Illumination control method for intensive animal breeding house and related equipment
By acquiring the status and activation mode of lighting equipment in intensive animal breeding pens, controlling the switching of white light to colored light, and adjusting the light intensity according to animal parameters, the problem of low lighting control precision is solved, animal growth efficiency is improved, and costs are reduced.
Patent Information
- Application Number
- CN202511347207.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-19
- Publication Date
- 2025-11-18
AI Technical Summary
In intensive animal farming, the duration of artificial lighting is difficult to control precisely, resulting in low animal growth efficiency.
By acquiring the status and activation mode of the lighting equipment, the system controls the lighting equipment to switch to colored lights after the cumulative duration of white light reaches a threshold. Combined with the animal's target parameters, the light intensity is adjusted to achieve precise lighting control.
It improved the growth rate and efficiency of animals, and reduced breeding costs.
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Figure CN120980744A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of animal breeding, and in particular to a lighting control method for intensive animal breeding pens and related equipment. BACKGROUND
[0002] With the development of breeding technology, animals are bred through intensive methods with high density and high efficiency.
[0003] In the process of breeding animals through intensive methods, animals in the animal breeding pens need to be irradiated with light. The irradiation duration of the light has a great influence on the growth of animals. However, the irradiation of the light is usually controlled manually, and the control precision of the light is low, which has a certain influence on the growth of animals, that is, there is a problem of low growth efficiency of animals. SUMMARY
[0004] Based on the above technical status, the present application provides a lighting control method for intensive animal breeding pens and related equipment to solve the problem of low growth efficiency of animals.
[0005] In order to achieve the above technical purpose, the present application specifically proposes the following technical solutions:
[0006] In a first aspect, the present application provides a lighting control method for intensive animal breeding pens, comprising:
[0007] obtaining the state of a lighting device in an animal breeding pen, wherein the animal breeding pen comprises an intensive building animal breeding pen and an intensive non-building animal breeding pen;
[0008] when the state indicates that the lighting device is in a running state, obtaining the starting mode of the lighting device;
[0009] when the starting mode of the lighting device is manual starting and the lighting device emits white light, obtaining the cumulative duration of the lighting device emitting white light;
[0010] when the cumulative duration reaches a white light irradiation duration threshold, controlling the lighting device to emit colored light.
[0011] In some embodiments, the controlling the lighting device to emit colored light comprises:
[0012] obtaining a current time point;
[0013] when the current time point is in a lighting time period of colored light, controlling the lighting device to emit colored light.
[0014] In some embodiments, the controlling the lighting device to emit colored light comprises:
[0015] obtaining a target parameter of the animals in the animal breeding house, the target parameter comprising at least one of a number of animals, a weight of the animals, a physiological stage of the animals, and a kind of the animals;
[0016] determining a color light illumination range matched by the target parameter;
[0017] controlling the lighting device to emit color light with a target illumination, the target illumination being within the color light illumination range.
[0018] In some embodiments, the obtaining the cumulative duration of the lighting device emitting white light further comprises:
[0019] in a case where the cumulative duration does not reach a white light illumination threshold, obtaining a current illumination of the lighting device emitting white light and a target parameter of the animals in the animal breeding house, the target parameter comprising at least one of a number of animals, a weight of the animals, a physiological stage of the animals, and a kind of the animals;
[0020] determining a white light illumination range matched by the target parameter;
[0021] in a case where the current illumination is not within the white light illumination range, adjusting the illumination of the lighting device emitting white light so that the adjusted illumination of the lighting device is within the white light illumination range.
[0022] In some embodiments, the obtaining the state of the lighting device in the animal breeding house further comprises:
[0023] in a case where the state indicates that the lighting device is in an off state, obtaining a current time point;
[0024] in a case where the current time point is within a white light illumination time period, controlling the lighting device to emit white light;
[0025] in a case where the current time point is within a color light illumination time period, controlling the lighting device to emit color light.
[0026] In some embodiments, the obtaining the start mode of the lighting device further comprises:
[0027] in a case where the start mode of the lighting device is automatic start and the lighting device emits white light, obtaining a current time point;
[0028] in a case where the current time point is within a color light illumination time period, controlling the lighting device to emit color light.
[0029] In some embodiments, the colored light is green light.
[0030] In a second aspect, the present application provides a lighting control device for an intensive animal breeding house, comprising:
[0031] a first obtaining module, configured to obtain a state of a lighting device in an animal breeding house, the animal breeding house comprising an intensive building animal breeding house and an intensive non-building animal breeding house;
[0032] a second obtaining module, configured to obtain a starting mode of the lighting device when the state indicates that the lighting device is in a running state;
[0033] a third obtaining module, configured to obtain a cumulative duration of the lighting device emitting white light when the starting mode of the lighting device is manual starting and the lighting device emits white light;
[0034] a control module, configured to control the lighting device to emit colored light when the cumulative duration reaches a white light irradiation duration threshold.
[0035] In a third aspect, the present application provides an electronic device, comprising a memory and a processor, wherein,
[0036] the memory is connected with the processor, configured to store a program;
[0037] the processor is configured to realize the lighting control method for the intensive animal breeding house according to the first aspect or any implementation manner of the first aspect by running the program in the memory.
[0038] In a fourth aspect, the present application provides a computer program product, when the computer program is executed by a processor, realizing the lighting control method for the intensive animal breeding house according to the first aspect or any implementation manner of the first aspect.
[0039] In a fifth aspect, the present application provides a computer readable storage medium, the computer readable storage medium storing a computer program, when the computer program is run by a processor, realizing the lighting control method for the intensive animal breeding house according to the first aspect or any implementation manner of the first aspect.
[0040] The embodiment of the present application provides a lighting control method and related equipment of an intensive animal breeding house, the state of a lighting device in the animal breeding house is acquired, if the state indicates that the lighting device is in a running state, the starting mode of the lighting device is acquired, when the starting mode is manual starting and the lighting device emits white light, the cumulative duration of the white light emitted by the lighting device is acquired, when the cumulative duration reaches a white light irradiation duration threshold value, the lighting device is controlled to emit colored light. In the present application, when the lighting device is started to emit white light in a manual mode, the cumulative duration of the white light emitted by the lighting device is used to accurately control the duration of the white light emitted by the lighting device through the cumulative duration, so that the light control precision of the lighting device is ensured. In addition, the white light is switched to colored light, so that the growth speed of animals in the animal breeding house can be improved. BRIEF DESCRIPTION OF DRAWINGS
[0041] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are only embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the provided drawings.
[0042] Figure 1 The flow of the lighting control method of the intensive animal breeding house provided by the embodiment of the present application Figure One .
[0043] Figure 2 The flow of the lighting control method of the intensive animal breeding house provided by the embodiment of the present application Figure Two .
[0044] Figure 3 The flow of the lighting control method of the intensive animal breeding house provided by the embodiment of the present application Figure Three .
[0045] Figure 4 The schematic diagram of internal noise of the lighting control device of the intensive animal breeding house provided by the embodiment of the present application.
[0046] Figure 5 The structural schematic diagram of the lighting control device of the intensive animal breeding house provided by the embodiment of the present application.
[0047] Figure 6 The structural schematic diagram of the electronic device provided by the embodiment of the present application. DETAILED DESCRIPTION
[0048] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of the present application.
[0049] With the development of breeding technology, animals are bred in an intensive way with high density and high efficiency.
[0050] In the process of breeding animals in an intensive way, the animals in the animal breeding house need to be irradiated with light. The irradiation time of the light has a great influence on the growth of the animals. However, the irradiation of the light is usually controlled manually, and the control precision of the light is low, which has a certain influence on the growth of the animals, that is, there is a problem of low growth efficiency of the animals.
[0051] Therefore, the embodiments of the present application are dedicated to providing an illumination control method for an intensive animal breeding house and related equipment,
[0052] obtaining the state of the lighting device in the animal breeding house, if the state indicates that the lighting device is in a running state, obtaining the starting mode of the lighting device, when the starting mode is manual starting and the lighting device emits white light, obtaining the cumulative duration of the lighting device emitting white light, when the cumulative duration reaches a white light irradiation duration threshold, controlling the lighting device to emit colored light. In the present application, when the lighting device is started by a manual mode to emit white light, the cumulative duration of the lighting device emitting white light is obtained to accurately control the duration of the white light emitted by the lighting device through the cumulative duration, so as to ensure the light control precision of the lighting device. In addition, by switching the white light to colored light, the growth speed of the animals in the animal breeding house can be improved.
[0053] The illumination control method for an intensive animal breeding house and related equipment provided by the embodiments of the present application can be applied to the animal breeding scene.
[0054] Exemplary Method
[0055] Figure 1 The illumination control method for an intensive animal breeding house provided by the embodiments of the present application Figure One As shown in Figure 1 , the illumination control method for an intensive animal breeding house provided by the embodiments of the present application includes:
[0056] Step S101, obtaining the state of the lighting device in the animal breeding house.
[0057] In the embodiment, the execution subject is a lighting control device of an intensive animal breeding house. For the convenience of description, the device is used to represent the lighting control device of the intensive animal breeding house. Intensive refers to the operation mode of improving efficiency by improving the quality of operating factors, increasing the content of operating factors, concentrating the input of operating factors, and adjusting the combination mode of operating factors in the same economic range. The device can be a control device of an animal breeding house, such as a line controller. The animal breeding house includes intensive building animal breeding houses and intensive non-building animal breeding houses.
[0058] The device is communicatively connected with the lighting devices in the animal breeding house. The lighting devices can emit white light and colored light, or some of the lighting devices in the animal breeding house emit white light, and the other lighting devices emit colored light.
[0059] The animal breeding house can be used to breed any animal, such as breeding live pigs and breeding chickens. The lighting devices in the animal breeding house can be manually started. The reason for manually starting the lighting devices can be that the breeding personnel are carrying out business in the animal breeding house, such as marking and treating animals. The animal breeding house uses white light to irradiate animals, but the irradiation time of white light should not be too long. Therefore, when the breeding personnel manually start the lighting devices, the duration of the lighting devices irradiating white light also needs to be determined.
[0060] To this end, the device obtains the state of the lighting devices in the animal breeding house, such as the running state or the closed state. The lighting devices are provided with a communication module and a control module. The control module stores the current state information of the lighting devices. When the device transmits a request for obtaining state information to the lighting devices, the control module sends the current state information to the device through the communication module. The device determines the state of the lighting devices based on the current state information.
[0061] In step S102, when the state indicates that the lighting devices are in the running state, the starting mode of the lighting devices is obtained.
[0062] The current state information contains the state of the lighting device. If the state is a running state, the starting mode of the lighting device needs to be obtained based on the current state information. The current state information contains the starting mode of the lighting device. The device directly extracts the starting mode from the current state information. The starting mode includes manual starting and automatic starting. Manual starting refers to starting through a switch device of the lighting device. Automatic starting refers to that the device controls the lighting device to start. Specifically, the switch device is provided with a touch switch. When the touch switch is closed, the touch switch sends a message to the control module. The control module can determine that the starting of the lighting device is manual starting based on the message. If the lighting device receives an opening instruction of the device or the lighting device is automatically started, the starting mode of the lighting device is automatic starting.
[0063] In step S103, in the case that the starting mode of the lighting device is manual starting and the lighting device emits white light, the cumulative duration of the lighting device emitting white light is obtained.
[0064] When the starting mode of the lighting device is manual starting, it can be determined that the lighting device is manually started by the breeding personnel. Therefore, it is necessary to ensure the irradiation duration of the white light.
[0065] In this embodiment, the breeding of animals can be improved by alternating white light and colored light to improve the growth efficiency of animals. For example, the animals are pigs, and the colored light is green light. The green light can be perceived by the pigs, and the green light can make the pigs calm and feel comfortable, thereby avoiding the pigs from being annoyed and biting each other.
[0066] When the lighting device irradiates white light each time, the irradiation duration of the light is counted, that is, the cumulative duration of the white light is stored in the lighting device. The device sends a request for obtaining the cumulative duration of the lighting device to the lighting device, so that the lighting device sends the cumulative duration to the device.
[0067] In addition, if the starting mode of the lighting device is automatic starting and the lighting device emits white light, the current time point is obtained. If the current time point is located in the irradiation time period of the colored light, the lighting device is controlled to emit the colored light. In this way, the lighting device in the animal breeding house can automatically irradiate colored light, ensuring that the animals have enough light irradiation time and ensuring the growth rate of the animals.
[0068] In step S104, in the case that the cumulative duration reaches the white light irradiation duration threshold, the lighting device is controlled to emit the colored light.
[0069] The device stores a white light irradiation duration threshold value, which can be set by the breeder. After obtaining the duration of the white light emitted by the lighting device, the device compares the accumulated duration with the white light irradiation duration threshold value.
[0070] If the accumulated duration reaches the white light irradiation duration threshold value, it can be determined that the time for the lighting device to emit white light is sufficient, and it is necessary to switch to colored light, i.e., the device controls the lighting device to emit colored light.
[0071] In this embodiment, the state of the lighting device in the animal breeding house is obtained. If the state indicates that the lighting device is in an operating state, the starting mode of the lighting device is obtained. When the starting mode is manual starting and the lighting device emits white light, the accumulated duration of the white light emitted by the lighting device is obtained. When the accumulated duration reaches the white light irradiation duration threshold value, the lighting device is controlled to emit colored light. In this embodiment, when the lighting device is started by a manual mode to emit white light, the accumulated duration of the white light emitted by the lighting device is used to accurately control the duration of the white light emitted by the lighting device through the accumulated duration, ensuring the accuracy of the light control of the lighting device. In addition, by switching the white light to colored light, the growth rate of animals in the animal breeding house can be improved.
[0072] Figure 2 A lighting control method for an intensive animal breeding house provided by an embodiment of the present application Figure Two , based on Figure 1 the embodiment shown in FIG. 1, step S104 includes:
[0073] Step S201, obtaining the current time point.
[0074] Step S202, in the case where the current time point is in the lighting time period of colored light, controlling the lighting device to emit colored light.
[0075] In this embodiment, both colored light and white light have corresponding lighting time periods. By setting the lighting time periods of white light and colored light for animals, it can be ensured that animals can grow rapidly.
[0076] To this end, the device obtains the current time point based on its own clock and determines whether the current time point is in the lighting time period of colored light. If the current time point is in the lighting time period of colored light, it can be determined that the animal breeding house needs to be irradiated with colored light, i.e., the device controls the lighting device to emit colored light.
[0077] If the current time point is in the lighting time period of white light, the lighting device is not controlled, i.e., the lighting device emits white light.
[0078] In the embodiment, if the current time point is located in the lighting time period of the colored light, the lighting device is controlled to emit the colored light, so as to promote the growth of the animals based on the colored light.
[0079] Figure 3 A lighting control method of an intensive animal breeding house provided in the embodiment Figure Three . Based on Figure 1 or Figure 2 The embodiment shown in the figure, step S104 includes:
[0080] Step S301, obtaining target parameters of animals in the animal breeding house, the target parameters including at least one of the number of animals, the weight of animals, the physiological stage of animals, and the type of animals.
[0081] In the embodiment, the control of the lighting device also involves the control of the illuminance of light, which also affects the growth of animals to some extent. The illuminance of the light of the lighting device is related to the target information of the animals in the animal breeding house, and the target information includes at least one of the number of animals, the weight of animals, the type of animals, and the physiological stage of animals. The target information is stored in a database, and the device obtains the target information from the database.
[0082] Step S302, determining the illuminance range of the colored light matched with the target parameters.
[0083] After obtaining the target information, the device calculates the illuminance range of the colored light through the target information. For example, the device stores a mapping relationship between the number of animals, the weight of animals, the physiological stage of animals, and the illuminance range in the animal breeding house, and the illuminance range is calculated as the illuminance range of the colored light through the mapping relationship and the target information. In addition, the device can also store a lookup table between the target information and the illuminance range, and the device queries the illuminance range of the colored light in the lookup table through the target information.
[0084] Step S303, controlling the lighting device to emit the colored light according to the target illuminance, and the target illuminance is located in the illuminance range of the colored light.
[0085] After determining the illuminance range of the colored light, the target illuminance is determined based on the illuminance range of the colored light, and the target illuminance is located in the illuminance range of the colored light. The device then controls the lighting device to emit the colored light according to the target illuminance.
[0086] It should be noted that in the embodiment, the device can control the lighting device to emit the colored light according to the target illuminance in the lighting time period of the colored light.
[0087] Specifically, if the illumination of the colored light is less than the lower limit value of the colored light illumination range, the illumination of the colored light is adjusted to be within the colored light illumination range; if the illumination of the colored light is greater than the upper limit value of the colored light illumination range, the illumination of the colored light is adjusted to be within the colored light illumination range.
[0088] In this embodiment, the device determines the colored light illumination range based on the number, weight, and physiological stage of the animals in the animal breeding house, so as to control the illumination of the colored light of the lighting device to be within the illumination range, and ensure sufficient light to avoid insufficient light affecting the growth of the animals.
[0089] Figure 4 The flow of the lighting control method for the intensive animal breeding house provided in this embodiment Figure Four Based on any one of the embodiments shown in Figures 1-3 After step S103, the method comprises the following steps:
[0090] In step S401, when the accumulated duration does not reach the white light illumination duration threshold, the current illumination of the white light emitted by the lighting device and the target parameters of the animals in the animal breeding house are obtained, and the target parameters include at least one of the number, weight, physiological stage, and species of the animals.
[0091] In step S402, the white light illumination range matched by the target parameters is determined.
[0092] In step S403, when the current illumination is not within the white light illumination range, the illumination of the white light emitted by the lighting device is adjusted so that the adjusted illumination of the lighting device is within the white light illumination range.
[0093] In this embodiment, when the device obtains the accumulated duration of the white light emitted by the lighting device, and the accumulated duration does not reach the white light illumination duration threshold, the lighting device can continue to emit white light, but the illumination of the white light can be determined whether it meets the light demand of the animals in the animal breeding house.
[0094] To this end, the device obtains target information, and the target information includes at least one of the number, weight, species, and physiological stage of the animals. The target information is stored in a database, and the device obtains the target information from the database.
[0095] After obtaining the target information, the device calculates the white light illumination range according to the target information. For example, the device stores a mapping relationship between the number of animals, the weight of animals, the physiological stage of animals and the illumination range in the animal breeding house, and the illumination range is calculated according to the mapping relationship and the target information. In addition, the device can also store a lookup table between the target information and the illumination range, and the device can query the illumination range of the white light in the lookup table according to the target information.
[0096] After determining the illumination range of the white light, the illumination of the lighting device is adjusted so that the adjusted illumination of the lighting device is within the illumination range of the white light. Specifically, if the illumination of the white light is less than the lower limit of the illumination range of the white light, the illumination of the white light is adjusted upwards so that the illumination of the white light is within the illumination range of the white light. If the illumination of the white light is greater than the upper limit of the illumination range of the white light, the illumination of the white light is adjusted downwards so that the illumination of the white light is within the illumination range of the white light.
[0097] It should be noted that in this embodiment, the device can control the lighting device to emit white light according to the target illumination during the illumination time period of the colored light.
[0098] In this embodiment, the device determines the illumination range of the white light based on the number, weight and physiological stage of animals in the animal breeding house, and controls the lighting device to adjust the illumination of the white light to ensure that the emitted white light is sufficient to avoid insufficient light affecting the growth of animals.
[0099] In an embodiment, when the device obtains the state of the lighting device, if the state indicates that the lighting device is in an off state, the current time point is obtained. If the current time point is within the illumination time period of the white light, the lighting device is controlled to emit white light. If the current time period is within the illumination time period of the colored light, the lighting device is controlled to emit colored light. The illumination time period of the colored light and the illumination time period of the white light can be any suitable time period, which can be set by the breeder. In addition, when the white light or the colored light is illuminated, the illumination of the light emitted by the lighting device needs to be adjusted, that is, the illumination of the white light is adjusted to be within the illumination range of the white light, and the colored light is adjusted to be within the illumination range of the colored light.
[0100] In this embodiment, by setting the illumination time period of the white light and the illumination time period of the colored light, the lighting device can automatically illuminate the white light during the illumination time period of the white light, and the lighting device can automatically illuminate the colored light during the illumination time period of the colored light, thereby improving the intelligent control of the lighting device.
[0101] Based on the above embodiment, the lighting control method of the intensive animal breeding house provided by the present application is briefly described, and the lighting control method of the intensive animal breeding house is divided into two control processes, which can be controlled in sequence or in parallel. The two control processes are as follows:
[0102] 1. Light on duration control process:
[0103] The light on control in the animal breeding house is divided into manual on and automatic control. The main implementation measure of manual on is that personnel realize the on and off of white light by manually opening and closing the unit light control switch, which mainly ensures that the on-site business of the animal breeder is not affected. When the animal breeder manually turns on the white light, the automatic on light is not effective. However, there is a restriction requirement for manually turning on the white light, in order to ensure that the illumination time of the colored light is not affected, the duration of manually turning on the white light cannot be higher than “n” hours, and the specific duration is different for different animal feeding. When the manual switch is opened and the cumulative on duration within a day does not exceed “n” hours, the white light is turned on and the colored light is turned off. If the cumulative on duration within a day exceeds “n” hours, the white light is turned off and the colored light is automatically turned on.
[0104] When the white light is not manually turned on, the on duration of the white light and the on duration of the colored light are set in the program. First, it is judged whether the current time period is in the white light on time period, if yes, the white light is turned on, if not, it is judged whether it is in the colored light on time period, if yes, the colored light is turned on, if not, the light is turned off.
[0105] 2. Illumination intensity control process:
[0106] The device obtains the basic information (animal type, pig, weight, quantity, physiological stage, etc.) in the animal breeding house, and then matches the illumination intensity standard according to the corresponding basic information. It is judged whether the white light is turned on, if yes, it is judged whether the white light is in the standard “n1~n2lx” standard, if yes, the current illumination is run, if not, it is judged whether the current illumination is lower or higher than the standard. If the current illumination is higher than the standard illumination, the illumination is lowered by the difference, if the current illumination is lower than or equal to the standard illumination, the illumination is raised by the difference.
[0107] When the white light is not turned on, it is judged whether the green light is turned on, if not, it is run according to the current cycle. When the colored light is turned on, it is judged whether the colored light is in the standard “n3~n4lx” standard, if yes, the current illumination is run, if not, it is judged whether the current illumination is lower or higher than the standard. If the current illumination is higher than the standard illumination, the illumination is lowered by the difference, if the current illumination is lower than or equal to the standard illumination, the illumination is raised by the difference.
[0108] The application has the advantages that the light-on color type, light-on duration, and light-on intensity can be automatically controlled, and the program automatically judges. The dependence on people is reduced, and the manual adjustment function is provided considering the business development demand of on-site operation of people. The intelligent adjustment demand of light in the animal breeding process is fully met, and the animal breeding is supported to move towards intelligence.
[0109] The application has the effects that, taking the use of green light in a pig breeding and fattening house as an example, the green light is used in the pig breeding house on site, and intelligent control is completely realized without the need for artificial opening and closing. The light duration and intensity are relatively fixed for pigs, which is beneficial to the stability of the biological rhythm of pigs and has a positive effect on the growth performance of pigs. Compared with the use of white light units, the daily weight gain is increased by 2.3%, and the cost per kilogram is reduced by 2.56%, which supports the improvement of pig efficiency index and the reduction of feeding cost.
[0110] Exemplary Apparatus
[0111] Corresponding to the lighting control method of the intensive animal breeding house described above, the embodiment of the application also provides a lighting control device for an intensive animal breeding house. Figure 5 is a module schematic diagram of a lighting control device for an intensive animal breeding house provided by the embodiment of the application. The lighting control device for an intensive animal breeding house provided by the embodiment of the application comprises:
[0112] The first acquisition module 510 is configured to acquire the state of the lighting device in the animal breeding house, and the animal breeding house includes an intensive building animal breeding house and an intensive non-building animal breeding house.
[0113] The second acquisition module 520 is configured to acquire the starting mode of the lighting device when the state indicates that the lighting device is in a running state.
[0114] The third acquisition module 530 is configured to acquire the cumulative duration of the white light emitted by the lighting device when the starting mode of the lighting device is manual starting and the lighting device emits white light.
[0115] The control module 540 is configured to control the lighting device to emit colored light when the cumulative duration reaches the white light irradiation duration threshold.
[0116] In some implementations, the lighting control device 500 for the intensive animal breeding house is further configured to:
[0117] acquire the current time point;
[0118] control the lighting device to emit colored light when the current time point is in the lighting time period of colored light.
[0119] In some implementations, the lighting control device 500 for intensive animal husbandry pens is also used for:
[0120] Obtain target parameters of animals in animal husbandry pens. Target parameters include at least one of the following: number of animals, weight, physiological stage, and species.
[0121] Determine the range of colored light illuminance that matches the target parameters;
[0122] The lighting equipment is controlled to emit colored lights according to the target illuminance, which is within the range of the colored light illuminance.
[0123] In some implementations, the lighting control device 500 for intensive animal husbandry pens is also used for:
[0124] If the cumulative duration does not reach the threshold for white light irradiation duration, the current illuminance of the white light emitted by the lighting equipment and the target parameters of the animals in the animal breeding pens are obtained. The target parameters include at least one of the following: number of animals, weight, physiological stage and species.
[0125] Determine the range of white light illuminance that matches the target parameters;
[0126] If the current illuminance is not within the white light illuminance range, adjust the illuminance of the white light emitted by the lighting equipment so that the adjusted illuminance of the lighting equipment is within the white light illuminance range.
[0127] In some implementations, the lighting control device 500 for intensive animal husbandry pens is also used for:
[0128] Obtain the current time point when the status indicator lighting device is in the off state;
[0129] If the current time falls within the period of white light illumination, control the lighting equipment to emit white light;
[0130] If the current time falls within the period of colored light illumination, control the lighting equipment to emit colored light.
[0131] In some implementations, the lighting control device 500 for intensive animal husbandry pens is also used for:
[0132] If the lighting equipment is set to start automatically and emits white light, obtain the current time point.
[0133] If the current time falls within the period of colored light illumination, control the lighting equipment to emit colored light.
[0134] In some implementations, the colored light is green.
[0135] The lighting control device for intensive animal husbandry pens provided in this embodiment belongs to the same concept as the lighting control method for intensive animal husbandry pens provided in the above embodiments of this application. It can execute the lighting control method for intensive animal husbandry pens provided in any of the above embodiments of this application, and has the corresponding functional modules and beneficial effects for executing the lighting control method for intensive animal husbandry pens. Technical details not described in detail in this embodiment can be found in the specific processing content of the lighting control method for intensive animal husbandry pens provided in the above embodiments of this application, and will not be repeated here.
[0136] The functions of each module in the lighting control device of intensive animal breeding pens can be implemented by the same or different processors, and this application embodiment does not limit this.
[0137] It should be understood that the modules in the lighting control device of the above-mentioned intensive animal breeding pens can be implemented in the form of a processor calling software. For example, the system includes a processor connected to a memory that stores instructions. The processor calls the instructions stored in the memory to implement any of the above methods or to realize the functions of each module of the device. The processor can be a general-purpose processor, such as a CPU or microprocessor, and the memory can be internal to the device or external to the system. Alternatively, the modules in the system can be implemented in the form of hardware circuits. By designing the hardware circuits, some or all of the module functions can be realized. The hardware circuit can be understood as one or more processors. For example, in one implementation, the hardware circuit is an ASIC, and the functions of some or all of the above modules are realized by designing the logical relationships between the components within the circuit. In another implementation, the hardware circuit can be implemented by a PLD. Taking an FPGA as an example, it can include a large number of logic gates. The connection relationships between the logic gates are configured through a configuration file, thereby realizing the functions of some or all of the above modules. All modules of the lighting control device for the above-mentioned intensive animal breeding pens can be implemented entirely through software called by a processor, or entirely through hardware circuits, or partially through software called by a processor with the remainder implemented through hardware circuits.
[0138] In this application embodiment, a processor is a circuit with signal processing capabilities. In one implementation, the processor can be a circuit with instruction reading and execution capabilities, such as a CPU, microprocessor, GPU, or DSP. In another implementation, the processor can implement certain functions through the logical relationships of hardware circuits. These logical relationships are fixed or reconfigurable. For example, the processor may be a hardware circuit implemented as an ASIC or PLD, such as an FPGA. In a reconfigurable hardware circuit, the process of the processor loading a configuration document and configuring the hardware circuit can be understood as the processor loading instructions to implement the functions of some or all of the above modules. Furthermore, it can also be a hardware circuit designed for artificial intelligence, which can be understood as an ASIC, such as an NPU, TPU, or DPU.
[0139] As can be seen, each module in the lighting control device of the above-mentioned intensive animal breeding pens can be one or more processors (or processing circuits) configured to implement the above methods, such as: CPU, GPU, NPU, TPU, DPU, microprocessor, DSP, ASIC, FPGA, or a combination of at least two of these processor forms.
[0140] Furthermore, the modules in the lighting control device for the aforementioned intensive animal husbandry pens can be integrated in whole or in part, or they can be implemented independently. In one implementation, these modules are integrated together in the form of a System-on-Chip (SOC). This SOC may include at least one processor for implementing any of the above methods or for implementing the functions of the modules of the device. The at least one processor can be of different types, such as CPU and FPGA, CPU and artificial intelligence processor, CPU and GPU, etc.
[0141] Exemplary Electronic Device
[0142] This application provides another structural schematic diagram of an electronic device, see [link to schematic diagram]. Figure 6 As shown, the electronic device includes a memory 600 and a processor 610; wherein the memory 600 is connected to the processor 610 and is used to store programs; the processor 610 is used to implement the lighting control method for intensive animal breeding pens disclosed in any of the above embodiments by running the programs stored in the memory 600.
[0143] Specifically, the aforementioned electronic device may further include: a bus, a communication interface 620, an input device 630, and an output device 640. The electronic device may also include a data transceiver module, an image monitoring module, and a signal monitoring module.
[0144] The processor 610, memory 600, communication interface 620, input device 630, and output device 640 are interconnected via a bus. Among them:
[0145] A bus can include a pathway for transmitting information between various components in an electronic device.
[0146] The processor 610 can be a general-purpose processor, such as a general-purpose central processing unit (CPU), a microprocessor, etc., or an application-specific integrated circuit (ASIC), or one or more integrated circuits used to control the execution of the program of the present invention. It can also be a digital signal processor (DSP), an application-specific integrated circuit (ASIC), an off-the-shelf programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, or discrete hardware components.
[0147] The processor 610 may include a main processor, as well as a baseband chip, modem, etc.
[0148] The memory 600 stores a program that executes the technical solution of this invention, and may also store an operating system and other key business functions. Specifically, the program may include program code, which includes computer operation instructions. More specifically, the memory 600 may include read-only memory (ROM), other types of static storage devices capable of storing static information and instructions, random access memory (RAM), other types of dynamic storage devices capable of storing information and instructions, disk storage, flash memory, etc.
[0149] Input device 630 may include a device for receiving user input data and information, such as a keyboard, mouse, camera, scanner, light pen, voice input device, touch screen, pedometer, or gravity sensor.
[0150] Output device 640 may include devices that allow information to be output to a user, such as a display screen, printer, speaker, etc.
[0151] The communication interface 620 may include a device that uses any transceiver to communicate with other devices or communication networks, such as Ethernet, Radio Access Network (RAN), Wireless Local Area Network (WLAN), etc.
[0152] The processor 610 executes the program stored in the memory 600 and calls other devices, which can be used to implement the various steps of any of the intensive animal breeding pen lighting control methods provided in the above embodiments of this application.
[0153] This application also proposes a chip, which includes a processor and a data interface. The processor reads and runs a program stored in the memory through the data interface to execute the lighting control method for intensive animal breeding pens described in any of the above embodiments. For the specific processing procedure and its beneficial effects, please refer to the above-described embodiments of the lighting control method for intensive animal breeding pens.
[0154] Exemplary Computer Program Product and Storage Medium
[0155] In addition to the methods and devices described above, embodiments of this application may also be computer program products, which include computer program instructions that, when executed by a processor, cause the processor to perform the steps in the lighting control method for intensive animal husbandry pens according to various embodiments of this application as described in any of the above embodiments of this specification.
[0156] Computer program products can be written in any combination of one or more programming languages to perform the operations of the embodiments of this application. The programming languages include object-oriented programming languages such as Java and C++, as well as conventional procedural programming languages such as C or similar languages. The program code can be executed entirely on the user's computing device, partially on the power device, as a standalone software package, partially on the user's computing device and partially on a remote computing device, or entirely on a remote computing device or server.
[0157] Furthermore, embodiments of this application may also be storage media storing computer programs, which are executed by a processor in the lighting control method for intensive animal husbandry pens according to various embodiments of this application described in any of the above embodiments of this specification, specifically implementing the steps of the lighting control method for intensive animal husbandry pens as described above.
[0158] For the foregoing method embodiments, in order to simplify the description, they are all described as a series of actions. However, those skilled in the art should understand that this application is not limited to the described order of actions, because according to this application, some steps can be performed in other orders or simultaneously. Furthermore, those skilled in the art should also understand that the embodiments described in the specification are all preferred embodiments, and the actions and modules involved are not necessarily essential to this application.
[0159] It should be noted that the various embodiments in this specification are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. Similar or identical parts between embodiments can be referred to interchangeably. For apparatus embodiments, since they are basically similar to method embodiments, the description is relatively simple; relevant parts can be referred to the descriptions in the method embodiments.
[0160] The steps in the methods of the various embodiments of this application can be adjusted, merged, or deleted in order according to actual needs, and the technical features described in each embodiment can be replaced or combined.
[0161] The units of the apparatus in the various embodiments of this application can be merged, divided, and deleted according to actual needs.
[0162] It should be understood that the disclosed terminals, devices, and methods can be implemented in other ways, given the several embodiments provided in this application. For example, the terminal embodiments described above are merely illustrative. For instance, the division of modules or sub-modules is only a logical functional division, and in actual implementation, there may be other division methods. For example, multiple sub-modules or modules may be combined or integrated into another module, or some features may be ignored or not executed. Furthermore, the coupling or direct coupling or communication connection shown or discussed may be indirect coupling or communication connection through some interfaces, devices, or modules, and may be electrical, mechanical, or other forms.
[0163] The modules or submodules described as separate components may or may not be physically separate. The components that constitute a module or submodule may or may not be physical modules or submodules; that is, they may be located in one place or distributed across multiple network modules or submodules. Some or all of the modules or submodules can be selected to achieve the purpose of this embodiment's solution, depending on actual needs.
[0164] Furthermore, the functional modules or sub-modules in the various embodiments of this application can be integrated into one processing module, or each module or sub-module can exist physically separately, or two or more modules or sub-modules can be integrated into one module. The integrated modules or sub-modules described above can be implemented in hardware or in the form of software functional modules or sub-modules.
[0165] Those skilled in the art will further recognize that the units and algorithm steps of the various examples described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, computer software, or a combination of both. To clearly illustrate the interchangeability of hardware and software, the components and steps of the various examples have been generally described in terms of functionality in the foregoing description. Whether these functions are implemented in hardware or software depends on the specific application and design constraints of the technical solution. Those skilled in the art can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of this application.
[0166] The steps of the methods or algorithms described in conjunction with the embodiments disclosed herein can be implemented directly by hardware, a software unit executed by a processor, or a combination of both. The software unit can be located in random access memory (RAM), main memory, read-only memory (ROM), electrically programmable ROM, electrically erasable programmable ROM, registers, hard disk, removable disk, CD-ROM, or any other form of storage medium known in the art.
[0167] Finally, it should be noted that in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes the element.
[0168] The above description of the disclosed embodiments enables those skilled in the art to make or use this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this application. Therefore, this application is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A method for controlling lighting in intensive animal husbandry pens, characterized in that, include: The status of lighting equipment in animal breeding pens is obtained, including intensive multi-story animal breeding pens and intensive non-multi-story animal breeding pens; The status indicates that the lighting device is in operation, and the activation mode of the lighting device is obtained; When the lighting device is started manually and emits white light, the cumulative duration of the white light emitted by the lighting device is obtained; When the cumulative duration reaches the white light irradiation duration threshold, the lighting device is controlled to emit colored light.
2. The lighting control method for intensive animal husbandry pens according to claim 1, characterized in that, The control of the lighting device to emit colored light includes: Get the current time point; If the current time point falls within the illumination period of the colored lights, control the lighting device to emit colored lights.
3. The lighting control method for intensive animal husbandry pens according to claim 1, characterized in that, The control of the lighting device to emit colored light includes: Obtain target parameters of the animals in the animal breeding enclosure, wherein the target parameters include at least one of the following: number of animals, weight, physiological stage, and species; Determine the range of colored light illuminance that matches the target parameters; The lighting device is controlled to emit colored light according to a target illuminance, wherein the target illuminance is within the range of the colored light illuminance.
4. The lighting control method for intensive animal husbandry pens according to claim 1, characterized in that, After obtaining the cumulative duration of white light emitted by the lighting device, the method further includes: If the cumulative duration does not reach the white light irradiation duration threshold, the current illuminance of the white light emitted by the lighting device and the target parameters of the animals in the animal breeding enclosure are obtained. The target parameters include at least one of the following: animal number, weight, physiological stage, and species. Determine the range of white light illuminance that matches the target parameters; If the current illuminance is not within the range of the white light illuminance, adjust the illuminance of the white light emitted by the lighting device so that the adjusted illuminance of the lighting device is within the range of the white light illuminance.
5. The lighting control method for intensive animal husbandry pens according to claim 1, characterized in that, After obtaining the status of the lighting equipment in the animal husbandry pens, the process also includes: If the status indicates that the lighting device is in the off state, obtain the current time point; If the current time point falls within the white light illumination period, control the lighting device to emit white light; When the current time point falls within the illumination period of the colored light, the lighting device is controlled to emit colored light.
6. The lighting control method for intensive animal husbandry pens according to claim 1, characterized in that, After obtaining the activation mode of the lighting device, the method further includes: When the lighting device is set to automatic start and emits white light, obtain the current time point. When the current time point falls within the illumination period of the colored light, the lighting device is controlled to emit colored light.
7. The lighting control method for intensive animal husbandry pens according to any one of claims 1-6, characterized in that, The colored light is green.
8. A lighting control device for intensive animal husbandry pens, characterized in that, include: The first acquisition module is used to acquire the status of lighting equipment in animal breeding pens, which includes intensive multi-story animal breeding pens and intensive non-multi-story animal breeding pens; The second acquisition module is used to acquire the start-up mode of the lighting device when the status indicates that the lighting device is in operation. The third acquisition module is used to acquire the cumulative duration of the white light emitted by the lighting device when the lighting device is started manually and the lighting device emits white light. The control module is used to control the lighting device to emit colored light when the cumulative duration reaches the white light irradiation duration threshold.
9. An electronic device, characterized in that, Including memory and processor, among which, The memory is connected to the processor and is used to store programs; The processor is used to implement the lighting control method for intensive animal husbandry pens as described in any one of claims 1 to 7 by running the program in the memory.
10. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a computer program, which, when executed by a processor, implements the lighting control method for intensive animal husbandry pens as described in any one of claims 1-7.