A method and system for establishing a steady-state equivalent circuit of a cogeneration system
An equivalent circuit and combined heat and power technology, applied in the fields of electrical digital data processing, instruments, calculations, etc., can solve problems such as stagnation, incomplete thermoelectric analogy of the model, and inability to represent the heat flow loop current loop, etc.
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Embodiment 1
[0039] This embodiment discloses a method for establishing a steady-state equivalent circuit of a combined heat and power system, aiming at a combined heat and power system composed of a proton exchange membrane fuel cell (Proton Exchange Membrane Fuel Cell, PEMFC) stack, an electrical load and a thermal load , the fuel cell stack works to generate electric energy and heat energy to supply electric load and heat load. Such as figure 1 As shown, establish its steady-state equivalent circuit. The equivalent circuit realizes the unified characterization of heat and power, which can be used for the control strategy design of combined heat and power systems, or the model analysis of complex combined heat and power systems.
[0040] Specifically include the following steps:
[0041] Equivalent treatment is carried out for the PEMFC stack which is both a power source and a heat source. Since the PEMFC stack emits direct current, it can be equivalent to a direct current source that...
Embodiment 2
[0051] The purpose of this embodiment is to provide a system for establishing a steady-state equivalent circuit of a combined heat and power system, including a memory, a processor, and a computer program stored in the memory and operable on the processor, and the processor executes the program When performing the following steps:
[0052] Equivalent treatment for a proton exchange membrane fuel cell stack that is both a power source and a heat source:
[0053] Based on the proton exchange membrane fuel cell stack, the output is direct current, which is equivalent to a direct current source that emits a constant current;
[0054] The heat energy taken away by the cooling system is positively related to the power generated by the proton exchange membrane fuel cell stack, so its heat flow is equivalent to a controlled voltage source, where the value of the controlled voltage source represents the initial temperature of the heat flow;
[0055] Using the method of data fitting, t...
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