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Since the energy people need has a strong temporal and spatial nature, in order to use energy rationally and improve the utilization rate of energy, it is necessary to use a device to collect and store the excess energy that is not used for a period of time in some way, and then extract and utilize it at the peak of use, or transport it to places where energy is scarce.
The basic task of the energy storage system is to overcome the temporal or local differences between energy supply and demand. There are two situations in which this difference occurs. One is caused by a sudden change in energy demand, that is, there is a problem of peak load. When the load change rate increases, the energy storage method can play a role in regulation or buffering. Since the investment cost of the energy storage system is lower than that of building a peak load power plant, although the energy storage device will have energy storage losses, it can still reduce fuel costs because the stored energy comes from the excess energy or new energy of the factory. The other is caused by reasons such as primary energy and energy conversion devices. The task of the energy storage system (device) is to balance the energy output, that is, to reduce the peak of energy output and fill the trough of output (i.e. filling the valley).
Insulators are used to install energy storage devices on battery modules. Fix and insulate wires to prevent current leakage and short circuits.