Energy optimization allocation method for multi-energy complementary parks considering power-to-gas planning
A configuration method and energy optimization technology, applied in the direction of electrical program control, computing, data processing applications, etc., can solve the problems of insufficient consideration of the diversity of system equipment types, simplification of objective functions, failure of system energy supply efficiency and DG output Utilization and other issues to achieve the effect of reducing system energy supply costs, realizing coordinated and complementary utilization, and improving performance
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[0072] 1. Construction of a double-layer multi-objective optimal configuration model for the comprehensive energy supply center of the multi-energy complementary park
[0073] 1.1 Analysis of energy flow characteristics of multi-energy complementary parks
[0074] As a complex energy system, the multi-energy complementary park involves the production, transfer, storage and utilization of electricity / heat / cold multiple energy sources. It has the characteristics of complex load characteristics, large load demand, and high energy supply efficiency. For a typical multi-energy complementary park, its system usually includes energy production, conversion, transmission, storage and utilization units. Among them, the energy production unit usually includes wind power (wind turbine, WT), photovoltaic (photovoltaic, PV), micro-turbines (micro-turbines, MT) and gas-fired boiler (GB), etc.; the energy conversion unit contains heat pump (heatpump, HP), air conditioner (air conditioner, AI...
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