Device control method and apparatus
By acquiring initial temperature and humidity information and adjusting the operating status of the air conditioning equipment, the problem of environmental control in the coal chemistry laboratory was solved, achieving more efficient environmental management and ensuring the stability and accuracy of experimental conditions.
Patent Information
- Application Number
- CN202310250680.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-15
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2043-03-15
AI Technical Summary
Existing technologies lack effective environmental control solutions, especially in coal chemistry laboratories where it is difficult to maintain stable temperature and humidity conditions, which affects experimental precision and the accuracy of results.
By acquiring the initial temperature and humidity information of the target space, the initial operating parameters of the air conditioning equipment are determined, and the target operating parameters are retrieved from the parameter database according to the task instructions, and the operating status of the air conditioning equipment is adjusted to achieve environmental control.
It improves the intelligence and convenience of environmental control, ensuring that the temperature and humidity in the coal chemistry laboratory are within the set range, thus enhancing the stability and accuracy of the experiment.
Smart Images

Figure CN116294105B_ABST
Abstract
Description
Technical Field
[0001] The embodiments in this specification relate to the field of computer technology, and in particular to device control methods. Background Technology
[0002] Coal chemistry laboratories, including calorimeters and industrial analysis rooms, require a stable and suitable working environment over the long term. Taking the calorimeter as an example, the laboratory for determining calorific value should meet the following conditions: The laboratory for calorific value determination should be a separate room, and other tests should not be conducted simultaneously in the same room; the room temperature should be relatively stable, with a variation of no more than 1 degree Celsius between each measurement, ideally within the range of 15–30 degrees Celsius; there should be no strong air convection within the room, therefore there should be no strong heat sources, cold sources, or fans, and doors and windows should be avoided during the test; the laboratory should ideally face north to avoid direct sunlight, otherwise the calorimeter should be placed in a location not exposed to direct sunlight.
[0003] Currently, there is no good solution for environmental control in coal chemical laboratories, and a better solution is urgently needed. Summary of the Invention
[0004] In view of this, embodiments of this specification provide a device control method. One or more embodiments of this specification also relate to a device control apparatus, a computing device, a computer-readable storage medium, and a computer program, to address technical deficiencies in the prior art.
[0005] According to a first aspect of the embodiments of this specification, a device control method is provided, comprising:
[0006] Acquire initial temperature and initial humidity information of the target space, wherein the target space is equipped with at least one air conditioning device;
[0007] The initial operating parameters of the first target air conditioning device are determined based on the initial temperature information and the initial humidity information, and the first operating state of the first target air conditioning device is determined based on the initial operating parameters, wherein the first target air conditioning device is one of the at least one air conditioning device;
[0008] In response to a task instruction, a target operating parameter matching the task instruction is determined from a parameter database, and a second operating state of a second target air conditioning device is determined based on the target operating parameter, wherein the second target air conditioning device is one of the at least one air conditioning device.
[0009] In one possible implementation, acquiring the initial temperature and initial humidity information of the target space includes:
[0010] In response to the work processing instructions of the target space, a preset processing time period and a preset processing time interval corresponding to the target space are determined;
[0011] During the preset processing time period, the initial temperature and initial humidity information of the target space are acquired according to the preset processing time interval.
[0012] In one possible implementation, determining the initial operating parameters of the first target air conditioning device based on the initial temperature information and the initial humidity information includes:
[0013] A first target air conditioning device is determined from the at least one air conditioning device based on the initial temperature information and the initial humidity information;
[0014] Determine a first temperature threshold, a second temperature threshold, a first humidity threshold, and a second humidity threshold for the target space;
[0015] The current temperature value is determined based on the initial temperature information. If the current temperature value is greater than the first temperature threshold or less than the second temperature threshold, the initial temperature parameters of the first target air conditioning device are determined.
[0016] The current humidity value is determined based on the initial humidity information. If the current humidity value is greater than the first humidity threshold or less than the second humidity threshold, the initial humidity parameter of the first target air conditioning device is determined.
[0017] The initial operating parameters of the target air conditioning equipment are determined based on the initial temperature parameters and the initial humidity parameters.
[0018] In one possible implementation, determining the target working parameters matching the task instruction from the parameter database in response to the task instruction includes:
[0019] In response to a task instruction, a task flow is determined according to the task instruction, and a second target air conditioning device is determined from the at least one air conditioning device according to the task flow;
[0020] Obtain the device identifier of the second target air conditioning device, and determine the target operating parameters that match the task instruction from the parameter database based on the device identifier.
[0021] In one possible implementation, determining the task flow according to the task instruction and determining the second target air conditioning device from the at least one air conditioning device according to the task flow includes:
[0022] The equipment preheating process is determined according to the task instructions, and the target subspace is determined from the target space according to the preheating process;
[0023] The second target air conditioning device corresponding to the target subspace in the at least one air conditioning device is determined according to the device location correspondence table.
[0024] In one possible implementation, determining the second operating state of the second target air conditioning device based on the target operating parameters includes:
[0025] Determine the target operating state based on the target operating parameters;
[0026] When the target operating state is the on state, the target humidity value and the target temperature value are determined, and the second operating state is set for the second target air conditioning device based on the target humidity value and the target temperature value;
[0027] When the target operating state is off, turn off the second target air conditioning unit.
[0028] In one possible implementation, after determining the second operating state of the second target air conditioning device based on the target operating parameters, the method further includes:
[0029] In response to the task completion command, the initial operating parameters of the second target air conditioning device are obtained;
[0030] Based on the initial operating parameters of the second target air conditioning equipment, the third operating state of the second target air conditioning equipment is determined.
[0031] According to a second aspect of the embodiments of this specification, a device control apparatus is provided, comprising:
[0032] The information acquisition module is configured to acquire initial temperature information and initial humidity information of the target space, wherein the target space is equipped with at least one air conditioning device;
[0033] The initial adjustment module is configured to determine the initial operating parameters of the first target air conditioning device based on the initial temperature information and the initial humidity information, and to determine the first operating state of the first target air conditioning device based on the initial operating parameters, wherein the first target air conditioning device is one of the at least one air conditioning device;
[0034] The target adjustment module is configured to, in response to a task instruction, determine target operating parameters matching the task instruction from a parameter database, and determine a second operating state of a second target air conditioning device based on the target operating parameters, wherein the second target air conditioning device is one of the at least one air conditioning device.
[0035] According to a third aspect of the embodiments of this specification, a computing device is provided, comprising:
[0036] Memory and processor;
[0037] The memory is used to store computer-executable instructions, and the processor is used to execute the computer-executable instructions, which, when executed by the processor, implement the steps of the above-described device control method.
[0038] According to a fourth aspect of the embodiments of this specification, a computer-readable storage medium is provided that stores computer-executable instructions, which, when executed by a processor, implement the steps of the device control method described above.
[0039] According to a fifth aspect of the embodiments of this specification, a computer program is provided, wherein when the computer program is executed in a computer, it causes the computer to perform the steps of the above-described device control method.
[0040] This specification provides an embodiment of a device control method and apparatus. The device control method includes: acquiring initial temperature and initial humidity information of a target space, wherein the target space is equipped with at least one air conditioning device; determining initial operating parameters of a first target air conditioning device based on the initial temperature and initial humidity information; determining a first operating state of the first target air conditioning device based on the initial operating parameters; wherein the first target air conditioning device is one of at least one air conditioning device; responding to a task instruction, determining target operating parameters matching the task instruction from a parameter database; and determining a second operating state of a second target air conditioning device based on the target operating parameters; wherein the second target air conditioning device is one of at least one air conditioning device. By responding to a task instruction and determining target operating parameters matching the task instruction from a parameter database, coordination with tasks in the target space is achieved, improving the level of intelligence and convenience. Attached Figure Description
[0041] Figure 1 This is a schematic diagram of a scenario illustrating a device control method provided in one embodiment of this specification;
[0042] Figure 2 This is a flowchart of a device control method provided in one embodiment of this specification;
[0043] Figure 3 This is a schematic diagram of the processing procedure of a device control method provided in one embodiment of this specification;
[0044] Figure 4 This is a schematic diagram of the structure of a device control apparatus provided in one embodiment of this specification;
[0045] Figure 5 This is a structural block diagram of a computing device provided in one embodiment of this specification. Detailed Implementation
[0046] Many specific details are set forth in the following description to provide a full understanding of this specification. However, this specification can be implemented in many other ways than those described herein, and those skilled in the art can make similar extensions without departing from the spirit of this specification. Therefore, this specification is not limited to the specific implementations disclosed below.
[0047] The terminology used in one or more embodiments of this specification is for the purpose of describing particular embodiments only and is not intended to be limiting of the one or more embodiments of this specification. The singular forms “a,” “described,” and “the” as used in one or more embodiments of this specification and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise. It should also be understood that the term “and / or” as used in one or more embodiments of this specification refers to and includes any or all possible combinations of one or more associated listed items.
[0048] It should be understood that although the terms first, second, etc., may be used to describe various information in one or more embodiments of this specification, such information should not be limited to these terms. These terms are only used to distinguish information of the same type from one another. For example, first may also be referred to as second without departing from the scope of one or more embodiments of this specification, and similarly, second may also be referred to as first. Depending on the context, the word "if" as used herein may be interpreted as "when," "when," or "in response to a determination."
[0049] This specification provides a device control method, and also relates to a device control apparatus, a computing device, and a computer-readable storage medium, which are described in detail in the following embodiments.
[0050] See Figure 1 , Figure 1 A schematic diagram of a scenario for a device control method provided according to an embodiment of this specification is shown.
[0051] exist Figure 1 In the application scenario, computing device 101 can obtain the initial temperature and initial humidity information 102 of the target space. Then, computing device 101 can determine the initial operating parameters 103 of the first target air conditioning device based on the initial temperature and initial humidity information 102, and determine the first operating state 104 of the first target air conditioning device based on the initial operating parameters 103. Afterwards, computing device 101 can respond to a task instruction and determine the target operating parameters 105 matching the task instruction from the parameter database. Finally, computing device 101 can determine the second operating state of the second target air conditioning device based on the target operating parameters 105. As shown by reference numeral 106 in the attached drawing.
[0052] It should be noted that the aforementioned computing device 101 can be either hardware or software. When the computing device 101 is hardware, it can be implemented as a distributed cluster consisting of multiple servers or terminal devices, or as a single server or a single terminal device. When the computing device 101 is software, it can be installed in the hardware devices listed above. It can be implemented as, for example, multiple software programs or software modules used to provide distributed services, or as a single software program or software module. No specific limitations are made here.
[0053] It should be understood that Figure 1 The number of computing devices shown is merely illustrative. Any number of computing devices can be used depending on implementation needs.
[0054] See Figure 2 , Figure 2 A flowchart of a device control method according to an embodiment of this specification is shown, which specifically includes the following steps.
[0055] Step 201: Obtain the initial temperature information and initial humidity information of the target space, wherein the target space is equipped with at least one air conditioning device.
[0056] The target space can be a laboratory or testing room, such as a calorimeter or industrial analysis room. The air conditioning equipment can be used to regulate temperature and humidity.
[0057] In practical applications, the system first acquires temperature and humidity detection results in real time to control indoor air humidity and temperature, thereby maintaining humidity and temperature within a set range.
[0058] In one possible implementation, obtaining the initial temperature information and initial humidity information of the target space includes: in response to the working processing instruction of the target space, determining a preset processing time period and a preset processing time interval corresponding to the target space; and within the preset processing time period, obtaining the initial temperature information and initial humidity information of the target space according to the preset processing time interval.
[0059] Specifically, the initial temperature and initial humidity information can be the temperature and humidity information obtained by the air conditioning equipment when it is not performing any tasks in the target space.
[0060] For example, in a laboratory, if the preset processing time is from 8:00 to 22:00 every day and the preset processing interval is 10 minutes, then the temperature and humidity of the laboratory will be acquired every 10 minutes from 8:00 to 22:00 every day.
[0061] Furthermore, multiple temperature and humidity monitoring devices can be placed in the laboratory to measure different locations within the target space at different preset processing time periods and preset processing intervals. The number of temperature and humidity monitoring devices is not limited in this embodiment.
[0062] Step 202: Determine the initial operating parameters of the first target air conditioning device based on the initial temperature information and the initial humidity information, and determine the first operating state of the first target air conditioning device based on the initial operating parameters, wherein the first target air conditioning device is one of the at least one air conditioning device.
[0063] The first target air conditioning device can be a set air conditioning device that automatically adjusts based on temperature or humidity.
[0064] In practical applications, the control system first adjusts and controls the temperature and humidity based on the temperature and humidity detection results.
[0065] In one possible implementation, determining the initial operating parameters of the first target air conditioning device based on the initial temperature information and the initial humidity information includes: determining the first target air conditioning device from the at least one air conditioning device based on the initial temperature information and the initial humidity information; determining a first temperature threshold, a second temperature threshold, a first humidity threshold, and a second humidity threshold for the target space; determining a current temperature value based on the initial temperature information, and if the current temperature value is greater than the first temperature threshold or less than the second temperature threshold, determining the initial temperature parameter of the first target air conditioning device; determining a current humidity value based on the initial humidity information, and if the current humidity value is greater than the first humidity threshold or less than the second humidity threshold, determining the initial humidity parameter of the first target air conditioning device; and determining the initial operating parameters of the target air conditioning device based on the initial temperature parameter and the initial humidity parameter.
[0066] For example, in a laboratory, air conditioning units A, B, and C are installed. The preset processing time for air conditioning units A, B, and C is from 8:00 AM to 10:00 PM daily, with a preset processing interval of 10 minutes. Therefore, from 8:00 AM to 10:00 PM daily, air conditioning units A, B, and C acquire the laboratory's temperature and humidity every 10 minutes. Air conditioning units A, B, and C are all set to automatically adjust the temperature and humidity in the laboratory. The first temperature threshold can be 26 degrees Celsius, and the second temperature threshold can be 24 degrees Celsius. The first humidity threshold is 60%, and the second humidity threshold is 40%. If the detected current temperature value is greater than 26 degrees Celsius, the air conditioning units can be controlled to increase their cooling power. If the detected current temperature value is less than 24 degrees Celsius, the air conditioning units can be controlled to decrease their cooling power. Similarly, if the detected current humidity value is greater than 60%, the air conditioning units can be controlled to increase their dehumidification power. If the detected current humidity value is less than 40%, the air conditioning units can be controlled to decrease their dehumidification power or stop dehumidification.
[0067] Step 203: In response to the task instruction, determine the target operating parameters that match the task instruction from the parameter database, and determine the second operating state of the second target air conditioning device according to the target operating parameters, wherein the second target air conditioning device is one of the at least one air conditioning device.
[0068] The parameter database can be a database that stores the correspondence between task instructions and the operating parameters of the air conditioner. For example, when executing task W1, the operating parameter X1 of the air conditioner is determined. Task instructions can be instructions such as equipment preheating and turning on the equipment balance.
[0069] In one possible implementation, determining the target operating parameters matching the task instruction from the parameter database in response to the task instruction includes: determining a task flow according to the task instruction in response to the task instruction, and determining a second target air conditioning device from the at least one air conditioning device according to the task flow; obtaining the device identifier of the second target air conditioning device, and determining the target operating parameters matching the task instruction from the parameter database according to the device identifier.
[0070] For details, see Figure 3 , Figure 3 The diagram illustrates the processing flow of a device control method. When the laboratory is a calorimeter, the task flow requires preheating of the testing equipment and turning on the balance or the balance inside the analyzer or total water analyzer. The task instruction is the balance turn-on instruction. The air conditioning equipment related to the testing equipment preheating process is identified, and the identifier of the air conditioning equipment, A, is obtained. Based on the identifier of the equipment, A, the target working parameters matching the balance turn-on instruction are obtained.
[0071] In one possible implementation, determining the task flow according to the task instruction and determining the second target air conditioning device from the at least one air conditioning device according to the task flow includes: determining a device preheating process according to the task instruction and determining a target subspace from the target space according to the preheating process; and determining the second target air conditioning device corresponding to the target subspace among the at least one air conditioning device according to a device location correspondence table.
[0072] For example, when the laboratory is a calorimeter, and the task flow requires preheating the testing equipment and turning on the balance inside the balance or the total water analyzer, the task instruction is the balance start instruction. Then, the air conditioning equipment related to the testing equipment preheating process is identified. The calorimeter has air conditioning equipment A, B, and C installed. Air conditioning equipment A is located closer to the testing equipment related to the testing equipment preheating process. In the equipment location correspondence table, which is divided into testing equipment related to the testing equipment preheating process and corresponding air conditioning equipment, the space where air conditioning equipment A is located is the target subspace. The identifier of the air conditioning equipment is obtained: A. Based on the identifier: A, the target working parameters matching the balance start instruction are obtained.
[0073] In one possible implementation, determining the second operating state of the second target air conditioning device based on the target operating parameters includes: determining the target operating state based on the target operating parameters; when the target operating state is an on state, determining a target humidity value and a target temperature value, setting the second operating state of the second target air conditioning device based on the target humidity value and the target temperature value; and turning off the second target air conditioning device when the target operating state is a off state.
[0074] Following the example above, see [link to example]. Figure 3 The system retrieves the identifier of the air conditioning unit: A. Based on the identifier A, it obtains the target operating parameters that match the balance start command. If the target operating parameters are set to air conditioning off, then air conditioning unit A will be turned off.
[0075] Furthermore, if the target operating parameters are set to air conditioning on, the set target humidity and target temperature values are obtained, and the air conditioning equipment is controlled to adjust the temperature and humidity based on the target humidity and target temperature values.
[0076] In one possible implementation, after determining the second operating state of the second target air conditioning device based on the target operating parameters, the method further includes: in response to a task end instruction, acquiring the initial operating parameters of the second target air conditioning device; and determining the third operating state of the second target air conditioning device based on the initial operating parameters of the second target air conditioning device.
[0077] Following the example above, see [link to example]. Figure 3When the laboratory is a calorimeter, and the task flow requires preheating the testing equipment and turning on the balance inside the analyzer or total water analyzer, the task instruction is a balance-on instruction. Therefore, the air conditioning equipment related to the equipment preheating process is identified. The calorimeter has air conditioning equipment A, B, and C installed. Air conditioning equipment A is closer to the testing equipment related to the equipment preheating process. In the equipment location mapping table, which is divided into testing equipment related to the equipment preheating process and corresponding air conditioning equipment, the space where air conditioning equipment A is located is the target subspace. The identifier of the air conditioning equipment is obtained: A. Based on the identifier: A, the target operating parameters matching the balance-on instruction are obtained. If the target operating parameters are set to air conditioning off, then air conditioning equipment A is turned off. After the experiment is completed, with the balance inside the analyzer or total water analyzer turned off, air conditioning equipment A is turned back on, and the initial operating parameters for air conditioning equipment A are set to those before the equipment preheating process.
[0078] This specification provides an embodiment of a device control method and apparatus. The device control method includes: acquiring initial temperature and initial humidity information of a target space, wherein the target space is equipped with at least one air conditioning device; determining initial operating parameters of a first target air conditioning device based on the initial temperature and initial humidity information; determining a first operating state of the first target air conditioning device based on the initial operating parameters; wherein the first target air conditioning device is one of at least one air conditioning device; responding to a task instruction, determining target operating parameters matching the task instruction from a parameter database; and determining a second operating state of a second target air conditioning device based on the target operating parameters; wherein the second target air conditioning device is one of at least one air conditioning device. By responding to a task instruction and determining target operating parameters matching the task instruction from a parameter database, coordination with tasks in the target space is achieved, improving the level of intelligence and convenience.
[0079] Corresponding to the above method embodiments, this specification also provides embodiments of equipment control devices. Figure 4 A schematic diagram of a device control apparatus according to one embodiment of this specification is shown. Figure 4 As shown, the device includes:
[0080] The information acquisition module 401 is configured to acquire initial temperature information and initial humidity information of the target space, wherein the target space is equipped with at least one air conditioning device;
[0081] The initial adjustment module 402 is configured to determine the initial operating parameters of the first target air conditioning device based on the initial temperature information and the initial humidity information, and to determine the first operating state of the first target air conditioning device based on the initial operating parameters, wherein the first target air conditioning device is one of the at least one air conditioning device;
[0082] The target adjustment module 403 is configured to, in response to a task instruction, determine target operating parameters matching the task instruction from a parameter database, and determine a second operating state of a second target air conditioning device based on the target operating parameters, wherein the second target air conditioning device is one of the at least one air conditioning device.
[0083] In one possible implementation, the information acquisition module 401 is further configured as follows:
[0084] In response to the work processing instructions of the target space, a preset processing time period and a preset processing time interval corresponding to the target space are determined;
[0085] During the preset processing time period, the initial temperature and initial humidity information of the target space are acquired according to the preset processing time interval.
[0086] In one possible implementation, the initial adjustment module 402 is further configured as follows:
[0087] A first target air conditioning device is determined from the at least one air conditioning device based on the initial temperature information and the initial humidity information;
[0088] Determine a first temperature threshold, a second temperature threshold, a first humidity threshold, and a second humidity threshold for the target space;
[0089] The current temperature value is determined based on the initial temperature information. If the current temperature value is greater than the first temperature threshold or less than the second temperature threshold, the initial temperature parameters of the first target air conditioning device are determined.
[0090] The current humidity value is determined based on the initial humidity information. If the current humidity value is greater than the first humidity threshold or less than the second humidity threshold, the initial humidity parameter of the first target air conditioning device is determined.
[0091] The initial operating parameters of the target air conditioning equipment are determined based on the initial temperature parameters and the initial humidity parameters.
[0092] In one possible implementation, the target adjustment module 403 is further configured as follows:
[0093] In response to a task instruction, a task flow is determined according to the task instruction, and a second target air conditioning device is determined from the at least one air conditioning device according to the task flow;
[0094] Obtain the device identifier of the second target air conditioning device, and determine the target operating parameters that match the task instruction from the parameter database based on the device identifier.
[0095] In one possible implementation, the target adjustment module 403 is further configured as follows:
[0096] The equipment preheating process is determined according to the task instructions, and the target subspace is determined from the target space according to the preheating process;
[0097] The second target air conditioning device corresponding to the target subspace in the at least one air conditioning device is determined according to the device location correspondence table.
[0098] In one possible implementation, the target adjustment module 403 is further configured as follows:
[0099] Determine the target operating state based on the target operating parameters;
[0100] When the target operating state is the on state, the target humidity value and the target temperature value are determined, and the second operating state is set for the second target air conditioning device based on the target humidity value and the target temperature value;
[0101] When the target operating state is off, turn off the second target air conditioning unit.
[0102] In one possible implementation, the target adjustment module 403 is further configured as follows:
[0103] In response to the task completion command, the initial operating parameters of the second target air conditioning device are obtained;
[0104] Based on the initial operating parameters of the second target air conditioning equipment, the third operating state of the second target air conditioning equipment is determined.
[0105] This specification provides an embodiment of a device control method and apparatus. The device control apparatus includes: acquiring initial temperature and initial humidity information of a target space, wherein the target space is equipped with at least one air conditioning device; determining initial operating parameters of a first target air conditioning device based on the initial temperature and initial humidity information; determining a first operating state of the first target air conditioning device based on the initial operating parameters; wherein the first target air conditioning device is one of at least one air conditioning device; responding to a task instruction; determining target operating parameters matching the task instruction from a parameter database; and determining a second operating state of a second target air conditioning device based on the target operating parameters; wherein the second target air conditioning device is one of at least one air conditioning device. By responding to a task instruction and determining target operating parameters matching the task instruction from a parameter database, coordination with tasks in the target space is achieved, improving the level of intelligence and convenience.
[0106] The above is a schematic scheme of a device control apparatus according to this embodiment. It should be noted that the technical solution of this device control apparatus and the technical solution of the above-described device control method belong to the same concept. For details not described in detail in the technical solution of the device control apparatus, please refer to the description of the technical solution of the above-described device control method.
[0107] Figure 5 A structural block diagram of a computing device 500 according to one embodiment of this specification is shown. The components of the computing device 500 include, but are not limited to, a memory 510 and a processor 520. The processor 520 is connected to the memory 510 via a bus 530, and a database 550 is used to store data.
[0108] The computing device 500 also includes an access device 540, which enables the computing device 500 to communicate via one or more networks 560. Examples of these networks include Public Switched Telephone Network (PSTN), Local Area Network (LAN), Wide Area Network (WAN), Personal Area Network (PAN), or combinations of communication networks such as the Internet. The access device 540 may include one or more of any type of wired or wireless network interface (e.g., a network interface card (NIC)), such as an IEEE 802.11 Wireless Local Area Network (WLAN) wireless interface, a Wi-MAX (Worldwide Interoperability for Microwave Access) interface, an Ethernet interface, a Universal Serial Bus (USB) interface, a cellular network interface, a Bluetooth interface, or a Near Field Communication (NFC) interface.
[0109] In one embodiment of this specification, the above-described components of the computing device 500 and Figure 5 Other components, not shown, can also be connected to each other, for example, via a bus. It should be understood that... Figure 5 The block diagram of the computing device shown is for illustrative purposes only and is not intended to limit the scope of this specification. Those skilled in the art can add or replace other components as needed.
[0110] Computing device 500 can be any type of stationary or mobile computing device, including mobile computers or mobile computing devices (e.g., tablet computers, personal digital assistants, laptop computers, notebook computers, netbooks, etc.), mobile phones (e.g., smartphones), wearable computing devices (e.g., smartwatches, smart glasses, etc.) or other types of mobile devices, or stationary computing devices such as desktop computers or personal computers (PCs). Computing device 500 can also be a mobile or stationary server.
[0111] The processor 520 is configured to execute the following computer-executable instructions, which, when executed by the processor, implement the steps of the aforementioned data processing method. The above is an illustrative scheme of a computing device according to this embodiment. It should be noted that the technical solution of this computing device and the technical solution of the aforementioned device control method belong to the same concept; details not described in detail in the technical solution of the computing device can be found in the description of the technical solution of the aforementioned device control method.
[0112] An embodiment of this specification also provides a computer-readable storage medium storing computer-executable instructions that, when executed by a processor, implement the steps of the above-described device control method.
[0113] The above is an illustrative scheme of a computer-readable storage medium according to this embodiment. It should be noted that the technical solution of this storage medium and the technical solution of the device control method described above belong to the same concept. For details not described in detail in the technical solution of the storage medium, please refer to the description of the technical solution of the device control method described above.
[0114] An embodiment of this specification also provides a computer program, wherein when the computer program is executed in a computer, it causes the computer to perform the steps of the above-described device control method.
[0115] The above is an illustrative scheme of a computer program according to this embodiment. It should be noted that the technical solution of this computer program and the technical solution of the above-described device control method belong to the same concept. For details not described in detail in the technical solution of the computer program, please refer to the description of the technical solution of the above-described device control method.
[0116] The foregoing has described specific embodiments of this specification. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims may be performed in a different order than that shown in the embodiments and may still achieve the desired result. Furthermore, the processes depicted in the drawings do not necessarily require the specific or sequential order shown to achieve the desired result. In some embodiments, multitasking and parallel processing are possible or may be advantageous.
[0117] The computer instructions include computer program code, which may be in the form of source code, object code, executable file, or some intermediate form. The computer-readable medium may include: any entity or device capable of carrying the computer program code, recording media, USB flash drive, portable hard drive, magnetic disk, optical disk, computer memory, read-only memory (ROM), random access memory (RAM), electrical carrier signals, telecommunication signals, and software distribution media, etc. It should be noted that the content included in the computer-readable medium may be appropriately added to or subtracted according to the requirements of legislation and patent practice in the jurisdiction. For example, in some jurisdictions, according to legislation and patent practice, computer-readable media may not include electrical carrier signals and telecommunication signals.
[0118] It should be noted that, for the sake of simplicity, the foregoing method embodiments are all described as a series of actions. However, those skilled in the art should understand that the embodiments in this specification are not limited to the described order of actions, because according to the embodiments in this specification, some steps can be performed in other orders or simultaneously. Furthermore, those skilled in the art should also understand that the embodiments described in this specification are all preferred embodiments, and the actions and modules involved are not necessarily essential to the embodiments in this specification.
[0119] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions of other embodiments.
[0120] The preferred embodiments disclosed above are merely illustrative of this specification. The optional embodiments do not exhaustively describe all details, nor do they limit the invention to the specific implementations described. Clearly, many modifications and variations can be made based on the embodiments described herein. These embodiments are selected and specifically described in this specification to better explain the principles and practical applications of the embodiments, thereby enabling those skilled in the art to better understand and utilize this specification. This specification is limited only by the claims and their full scope and equivalents.
Claims
1. A device control method, characterized in that, include: Acquire initial temperature and initial humidity information of the target space, wherein the target space is equipped with at least one air conditioning device, and the target space is a laboratory or testing room; The initial operating parameters of the first target air conditioning device are determined based on the initial temperature information and the initial humidity information, and the first operating state of the first target air conditioning device is determined based on the initial operating parameters, wherein the first target air conditioning device is one of the at least one air conditioning device; In response to a task instruction, a target operating parameter matching the task instruction is determined from a parameter database, and a second operating state of a second target air conditioning device is determined based on the target operating parameter, wherein the second target air conditioning device is one of the at least one air conditioning device; The step of determining the target working parameters matching the task instruction from the parameter database in response to the task instruction includes: In response to a task instruction, a task flow is determined according to the task instruction, and a second target air conditioning device is determined from the at least one air conditioning device according to the task flow; Obtain the device identifier of the second target air conditioning device, and determine the target operating parameters that match the task instruction from the parameter database based on the device identifier; The step of determining the task flow according to the task instruction, and determining the second target air conditioning device from the at least one air conditioning device according to the task flow, includes: The equipment preheating process is determined according to the task instructions, and the target subspace is determined from the target space according to the preheating process; The second target air conditioning device corresponding to the target subspace in the at least one air conditioning device is determined according to the device location correspondence table.
2. The method according to claim 1, characterized in that, The acquisition of the initial temperature and initial humidity information of the target space includes: In response to the work processing instructions of the target space, a preset processing time period and a preset processing time interval corresponding to the target space are determined; During the preset processing time period, the initial temperature and initial humidity information of the target space are acquired according to the preset processing time interval.
3. The method according to claim 1, characterized in that, Determining the initial operating parameters of the first target air conditioning device based on the initial temperature information and the initial humidity information includes: A first target air conditioning device is determined from the at least one air conditioning device based on the initial temperature information and the initial humidity information; Determine a first temperature threshold, a second temperature threshold, a first humidity threshold, and a second humidity threshold for the target space; The current temperature value is determined based on the initial temperature information. If the current temperature value is greater than the first temperature threshold or less than the second temperature threshold, the initial temperature parameters of the first target air conditioning device are determined. The current humidity value is determined based on the initial humidity information. If the current humidity value is greater than the first humidity threshold or less than the second humidity threshold, the initial humidity parameter of the first target air conditioning device is determined. The initial operating parameters of the target air conditioning equipment are determined based on the initial temperature parameters and the initial humidity parameters.
4. The method according to claim 1, characterized in that, Determining the second operating state of the second target air conditioning equipment based on the target operating parameters includes: Determine the target operating state based on the target operating parameters; When the target operating state is the on state, the target humidity value and the target temperature value are determined, and the second operating state is set for the second target air conditioning device based on the target humidity value and the target temperature value; When the target operating state is off, turn off the second target air conditioning unit.
5. The method according to claim 1, characterized in that, After determining the second operating state of the second target air conditioning device based on the target operating parameters, the method further includes: In response to the task completion command, the initial operating parameters of the second target air conditioning device are obtained; Based on the initial operating parameters of the second target air conditioning equipment, the third operating state of the second target air conditioning equipment is determined.
6. A device control apparatus, characterized in that, The steps for implementing the device control method according to any one of claims 1 to 5 include: The information acquisition module is configured to acquire initial temperature information and initial humidity information of the target space, wherein the target space is equipped with at least one air conditioning device; The initial adjustment module is configured to determine the initial operating parameters of the first target air conditioning device based on the initial temperature information and the initial humidity information, and to determine the first operating state of the first target air conditioning device based on the initial operating parameters, wherein the first target air conditioning device is one of the at least one air conditioning device; The target adjustment module is configured to, in response to a task instruction, determine target operating parameters matching the task instruction from a parameter database, and determine a second operating state of a second target air conditioning device based on the target operating parameters, wherein the second target air conditioning device is one of the at least one air conditioning device.
7. A computing device, characterized in that, include: Memory and processor; The memory is used to store computer-executable instructions, and the processor is used to execute the computer-executable instructions, which, when executed by the processor, implement the steps of the device control method according to any one of claims 1 to 5.
8. A computer-readable storage medium storing computer-executable instructions that, when executed by a processor, implement the steps of the device control method according to any one of claims 1 to 5.
Citation Information
Patent Citations
Method and device for controlling air conditioner
CN105890119A
Air conditioner control method and device, storage medium and air conditioner
CN112413841A
Air conditioner control method, computer readable medium and server
CN115540250A
Air conditioner control method and device, air conditioner equipment and computer readable storage medium
CN115614946A