Energy-saving and consumption-reducing system based on cloud computing server and compensation method thereof
A cloud computing server and compensation method technology, applied in the field of cloud computing, can solve the problems of heavy investment in power equipment and air conditioning systems, less rational use of resources, and high cloud computing costs, so as to compensate for server abnormalities and reduce energy consumption. , to ensure the effect of normal operation
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Embodiment 1
[0044] Embodiment 1: as Figure 1-5 As shown, the present invention provides a technical solution, an energy-saving and consumption-reducing system based on a cloud computing server, including a model building module, an energy consumption monitoring module, an energy consumption optimization calculation module, a start-stop module, a load balancing module, and a data cache module and timing module;
[0045] The model construction module is connected with the energy consumption monitoring module, the energy consumption optimization calculation module is respectively connected with the energy consumption monitoring module, the load balance module and the start-stop module, and the data cache module is connected with the start-stop module and the timing module respectively.
[0046] According to the above technical solution, the energy consumption monitoring module includes a monitoring unit, a data processing unit and a triggering unit;
[0047] The monitoring unit monitors th...
Embodiment 2
[0059] Embodiment 2: as figure 1 with 7 As shown, the present invention provides a technical solution. The present invention provides a technical solution, a compensation method for energy saving and consumption reduction based on a cloud computing server. The compensation steps are as follows:
[0060] S1. When the load of the cloud computing server is too large, the server hardware is first cooled by external physical methods, and the DC high-voltage power distribution battery is used for auxiliary power supply;
[0061] S2, and then through the start-stop module of the system to close the infrequently used modules;
[0062] S3. When the load starts to decrease, turn on the infrequently used modules in turn;
[0063] S4. Cut off the DC high-voltage power distribution battery when the load is reduced to the normal range;
[0064] S5. Charging the DC high-voltage power distribution battery.
[0065] According to the above technical solution, the external physical method is...
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