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Intelligent optimization control method of unit load based on energy storage of cold end system

A control method and unit load technology, which is applied in the direction of adaptive control, general control system, control/regulation system, etc., can solve the problems of not considering the influence of important cold-end parameters such as condenser and steam turbine work, and the decline of anti-interference ability

Inactive Publication Date: 2018-03-23
STATE GRID HEBEI ENERGY TECH SERVICE CO LTD +3
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Problems solved by technology

Due to the many simplification factors of the above model, the load prediction accuracy of the model will be reduced, and the anti-interference ability will be reduced
Specific performance: 1) The hot-end parameter directly related to the power of the unit is the outlet steam temperature of the final stage superheater of the boiler, not the middle point temperature, and the outlet steam temperature of the final stage superheater of a super (super) critical boiler is directly divided by the water-to-coal ratio In addition, the process of dynamic load change is also affected by the desuperheating amount of water sprayed by superheaters at all levels, which is not reflected in the above model; 2) The work share of the medium and low-pressure cylinders of the unit accounts for about 2 / 3 of the total power of the unit, while The working capacity of medium and low pressure cylinders is closely related to the two parameters of reheat steam pressure and reheat steam temperature, which are not reflected in the above model; 3) The above model does not take into account the important cold end parameter of the unit. Condenser vacuum ( Back pressure) Affected by various factors such as circulating water pump, vacuum pump, unit shaft seal operation, etc., the vacuum change of the condenser has a great impact on the unit load and the economy of unit operation; 4) The high and medium The low-pressure cylinders are equipped with at least 8 stages of regenerative steam extraction. During the operation, due to various reasons such as high-pressure heater (high-pressure heater) decoupling, sudden change in condensate flow, etc., the amount of regenerative cycle extraction steam at all levels will be reduced. There is a sudden change, which will affect the work of the steam turbine in a short period of time (the rapid adjustment method of condensate throttling load that has appeared in recent years uses this effect), and the above model cannot reflect

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Embodiment Construction

[0030] In order to deepen the understanding of the present invention, the present invention will be described in detail below in conjunction with the accompanying drawings. This embodiment is exemplary and is only used to explain the present invention and not limit the scope of protection.

[0031] An intelligent optimal control method for unit load based on the cold end system. The method first establishes a supercritical unit load characteristic neural network prediction model, and uses the historical operation data of the unit to train and verify the prediction model, and then uses the prediction model in the unit. The cold-end energy storage system is predicted and optimized in the dynamic load change stage and load stabilization stage, and then the deviation between each optimization result and the original control instruction is superimposed on the corresponding control signal as a compensation signal to implement optimal control of the unit.

[0032] The above-mentioned ...

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Abstract

The invention relates to an intelligent optimization control method of a unit load based on energy storage of a cold end system. The method comprises the steps of (1) establishing a neural network prediction model of load characteristics of a supercritical unit; (2) using historical operating data of the unit to train and verify the prediction model; (3) using the prediction model to predict and optimize a cold end energy storage system during a dynamic variable load phase and a load stabilizing phase of the unit; and (4) taking the deviation between each optimization result and an original control command as a compensation signal, and superimposing the compensation signal onto a corresponding control signal to implement optimization control of the unit. The method of the invention can improve the control level of the unit load and ensure the safe and reliable operation of the thermal power unit.

Description

technical field [0001] The invention belongs to the technical field of power generation, and in particular relates to an intelligent optimization control method for unit load based on cold-end system energy storage. Background technique [0002] Large-capacity ultra-(ultra)critical coal-fired units have gradually become the main unit of the power grid due to their obvious advantages in energy saving, consumption reduction and environmental pollution reduction. The continuous improvement of power supply quality indicators of the power grid requires that large-capacity super (super) critical units should have automatic generation control (AGC) and other functions, and also put forward high requirements for the load response rate and adjustment accuracy of supercritical units ( The assessment of the two detailed rules requires that the load change per minute can reach 1.5% to 2% of the rated load of the unit or even higher). Since the coordinated control system (CCS) needs to ...

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Application Information

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IPC IPC(8): G05B13/04
CPCG05B13/042
Inventor 殷喆刘永红彭钢张洪涛高志存徐欣航
Owner STATE GRID HEBEI ENERGY TECH SERVICE CO LTD
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