Power supply equipment interface interaction method and system
By displaying operation graphics and parameter values on the operation interface of the power supply device, playing guide animations, and adjusting the interface status in response to user operations, the problem of complex and unintuitive parameter settings in the prior art is solved, and the ease of use and operation efficiency of the device is improved.
Patent Information
- Application Number
- CN202510146503.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2045-02-10
AI Technical Summary
In the prior art, the operation interface of the power supply equipment is complex, unintuitive, inefficient and lacks intuitive guidance when setting parameters, resulting in low ease of use of the equipment.
By obtaining the selected test mode, the operation graphics and parameter values are displayed on the display interface based on each adjustable parameters, and the guidance animation is played to display the display state changes of the adjustment method and operation graphics. After the boot animation is completed, the display status and parameter values of the operation graphics are adjusted in response to the operation command.
It makes the interface operation easier and more intuitive, improves the ease of use and operation efficiency of the equipment, and solves the problems of complex and unintuitive parameter settings in the existing technology.
Smart Images

Figure CN120161982A_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present application relate to the technical field of electronic digital data processing, and in particular, to a power device interface interaction method and system. Background Art
[0002] A power device is a device that converts other forms of energy into electrical energy and provides a stable current for circuits and devices. It is a core component in electronic devices and systems, ensuring that most electronic devices and systems can operate normally. The operation interface of a power device is an intuitive window for users to interact with the power device. Through this operation interface, users can control various functions of the power device and obtain relevant status information to meet different application requirements. At the same time, the operation interface of the power device is also an important way for users to understand the working status of the power device and perform fault diagnosis. Therefore, when designing a power device, the friendliness and usability of the operation interface are very important considerations.
[0003] In the related art, the operation interface of a power device usually presents parameters in the form of text, numbers, forms, or static graphics. When setting parameters in the operation interface of the power device in this way, the operation is complex and not intuitive, the efficiency is low, and there is a lack of intuitive guidance, resulting in low usability of the device. Summary of the Invention The present application provides a power device interface interaction method and system, which solves the problems in the prior art that when setting parameters in the operation interface of a power device, the operation is complex and not intuitive, the efficiency is low, and there is a lack of intuitive guidance, resulting in low usability of the device, and can make the interface operation simpler and more intuitive, improving the usability and operation efficiency of the device.
[0004] In a first aspect, the present application provides a power device interface interaction method, including: Obtaining a selected test mode, where the test mode includes multiple different adjustable parameters of the power device; Based on each of the adjustable parameters, corresponding operation graphics and parameter values are displayed on a display interface, and a guiding animation corresponding to the test mode is played. The guiding animation is a dynamic picture showing the adjustment methods of each of the adjustable parameters and the change in the display state of the corresponding operation graphics; When the guiding animation finishes playing, in response to an operation instruction on the operation graphics, the display state of the corresponding operation graphics on the display interface and the parameter value of the corresponding adjustable parameter are adjusted based on the operation instruction, where different display states of the operation graphics synchronously correspond to parameter values of different adjustable parameters.
[0005] Optionally, the displaying corresponding operation graphics and parameter values on the display interface based on each of the adjustable parameters includes: Query the pre-stored display information corresponding to each of the adjustable parameters. The pre-stored display information includes the operation graphics corresponding to the adjustable parameters, the display positions of the operation graphics, the parameter values, and the display positions of the parameter values. Display the operation graphics and the parameter values on the display interface according to the display positions of the operation graphics and the parameter values.
[0006] Optionally, playing the guiding animation corresponding to the test mode includes: Obtain the pre-stored guiding process of the test mode. The pre-stored guiding process includes the guiding order and guiding actions of each of the operation graphics. Based on the guiding actions, operate each of the operation graphics in sequence according to the guiding order to realize the playing of the guiding animation. Wherein, the display state of the operation graphics and the parameter values of the corresponding adjustable parameters change synchronously according to the guiding actions.
[0007] Optionally, playing the guiding animation corresponding to the test mode includes: Obtain the guiding operation information of the operation graphics corresponding to each of the adjustable parameters, and operate the operation graphics corresponding to each of the adjustable parameters in random order based on the guiding operation information to realize the playing of the guiding animation. Wherein, the display state of the operation graphics and the parameter values of the corresponding adjustable parameters change synchronously according to the guiding operation information.
[0008] Optionally, when the guiding animation finishes playing, it further includes: Turn on the touch screen operation function of the display interface or display the operation gesture icons on the display interface to make the operation graphics in an operable state.
[0009] Optionally, the operation instruction includes an operation direction and an operation distance. Adjusting the display state of the corresponding operation graphics in the display interface and the parameter values of the corresponding adjustable parameters based on the operation instruction includes: When the operation attribute of the operation graphics is a sliding attribute, determine the adjustment direction of the display state of the operation graphics and the parameter values of the associated adjustable parameters according to the operation direction, and determine the adjustment intensity of the display state of the operation graphics and the adjustment value of the associated adjustable parameters according to the operation distance. Simultaneously adjust the display state of the operation graphics and the parameter values of the associated adjustable parameters on the display interface according to the adjustment direction, the adjustment intensity, and the adjustment value.
[0010] Optionally, the operation instruction includes the number of clicks. Adjusting the display state of the corresponding operation graphic and the parameter value of the corresponding adjustable parameter in the display interface based on the operation instruction includes: When the operation attribute of the operation graphic is a click attribute, query the preset adjustment comparison table corresponding to the operation graphic according to the number of clicks to obtain the to-be-switched state of the display state of the operation graphic and the to-be-switched parameter value of the associated adjustable parameter; Adjust the display state of the operation graphic to the to-be-switched state, and adjust the parameter value of the adjustable parameter associated with the operation graphic to the to-be-switched parameter value.
[0011] In a second aspect, the present application further provides a power device interface interaction device, including: An acquisition module, configured to acquire a selected test mode, where the test mode includes multiple different adjustable parameters of the power device; A display module, configured to display corresponding operation graphics and parameter values in a display interface based on each of the adjustable parameters; A playback module, configured to play a guiding animation corresponding to the test mode, where the guiding animation is a dynamic picture showing the adjustment methods of each of the adjustable parameters and the change of the display state of the corresponding operation graphics; An adjustment module, configured to, when the guiding animation playback ends, in response to an operation instruction for the operation graphic, adjust the display state of the corresponding operation graphic and the parameter value of the corresponding adjustable parameter in the display interface based on the operation instruction, where different display states of the operation graphic synchronously correspond to parameter values of different adjustable parameters.
[0012] In a third aspect, the present application further provides a power device interface interaction device, and the device includes: One or more processors; A storage device, configured to store one or more programs, When the one or more programs are executed by the one or more processors, the one or more processors implement the power device interface interaction method described in the present application.
[0013] In a fourth aspect, the present application further provides a storage medium storing computer-executable instructions, and the computer-executable instructions are used to execute the power device interface interaction method described in the present application when executed by a computer processor.
[0014] In this application, after obtaining a selected test mode, corresponding operation graphics and parameter values are displayed on the display interface based on each adjustable parameter, and a guiding animation corresponding to the test mode is played. When the guiding animation ends, in response to an operation instruction for the operation graphic, the display state of the corresponding operation graphic in the display interface and the parameter value of the corresponding adjustable parameter are adjusted based on the operation instruction. By converting parameters into intuitive visual image objects through dynamic animations and using guiding animations to clarify the operation steps, the problems in the prior art that when setting parameters in the operation interface of a power device, the operation is complex and not intuitive, the efficiency is low, and there is a lack of intuitive guidance, resulting in low usability of the device are solved, enabling the interface operation to be more simple and intuitive, and improving the usability and operation efficiency of the device. Description of the Drawings
[0015] Figure 1 It is a flowchart of a power device interface interaction method provided by an embodiment of this application; Figure 2 It is a flowchart of a power device interface interaction method provided by an embodiment of this application, including a way of displaying operation graphics and parameter values; Figure 3 It is a schematic diagram of a display interface in a photovoltaic mode provided by an embodiment of this application; Figure 4 It is a flowchart of a power device interface interaction method provided by an embodiment of this application, including a way of playing a guiding animation; Figure 5 It is a flowchart of a power device interface interaction method provided by an embodiment of this application, including a way of adjusting the display state and parameter values; Figure 6 It is a flowchart of another power device interface interaction method provided by an embodiment of this application, including a way of adjusting the display state and parameter values; Figure 7 It is a block diagram of the module structure of a power device interface interaction device provided by an embodiment of this application; Figure 8 It is a schematic diagram of the structure of a power device interface interaction device provided by an embodiment of this application. Detailed Embodiments
[0016] The following further elaborates on the embodiments of this application in conjunction with the drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the embodiments of this application, rather than limiting the embodiments of this application. Additionally, it should be noted that for the sake of description, only parts related to the embodiments of this application are shown in the drawings, rather than all structures.
[0017] The terms "first", "second", etc. in the description and claims of this application are used to distinguish similar objects, rather than to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of this application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first", "second", etc. are usually of the same type, and the number of objects is not limited. For example, the first object can be one or more. In addition, "and / or" in the description and claims means at least one of the connected objects, and the character "or" generally represents an "or" relationship between the associated objects before and after.
[0018] A power device interface interaction method provided by an embodiment of this application can be applied to parameter setting scenarios of operation interfaces of devices such as AC high-voltage power transformation devices, low-voltage power distribution devices, DC power distribution devices, AC or DC charging devices, AC or DC power sources and load devices. The several business scenarios listed above are only exemplary and explanatory. In actual applications, it can also be in other scenarios where parameter setting is required for any power device. For a power device interface interaction method provided by an embodiment of this application, the execution subject of each step can be a computer device, which refers to any electronic device with data calculation, processing, and storage capabilities, such as terminal devices like mobile phones, PCs (Personal Computers), and tablet computers, or devices such as servers. The embodiments of this application do not make any limitations in this regard.
[0019] Figure 1 It is a flowchart of a power device interface interaction method provided by an embodiment of this application, as Figure 1 shown, specifically including: Step S101, obtain a selected test mode, where the test mode includes multiple different adjustable parameters of the power device.
[0020] Among them, the test mode is used to characterize different parameter setting modes in the operation interface of the power device, such as test modes like the basic mode, photovoltaic mode, and battery mode. This test mode includes multiple different adjustable parameters of the power device. The adjustable parameters can be relevant parameters of the power device that can be adjusted in the test mode. Exemplarily, in the basic mode, the multiple different adjustable parameters of the power device are respectively voltage, current, power, and resistance. The corresponding operation graphics and parameter values can be displayed on the display interface by using these adjustable parameters.
[0021] Step S102, display the corresponding operation graphics and parameter values on the display interface based on each adjustable parameter, and play a guiding animation corresponding to the test mode, where the guiding animation is a dynamic picture showing the adjustment methods of each adjustable parameter and the change in the display state of the corresponding operation graphics.
[0022] Among them, the display interface refers to the interface in the power supply device for displaying key parameters, status indicators, and other relevant information. The operation graphic can be a visual graphic for adjusting the value of an adjustable parameter. Exemplarily, in the photovoltaic mode, the operation graphic corresponding to the irradiance parameter is the sun. The display state of the operation graphic can be the state presented when the operation graphic is displayed. For example, the display states such as the brightness of the sun, the flow rate and water level of the water flow, etc. The parameter value is the value of the adjustable parameter. Optionally, a display method of an operation graphic and a parameter value can be to query the preset operation graphic and the preset parameter value corresponding to each adjustable parameter, display the preset operation graphic at a random position on the display interface, and display the preset parameter value at the preset orientation corresponding to the preset operation graphic. By converting the parameters into intuitive visual images, it enables users to quickly understand and operate. An exemplary example can be that the preset orientation is below. In the basic mode, the operation graphic corresponding to the current parameter is the water flow. When the water flow is displayed at a random position on the display interface, the parameter value corresponding to the current parameter is synchronously displayed below the water flow.
[0023] In one embodiment, before playing the guiding animation, each operation graphic and the parameter value of the corresponding adjustable parameter are respectively displayed on the display interface in their corresponding initial display states and initial parameter values. Optionally, a playing method of the guiding animation can be to obtain the guiding operation information of the operation graphic corresponding to each adjustable parameter, and based on this guiding operation information, operate the operation graphic corresponding to each adjustable parameter in a random order in sequence to realize the playing of the guiding animation. Among them, the display state of the operation graphic and the corresponding parameter value of the adjustable parameter change synchronously according to this guiding operation information. The guiding operation information is used to represent the relevant information for guiding the operation of the operation graphic. For example, guiding operation information such as swiping up and down the water flow, clicking on the photovoltaic panel once, swiping up and down the sun, etc. By replacing the traditional operation manual with a guiding animation, it can clarify the operation steps and range limitations, reduce additional learning, and effectively avoid equipment errors caused by improper parameter input. It has good interactivity and improves the operation efficiency.
[0024] An exemplary example can be as follows. In the basic mode, the adjustable parameters are current, voltage, power, and resistance respectively. The operation graphs corresponding to the current and voltage are both water flows. The display states of the water flows include flow rate and water level. The guiding operation information of the water flows is up - down - left - right. Sliding up and down indicates the rise and fall of the water level, and sliding left and right indicates the acceleration and deceleration of the water flow. The flow rate corresponds to the magnitude of the current value. The faster the flow rate, the larger the current value. The water level corresponds to the magnitude of the voltage value. The higher the water level, the larger the voltage value. The operation graph corresponding to the power is a fan blade. The display state of the fan blade is the rotation speed. The guiding operation information of the fan blade is to slide up first and then slide down. Sliding up and down indicates the acceleration and deceleration of the rotation speed. The faster the rotation speed, the larger the power. The operation graph corresponding to the resistance is a stone. The display state of the stone is the volume. The guiding operation information of the stone is to slide up first and then slide down. Sliding up and down indicates the increase and decrease of the volume. The larger the volume, the larger the resistance. Based on the corresponding guiding operation information, the water flow, the fan blade, and the stone are operated in a random order in sequence to realize the playback of the guiding animation.
[0025] Step S103, in the case where the guiding animation playback ends, in response to an operation instruction for the operation graph, based on the operation instruction, adjust the display state of the corresponding operation graph in the display interface and the parameter value of the corresponding adjustable parameter, wherein different display states of the operation graph synchronously correspond to different parameter values of the adjustable parameter.
[0026] Among them, the operation instruction is a specific operation instruction issued for the operation graph in the display interface, and this operation instruction can be an instruction issued by the operator of the current power device. Different display states of the operation graph synchronously correspond to different parameter values of the adjustable parameter. Exemplarily, different flow rates of the water flow synchronously correspond to different current values. The faster the flow rate, the larger the current. In one embodiment, a control method for the operation state of an operation graph can be to turn on the touch - screen operation function of the display interface to make the operation graph in an operable state. Through touching the display interface, relevant operations can be performed on the operation graph in the display interface. For example, touch the water flow in the display interface and drag the water level to adjust the voltage value. In another embodiment, a control method for the operation state of an operation graph can be to display an operation gesture icon in the display interface to make the operation graph in an operable state. Using this operation gesture icon, relevant operations can be performed on the operation graph in the display interface. For example, control the operation gesture icon to click on the photovoltaic panel to switch the mode.
[0027] Optionally, one adjustment method may be to determine the adjustment information of the display state of the corresponding operation graphic in the display interface based on the operation instruction, adjust the display state of the operation graphic according to the adjustment information to obtain the updated state of the operation graphic, query the parameter value look-up table of the adjustable parameter corresponding to the operation graphic according to the updated state to obtain the corresponding updated parameter value, and adjust the parameter value of the adjustable parameter to the updated parameter value. Here, the adjustment information is used to represent the information for adjusting the display state of the operation graphic, such as the adjustment degree, adjustment direction, or switching state, etc.
[0028] As can be seen from the above, after obtaining the selected test mode, the corresponding operation graphic and parameter value are displayed in the display interface based on each adjustable parameter, and the guiding animation corresponding to the test mode is played. When the guiding animation ends, in response to the operation instruction for the operation graphic, the display state of the corresponding operation graphic in the display interface and the parameter value of the corresponding adjustable parameter are adjusted. By converting the parameters into intuitive visual image objects through dynamic animations and using the guiding animation to clarify the operation steps, the problems in the prior art that when setting parameters in the operation interface of a power supply device, the operation is complex and not intuitive, the efficiency is low, and there is a lack of intuitive guidance, resulting in low usability of the device, are solved. It can make the interface operation simpler and more intuitive, and improve the usability and operation efficiency of the device.
[0029] Figure 2 The following is a flowchart of a power device interface interaction method provided by an embodiment of the present application, which includes a method of displaying operation graphics and parameter values, as Figure 2 shown, and specifically includes: Step S201: Obtain the selected test mode, where the test mode includes multiple different adjustable parameters of the power device.
[0030] Step S202: Query the pre-stored display information corresponding to each adjustable parameter. The pre-stored display information includes the operation graphic corresponding to the adjustable parameter, the display position of the operation graphic, the parameter value, and the display position of the parameter value. The operation graphic and the parameter value are displayed in the display interface according to the display position of the operation graphic and the display position of the parameter value.
[0031] Among them, the pre-stored display information is used to represent the relevant information to be displayed in the display interface associated with the adjustable parameters stored in advance. The display position of the operation graphic is the display position of the operation graphic in the display interface. The display position of the operation graphic can be used to display the corresponding operation graphic in the display interface. The display position of the parameter value is the display position of the parameter value of the adjustable parameter in the display interface. The display position of the parameter value can be used to display the parameter value of the corresponding adjustable parameter in the display interface. An exemplary example can be that the adjustable parameters in the photovoltaic mode are respectively irradiance, temperature, open-circuit voltage, maximum power point voltage, short-circuit current, maximum power point current, model type, and technology type. Query the operation graphics, display positions of the operation graphics, parameter values, and display positions of the parameter values corresponding to the eight adjustable parameters, and display the corresponding operation graphics and parameter values in the display interface according to the display position of the operation graphic and the display position of the parameter value, such as Figure 3 shown Figure 3 is a schematic diagram of a display interface in a photovoltaic mode provided by an embodiment of the present application. 01 is the operation graphic corresponding to irradiance, 02 is the parameter value of irradiance, 03 is the operation graphic corresponding to temperature, 04 is the parameter value of temperature, 05 is the operation graphic corresponding to the model type, 06 is the parameter value of the corresponding model type, 07 is the operation graphic corresponding to the technology type, 08 is the parameter value of the technology type, 09 is the operation graphic corresponding to the open-circuit voltage and the maximum power point voltage, 10 is the parameter value of the open-circuit voltage, 11 is the parameter value of the maximum power point voltage, 12 is the operation graphic corresponding to the short-circuit current and the maximum power point current, 13 is the parameter value of the short-circuit current, and 14 is the parameter value of the maximum power point current. Among them, the operation graphic can be restricted according to the value requirements between the respective parameter values, and a suitable graphic is used to distinguish the reasonable parameter range that the parameter can be set. For example, the open-circuit voltage needs to be greater than the maximum power point voltage, and the short-circuit current needs to be greater than the maximum power point current.
[0032] Step S203, play a guiding animation corresponding to the test mode, where the guiding animation is a dynamic picture showing the adjustment methods of the respective adjustable parameters and the changes in the display states of the corresponding operation graphics.
[0033] Step S204, in the case where the guiding animation playback ends, in response to an operation instruction on the operation graphic, adjust the display state of the corresponding operation graphic in the display interface and the parameter value of the corresponding adjustable parameter based on the operation instruction, where different display states of the operation graphic synchronously correspond to different parameter values of the adjustable parameter.
[0034] As described above, after obtaining the selected test mode, by querying the pre-stored display information corresponding to each adjustable parameter, the operation graph and the parameter value are displayed on the display interface according to the operation graph display position and the parameter value display position in the pre-stored display information. This solution can convert the parameters into intuitive visual images, enabling users to quickly understand and operate.
[0035] Figure 4 This is a flowchart of a power device interface interaction method including a play guide animation provided by an embodiment of the present application. As Figure 4 shown, it specifically includes: Step S301: Obtain the selected test mode, where the test mode includes multiple different adjustable parameters of the power device.
[0036] Step S302: Based on each adjustable parameter, display the corresponding operation graph and parameter value on the display interface.
[0037] Step S303: Obtain the pre-stored guide process of the test mode. The pre-stored guide process includes the guide order and guide actions of each operation graph. Based on the guide actions, operate each operation graph in sequence according to the guide order to realize the playback of the guide animation. Among them, the display state of the operation graph and the parameter value of the corresponding adjustable parameter change synchronously according to the guide actions.
[0038] Among them, the pre-stored guide process is used to represent the execution process information of the pre-stored guide animation. The guide order can be the order of executing the guide actions corresponding to the operation graphs. The guide action can be the operation information for the operation graph. For example, guide actions such as swiping up first and then swiping down, clicking once, etc. An exemplary example can be that in the basic mode, the adjustable parameters are current, voltage, power, and resistance respectively. The operation graphs corresponding to current and voltage are both water flows, and the guide actions of the water flows are swiping up - swiping down - swiping left - swiping right. The operation graph corresponding to power is a fan blade, and the guide action of the fan blade is swiping up first and then swiping down. The operation graph corresponding to resistance is a stone, and the guide action of the stone is swiping up first and then swiping down. The guide order of each operation graph is water flow - fan blade - stone in sequence. Then, swipe up, down, left, and right on the water flow in sequence, then swipe up and down on the fan blade in sequence, and finally swipe up and down on the stone in sequence. When swiping on the water flow, fan blade, and stone, the corresponding parameter values change synchronously.
[0039] Step S304: In the case where the guide animation playback ends, in response to the operation instruction for the operation graph, adjust the display state of the corresponding operation graph and the parameter value of the corresponding adjustable parameter on the display interface. Among them, different display states of the operation graph synchronously correspond to different parameter values of the adjustable parameter.
[0040] As can be seen from the above, after obtaining the pre-stored boot process of the test mode, each operation graphic is operated in sequence according to the boot order based on the boot action to realize the playback of the boot animation, and the display state of the operation graphic and the parameter values of the corresponding adjustable parameters change synchronously according to the boot action. This solution replaces the traditional operation manual with a boot animation, which can clarify the operation steps and scope limitations, reduce additional learning, and effectively avoid equipment errors caused by improper parameter input. It has good interactivity and improves the operation efficiency.
[0041] Figure 5 It is a flowchart of a power device interface interaction method including a way to adjust the display state and parameter values provided by an embodiment of the present application. As Figure 5 shown, it specifically includes: Step S401, obtain the selected test mode, where the test mode includes multiple different adjustable parameters of the power device.
[0042] Step S402, display the corresponding operation graphic and parameter value on the display interface based on each adjustable parameter, and play the boot animation corresponding to the test mode, where the boot animation is a dynamic picture showing the adjustment methods of each adjustable parameter and the change of the display state of the corresponding operation graphic.
[0043] Step S403, in the case where the boot animation playback ends, in response to the operation instruction on the operation graphic, when the operation attribute of the operation graphic is a sliding attribute, determine the adjustment direction of the display state of the operation graphic and the parameter value of the associated adjustable parameter according to the operation direction, and determine the adjustment intensity of the display state of the operation graphic and the adjustment value of the associated adjustable parameter according to the operation distance.
[0044] Among them, the operation attribute is used to characterize the way of operating on the operation graph. For example, operation attributes such as sliding and clicking. The operation instruction includes the operation direction and the operation distance. The operation direction can be the direction of sliding the operation graph. For example, operation directions such as upward, downward, leftward, and rightward. The operation distance can be the distance of sliding the operation graph. The adjustment direction is used to characterize the direction of adjusting the display state of the operation graph and the parameter value of the associated adjustable parameter. For example, adjustment directions such as increasing, decreasing, raising, and lowering. The adjustment intensity can be the percentage of adjusting the display state of the operation graph. The adjustment value is used to characterize the value of adjusting the parameter value of the adjustable parameter. In one embodiment, a method for determining the adjustment intensity and the adjustment value can be to query the preset adjustment intensity comparison table corresponding to the display state of the operation graph according to the operation distance to obtain the corresponding adjustment intensity, and query the preset adjustment value comparison table corresponding to the adjustable parameter according to the operation distance to obtain the corresponding adjustment value. In another embodiment, a method for determining the adjustment intensity and the adjustment value can be to multiply the operation distance by the unit intensity corresponding to the display state of the operation graph to obtain the adjustment intensity, and multiply the operation distance by the unit value corresponding to the adjustable parameter to obtain the adjustment value.
[0045] An exemplary example can be that the current operation graph is the sun, the display state of the sun is brightness, the associated adjustable parameter is irradiance, the operation direction is upward sliding, and the operation distance is 3 cm. Then the adjustment direction of the brightness and irradiance values of the sun is upward adjustment. When the sun is slid 1 cm, the adjustment intensity of the brightness changes by 10%, and the irradiance changes by 50 W / m². Then the calculated adjustment intensity of the current sun brightness is 30%, and the adjustment value of the irradiance is 150 W / m².
[0046] Step S404: Simultaneously adjust the display state of the operation graph and the parameter value of the associated adjustable parameter on the display interface according to the adjustment direction, adjustment intensity, and adjustment value. Among them, different display states of the operation graph synchronously correspond to different parameter values of the adjustable parameter.
[0047] Among them, in one embodiment, after determining the adjustment direction of the display state of the operation graph and the parameter value of the associated adjustable parameter, the adjustment intensity of this display state, and the adjustment value of this adjustable parameter, simultaneously adjust the display state of the operation graph and the parameter value of the adjustable parameter on the display interface according to this adjustment direction, this adjustment intensity, and this adjustment value. An exemplary example can be that the current operation graph is the sun, the display state of the sun is brightness, the associated adjustable parameter is irradiance, the determined adjustment direction is upward adjustment, the adjustment intensity of the sun brightness is 30%, and the adjustment value of the irradiance is 150 W / m². Then increase the brightness of the sun on the display interface by 30% and increase the irradiance value by 150 W / m².
[0048] As described above, when the guiding animation playback ends, in response to an operation instruction for the operation graphic, when the operation attribute of the operation graphic is a sliding attribute, the display state of the operation graphic and the adjustment direction of the parameter value of the associated adjustable parameter are determined according to the operation direction. The adjustment intensity of the display state of the operation graphic and the adjustment value of the associated adjustable parameter are determined according to the operation distance. The display state of the operation graphic and the parameter value of the associated adjustable parameter are adjusted correspondingly on the display interface according to the adjustment direction, adjustment intensity, and adjustment value. Through this solution, by responding to the operation instruction and dynamically adjusting the operation graphic and parameter value in real time, the setting of the power device parameters can be achieved.
[0049] Figure 6 FIG. is a flowchart of another power device interface interaction method including a method for adjusting the display state and parameter value provided by an embodiment of the present application. As Figure 6 shown, it specifically includes: Step S501: Obtain a selected test mode, where the test mode includes multiple different adjustable parameters of the power device.
[0050] Step S502: Based on each adjustable parameter, display the corresponding operation graphic and parameter value on the display interface, and play the guiding animation corresponding to the test mode, where the guiding animation is a dynamic picture showing the adjustment method of each adjustable parameter and the change in the display state of the corresponding operation graphic.
[0051] Step S503: When the guiding animation playback ends, in response to an operation instruction for the operation graphic, when the operation attribute of the operation graphic is a click attribute, query the preset adjustment comparison table corresponding to the operation graphic according to the number of clicks to obtain the to-be-switched state of the display state of the operation graphic and the to-be-switched parameter value of the associated adjustable parameter.
[0052] Among them, the operation instruction includes the number of clicks, and the number of clicks is used to represent the number of clicks on the operation graphic. Using the number of clicks to query the preset adjustment comparison table corresponding to the operation graphic can obtain the to-be-switched state of the display state of the operation graphic and the to-be-switched parameter value of the associated adjustable parameter. The preset adjustment comparison table can be a comparison table of different numbers of clicks with different to-be-switched states of the operation graphic and different to-be-switched parameter values of the associated adjustable parameter set in advance. The to-be-switched state is used to represent the display state that the current display state of the operation graphic is to be switched to. The to-be-switched parameter value is used to represent the parameter value that the current parameter value of the adjustable parameter is to be switched to. An exemplary example can be that the operation graphic is the photovoltaic panel 1, the display state of the photovoltaic panel 1 is color, the associated adjustable parameter is the model type, the number of clicks is 2, and a preset adjustment comparison table corresponding to a photovoltaic panel 1 is as shown in the following table:
[0053] The above comparison table specifically describes the correspondence between the number of clicks and the to-be-switched state of the photovoltaic panel 1 and the to-be-switched parameter values of the model type, which is specifically described as follows: When the number of clicks is 1, the to-be-switched state of the photovoltaic panel 1 is white, and the to-be-switched parameter value of the model type is Sandia; when the number of clicks is 2, the to-be-switched state of the photovoltaic panel 1 is yellow, and the to-be-switched parameter value of the model type is EN50530; when the number of clicks is 3, the to-be-switched state of the photovoltaic panel 1 is green, and the to-be-switched parameter value of the model type is user-defined; when the number of clicks is 4, the to-be-switched state of the photovoltaic panel 1 is blue, and the to-be-switched parameter value of the model type is static; when the number of clicks is 5, the to-be-switched state of the photovoltaic panel 1 is purple, and the to-be-switched parameter value of the model type is dynamic.
[0054] The number of clicks in the current operation instruction is 2, so query the comparison table to obtain that the to-be-switched state is yellow and the to-be-switched parameter value is EN50530.
[0055] Step S504: Adjust the display state of the operation graphic to the to-be-switched state, and adjust the parameter value of the adjustable parameter associated with the operation graphic to the to-be-switched parameter value, where different display states of the operation graphic synchronously correspond to parameter values of different adjustable parameters.
[0056] Among them, in one embodiment, after determining the to-be-switched state of the display state of the operation graphic and the to-be-switched parameter value of the associated adjustable parameter, adjust the display state of the operation graphic to the to-be-switched state, and adjust the parameter value of the adjustable parameter associated with the operation graphic to the to-be-switched parameter value. An exemplary example can be that the operation graphic is the photovoltaic panel 1, the display state of the photovoltaic panel 1 is color, the current display color of the photovoltaic panel 1 is black, the associated adjustable parameter is the model type, and the currently displayed parameter value is Space. If it is determined that the to-be-switched state of the photovoltaic panel 1 is yellow and the to-be-switched parameter value of the model type is EN50530, then switch the color of the photovoltaic panel 1 to yellow and switch the parameter value of the model type to EN50530.
[0057] As can be seen from the above, when the guiding animation playback ends, in response to the operation instruction for the operation graphic, when the operation attribute of the operation graphic is the click attribute, query the preset adjustment comparison table corresponding to the operation graphic according to the number of clicks to obtain the to-be-switched state of the display state of the operation graphic and the to-be-switched parameter value of the associated adjustable parameter, adjust the display state of the operation graphic to the to-be-switched state, and adjust the parameter value of the adjustable parameter associated with the operation graphic to the to-be-switched parameter value. This solution can achieve the setting of the power device parameters by responding to the operation instruction and dynamically adjusting the operation graphic and the parameter value in real time.
[0058] Figure 7 This is a block diagram of the module structure of a power device interface interaction device provided by an embodiment of the present application. This system is used to execute a power device interface interaction method provided by the above embodiment, and has corresponding function modules and beneficial effects for executing the method. As Figure 7 shown, this system specifically includes: An acquisition module 101, configured to acquire a selected test mode, where the test mode includes multiple different adjustable parameters of the power device; A display module 102, configured to display corresponding operation graphics and parameter values on a display interface based on each of the adjustable parameters; A playback module 103, configured to play a guiding animation corresponding to the test mode, where the guiding animation is a dynamic screen showing the adjustment methods of each of the adjustable parameters and the change in the display state of the corresponding operation graphics; An adjustment module 104, configured to, when the guiding animation playback ends, in response to an operation instruction for the operation graphics, adjust the display state of the corresponding operation graphics and the parameter values of the corresponding adjustable parameters in the display interface, where different display states of the operation graphics synchronously correspond to parameter values of different adjustable parameters.
[0059] As can be seen from the above solution, after acquiring a selected test mode, corresponding operation graphics and parameter values are displayed on the display interface based on each adjustable parameter, and a guiding animation corresponding to the test mode is played. When the guiding animation playback ends, in response to an operation instruction for the operation graphics, the display state of the corresponding operation graphics and the parameter values of the corresponding adjustable parameters in the display interface are adjusted based on the operation instruction. By converting parameters into intuitive visual image objects through a dynamic animation and using the guiding animation to clarify the operation steps, the problems in the prior art that when setting parameters in the operation interface of a power device, the operation is complex and not intuitive, the efficiency is low, and there is a lack of intuitive guidance, resulting in low usability of the device, are solved. It can make the interface operation simpler and more intuitive, and improve the usability and operation efficiency of the device.
[0060] In a possible embodiment, the display module 102 is specifically configured to: Query pre-stored display information corresponding to each of the adjustable parameters, where the pre-stored display information includes operation graphics corresponding to the adjustable parameters, operation graphic display positions, parameter values, and parameter value display positions; Display the operation graphics and the parameter values on the display interface according to the operation graphic display positions and the parameter value display positions.
[0061] In a possible embodiment, the playback module 103 is specifically configured to: Obtain the pre-stored boot process of the test mode, where the pre-stored boot process includes the boot sequence and boot actions of each of the operation graphics; Based on the boot actions, operate each of the operation graphics in sequence according to the boot sequence to implement the playback of the boot animation, where the display state of the operation graphics and the parameter values of the corresponding adjustable parameters change synchronously according to the boot actions.
[0062] In a possible embodiment, the playback module 103 is further configured to: Obtain the boot operation information of the operation graphics corresponding to each of the adjustable parameters, and operate the operation graphics corresponding to each of the adjustable parameters in a random order based on the boot operation information to implement the playback of the boot animation, where the display state of the operation graphics and the parameter values of the corresponding adjustable parameters change synchronously according to the boot operation information.
[0063] In a possible embodiment, it further includes an operation state control module, which is specifically configured to: Turn on the touch screen operation function of the display interface or display an operation gesture icon on the display interface to make the operation graphics in an operable state.
[0064] In a possible embodiment, the adjustment module 104 is specifically configured to: When the operation attribute of the operation graphics is a sliding attribute, determine the adjustment direction of the display state of the operation graphics and the parameter values of the associated adjustable parameters according to the operation direction, and determine the adjustment intensity of the display state of the operation graphics and the adjustment values of the associated adjustable parameters according to the operation distance; Simultaneously adjust the display state of the operation graphics and the parameter values of the associated adjustable parameters on the display interface according to the adjustment direction, the adjustment intensity, and the adjustment values.
[0065] In a possible embodiment, the adjustment module 104 is further configured to: When the operation attribute of the operation graphics is a click attribute, query the preset adjustment comparison table corresponding to the operation graphics according to the number of clicks to obtain the to-be-switched state of the display state of the operation graphics and the to-be-switched parameter values of the associated adjustable parameters; Adjust the display state of the operation graphics to the to-be-switched state, and adjust the parameter values of the adjustable parameters associated with the operation graphics to the to-be-switched parameter values.
[0066] Figure 8 It is a schematic structural diagram of a power device interface interaction device provided by an embodiment of the present application, as Figure 8As shown, the device includes a processor 201, a memory 202, an input device 203, and an output device 204; the number of processors 201 in the device can be one or more, Figure 8 and one processor 201 is taken as an example herein; the processor 201, the memory 202, the input device 203, and the output device 204 in the device can be connected through a bus or other means, Figure 8 and connection through a bus is taken as an example herein. As a computer-readable storage medium, the memory 202 can be used to store software programs, computer-executable programs, and modules, such as program instructions or modules corresponding to a power device interface interaction method in an embodiment of the present application. The processor 201 executes various functional applications and data processing of the device by running the software programs, instructions, and modules stored in the memory 202, that is, implements the above-mentioned power device interface interaction method. The input device 203 can be used to receive input digital or character information, and generate key signal inputs related to user settings and function controls of the device. The output device 204 can include display devices such as a display screen.
[0067] An embodiment of the present application further provides a storage medium containing computer-executable instructions, and the computer-executable instructions are used to execute a power device interface interaction method when executed by a computer processor. The method includes: Obtaining a selected test mode, where the test mode includes multiple different adjustable parameters of a power device; Based on each of the adjustable parameters, corresponding operation graphics and parameter values are displayed on a display interface, and a guiding animation corresponding to the test mode is played. The guiding animation is a dynamic picture showing the adjustment methods of each of the adjustable parameters and the change in the display state of the corresponding operation graphics; When the guiding animation ends, in response to an operation instruction on the operation graphics, the display state of the corresponding operation graphics on the display interface and the parameter values of the corresponding adjustable parameters are adjusted based on the operation instruction, where different display states of the operation graphics synchronously correspond to parameter values of different adjustable parameters.
[0068] It should be noted that in the embodiments of the above power device interface interaction method system, the included units and modules are only divided according to functional logic, but are not limited to the above division, as long as the corresponding functions can be realized; in addition, the specific names of the functional units are only for the convenience of mutual distinction and do not limit the protection scope of the embodiments of the present application.
[0069] Note that the above is only the preferred embodiment of the embodiments of the present application and the technical principles applied. Those skilled in the art will understand that the embodiments of the present application are not limited to the specific embodiments described herein. Various obvious changes, re-adjustments, and substitutions can be made by those skilled in the art without departing from the protection scope of the embodiments of the present application. Therefore, although the embodiments of the present application have been described in more detail through the above embodiments, the embodiments of the present application are not limited to the above embodiments only. Without departing from the concept of the embodiments of the present application, more other equivalent embodiments can be included, and the scope of the embodiments of the present application is determined by the scope of the appended claims.
Claims
1. A power supply device interface interaction method, characterized in that: The method comprises: obtaining a selected test mode, the test mode comprising a plurality of different adjustable parameters of the power supply device; Based on each of the adjustable parameters, corresponding operation graphics and parameter values are displayed on the display interface, and a guide animation corresponding to the test mode is played, wherein the guide animation is a dynamic picture showing the adjustment method of each of the adjustable parameters and the change of the display state of the corresponding operation graphics; When the guidance animation ends, in response to the operation instruction of the operation graphic, the display state of the corresponding operation graphic and the parameter value of the corresponding adjustable parameter in the display interface are adjusted based on the operation instruction, wherein different display states of the operation graphic synchronously correspond to different parameter values of the adjustable parameter.
2. The power device interface interaction method according to claim 1, characterized in that: The displaying of corresponding operation graphics and parameter values on the display interface based on each of the adjustable parameters includes: Querying pre-stored display information corresponding to each of the adjustable parameters, the pre-stored display information including an operation graphic, an operation graphic display position, a parameter value, and a parameter value display position corresponding to the adjustable parameter; The operation graphic and the parameter value are displayed on the display interface according to the operation graphic display position and the parameter value display position.
3. The power device interface interaction method according to claim 1, characterized in that: The playing of the guide animation corresponding to the test mode includes: Acquire a pre-stored boot process of the test mode, wherein the pre-stored boot process includes a boot sequence and a boot action of each of the operation graphics; Based on the guiding action, each of the operation graphics is operated in sequence according to the guiding order to realize the playing of the guiding animation, wherein the display state of the operation graphics and the parameter value of the corresponding adjustable parameter are changed synchronously according to the guiding action.
4. The power supply device interface interaction method according to any one of claims 1 to 3, characterized in that: The playing of the guide animation corresponding to the test mode includes: Obtain guidance operation information of the operation graphics corresponding to each of the adjustable parameters, and operate the operation graphics corresponding to each of the adjustable parameters in sequence in a random order based on the guidance operation information to realize the playback of the guidance animation, wherein the display status of the operation graphics and the parameter value of the corresponding adjustable parameter change synchronously according to the guidance operation information.
5. The power supply device interface interaction method according to any one of claims 1 to 3, characterized in that: When the boot animation is finished playing, the method further includes: Turn on the touch screen operation function of the display interface or display the operation gesture icon on the display interface to put the operation graphic in an operable state.
6. The power supply device interface interaction method according to any one of claims 1 to 3, characterized in that: The operation instruction includes an operation direction and an operation distance, and adjusting the display state of the corresponding operation graphic in the display interface and the parameter value of the corresponding adjustable parameter based on the operation instruction includes: In the case where the operation attribute of the operation graphic is a sliding attribute, determining the display state of the operation graphic and the adjustment direction of the parameter value of the associated adjustable parameter according to the operation direction, and determining the adjustment strength of the display state of the operation graphic and the adjustment value of the associated adjustable parameter according to the operation distance; According to the adjustment direction, the adjustment strength and the adjustment value, the display state of the operation graphic and the parameter value of the associated adjustable parameter are correspondingly adjusted simultaneously on the display interface.
7. The power supply device interface interaction method according to any one of claims 1 to 3, characterized in that: The operation instruction includes the number of clicks, and adjusting the display state of the corresponding operation graphic in the display interface and the parameter value of the corresponding adjustable parameter based on the operation instruction includes: In the case where the operation attribute of the operation graphic is a click attribute, querying a preset adjustment comparison table corresponding to the operation graphic according to the number of clicks to obtain a to-be-switched state of the display state of the operation graphic and a to-be-switched parameter value of an associated adjustable parameter; The display state of the operation graphic is adjusted to the state to be switched, and the parameter value of the adjustable parameter associated with the operation graphic is adjusted to the parameter value to be switched.
8. A power supply device interface interaction system, characterized in that: include: An acquisition module, configured to acquire a selected test mode, wherein the test mode includes a plurality of different adjustable parameters of the power supply device; A display module, used for displaying corresponding operation graphics and parameter values on a display interface based on each of the adjustable parameters; A playback module, used to play a guide animation corresponding to the test mode, wherein the guide animation is a dynamic picture showing the adjustment method of each adjustable parameter and the change of the display state of the corresponding operation graphic; An adjustment module is used to respond to an operation instruction on the operation graphic when the guiding animation ends, and adjust the display state of the corresponding operation graphic in the display interface and the parameter value of the corresponding adjustable parameter based on the operation instruction, wherein different display states of the operation graphic synchronously correspond to different parameter values of the adjustable parameter.
9. A power supply device interface interaction device, the device comprising: one or more processors; A storage device for storing one or more programs, when the one or more programs are executed by the one or more processors, the one or more processors implement the power supply device interface interaction method as described in any one of claims 1-7.
10. A storage medium storing computer executable instructions, wherein the computer executable instructions are used to execute the power supply device interface interaction method according to any one of claims 1 to 7 when executed by a computer processor.
Citation Information
Patent Citations
Shooting parameter adjusting method and device
CN105306824A
Interface display control method and system of electric welding machine display screen
CN108237312A
Display control method and device applied to terminal interface
CN112578953A
Operation guiding method and device and electronic equipment
CN113010248A
Operation processing method, operation processing device and electronic equipment
CN113296659A