Energy optimal scheduling method and system for new energy system based on multi-agent union
A scheduling method and energy optimization technology, applied in resources, data processing applications, instruments, etc., can solve problems such as complex optimal scheduling, and achieve the goal of ensuring energy balance, improving power supply and power quality, and promoting local consumption Effect
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Embodiment 1
[0055] This embodiment proposes a new energy system energy optimization scheduling method based on multi-agent union, such as figure 1 shown, including the following process:
[0056] S1: Obtain various historical data and perform data preprocessing.
[0057] In this embodiment, data standardization is performed on the acquired historical power supply of the distributed energy station, the historical period power purchase price coefficient and historical period power sales price coefficient of the dispatch management system, and the user's proportion of new energy consumption, that is, Conventional Min-max normalization methods are employed to enable metrics of different units or magnitudes to be compared and weighted.
[0058] S2: Establish a multi-agent energy dispatch model.
[0059] The multi-agent energy scheduling model constructed in this embodiment includes a user power consumption model, a distributed energy station energy supply model, and a dispatch management sys...
Embodiment 2
[0126] This embodiment provides a new energy system energy optimization dispatching system based on multi-agent union, including:
[0127] The model building module is configured to build a multi-agent energy dispatch model, the multi-agent energy dispatch model includes a user power consumption model, a distributed energy station energy supply model and a dispatch management system model; the user power consumption model is designed to maximize new The proportion of energy consumption and the minimization of energy expenditure are the objective functions, and are constructed with the range of electricity demand as constraints; the distributed energy station energy supply model takes maximizing capacity utilization as the objective function, and uses the power supply Constraints and output balance constraints are constructed as constraints; the dispatch management system model takes optimal energy supply and demand matching and minimizing loss costs as objective functions, and ...
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