Intelligent power dispatching control system and method
Through data collection and analysis of the intelligent power dispatching control system, combined with the design of flip components and ventilation components, the problems of power supply and demand balance and equipment heat dissipation are solved, and the stable operation of the power system and the comfort requirements of personnel are achieved.
Patent Information
- Application Number
- CN202510565072.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2025-09-12
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing intelligent power dispatching and control system has deficiencies in regulating the balance of supply and demand in the power grid and cannot effectively respond to changes in electricity consumption at the user end. The heat dissipation equipment cannot be adjusted according to the equipment status, resulting in waste or insufficient electricity, and it is impossible to heat people when the temperature is low.
An intelligent power dispatching and control system was designed, including a dispatching console, display, control console, processor, acquisition component, heat dissipation component and ventilation component. Through data collection, analysis and processing, it can achieve power supply and demand balance adjustment. It is also equipped with a flip component and ventilation component to adjust the heat dissipation wind direction and airflow temperature to meet the needs of equipment cooling and personnel heating.
It achieves a long-term balance between power supply and demand, avoids power waste or shortage, ensures equipment cooling effect and personnel comfort, and improves the quietness and safety of the system.
Smart Images

Figure CN120638151A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of intelligent power dispatching control, and in particular to an intelligent power dispatching control system and method thereof. Background Art
[0002] In order to ensure the power supply of 750 kV and above AC transmission, large-scale power grid security and defense systems, and intelligent dispatching systems, it is often necessary to use intelligent power dispatching and control systems. The invention patent with patent application number CN202410917988.1 discloses an intelligent control system for power resources based on digital twins, establishes a load demand forecasting model based on hybrid RNN, constructs a neural network model that mixes RNN and fully connected network, learns historical time series, time characteristics, historical statistical characteristics and similarity characteristics, and solves the problem that power load demand is difficult to predict due to the grid connection of renewable energy and the increase in power demand; formulates power dispatching by using a multi-objective function optimization algorithm based on an improved particle swarm Degree decision-making, by adding a mutation strategy for high-fitness particles to improve the particle swarm algorithm, the problem that the particle swarm algorithm is prone to fall into local optimal solutions in practice is solved, thereby solving the problem that power dispatch with multiple objective optimizations is difficult to achieve. The invention patent with patent application number CN202210726372.7 discloses an intelligent reporting method and device for power emergency information, which collects equipment power data in real time and is confirmed to be correct by technical personnel during the upload process. When the reporting demand information is obtained, the transmission requirement information of the object to be reported is searched based on the reporting demand information; the emergency information is reported to the object to be reported according to the time interval corresponding to the transmission requirement information, so that the user of the object to be reported can view it. The present invention can collect and store the emergency information of the management equipment in real time, and can summarize the corresponding emergency information according to the time requirements of the reporting object's reporting needs and then intelligently report it, so as to achieve the effect of automatic reporting without manual operation, so as to improve the reporting efficiency and reduce labor costs. According to its disclosed technical solution, when the existing intelligent power dispatching and control system is in use, on the one hand, it can often only adjust the instantaneous supply and demand balance of the power grid, which is easy to cause large changes in electricity consumption at the user end in the later stage and cannot complete effective adjustment work, resulting in waste or shortage of electricity; on the other hand, the dispatching equipment needs to be cooled and cooled when working, and the existing heat dissipation fan can often only perform one-way heat dissipation work, and often cannot adjust the heat dissipation wind direction according to the heating condition of the equipment and the blockage condition of the filter, which is not conducive to ensuring the heat dissipation effect of the equipment; on the other hand, when the equipment is ventilated and cooled, heat is often wasted, and the feet of people cannot be heated when the temperature is low. Summary of the Invention
[0003] In view of the shortcomings of the existing technology, the purpose of the present invention is to provide an intelligent power dispatching control system and method thereof to solve the problems raised in the above background technology. The present invention has a novel structure and diverse functions and is suitable for intelligent dispatching of electricity to ensure the balance of power supply and demand.
[0004] In order to achieve the above-mentioned purpose, the present invention is implemented through the following technical solutions: an intelligent power dispatching and control system, including a dispatching desk and a display, a control component is installed on the dispatching desk, the control component includes a control console and a processor, a collection component is installed on the dispatching desk, the collection component includes power supply data collection and power consumption data collection, a processing component is installed on the dispatching desk, the processing component includes data storage and data transmission, a heat dissipation component is installed on the dispatching desk, the heat dissipation component includes a sleeve plate and a wind tube, a noise reduction component is installed on the sleeve plate, the noise reduction component includes a noise reduction plate and a filter, a flip component is installed on the wind tube, the flip component includes a side gear and electromagnet 1, a locking component is installed on the dispatching desk, the locking component includes a pin and electromagnet 2, and a ventilation component is installed on the dispatching desk, the ventilation component includes a bellows and a mesh cover.
[0005] Furthermore, the display is mounted on the top of the dispatching desk by bolts, the bottom of the control panel is mounted on the inner side of the dispatching desk by bolts, the top of the control panel passes through the inner wall of the dispatching desk and extends to the top of the dispatching desk, the processor is mounted on the inner wall of the bottom of the dispatching desk by bolts, the power supply data acquisition and power consumption data acquisition are both mounted on the inner side of the dispatching desk by bolts, the data storage and data transmission are respectively mounted on both sides of the dispatching desk by bolts, and the data storage and data transmission are located on the top of the power supply data acquisition and power consumption data acquisition.
[0006] Furthermore, the sleeve is installed on the top of the dispatching platform by bolts, the two sides of the air duct are clamped on the inner walls on both sides of the sleeve, a fan is installed on the inner side of the air duct, the top of the sleeve is welded to the top of the dispatching platform, the noise reduction plate and the filter are both installed on the inner wall of the top of the sleeve by bolts, and the filter is installed on the top of the noise reduction plate.
[0007] Furthermore, a slide groove is opened on the inner wall of one side of the dispatching table, the air duct is installed on the inner side of the sleeve through a rotating shaft, the gear is welded on the outer side of the air duct, the gear extends to the inner side of the slide groove, the electromagnet is welded on the inner wall of the bottom of the slide groove, a tooth plate is clamped on the inner side of the slide groove, one side of the tooth plate is clamped on the outer side of the gear, the tooth plate is engaged with the gear, and the bottom of the tooth plate is connected to the electromagnet through a spring.
[0008] Furthermore, a support sleeve is welded on the outer side of the dispatching table, the second electromagnet is welded on the inner wall of one end of the support sleeve, the pin is clamped on the inner side of the other end of the support sleeve, the pin is connected to the second electromagnet through the second spring, and a bayonet is provided on the tooth plate, and the other end of the bayonet passes through the dispatching table and extends to the inner side of the bayonet.
[0009] Furthermore, the bellows is mounted on the bottom of the dispatching platform by bolts, the bellows is communicated with the dispatching platform, the mesh cover is mounted on one side of the bellows by bolts, filter plates are mounted on both sides of the bellows by bolts, a rotating plate 1 is mounted on the bottom of one side of the bellows through a rotating shaft, and a rotating plate 2 is mounted on the bottom of the other side of the bellows through a rotating shaft, and both the rotating plate 1 and the rotating plate 2 are clamped on one side of the filter plate.
[0010] Furthermore, an electromagnet three is installed on the inner wall of the other side of the bellows by bolts, a movable plate is installed at the bottom of the electromagnet three, a connecting rod is installed at the bottom of the movable plate, a motor is installed on one side of the bellows by bolts, a screw rod is welded on the output shaft of the motor, a push plate is provided on the outer side of the screw rod, and the number of the connecting rods is 2, the bottom ends of the two connecting rods are respectively connected to the rotating plate one and the rotating plate two through a rotating shaft, and the top ends of the two connecting rods are respectively connected to the movable plate and the push plate through a rotating shaft.
[0011] Furthermore, the bottom of the electromagnet three is connected to the top of the movable plate through a spring three, the push plate is arranged on the outer side of the screw rod through a threaded sleeve, and the heating wire is installed on the inner wall of the bellows through bolts.
[0012] Furthermore, a sliding sleeve is welded on the inner wall of the bellows, one end of the sliding sleeve passes through the inner wall of the bellows and is connected to the outside of the bellows, a piston is clamped on the inner wall of the other end of the sliding sleeve, the piston is connected to the inner wall of the sliding sleeve through a spring four, a slider is clamped on the inner wall of the other end of the sliding sleeve, a cotton plug is bonded to the outer side of one end of the sliding sleeve, a switch group is installed on the inner side of the other end of the sliding sleeve, the switch group is distributed on both sides of the slider, and the other end of the sliding sleeve is connected to the inner side of the bellows.
[0013] A control method for an intelligent power dispatching control system comprises the following steps: 1) Collect power supply data and power consumption data through power supply data collection and power consumption data collection, and transmit the data to the data storage through data transmission. Then, the processor analyzes and calculates the data, and displays the analysis and calculation results on the display, and gives corresponding processing suggestions; 2) Personnel input instructions through the control panel based on the results and treatment opinions to adjust power consumption and power supply to ensure the instantaneous balance of power consumption and power supply; 3) Through power supply data collection, the number of power units turned on and the operating load are collected. At the same time, data on energy reserves are collected. Data on the operating status of new energy power and the power reserves of the power storage system are collected. Data on weather conditions and future weather conditions are collected. The processor then analyzes the overall operating load of the power supply system and the power supply adjustment threshold that can be tolerated; 4) Through electricity consumption data collection, the user's electricity consumption data of previous years is collected, and the industrial development and industrial adjustment status of the user end is collected. Then, the processor is used to analyze the user's future electricity consumption and electricity consumption fluctuation changes; 5) By analyzing the future power consumption and fluctuations of power consumption required by users, the power supply system is adjusted, and power units, energy reserves, and circuit storage are prepared in advance. At the same time, according to the weather forecast, the power supply of new energy is prepared, and traditional power generation equipment is used to allocate electricity to ensure that the supply and demand of electricity can be balanced in the long term.
[0014] Compared with the prior art, the present invention has the following beneficial effects: 1. When the intelligent power dispatching and control system is in use, it collects power supply data and power consumption data through power supply data collection and power consumption data collection, and transmits the data to the data storage through data transmission. The processor then analyzes and calculates the data, and displays the analysis and calculation results through the display, and gives corresponding processing opinions. According to the results and processing opinions, the personnel input instructions through the control console to adjust power consumption and power supply to ensure the instantaneous balance of power consumption and power supply. Through power supply data collection, the data of the number of power units turned on and the operating load are collected. At the same time, the data of energy reserve status is collected, and the data of the operating status of new energy power and the power reserve of the power storage system are collected. At the same time, the data of weather conditions and future weather conditions are collected. The processor then analyzes the overall operating load of the power supply system and the power supply adjustment threshold that it can withstand. Through electricity consumption data collection, the user's electricity consumption data in previous years is collected, and the industrial development status and industrial regulation status of the user end are collected. The processor then analyzes the user's future power consumption and power consumption fluctuation changes. Through the analysis of the user's future power consumption and power consumption fluctuation changes, the power supply system is adjusted, and the power units, energy reserves, and circuit storage are prepared accordingly in advance. At the same time, the power supply status of new energy is prepared according to the weather forecast, and traditional power generation equipment is used to allocate electricity to ensure that the supply and demand of electricity can be balanced in the long term, to avoid large changes in power consumption at the user end in the future, which may lead to power supply shortages or waste of power reserves.
[0015] 2. When the intelligent power dispatching control system is in use, the fan and electromagnet 3 are turned on. The fan generates suction to the dispatching console through the air duct, so that the air is filtered by the filter plate and then enters the bellows. The air is then blown into the sleeve through the air duct to cool the equipment in the dispatching console. The airflow passes through the noise reduction plate and the filter and flows out, ensuring the working safety of the equipment in the dispatching console, reducing the noise, improving the working quietness of the dispatching console, and reducing the interference to the operator. When the filter plate is blocked due to long-term work or the heat dissipation of the equipment on the top of the dispatching console is poor, turn on electromagnet 2. , pull the pin out of the bayonet, spring 1 pushes the tooth plate upward, the gear drives the wind tube to rotate 180 degrees, and the fan blows air downward to cool the equipment on the top of the dispatching desk, ensuring the cooling effect on the equipment on the top of the dispatching desk. At the same time, use the airflow to clean the filter plate to ensure the ventilation speed, thereby ensuring the cooling effect of the equipment in the dispatching desk and the working safety of the dispatching desk. After a period of time, turn on electromagnet 1, pull the tooth plate downward, and the wind tube rotates to its original position. Spring 2 pushes the pin into the bayonet to lock the tooth plate, and the fan again cools the dispatching desk from bottom to top.
[0016] 3. When the intelligent power dispatching and control system is in use, in winter when the temperature is low, the air duct is rotated to the downward direction, and the air passes through the filter and the noise reduction plate and is blown downward by the fan through the air duct, so that the air flow in the dispatching console cools down the equipment in the dispatching console in turn. At the same time, the air flow absorbs the temperature of the equipment and uses the fact that the processor generates more heat to enable the air flow to absorb more heat when flowing into the bellows. After the air flow flows downward to the sliding sleeve, the air in the sliding sleeve expands after the sliding sleeve absorbs heat, and the pressure generated by the air flow flowing downward in the bellows on the piston causes the piston to compress the spring four and squeeze the air in the sliding sleeve, thereby causing the air in the sliding sleeve to squeeze the slider, and the slider squeezes the switch group. The switch group controls the motor, and the motor drives the push plate upward through the screw rod, and the push plate is driven by the connecting rod The movable rotating plate 2 rotates upward, increasing the opening of the rotating plate 2 and reducing the air pressure on the piston. The slider is separated from the switch group, and the spring 3 presses the movable plate downward. The movable plate squeezes the rotating plate 1 through the connecting rod, so that the left side of the bellows is sealed, and the air flows out through the rotating plate 2 to heat the personnel's feet. The air pressure on the piston in the sliding sleeve and the heat expansion of the air in the sliding sleeve drive the slider to move left and right, thereby adjusting the opening of the rotating plate 2, and then adjusting the flow rate and temperature of the air flow, so that it can not only ensure the cooling of the dispatching desk, but also ensure that the outflowing air flow has a certain temperature to ensure the heating of the personnel's feet. At the same time, when the heat is insufficient, heating is performed through the electric heating wire to ensure the comfort of the personnel's feet and avoid the condition of frozen feet caused by sitting at the dispatching desk for a long time. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a structural diagram of an intelligent power dispatching and control system according to the present invention; Figure 2 A cross-sectional view of an intelligent power dispatching and control system according to the present invention; Figure 3 This is a schematic structural diagram of a set of intelligent power dispatching and control systems of the present invention; Figure 4 This is a structural diagram of a ring cavity of an intelligent power dispatching control system of the present invention; Figure 5 This is a structural diagram of a rotary sleeve of an intelligent power dispatching and control system of the present invention; Figure 6 This is a structural diagram of a rotary sleeve of an intelligent power dispatching and control system of the present invention; Figure 7 A schematic diagram of a control method of an intelligent power dispatching control system according to the present invention; In the figure: 1. Dispatching console; 2. Display; 3. Control console; 4. Processor; 5. Power supply data acquisition; 6. Power consumption data acquisition; 7. Data storage; 8. Data transmission; 9. Sleeve plate; 10. Air duct; 11. Noise reduction plate; 12. Filter; 13. Gear; 14. Tooth plate; 15. Electromagnet 1; 16. Spring 1; 17. Bayonet; 18. Support sleeve; 19. Bayonet pin; 20. Electromagnet 2; 21. Spring 2; 22. Filter plate; 23. Rotating plate 1; 24. Rotating plate 2; 25. Flap; 26. Electromagnet 3; 27. Spring 3; 28. Connecting rod; 29. Motor; 30. Screw; 31. Push plate; 32. Bellows; 33. Heating wire; 34. Net cover; 35. Sleeve; 36. Piston; 37. Spring 4; 38. Slider; 39. Cotton plug; 40. Switch group. DETAILED DESCRIPTION
[0018] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.
[0019] See also Figures 1 to 7The present invention provides a technical solution: an intelligent power dispatching and control system, including a dispatching console 1 and a display 2, a control component is installed on the dispatching console 1, the control component includes a console 3 and a processor 4, a collection component is installed on the dispatching console 1, the collection component includes a power supply data collection 5 and a power consumption data collection 6, a processing component is installed on the dispatching console 1, the processing component includes a data storage 7 and a data transmission 8, a heat dissipation component is installed on the dispatching console 1, the heat dissipation component includes a sleeve 9 and a wind tube 10, a noise reduction component is installed on the sleeve 9, the noise reduction component includes a noise reduction plate 11 and a filter 12, a flip component is installed on the wind tube 10, the flip component includes a side gear 13 and an electromagnet 15, the dispatching console 1 is installed A locking assembly includes a latch 19 and an electromagnet 20. A ventilation assembly is installed on the dispatching desk 1, and the ventilation assembly includes a bellows 32 and a mesh cover 34. The display 2 is mounted on the top of the dispatching desk 1 by bolts, and the bottom of the control panel 3 is mounted on the inner side of the dispatching desk 1 by bolts. The top of the control panel 3 passes through the inner wall of the dispatching desk 1 and extends to the top of the dispatching desk 1. The processor 4 is mounted on the inner wall of the bottom of the dispatching desk 1 by bolts. The power supply data acquisition 5 and the power consumption data acquisition 6 are both mounted on the inner side of the dispatching desk 1 by bolts. The data storage 7 and data transmission 8 are respectively mounted on both sides of the dispatching desk 1 by bolts. The data storage 7 and data transmission 8 are located on the top of the power supply data acquisition 5 and the power consumption data acquisition 6.
[0020] A control method for an intelligent power dispatching control system comprises the following steps: 1) Power supply data and power consumption data are collected through power supply data collection 5 and power consumption data collection 6, and the data are transmitted to data storage 7 through data transmission 8. The data are then analyzed and calculated by the processor 4, and the analysis and calculation results are displayed on the display 2, and corresponding processing suggestions are given; 2) Personnel input instructions through the control console 3 based on the results and treatment opinions to adjust the power consumption and power supply to ensure the instantaneous balance of power consumption and power supply; 3) Power supply data acquisition 5 collects data on the number of power units that are turned on and the operating load, as well as data on energy reserves, the operating status of new energy power and the power reserves of the power storage system. It also collects data on weather conditions and future weather conditions. The processor 4 then analyzes the overall operating load of the power supply system and the tolerable power supply adjustment threshold. 4) The electricity consumption data collection 6 collects the user's electricity consumption data from previous years, and collects the industrial development and industrial regulation status of the user side, and then uses the processor 4 to analyze the user's future electricity consumption and electricity consumption fluctuation changes; 5) By analyzing the future power consumption and fluctuations of power consumption required by users, the power supply system is adjusted, and power units, energy reserves, and circuit storage are prepared in advance. At the same time, the power supply of new energy is prepared according to the weather forecast, and traditional power generation equipment is used to allocate electricity to ensure that the supply and demand of electricity can be balanced in the long term, avoiding large changes in power consumption at the user end in the future, which may lead to power supply shortages or waste of power reserves.
[0021] In this embodiment, an electromagnet three 26 is installed on the inner wall of the other side of the bellows 32 by bolts, a movable plate 25 is installed at the bottom of the electromagnet three 26, and a connecting rod 28 is installed at the bottom of the movable plate 25. A motor 29 is installed on one side of the bellows 32 by bolts, a screw rod 30 is welded on the output shaft of the motor 29, and a push plate 31 is sleeved on the outer side of the screw rod 30. There are two connecting rods 28, and the bottom ends of the two connecting rods 28 are respectively connected to the rotating plate 1 23 and the rotating plate 2 24 through a rotating shaft, and the top ends of the two connecting rods 28 are respectively connected to the movable plate 25 and the push plate 31 through a rotating shaft. The bottom of the electromagnet three 26 is connected to the top of the movable plate 25 through a spring three 27, and the push plate 31 is sleeved on the screw rod 30 by a thread. On the outside, a heating wire 33 is installed on the inner wall of the bellows 32 by bolts, and a sliding sleeve 35 is welded on the inner wall of the bellows 32. One end of the sliding sleeve 35 passes through the inner wall of the bellows 32 and is connected to the outside of the bellows 32. A piston 36 is clamped on the inner wall of the other end of the sliding sleeve 35. The piston 36 is connected to the inner wall of the sliding sleeve 35 through a spring 37. A slider 38 is clamped on the inner wall of the other end of the sliding sleeve 35. A cotton plug 39 is bonded to the outer side of one end of the sliding sleeve 35, and a switch group 40 is installed on the inside of the other end of the sliding sleeve 35. The switch group 40 is distributed on both sides of the slider 38. The other end of the sliding sleeve 35 is connected to the inner side of the bellows 32. When the temperature is low in winter, the wind tube 10 is rotated to the downward direction, and the air After passing through the filter 12 and the noise reduction plate 11, the air is blown downward by the fan through the air duct 10, so that the air flow in the dispatching console 1 cools down the equipment in the dispatching console in turn. At the same time, the air flow absorbs the temperature of the equipment and uses the fact that the processor 4 generates more heat to enable the air flow to absorb more heat when flowing into the bellows 32. After the air flow flows downward to the sleeve 35, the sleeve 35 absorbs heat, causing the air in the sleeve 35 to expand, and the pressure generated by the air flow flowing downward in the bellows 32 on the piston 36 causes the piston 36 to compress the spring 37 and squeeze the air in the sleeve 35, thereby causing the air in the sleeve 35 to squeeze the slider 38, and the slider 38 squeezes the switch group 40. The switch group 40 controls the motor 29, and the motor 29 drives the push rod 30 through the screw rod 30 The plate 31 moves upward, and the push plate 31 drives the rotating plate 24 to rotate upward through the connecting rod 28, increasing the opening of the rotating plate 24 and reducing the air pressure on the piston 36. The slider 38 is separated from the switch group 40, and the spring 3 27 presses the movable plate 25 downward. The movable plate 25 presses the rotating plate 1 23 through the connecting rod 28, so that the left side of the bellows 32 is sealed, and the air flows out through the rotating plate 24 and heats the feet of the personnel. The piston 36 in the sliding sleeve 35 is subjected to air pressure and the air in the sliding sleeve 35 is heated and expanded to drive the slider 38 to move left and right, thereby adjusting the opening of the rotating plate 24, and then adjusting the flow speed and temperature of the air flow, so that it can not only ensure the cooling of the dispatching console 1, but also ensure that the outflowing air has a certain temperature.Ensure the heating of personnel's feet. When the heat is insufficient, the heating wire 33 is used to heat the personnel's feet to ensure the comfort of the personnel's feet and avoid the situation of frozen feet caused by sitting at the dispatching desk 1 for a long time.
[0022] In this embodiment, the sleeve plate 9 is installed on the top of the dispatching platform 1 by bolts, and the two sides of the wind tube 10 are stuck on the inner walls on both sides of the sleeve plate 9. A fan is installed on the inside of the wind tube 10, and the top of the sleeve plate 9 is welded to the top of the dispatching platform 1. The noise reduction plate 11 and the filter screen 12 are both installed on the inner wall of the top of the sleeve plate 9 by bolts, and the filter screen 12 is installed on the top of the noise reduction plate 11. A slide is provided on the inner wall of one side of the dispatching platform 1, and the wind tube 10 is installed on the inner side of the sleeve plate 9 through a rotating shaft. The gear 13 is welded to the outer side of the wind tube 10, and the gear 13 extends to the inner side of the slide, and the electromagnet 15 is welded to the inner wall of the bottom of the slide, and a tooth plate 14 is stuck on the inside of the slide, and one side of the tooth plate 14 is stuck On the outer side of the gear 13, the tooth plate 14 is meshed with the gear 13, and the bottom of the tooth plate 14 is connected to the electromagnet 15 through a spring 16. A support sleeve 18 is welded on the outer side of the dispatching table 1, and the electromagnet 20 is welded to the inner wall of one end of the support sleeve 18. The bayonet 19 is stuck on the inner side of the other end of the support sleeve 18, and the bayonet 19 is connected to the electromagnet 20 through a spring 21. A bayonet 17 is provided on the tooth plate 14, and the other end of the bayonet 19 passes through the dispatching table 1 and extends to the inner side of the bayonet 17. The bellows 32 is installed on the bottom of the dispatching table 1 by bolts, and the bellows 32 is connected to the dispatching table 1. The mesh cover 34 is installed on one side of the bellows 32 by bolts, and both sides of the bellows 32 are bolted. A filter plate 22 is installed, and a rotating plate 1 23 is installed at the bottom of one side of the bellows 32 through a rotating shaft, and a rotating plate 24 is installed at the bottom of the other side of the bellows 32 through a rotating shaft. The rotating plate 1 23 and the rotating plate 2 24 are both stuck on one side of the filter plate 22. When in use, the fan and the electromagnet 3 26 are turned on, and the fan generates suction to the dispatching desk 1 through the air duct 10, so that the air enters the bellows 32 after being filtered by the filter plate 22, and then is blown into the sleeve plate 9 through the air duct 10 after cooling the equipment in the dispatching desk 1. The airflow passes through the noise reduction plate 11 and the filter screen 12 and flows out, ensuring the working safety of the equipment in the dispatching desk 1, while reducing noise penetration, improving the working quietness of the dispatching desk 1, and reducing interference to the operator. When the filter is caused by long-term work, When plate 22 is blocked or the equipment at the top of the dispatching desk 1 does not dissipate heat well, turn on electromagnet 2 20, pull the pin 19 out of the bayonet 17, spring 16 pushes the tooth plate 14 upward, and gear 13 drives the air duct 10 to rotate 180 degrees. The fan blows air downward to cool the equipment at the top of the dispatching desk 1, ensuring the cooling effect on the equipment at the top of the dispatching desk 1. At the same time, the air flow is used to clean the filter plate 22 to ensure the ventilation speed, thereby ensuring the cooling effect on the equipment in the dispatching desk 1 and the working safety of the dispatching desk 1. After a period of time, turn on electromagnet 15, pull the tooth plate 14 downward, and the air duct 10 rotates to its original position. Spring 21 pushes the pin 19 into the bayonet 17, locking the tooth plate 14, and the fan again performs cooling work from bottom to top in the dispatching desk 1.
[0023] The intelligent power dispatching control system and method provide electric energy to all electric devices through an external power supply. When in use, the power supply data and the power consumption data are collected through the power supply data collection 5 and the power consumption data collection 6, and the data are transmitted to the data storage 7 through the data transmission 8. The data is then analyzed and calculated by the processor 4, and the analysis and calculation results are displayed through the display 2, and corresponding processing opinions are given. According to the results and processing opinions, the personnel input instructions through the control console 3 to adjust the power consumption and power supply to ensure the instantaneous balance of power consumption and power supply. The power supply data collection 5 collects data on the number of power units turned on and the operating load, and at the same time collects data on the energy reserve status, and the operating status of the new energy power is analyzed and calculated. The power storage system collects data on the weather conditions and future weather conditions, and then analyzes the overall operating load of the power supply system and the tolerable power supply adjustment threshold through the processor 4. The power consumption data collection 6 collects the user's power consumption data in previous years, and collects the industrial development status and industrial regulation status of the user end. The processor 4 analyzes the user's future power consumption and power consumption fluctuation changes. Based on the analyzed power consumption and power consumption fluctuation changes, the power supply system is adjusted, and the power units, energy reserves, and circuit storage are prepared in advance. At the same time, the power supply status of new energy is prepared according to the weather forecast, and traditional power generation equipment is used to adjust the power supply. The power is deployed to ensure that the supply and demand of electricity can be balanced for a long time, and to avoid the user end having a large change in electricity consumption in the future, which may lead to a shortage of electricity supply or waste of electricity reserves. The fan and electromagnet 3 26 are turned on, and the fan generates suction to the dispatching desk 1 through the air duct 10, so that the air enters the bellows 32 after being filtered by the filter plate 22, and then is blown into the sleeve plate 9 through the air duct 10 to cool the equipment in the dispatching desk 1. The airflow passes through the noise reduction plate 11 and the filter 12 and flows out to ensure the working safety of the equipment in the dispatching desk 1, while reducing noise penetration, improving the working quietness of the dispatching desk 1, and reducing interference with the operating personnel. When the filter plate 22 is blocked due to long-term work or the heat dissipation of the equipment on the top of the dispatching desk 1 is poor, turn on the fan. Turn on electromagnet 2 20, pull the latch 19 out of the bayonet 17, spring 16 pushes the tooth plate 14 upward, gear 13 drives the wind tube 10 to rotate 180 degrees, and the fan blows air downward to cool the equipment on the top of the dispatching table 1, and at the same time uses the air flow to clean the filter plate 22 to ensure the ventilation speed, thereby ensuring the cooling effect of the equipment in the dispatching table 1 and the working safety of the dispatching table 1. After a period of time, turn on electromagnet 15, pull the tooth plate 14 downward, and the wind tube 10 rotates to its original position. Spring 21 pushes the latch 19 into the bayonet 17, locking the tooth plate 14, and the fan again performs bottom-up cooling work on the dispatching table 1. When the temperature is low in winter, rotate the wind tube 10 to the downward direction.After passing through the filter 12 and the noise reduction plate 11, the air is blown downward by the fan through the air duct 10, so that the airflow in the dispatching console 1 cools down the equipment in the dispatching console in turn. At the same time, the airflow absorbs the temperature of the equipment and takes advantage of the fact that the processor 4 generates more heat, so that the airflow can absorb more heat when it flows into the bellows 32. After the airflow flows downward to the sliding sleeve 35, the sliding sleeve 35 absorbs heat, causing the air in the sliding sleeve 35 to expand. The pressure generated by the downward flow of the airflow in the bellows 32 on the piston 36 causes the piston 36 to compress the spring four 37 and squeeze the air in the sliding sleeve 35, thereby causing the air in the sliding sleeve 35 to squeeze the slider 38, and the slider 38 squeezes the switch group 40. The switch group 40 controls the motor 29. The motor 29 drives the push plate 31 to move upward through the screw rod 30, and the push plate 31 drives the rotating plate 24 to rotate upward through the connecting rod 28, increasing the rotation speed. The opening of plate 24 decreases, and the air pressure on piston 36 decreases, causing slider 38 to separate from switch group 40. Spring 3 27 presses flap 25 downward, which in turn presses rotating plate 1 23 via connecting rod 28, sealing the left side of bellows 32. Air flows out through rotating plate 24 and heats the feet of the user. The air pressure on piston 36 in sleeve 35 and the heat expansion of air in sleeve 35 drive slider 38 to move left and right, thereby adjusting the opening of rotating plate 24 and, in turn, the flow rate and temperature of the air flow. This ensures both the cooling of dispatching desk 1 and the temperature of the outflowing air, ensuring the heating of the user's feet. At the same time, when the heat is insufficient, the heating wire 33 is used to heat the user's feet, ensuring the comfort of the user's feet and avoiding the condition of frozen feet caused by sitting at dispatching desk 1 for a long time.
[0024] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, from all perspectives, the embodiments should be regarded as illustrative and non-restrictive. The scope of the present invention is defined by the appended claims, not the foregoing description, and it is intended that all variations that come within the meaning and range of equivalents of the claims be included within the present invention. Any reference signs in the claims should not be construed as limiting the claim to which they relate.
[0025] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.
Claims
1. An intelligent power dispatching and control system, comprising a dispatching console (1) and a display (2), wherein a control component is installed on the dispatching console (1), and the control component comprises a control console (3) and a processor (4), characterized in that: The dispatching console (1) is provided with a collection component, the collection component including power supply data collection (5) and power consumption data collection (6), the dispatching console (1) is provided with a processing component, the processing component including data storage (7) and data transmission (8), the dispatching console (1) is provided with a heat dissipation component, the heat dissipation component including a sleeve (9) and a wind tube (10), the sleeve (9) is provided with a noise reduction component, the noise reduction component including a noise reduction plate (11) and a filter (12), the wind tube (10) is provided with a flip component, the flip component including a side gear (13) and an electromagnet 1 (15), the dispatching console (1) is provided with a locking component, the locking component including a latch (19) and an electromagnet 2 (20), the dispatching console (1) is provided with a ventilation component, the ventilation component including a bellows (32) and a mesh cover (34).
2. The intelligent power dispatching and control system according to claim 1, characterized in that: The display (2) is mounted on the top of the dispatching console (1) by bolts, the bottom of the control console (3) is mounted on the inner side of the dispatching console (1) by bolts, the top of the control console (3) passes through the inner wall of the dispatching console (1) and extends to the top of the dispatching console (1), the processor (4) is mounted on the inner wall of the bottom of the dispatching console (1) by bolts, the power supply data acquisition (5) and the power consumption data acquisition (6) are both mounted on the inner side of the dispatching console (1) by bolts, the data storage (7) and the data transmission (8) are respectively mounted on both sides of the dispatching console (1) by bolts, and the data storage (7) and the data transmission (8) are located on the top of the power supply data acquisition (5) and the power consumption data acquisition (6).
3. The intelligent power dispatching and control system according to claim 2, characterized in that: The sleeve plate (9) is mounted on the top of the dispatching platform (1) by bolts, the two sides of the wind tube (10) are clamped on the inner walls of the two sides of the sleeve plate (9), a fan is installed on the inner side of the wind tube (10), the top of the sleeve plate (9) is welded to the top of the dispatching platform (1), the noise reduction plate (11) and the filter (12) are both mounted on the inner wall of the top of the sleeve plate (9) by bolts, and the filter (12) is mounted on the top of the noise reduction plate (11).
4. The intelligent power dispatching and control system according to claim 3, characterized in that: A chute is provided on the inner wall of one side of the dispatching console (1), the air duct (10) is mounted on the inner side of the sleeve (9) via a rotating shaft, the gear (13) is welded to the outer side of the air duct (10), the gear (13) extends to the inner side of the chute, the electromagnet (15) is welded to the inner wall of the bottom of the chute, a tooth plate (14) is clamped on the inner side of the chute, one side of the tooth plate (14) is clamped on the outer side of the gear (13), the tooth plate (14) is meshed with the gear (13), and the bottom of the tooth plate (14) is connected to the electromagnet (15) via a spring (16).
5. The intelligent power dispatching and control system according to claim 4, characterized in that: A support sleeve (18) is welded to the outer side of the dispatching table (1), the second electromagnet (20) is welded to the inner wall of one end of the support sleeve (18), the bayonet (19) is clamped on the inner side of the other end of the support sleeve (18), the bayonet (19) is connected to the second electromagnet (20) through the second spring (21), and a bayonet (17) is provided on the tooth plate (14), and the other end of the bayonet (19) passes through the dispatching table (1) and extends to the inner side of the bayonet (17).
6. The intelligent power dispatching and control system according to claim 1, characterized in that: The bellows (32) is mounted on the bottom of the dispatching platform (1) by means of bolts. The bellows (32) is connected to the dispatching platform (1). The mesh cover (34) is mounted on one side of the bellows (32) by means of bolts. Filter plates (22) are mounted on both sides of the bellows (32) by means of bolts. A rotating plate 1 (23) is mounted on the bottom of one side of the bellows (32) by means of a rotating shaft. A rotating plate 2 (24) is mounted on the bottom of the other side of the bellows (32) by means of a rotating shaft. Both the rotating plate 1 (23) and the rotating plate 2 (24) are clamped on one side of the filter plate (22).
7. The intelligent power dispatching and control system according to claim 6, characterized in that: An electromagnet three (26) is installed on the inner wall of the other side of the bellows (32) by bolts, a movable plate (25) is installed at the bottom of the electromagnet three (26), and a connecting rod (28) is installed at the bottom of the movable plate (25). A motor (29) is installed on one side of the bellows (32) by bolts, a screw rod (30) is welded on the output shaft of the motor (29), and a push plate (31) is sleeved on the outer side of the screw rod (30). There are two connecting rods (28), and the bottom ends of the two connecting rods (28) are connected to the rotating plate one (23) and the rotating plate two (24) respectively through a rotating shaft, and the top ends of the two connecting rods (28) are connected to the movable plate (25) and the push plate (31) respectively through a rotating shaft.
8. The intelligent power dispatching and control system according to claim 7, characterized in that: The bottom of the electromagnet three (26) is connected to the top of the movable plate (25) through the spring three (27), the push plate (31) is arranged on the outer side of the screw rod (30) through a threaded sleeve, and the heating wire (33) is installed on the inner wall of the bellows (32) through bolts.
9. The intelligent power dispatching and control system according to claim 8, characterized in that: A sliding sleeve (35) is welded on the inner wall of the bellows (32), one end of the sliding sleeve (35) passes through the inner wall of the bellows (32) and is connected to the outer side of the bellows (32), a piston (36) is clamped on the inner wall of the other end of the sliding sleeve (35), the piston (36) is connected to the inner wall of the sliding sleeve (35) through a spring (37), a slider (38) is clamped on the inner wall of the other end of the sliding sleeve (35), a cotton plug (39) is bonded to the outer side of one end of the sliding sleeve (35), a switch group (40) is installed on the inner side of the other end of the sliding sleeve (35), the switch group (40) is distributed on both sides of the slider (38), and the other end of the sliding sleeve (35) is connected to the inner side of the bellows (32).
10. The control method of the intelligent power dispatching control system according to claim 1, characterized in that: The following steps are involved: 1) Collect power supply data and power consumption data through power supply data collection and power consumption data collection, and transmit the data to the data storage through data transmission. Then, the processor analyzes and calculates the data, and displays the analysis and calculation results on the display, and gives corresponding processing suggestions; 2) Personnel input instructions through the control panel based on the results and treatment opinions to adjust power consumption and power supply to ensure the instantaneous balance of power consumption and power supply; 3) Through power supply data collection, the number of power units turned on and the operating load are collected. At the same time, data on energy reserves are collected. Data on the operating status of new energy power and the power reserves of the power storage system are collected. Data on weather conditions and future weather conditions are collected. The processor then analyzes the overall operating load of the power supply system and the power supply adjustment threshold that can be tolerated; 4) Through electricity consumption data collection, the user's electricity consumption data of previous years is collected, and the industrial development and industrial adjustment status of the user end is collected. Then, the processor is used to analyze the user's future electricity consumption and electricity consumption fluctuation changes; 5) By analyzing the future power consumption and fluctuations of power consumption required by users, the power supply system is adjusted, and power units, energy reserves, and circuit storage are prepared in advance. At the same time, according to the weather forecast, the power supply of new energy is prepared, and traditional power generation equipment is used to allocate electricity to ensure that the supply and demand of electricity can be balanced in the long term.
Citation Information
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