure is a distributed server, and the distributed server is the hardware environment for the operation of the blockchain. The blockchain does not have a centralized server, and each blockchain node can work as a server node.
[0059] Among them, the smart contract module is deployed in the b...
Embodiment 2
[0082] The present invention provides a performance distribution DApp system based on confidence level weighted integrated operators, and realizes a more fair, just and open enterprise performance distribution management mode.
[0083] In order to achieve the purpose of the above invention, the present invention adopts the following technical solution: a performance distribution DApp system based on a confidence level weighted integrated operator, characterized in that: the specific implementation steps of the performance distribution DApp system are:
[0084] Step 1: Build a private blockchain environment within the enterprise;
[0085] Step 2: Create a smart contract;
[0086] Step 3: Write the performance appraisal and distribution execution program based on the confidence level weighted integrated operator in the smart contract;
[0087] Step 4: Deploy the smart contract to the blockchain module;
[0088] Step 5: Write the client interface, and design the communication t...
Embodiment 3
[0122] In this embodiment, the calculation method of the amount of performance salary and value reward salary is the same as that of Embodiment 1 or Embodiment 2.
[0123] The sum of the amount of performance salary and value reward salary and salary constitutes the total salary of the employee.
[0124] In this embodiment, the distributed server is connected to the mobile smart terminal carried by the employee through the Internet, and the mobile smart terminal is equipped with a GPS module to obtain the employee's location information in real time and send it to the smart contract module;
[0125] The smart contract module obtains the employee's actual attendance days based on the employee's location information.
[0126] The smart contract module uses the following formula to obtain the final total compensation of employees.
[0127] The final total remuneration = the actual number of days of attendance / the number of days that should be present * total remuneration.
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