WO2023124855A1 - 一种显示方法、终端、划船机和通信系统 - Google Patents

一种显示方法、终端、划船机和通信系统 Download PDF

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Publication number
WO2023124855A1
WO2023124855A1 PCT/CN2022/137205 CN2022137205W WO2023124855A1 WO 2023124855 A1 WO2023124855 A1 WO 2023124855A1 CN 2022137205 W CN2022137205 W CN 2022137205W WO 2023124855 A1 WO2023124855 A1 WO 2023124855A1
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WIPO (PCT)
Prior art keywords
interface
terminal
control
rowing machine
mode
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PCT/CN2022/137205
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English (en)
French (fr)
Inventor
遆剑
郭健
陈宏滔
熊超
杨远文
李亚鹏
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华为技术有限公司
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Publication of WO2023124855A1 publication Critical patent/WO2023124855A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/451Execution arrangements for user interfaces
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/451Execution arrangements for user interfaces
    • G06F9/452Remote windowing, e.g. X-Window System, desktop virtualisation

Definitions

  • Embodiments of the present invention relate to the technical field of terminals, and in particular to a display method applied to terminals and rowing machines, terminals, rowing machines and communication systems.
  • the rowing machine has appeared in the public's view as an indoor fitness equipment that can efficiently exercise 85% of the muscles of the upper limbs, lower limbs, waist, abdomen, and back.
  • the main exercise mode of existing rowing machines is the aerobic rowing mode, which achieves the purposes of exercising the heart and lungs, promoting body circulation, and reducing visceral fat through pedal and hand-pulled aerobic exercise.
  • mid-to-high-end rowing machines can not only adjust the resistance, but also can set various training or competition modes.
  • the sports parameters that can be set are becoming more and more abundant and professional, which also brings the rowing machine parameter setting.
  • the problem In particular, the human-computer interaction methods of most rowing machines are not friendly at present.
  • the display interface mainly composed of English characters and numerical values plus various setting buttons often makes it inconvenient for users to operate.
  • a display method, terminal, rowing machine and communication system provided in the embodiment of the present application realize the linkage display between the terminal and the rowing machine, so that the user can view or operate the information displayed on the terminal or the rowing machine during exercise, and improve the user's exercise experience .
  • the embodiment of the present application provides a display method, which is applied to a communication system, and the communication system includes a first terminal and a rowing machine.
  • the method may include: in response to the first operation on the first card on the first terminal, The first terminal displays a first interface, the first interface includes a first control for representing a preset mode, and the first card is related to the rowing machine.
  • the first terminal displays the second interface, the rowing machine displays the third interface, and the interface elements displayed on the third interface are at least partly the same as the interface elements displayed on the second interface, realizing the first The terminal is displayed in conjunction with the rowing machine.
  • the user when the user is exercising with the rowing machine, the user can synchronously operate the controls displayed on the first terminal and the rowing machine or view the information displayed on the first terminal and the rowing machine synchronously, thereby improving user experience.
  • the user can operate the rowing machine by operating the first terminal during exercise, thereby realizing linkage between the first terminal and the rowing machine, without the user needing to pause the exercise to adjust the rowing machine, which improves user experience.
  • the preset modes include multiple training modes such as intelligent personal training mode, course recommendation mode, strength training mode, and aerobic rowing mode.
  • multiple training modes such as intelligent personal training mode, course recommendation mode, strength training mode, and aerobic rowing mode.
  • a richer training mode is provided for the user.
  • the user can select and switch modes on the rowing machine or the first terminal, and when one of the training modes is selected on the first terminal, the rowing machine also enters the training mode accordingly.
  • the preset mode may include an intelligent personal education mode
  • the preset mode includes an intelligent personal education mode
  • the first control is used to indicate the intelligent personal education mode
  • the interface elements displayed on the second interface include an interface element for indicating dynamic activation
  • the method further includes: in response to an operation on the second control, the first terminal displays a fourth interface, and the fourth interface includes a third control for indicating start of training.
  • the first terminal displays exercise information.
  • the rowing machine displays exercise information.
  • an intelligent personal training mode is added, so that, in addition to the aerobic rowing mode, a richer training mode is provided for the user and the user experience is improved.
  • the fourth interface may further include a tenth control, and the tenth control may include a control for starting training, a video playback area, a control for selecting an action, and a control for selecting training weight. Controls, controls for configuring action parameters, etc.
  • the preset mode includes a strength training mode
  • the first control is used to indicate the strength training mode
  • the interface elements displayed on the second interface include a fourth control and a fifth control
  • the fourth control is used to instruct the user to perform strength training.
  • Evaluation the fifth control is used to instruct the user to evaluate the training action preference.
  • the interface elements displayed on the third interface include a control for strength evaluation and a control for training action preference evaluation. In this way, before exercising, the user can perform strength evaluation or preference action evaluation, so that the user can fully understand his own condition, and it is convenient for the user to choose a more suitable exercise method.
  • the method may further include: in response to an operation on the fourth control, the first terminal displays an icon for representing the first weight and a sixth control for performing weight feedback.
  • the first terminal displays a plurality of options representing force feedback.
  • the first terminal displays a fifth interface, the fifth interface includes an icon for representing the second weight, and the rowing machine displays a sixth interface, the sixth interface includes an icon for representing the second weight An icon for a second weight, where the second weight is different from the first weight.
  • the force values corresponding to every two adjacent options among the multiple items differ by a first threshold.
  • the first threshold may be 3 kilograms.
  • other data may also be selected as the first threshold, for example, 2 kilograms.
  • the embodiments of this application need to be selected according to actual requirements.
  • the fifth interface and the sixth interface further include a strength evaluation result and a seventh control for indicating re-evaluation.
  • the evaluation result may include an optimal strength interval.
  • the optimal strength range may be 18-22 kg.
  • the preset mode includes a strength training mode or an aerobic rowing mode
  • the first control is used to indicate the strength training mode or the aerobic rowing mode
  • the interface elements displayed on the second interface include a first control for indicating the start of training.
  • the method further includes: in response to the operation of the eighth control, the first terminal displays a ninth control for representing load adjustment and an icon for representing the first load, and the rowing machine displays a ninth control for representing load adjustment Controls and icons used to represent the first load.
  • the first terminal displays an icon representing a second load
  • the rowing machine displays an icon representing a second load, wherein the second load is different from the first load.
  • both the first terminal and the rowing machine can achieve load regulation.
  • the user can operate the rowing machine or the ninth control displayed on the first terminal to flexibly adjust the load, which can better meet the user's real-time requirements.
  • the preset mode includes strength training mode
  • the load adjustment includes weight adjustment
  • the ninth control is a control for indicating weight adjustment
  • the preset mode includes aerobic rowing mode
  • load adjustment includes resistance adjustment
  • the ninth control is the control used to represent resistance adjustment.
  • the interface elements displayed on the third interface are at least partly the same as the interface elements displayed on the second interface, including: content displayed on the third interface is at least partly the same as that displayed on the second interface.
  • the interface elements displayed on the third interface are at least partially the same as the interface elements displayed on the second interface, including: the third interface is at least partially identical to the layout displayed on the second interface.
  • the preset mode includes a course recommendation mode
  • the second interface includes actions corresponding to the preset course and a control for starting training.
  • the method further includes: in response to the operation of the control, the first terminal displays a The video playback interface of the preset courses.
  • the rowing machine also displays a video playback interface with preset lessons.
  • a course recommendation mode is added. In this way, in addition to the aerobic rowing mode, a richer training mode is provided for the user and user experience is improved.
  • the method may further include: the rowing machine adjusts the working parameters of the rowing machine according to the course content of the preset course.
  • a course recommendation mode is added, which can intelligently adjust the work of the rowing machine according to the content of the course, so that the user can train according to the rhythm of the course, which improves the user experience.
  • the communication system further includes a second terminal
  • the method further includes: the second terminal detects the first information, and sends the first information to the first terminal.
  • the first terminal receives the first information and displays the first information.
  • the first terminal sends the first information to the rowing machine, and the rowing machine displays the first information. In this way, the first terminal and the rowing machine can synchronously receive or display information sent by other terminals, so that the display content of the first terminal and the rowing machine is richer.
  • the first information is physiological information of the user.
  • the user's physiological information may include the user's heart rate, the user's vital capacity, the user's blood pressure, and the like.
  • the communication system may further include a server.
  • the rowing machine displays a third interface, specifically: the first terminal sends a first request to the server, and in the first request Information on carrying a rowing machine.
  • the server controls the rowing machine to display the third interface according to the first request.
  • the first terminal and the rowing machine can be connected to the network, so that the first terminal can control the rowing machine to work through the server, so as to realize the linkage display of the first terminal and the rowing machine .
  • both the first terminal and the rowing machine store a connection protocol
  • the connection protocol may include multiple interfaces.
  • the first terminal displays the second interface
  • the rowing machine displays the third interface, specifically: in response to the second operation, the first terminal displays the second interface, and the first terminal calls multiple The first interface among the two interfaces is used to control the rowing machine to display the third interface.
  • the embodiment of the present application provides a display method, which is applied to the first terminal, and the method may include: in response to the first operation on the first card on the first terminal, the first terminal displays the first interface, and the first terminal displays the first interface.
  • An interface includes a first control for representing a preset mode, and the first card is related to the rowing machine.
  • the first terminal displays the second interface, and the first terminal sends the first information to the rowing machine, the first information is used to instruct the rowing machine to display the third interface, and the displayed on the third interface
  • the interface elements are at least partly the same as the interface elements displayed on the second interface, realizing the linked display of the first terminal and the rowing machine.
  • the user when the user is exercising with the rowing machine, the user can synchronously operate the controls displayed on the first terminal and the rowing machine or view the information displayed on the first terminal and the rowing machine synchronously, thereby improving user experience.
  • the user can operate the rowing machine by operating the first terminal during exercise, thereby realizing linkage between the first terminal and the rowing machine, without the user needing to pause the exercise to adjust the rowing machine, which improves user experience.
  • the preset modes include multiple training modes such as intelligent personal training mode, course recommendation mode, strength training mode, and aerobic rowing mode.
  • multiple training modes such as intelligent personal training mode, course recommendation mode, strength training mode, and aerobic rowing mode.
  • a richer training mode is provided for the user.
  • the user can select and switch modes on the rowing machine or the first terminal, and when one of the training modes is selected on the first terminal, the rowing machine also enters the training mode accordingly.
  • the preset mode includes an intelligent personal education mode
  • the first control is used to indicate the intelligent personal education mode
  • the interface elements displayed on the second interface include a second control used to indicate dynamic activation
  • the method further includes: responding Based on the operation on the second control, the first terminal displays a fourth interface, and the fourth interface includes a third control for indicating the start of training.
  • the first terminal displays exercise information.
  • the first terminal sends second information to the rowing machine, and the second information is used to instruct the rowing machine to display exercise information.
  • an intelligent personal training mode is added, so that, in addition to the aerobic rowing mode, a richer training mode is provided for the user and the user experience is improved.
  • the fourth interface may further include a tenth control, and the tenth control may include a control for starting training, a video playback area, a control for selecting an action, and a control for selecting training weight. Controls, controls for configuring action parameters, etc.
  • the preset mode includes a strength training mode
  • the first control is used to indicate the strength training mode
  • the interface elements displayed on the second interface include a fourth control and a fifth control
  • the fourth control is used to instruct the user to perform strength training.
  • Evaluation is used to instruct the user to evaluate training action preference
  • the interface elements displayed on the third interface include a control for strength evaluation and a control for training action preference evaluation.
  • the method may further include: in response to an operation on the fourth control, the first terminal displays an icon for representing the first weight and a sixth control for performing weight feedback.
  • the first terminal displays a plurality of options representing force feedback.
  • the first terminal displays a fifth interface, where the fifth interface includes an icon for representing the second weight.
  • the first terminal sends a third message to the rowing machine, the third message is used to instruct the rowing machine to display a sixth interface, and the sixth interface includes an icon for representing the second weight, wherein the second weight is different from the first weight.
  • the fifth interface and the sixth interface further include a strength evaluation result and a seventh control for indicating re-evaluation.
  • the preset mode includes a strength training mode or an aerobic rowing mode
  • the first control is used to indicate the strength training mode or the aerobic rowing mode
  • the interface elements displayed on the second interface include a first control for indicating the start of training.
  • the method further includes: in response to the operation of the eighth control, the first terminal displays a ninth control for representing load adjustment and an icon for representing the first load, and the rowing machine displays a ninth control for representing load adjustment Controls and icons used to represent the first load.
  • the first terminal displays an icon representing a second load
  • the rowing machine displays an icon representing a second load, wherein the second load is different from the first load.
  • both the first terminal and the rowing machine can achieve load regulation.
  • the user can operate the rowing machine or the ninth control displayed on the first terminal to flexibly adjust the load, which can better meet the user's real-time requirements.
  • the preset mode includes strength training mode
  • the load adjustment includes weight adjustment
  • the ninth control is a control for indicating weight adjustment
  • the preset mode includes aerobic rowing mode
  • load adjustment includes resistance adjustment
  • the ninth control is the control used to represent resistance adjustment.
  • the interface elements displayed on the third interface are at least partly the same as the interface elements displayed on the second interface, including: content displayed on the third interface is at least partly the same as that displayed on the second interface.
  • the interface elements displayed on the third interface are at least partly the same as the interface elements displayed on the second interface, including: the layouts displayed on the third interface and the second interface are at least partly the same.
  • the embodiment of the present application provides a display method applied to a rowing machine.
  • the method includes: in response to a first operation on the rowing machine, the rowing machine displays a first interface, and the first interface includes The first control in design mode.
  • the rowing machine displays the second interface, and the rowing machine sends first information to the first terminal, the first information is used to instruct the first terminal to display a third interface, and the displayed information on the third interface
  • the interface elements are at least partly the same as the interface elements displayed on the second interface, realizing the linked display of the first terminal and the rowing machine.
  • the user when the user is exercising with the rowing machine, the user can synchronously operate the controls displayed on the first terminal and the rowing machine or view the information displayed on the first terminal and the rowing machine synchronously, thereby improving user experience.
  • the user can operate the rowing machine by operating the first terminal during exercise, thereby realizing linkage between the first terminal and the rowing machine, without the user needing to pause the exercise to adjust the rowing machine, which improves user experience.
  • the preset modes include intelligent personal training mode, course recommendation mode, strength training mode, aerobic rowing mode and other training modes.
  • a richer training mode is provided for the user.
  • the user can select and switch modes on the rowing machine or the first terminal, and when one of the training modes is selected on the first terminal, the rowing machine also enters the training mode accordingly.
  • the preset mode includes an intelligent personal education mode
  • the first control is used to indicate the intelligent personal education mode
  • the interface elements displayed on the second interface include a second control used to indicate dynamic activation
  • the method further includes: responding Based on the operation on the second control, the rowing machine displays a fourth interface, and the fourth interface includes the third control for indicating the start of training.
  • the rowing machine displays exercise information.
  • the rowing machine sends second information to the first terminal, and the second information is used to instruct the first terminal to display exercise information.
  • an intelligent personal training mode is added, so that, in addition to the aerobic rowing mode, a richer training mode is provided for the user and the user experience is improved.
  • the fourth interface may further include a tenth control, and the tenth control may include a control for starting training, a video playback area, a control for selecting an action, and a control for selecting training weight. Controls, controls for configuring action parameters, etc.
  • the preset mode includes a strength training mode
  • the first control is used to indicate the strength training mode
  • the interface elements displayed on the second interface include a fourth control and a fifth control
  • the fourth control is used to instruct the user to perform strength training.
  • Evaluation is used to instruct the user to evaluate training action preference
  • the interface elements displayed on the third interface include a control for strength evaluation and a control for training action preference evaluation.
  • the method further includes: in response to operating the fourth control, the rowing machine displaying an icon representing the first weight and a sixth control for weight feedback.
  • the rowing machine displays a number of options representing power feedback.
  • the rowing machine displays a fifth interface, and the fifth interface includes an icon for representing the second weight.
  • the rowing machine sends a third message to the first terminal, the third message is used to instruct the first terminal to display a sixth interface, and the sixth interface includes an icon for representing the second weight, where the second weight is different from the first weight.
  • the fifth interface and the sixth interface further include a strength evaluation result and a seventh control for indicating re-evaluation.
  • the preset mode includes a strength training mode or an aerobic rowing mode
  • the first control is used to indicate the strength training mode or the aerobic rowing mode
  • the interface elements displayed on the second interface include a first control for indicating the start of training.
  • the method further includes: in response to the operation of the eighth control, the rowing machine displays a ninth control for representing load adjustment and an icon for representing the first load, and the first terminal displays a ninth control for representing load adjustment Controls and icons used to represent the first load.
  • the rowing machine displays an icon representing a second load
  • the first terminal displays an icon representing a second load, wherein the second load is different from the first load.
  • both the first terminal and the rowing machine can achieve load regulation.
  • the user can operate the rowing machine or the ninth control displayed on the first terminal to flexibly adjust the load, which can better meet the user's real-time requirements.
  • the preset mode includes strength training mode
  • the load adjustment includes weight adjustment
  • the ninth control is a control for indicating weight adjustment
  • the preset mode includes aerobic rowing mode
  • load adjustment includes resistance adjustment
  • the ninth control is the control used to represent resistance adjustment.
  • the interface elements displayed on the third interface are at least partly the same as the interface elements displayed on the second interface, including: content displayed on the third interface is at least partly the same as that displayed on the second interface.
  • the interface elements displayed on the third interface are at least partly the same as the interface elements displayed on the second interface, including: the layouts displayed on the third interface and the second interface are at least partly the same.
  • the embodiment of the present application provides a terminal, the terminal includes: one or more processors; and a memory, the memory stores code; when the code is executed by the one or more processors , causing the terminal to execute the method described in the second aspect.
  • the embodiment of the present application provides a rowing machine, the rowing machine includes: one or more processors; and memory, codes are stored in the memory; when the code is processed by the one or more When the device is executed, the terminal is executed to execute the method as described in the third aspect.
  • the embodiment of the present application provides a communication system, the system includes: a first terminal, a rowing machine; the first terminal executes the method described in the second aspect, or, the rowing machine executes the method described in the first aspect methods described in three respects.
  • the communication system includes: a second terminal; and the second terminal executes the method described in the first aspect.
  • the embodiment of the present application provides a chip system, and the chip system is applied to an electronic device.
  • the chip system includes one or more interface circuits and one or more processors; the interface circuits and processors are interconnected by lines; the interface circuits are used to receive signals from the memory of the electronic device and send signals to the processor, and the signals include Stored computer instructions; when the processor executes the computer instructions, the electronic device executes the method as described in the second aspect, or the electronic device executes the method as described in the third aspect.
  • the embodiment of the present application provides a computer-readable storage medium, including computer instructions, and when the computer instructions are run on an electronic device, the electronic device is made to execute the method described in the first aspect.
  • the embodiment of the present application provides a computer program product.
  • the computer program product runs on a computer
  • the computer executes the method described in the second aspect, or the computer executes the method described in the third aspect. described method.
  • the first terminal in response to receiving the user's first operation on the first card on the first terminal, displays a first interface, the first interface includes a first control for representing a preset mode, and the first interface One card is associated with the rowing machine.
  • the first terminal displays the second interface, and the rowing machine displays the third interface, and the display content of the third interface is the same as or similar to that of the second interface.
  • Linked display In this way, when the user is exercising with the rowing machine, the user can synchronously operate the controls displayed on the first terminal and the rowing machine or view the information displayed on the first terminal and the rowing machine synchronously, thereby improving user experience.
  • the user can operate the rowing machine by operating the first terminal during exercise, so that the linkage between the first terminal and the rowing machine is realized, and the user does not need to pause the exercise to adjust the rowing machine, which improves user experience.
  • FIG. 1A is a schematic structural diagram of a system provided by an embodiment of the present application.
  • FIG. 1B is a schematic structural diagram of another system provided by the embodiment of the present application.
  • FIG. 1C is a schematic structural diagram of another system provided by the embodiment of the present application.
  • FIG. 2A is a schematic structural diagram of a terminal provided in an embodiment of the present application.
  • FIG. 2B is a schematic diagram of a software architecture of a terminal provided in an embodiment of the present application.
  • FIG. 3 is a schematic flowchart of a display method provided by an embodiment of the present application.
  • FIG. 4 is a schematic flowchart of a display method provided by an embodiment of the present application.
  • FIG. 5 is a schematic diagram of an interface of a first terminal provided in an embodiment of the present application.
  • FIG. 6 is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 7 is a schematic diagram of another interface of the first terminal provided by the embodiment of the present application.
  • FIG. 8A is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • Fig. 8B is a schematic diagram of an interface of the rowing machine provided by the embodiment of the present application.
  • FIG. 8C is a schematic diagram of another interface of the first terminal provided by the embodiment of the present application.
  • FIG. 8D is a schematic diagram of another interface of the first terminal provided by the embodiment of the present application.
  • FIG. 8E is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 9A is a schematic diagram of another interface of the first terminal provided by the embodiment of the present application.
  • Fig. 9B is a schematic diagram of another interface of the rowing machine provided by the embodiment of the present application.
  • FIG. 9C is a schematic diagram of another interface of the first terminal provided by the embodiment of the present application.
  • Fig. 9D is a schematic diagram of an interface of the rowing machine provided by the embodiment of the present application.
  • FIG. 10A is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • Fig. 10B is a schematic diagram of another interface of the rowing machine provided by the embodiment of the present application.
  • FIG. 10C is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 10D is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 10E is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 10F is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 10G is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 10H is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 10I is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 10J is a schematic diagram of another interface of the first terminal provided by the embodiment of the present application.
  • FIG. 10K is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 10L is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 10M is a schematic diagram of another interface of the rowing machine provided by the embodiment of the present application.
  • FIG. 10N is a schematic diagram of another interface of the rowing machine provided by the embodiment of the present application.
  • FIG. 100 is a schematic diagram of another interface of the rowing machine provided by the embodiment of the present application.
  • FIG. 11A is a schematic diagram of an interface of a first terminal provided in an embodiment of the present application.
  • Fig. 11B is a schematic diagram of another interface of the rowing machine provided by the embodiment of the present application.
  • FIG. 11C is a schematic diagram of an interface of the first terminal provided in the embodiment of the present application.
  • FIG. 11D is a schematic diagram of an interface of the first terminal provided in the embodiment of the present application.
  • FIG. 11E is a schematic diagram of an interface of the first terminal provided in the embodiment of the present application.
  • Fig. 11F is a schematic diagram of another interface of the rowing machine provided by the embodiment of the present application.
  • Fig. 11G is a schematic diagram of another interface of the rowing machine provided by the embodiment of the present application.
  • Fig. 11H is a schematic diagram of another interface of the rowing machine provided by the embodiment of the present application.
  • FIG. 11I is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 11J is a schematic diagram of another interface of the first terminal provided by the embodiment of the present application.
  • FIG. 11K is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 12A is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 12B is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 12C is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 12D is a schematic diagram of another interface of the first terminal provided in the embodiment of the present application.
  • FIG. 12E is a schematic diagram of another interface of the first terminal provided by the embodiment of the present application.
  • FIG. 12F is a schematic diagram of another interface of the first terminal provided by the embodiment of the present application.
  • Fig. 13A is a schematic diagram of another interface of the rowing machine provided by the embodiment of the present application.
  • Fig. 13B is a schematic diagram of another interface of the rowing machine provided by the embodiment of the present application.
  • Fig. 13C is a schematic diagram of another interface of the rowing machine provided by the embodiment of the present application.
  • first and second are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of indicated technical features. Thus, a feature defined as “first” and “second” may explicitly or implicitly include one or more of these features. In the description of this embodiment, unless otherwise specified, “plurality” means two or more.
  • the main exercise modes of the rowing machine can be divided into an aerobic rowing mode and a strength training mode.
  • the aerobic rowing mode is to perform aerobic exercise through pedaling and hand pulling, helping users to exercise the heart and lungs, promote body circulation, and reduce visceral fat.
  • the strength training mode is anaerobic exercise through pedaling and hand pulling to help users increase muscle fibers, increase muscle mass and modify lines.
  • the types of rowing machines can also be divided into water resistance type, wind resistance type, hydraulic type, magnetic control wind resistance type and so on.
  • the water resistance rowing machine its working principle is that the user pulls the handle of the rowing machine, and the paddle linked with the handle rotates in a closed water tank. During the rotation of the blades, the water in the water tank will generate resistance to the blades, and the resistance is determined by the capacity of the water in the water tank. During the exercise, if the user wants to change the resistance of the water to the paddle, he needs to pause the exercise, pour out the water in the water tank, or add water to the water tank.
  • the wind resistance type rowing machine its working principle is that the user pulls the handle of the rowing machine, and the fan blade linked with the handle rotates in the bellows. During the rotation of the fan blades, the wind in the bellows will produce resistance to the fan blades, and the magnitude of the resistance is determined by the air volume in the bellows. During the exercise, if the user wants to change the resistance of the wind to the fan blades, he needs to pause the exercise and adjust the size of the air inlet of the bellows.
  • the magnetic resistance type rowing machine its working principle is to exercise by changing the magnitude of the magnetic force that the flywheel of the rowing machine is subjected to.
  • the magnetic force experienced by the flywheel depends on the magnetic force of the magnets surrounding the flywheel.
  • the ways to change the magnetic force of the magnet may include the following two methods: the first one is to change the magnetic force of the magnet by changing the distance between the magnet and the flywheel through a linear motor. The second is to change the magnetic force of the magnet by changing the current of the electromagnet.
  • mid-to-high-end rowing machines can not only adjust the resistance, but also can set various training or competition modes.
  • the sports parameters that can be set are becoming more and more abundant and professional, which also brings the rowing machine parameter setting.
  • the human-computer interaction methods of most rowing machines are not friendly at present.
  • the display interface mainly composed of English characters and numerical values plus various setting buttons often makes it inconvenient for users to operate.
  • an embodiment of the present application provides a display method, which is applied to a communication system, the communication system includes a first terminal and a rowing machine, in response to receiving the user's first request to the first card on the first terminal Operation, the first terminal displays a first interface, the first interface includes a first control for representing a preset mode, and the first card is related to the rowing machine.
  • the first terminal displays the second interface
  • the rowing machine displays the third interface
  • the interface elements displayed on the third interface are at least partially the same as the interface elements displayed on the second interface, The linkage display between the first terminal and the rowing machine is realized.
  • the user when the user is exercising with the rowing machine, the user can synchronously operate the controls displayed on the first terminal and the rowing machine or view the information displayed on the first terminal and the rowing machine synchronously, thereby improving user experience.
  • the user can operate the rowing machine by operating the first terminal during exercise, thereby realizing linkage between the first terminal and the rowing machine, without the user needing to pause the exercise to adjust the rowing machine, which improves user experience.
  • the interface elements displayed on the third interface are at least partly the same as the interface elements displayed on the second interface, including the following explanations:
  • the content displayed on the third interface is at least partially the same as that displayed on the second interface.
  • the "controls such as dynamic activation” shown in FIG. 8A displayed on the first terminal are the same as the “controls such as dynamic activation” shown in FIG. 8B displayed on the rowing machine.
  • Explanation 2 The layout displayed on the third interface is at least partly the same as that displayed on the second interface.
  • the layout of the "seated rowing, Y stretching, and face pulling three controls and the corresponding instructions for each control" shown in Figure 9A displayed on the first terminal is the same as the "seated rowing" shown in Figure 9B displayed on the rowing machine.
  • Y Stretch, and Surface Pull three controls and the corresponding description of each control have the same layout.
  • both the first terminal and the rowing machine store a connection protocol, and the connection protocol includes multiple interfaces, and each interface corresponds to a different function.
  • the first terminal In response to receiving the user's second operation on the first control, the first terminal displays the second interface.
  • the first terminal calls the first interface among the multiple interfaces of the rowing machine to control the rowing machine to display the third interface, and the display content of the third interface is the same or similar to that of the second interface, thereby realizing the linkage display between the first terminal and the rowing machine.
  • control A when an operation on control A is received, the control A is a control of the aerobic rowing icon shown in FIG. 7 .
  • the first terminal calls interface a, and sends the rowing machine information and aerobic rowing mode information to interface a, and the rowing machine switches to the aerobic rowing mode, and displays the aerobic rowing mode information.
  • the first The mode information of aerobic rowing is also displayed on the terminal.
  • the control B is a control of the smart personal education icon shown in FIG. 7 .
  • the first terminal calls interface b, and sends the information of the rowing machine and the mode information of the intelligent personal training to interface b, and the rowing machine switches to the mode of the intelligent personal training, and displays the mode information of the intelligent personal training.
  • the first The mode information of the smart personal trainer is also displayed on the terminal.
  • the preset modes may include multiple training modes such as intelligent personal training mode, course recommendation mode, strength training mode and aerobic rowing mode.
  • multiple training modes such as intelligent personal training mode, course recommendation mode, strength training mode and aerobic rowing mode.
  • a richer training mode is provided for the user.
  • the user can select and switch modes on the rowing machine or the first terminal, and when one of the training modes is selected on the first terminal, the rowing machine also enters the training mode accordingly.
  • the above communication system may further include a server.
  • the first terminal can send a request to the server, and the request can carry the information of the rowing machine, and the server can control the rowing machine to display the third interface according to the request, so as to realize the linkage display between the first terminal and the rowing machine .
  • the control C is a control of the strength training icon shown in FIG. 7 .
  • the first terminal sends a request to the server, and the request carries the information of the rowing machine and the mode information of the strength training.
  • the server controls the rowing machine to switch to the strength training mode, and displays the strength training mode information, and at the same time, the strength training mode information is also displayed on the first terminal.
  • the above communication system may further include a second terminal, and the second terminal communicates with the first terminal.
  • the second terminal is used to collect the first signal.
  • the first signal is used to represent the physiological information of the user.
  • the physiological information of the user may include the user's heart rate, the user's lung capacity, the user's blood pressure, etc., which are not specifically limited in the embodiment of the present application. .
  • the second terminal generates the user's heart rate according to the first signal, and sends the user's heart rate to the first terminal.
  • the first terminal receives the user's heart rate sent by the second terminal.
  • the first terminal displays the user's heart rate.
  • the first terminal sends the user's heart rate to the rowing machine.
  • the rowing machine also displays the user's heart rate.
  • the embodiment of the present application provides a display method that can be applied to the system shown in FIG. 1A .
  • the system 100A may include a first terminal 110 and a rowing machine 120 .
  • the above-mentioned first terminal 110 may be a mobile phone, a tablet computer, a desktop, a laptop, a notebook computer, an ultra-mobile personal computer (Ultra-mobile Personal Computer, UMPC), a handheld computer, a netbook, a personal digital assistant (Personal Digital Assistant) , PDA), wearable terminal, TV, virtual reality device and other devices with a display function
  • the specific form of the first terminal is not particularly limited in the embodiment of the present application.
  • a Bluetooth communication connection is established between the first terminal 110 and the rowing machine 120 .
  • the rowing machine 120 detects the motion data of the user.
  • the rowing machine 120 sends the user's exercise data to the first terminal 110, and the first terminal 110 displays the user's exercise data.
  • the first application corresponding to the rowing machine is installed on the first terminal 110 .
  • Both the first terminal 110 and the rowing machine 120 store a connection protocol.
  • the connection protocol may include multiple interfaces, and each interface may correspond to a different function.
  • the first terminal 110 can send the information and operation information of the rowing machine 120 to the interface in the connection protocol, and the rowing machine 120 can send the rowing machine 120 according to the operation information.
  • Corresponding operations are performed to control the linkage between the rowing machine 120 and the first terminal 110 . In this way, the user can operate the first terminal 110 to control the action of the rowing machine 120 during exercise.
  • the communication system in this embodiment of the present application is not limited to the above forms, and the communication system may also include a server. Therefore, the embodiment of the present application provides a display method that can be applied to the system shown in FIG. 1B . As shown in FIG. 1B , the system 100B may further include a server 130 .
  • the server 130 installs a first application
  • the first application is associated with the rowing machine 120
  • the first application is used to record the exercise data of the user using the rowing machine 120 to exercise.
  • the first application may be installed on the first terminal 110 , or the first application may also be embedded in the system of the first terminal 110 .
  • the rowing machine 120 detects the motion data of the user.
  • the rowing machine 120 sends the user's exercise data to the server 130 .
  • the server 130 may send the user's exercise data to the first terminal 110, and the first terminal 110 displays the user's exercise data.
  • the first terminal 110 when the user operates the first card on the first terminal 110, the first terminal 110 sends a request to the server 130, and the request carries rowing machine information.
  • the server calls the rowing machine 120 according to the request to control the linkage between the rowing machine 120 and the first terminal 110 . In this way, the user can operate the first terminal 110 to control the action of the rowing machine 120 during exercise.
  • An embodiment of the present application provides a display method that may be applied to the system shown in FIG. 1C , and the system 100C may further include a second terminal 140 .
  • the first terminal 110 may be a mobile phone, a tablet computer, a notebook computer, a television, and the like.
  • the second terminal 140 may be a wearable terminal, such as a sports bracelet, a smart watch, and the like.
  • the rowing machine 120 detects the motion data of the user.
  • the rowing machine 120 sends the user's exercise data to the first terminal 110 .
  • the second terminal 140 detects the user's physiological information (such as heart rate).
  • the second terminal 140 sends the user's heart rate to the first terminal 110 .
  • the first terminal 110 displays the user's physiological information while displaying the user's motion data.
  • the content displayed on the rowing machine 120 is the same or similar to the content displayed on the first terminal 110 .
  • FIG. 2A is a structural block diagram of the above-mentioned terminal.
  • the terminal may include a processor 210, a memory 220, an antenna 1, a wireless communication module 230, a sensor module 240, buttons 250, and a display screen 260.
  • the sensor module 240 may include a pressure sensor 240A, an acceleration sensor 240B, a distance sensor 240C, a touch sensor 240D and the like.
  • first terminal 110 or the second terminal 140 may include more or fewer components than shown in the figure, or combine certain components, or separate certain components, or arrange different components.
  • the illustrated components can be realized in hardware, software or a combination of software and hardware.
  • the processor 210 may include one or more processing units, for example: the processor 210 may include an application processor (application processor, AP), a modem processor, a graphics processing unit (graphics processing unit, GPU), an image signal processor (image signal processor, ISP), controller, video codec, digital signal processor (digital signal processor, DSP), baseband processor, and/or neural network processor (neural-network processing unit, NPU), etc. Wherein, different processing units may be independent devices, or may be integrated in one or more processors.
  • the controller can generate an operation control signal according to the instruction opcode and timing signal, and complete the control of fetching and executing the instruction.
  • a memory may also be provided in the processor 210 for storing instructions and data.
  • the memory in processor 210 is a cache memory.
  • the memory may hold instructions or data that the processor 210 has just used or recycled. If the processor 210 needs to use the instruction or data again, it can be called directly from the memory. Repeated access is avoided, and the waiting time of the processor 210 is reduced, thereby improving the efficiency of the system.
  • the wireless communication function of the first terminal 110 or the second terminal 140 may be implemented through the antenna 1, the wireless communication module 230, the modem processor, the baseband processor, and the like.
  • Antenna 1 is used for transmitting and receiving electromagnetic wave signals.
  • Each antenna in the first terminal 110 or the second terminal 140 may be used to cover single or multiple communication frequency bands. Different antennas can also be multiplexed to improve the utilization of the antennas.
  • Antenna 1 can be multiplexed as a diversity antenna of a wireless local area network. In other embodiments, the antenna may be used in conjunction with a tuning switch.
  • the wireless communication module 230 can provide wireless local area networks (wireless local area networks, WLAN) (such as wireless fidelity (Wireless Fidelity, Wi-Fi) network), bluetooth (bluetooth, BT), global navigation satellite system (global navigation satellite system, GNSS), frequency modulation (frequency modulation, FM), near field communication technology (near field communication, NFC), infrared technology (infrared, IR) and other wireless communication solutions .
  • the wireless communication module 230 may be one or more devices integrating at least one communication processing module.
  • the wireless communication module 230 receives electromagnetic waves via the antenna 1 , frequency-modulates and filters the electromagnetic wave signals, and sends the processed signals to the processor 210 .
  • the wireless communication module 230 can also receive the signal to be transmitted from the processor 210 , frequency-modulate it, amplify it, and convert it into electromagnetic waves through the antenna 1 for radiation.
  • the first terminal 110 communicates with the rowing machine 120 through the wireless communication module 230 .
  • the wireless communication module 230 may be Bluetooth, and the first terminal 110 is connected to the rowing machine 120 through Bluetooth.
  • the wireless communication module 230 may be a wireless local area network, and the first terminal 110 is connected to the rowing machine 120 through the wireless local area network.
  • the first terminal 110 or the second terminal 140 implements a display function through a GPU, a display screen 260, an application processor, and the like.
  • the GPU is a microprocessor for image processing, and is connected to the display screen 260 and the application processor. GPUs are used to perform mathematical and geometric calculations for graphics rendering.
  • Processor 210 may include one or more GPUs that execute program instructions to generate or alter display information.
  • the display screen 260 is used to display images, videos and the like.
  • the display screen 260 includes a display panel.
  • the display panel can adopt liquid crystal display 260 (liquid crystal display, LCD), organic light-emitting diode (organic light-emitting diode, OLED), active matrix organic light-emitting diode or active-matrix organic light-emitting diode (active-matrix organic light emitting diode, AMOLED), flexible light-emitting diode (flex light-emitting diode, FLED), Miniled, MicroLed, Micro-oLed, quantum dot light emitting diodes (quantum dot light emitting diodes, QLED), etc.
  • the first terminal 110 or the second terminal 140 may include 1 or N display screens 260 , where N is a positive integer greater than 1.
  • the content displayed on the display screen 260 of the first terminal 110 is the same or similar to the content displayed on the display screen of the rowing machine.
  • the display screen 260 can display the interfaces shown in Figures 5-7, 8A, 8C-9C, 10A, 10C-10L, 11A, 11C-11E, 11I-12F .
  • Memory 220 may be used to store computer-executable program code, which includes instructions.
  • the memory 220 may include an area for storing programs and an area for storing data.
  • the stored program area can store an operating system, at least one application program required by a function (such as a sound playing function, an image playing function, etc.) and the like.
  • the data storage area can store data created during use of the first terminal 110 or the second terminal 140 (such as audio data, phonebook, etc.) and the like.
  • the memory 220 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one magnetic disk storage device, flash memory device, universal flash storage (universal flash storage, UFS) and the like.
  • the processor 210 executes various functional applications and data processing of the first terminal 110 or the second terminal 140 by executing instructions stored in the memory 220 and/or instructions stored in the memory provided in the processor.
  • the pressure sensor 240A is used to sense the pressure signal and convert the pressure signal into an electrical signal.
  • pressure sensor 240A may be disposed on display screen 260.
  • pressure sensors 240A such as resistive pressure sensors 240A, inductive pressure sensors 240A, capacitive pressure sensors 240A and so on.
  • Capacitive pressure sensor 240A may be comprised of at least two parallel plates with conductive material. When a force is applied to the pressure sensor 240A, the capacitance between the electrodes changes. The first terminal 110 or the second terminal 140 determines the strength of the pressure according to the change in capacitance. When a touch operation acts on the display screen 260, the first terminal 110 detects the intensity of the touch operation according to the pressure sensor 240A.
  • the first terminal 110 or the second terminal 140 may also calculate the touched position according to the detection signal of the pressure sensor 240A.
  • touch operations acting on the same touch position but with different touch operation intensities may correspond to different operation instructions. For example: when a touch operation with a touch operation intensity less than the first pressure threshold acts on the short message application icon, an instruction to view short messages is executed. When a touch operation whose intensity is greater than or equal to the first pressure threshold acts on the icon of the short message application, the instruction of creating a new short message is executed.
  • the acceleration sensor 240B can detect the acceleration of the first terminal 110 or the second terminal 140 in various directions (generally three axes). When the first terminal 110 or the second terminal 140 is stationary, the magnitude and direction of gravity can be detected. It can also be used to identify the posture of electronic devices, and can be used in applications such as horizontal and vertical screen switching, pedometers, etc.
  • the distance sensor 240C is used to measure the distance.
  • the first terminal 110 or the second terminal 140 may measure the distance by infrared or laser. In some embodiments, when shooting a scene, the first terminal 110 or the second terminal 140 can use the distance sensor 240C to measure distance to achieve fast focusing.
  • the touch sensor 240D is also called “touch device”.
  • the touch sensor 240D can be disposed on the display screen 260, and the touch sensor 240D and the display screen 260 form a touch screen, also called “touch screen”.
  • the touch sensor 240D is used to detect a touch operation on or near it.
  • the touch sensor 240D may transmit the detected touch operation to the application processor to determine the type of the touch event.
  • Visual output related to the touch operation can be provided through the display screen 260 .
  • the touch sensor 240D may also be disposed on the surface of the first terminal 110 or the second terminal 140 , which is different from the position of the display screen 260 .
  • the keys 250 include a power key, a volume key and the like.
  • the key 250 may be a mechanical key 250 . It can also be a touch button 250 .
  • the first terminal 110 or the second terminal 140 may receive the key 250 input, and generate a key signal input related to user setting and function control of the first terminal 110 or the second terminal 140 .
  • first terminal 110 or the second terminal 140 may also include other functional units, which is not limited in this embodiment of the present application.
  • the rowing machine 120 may also include: a transmission module (including a belt and a flywheel), a magnetically controlled resistance module , handle module, seat module, track module, pedal module, scroll spring, etc.
  • the pressure sensor 240A of the rowing machine 120 is used to sense the pressure signal and convert the pressure signal into an electrical signal.
  • a pressure sensor 240A may be provided to the seat module. When the user sits on the seat, the pressure sensor 240A detects the pressing strength of the user, and the rowing machine 120 detects the pressing strength according to the pressure sensor 240A. The rowing machine 120 can also start the rowing machine 120 according to the detection signal of the pressure sensor 240A.
  • the display screen 260 of the rowing machine 120 can display interfaces as shown in Figs. 8B, 9D, 10B, 10M-10O, 11B, 11F-11H.
  • system-on-a-chip may be composed of chips, or may include chips and other discrete devices.
  • the software system of the first terminal 110 or the second terminal 140 may adopt a layered architecture, an event-driven architecture, a micro-kernel architecture, a micro-service architecture, or a cloud architecture.
  • the Android system with a layered architecture is taken as an example to illustrate the software structure of the first terminal 110 or the second terminal 140 .
  • FIG. 2B is a block diagram of the software structure of the first terminal 110 or the second terminal 140 according to the embodiment of the present invention.
  • the layered architecture divides the software into several layers, and each layer has a clear role and division of labor. Layers communicate through software interfaces.
  • the Android system is divided into four layers, which are respectively the application program layer, the application program framework layer, the Android runtime (Android runtime) and the system library, and the kernel layer from top to bottom.
  • the application layer can consist of a series of application packages.
  • the application package may include application programs such as sports and health applications, calendar, call, map, navigation, WLAN, Bluetooth, music, video, and short message.
  • application programs such as sports and health applications, calendar, call, map, navigation, WLAN, Bluetooth, music, video, and short message.
  • the application framework layer provides an application programming interface (application programming interface, API) and a programming framework for applications in the application layer.
  • the application framework layer includes some predefined functions.
  • both the first terminal 110 and the rowing machine 120 store a connection protocol
  • the connection protocol may include multiple application programming interfaces.
  • each application program interface in each application program interface corresponds to a different function.
  • the application framework layer may include a window manager, a content provider, a view system, a phone manager, a resource manager, a notification manager, and the like.
  • a window manager is used to manage window programs.
  • the window manager can get the size of the display screen, determine whether there is a status bar, lock the screen, capture the screen, etc.
  • Content providers are used to store and retrieve data and make it accessible to applications.
  • Said data may include video, images, audio, calls made and received, browsing history and bookmarks, phonebook, etc.
  • the view system includes visual controls, such as controls for displaying text, controls for displaying pictures, and so on.
  • the view system can be used to build applications.
  • a display interface can consist of one or more views.
  • a display interface including a text message notification icon may include a view for displaying text and a view for displaying pictures.
  • the phone manager is used to provide a communication function of the first terminal 110 or the second terminal 140 .
  • the management of call status including connected, hung up, etc.).
  • the resource manager provides various resources for the application, such as localized strings, icons, pictures, layout files, video files, and so on.
  • the notification manager enables the application to display notification information in the status bar, which can be used to convey notification-type messages, and can automatically disappear after a short stay without user interaction.
  • the notification manager is used to notify the download completion, message reminder, etc.
  • the notification manager can also be a notification that appears on the top status bar of the system in the form of a chart or scroll bar text, such as a notification of an application running in the background, or a notification that appears on the screen in the form of a dialog window.
  • prompting text information in the status bar issuing a prompt sound, vibrating the electronic device, and flashing the indicator light, etc.
  • Android runtime includes core library and virtual machine. The Android runtime is responsible for the scheduling and management of the Android system.
  • the core library consists of two parts: one part is the function function that the java language needs to call, and the other part is the core library of Android.
  • the application layer and the application framework layer run in virtual machines.
  • the virtual machine executes the java files of the application program layer and the application program framework layer as binary files.
  • the virtual machine is used to perform functions such as object life cycle management, stack management, thread management, security and exception management, and garbage collection.
  • a system library can include multiple function modules. For example: surface manager (surface manager), media library (Media Libraries), 3D graphics processing library (eg: OpenGL ES), 2D graphics engine (eg: SGL), etc.
  • the surface manager is used to manage the display subsystem and provides the fusion of 2D and 3D layers for multiple applications.
  • the media library supports playback and recording of various commonly used audio and video formats, as well as still image files, etc.
  • the media library can support a variety of audio and video encoding formats, such as: MPEG4, H.264, MP3, AAC, AMR, JPG, PNG, etc.
  • the 3D graphics processing library is used to implement 3D graphics drawing, image rendering, compositing, and layer processing, etc.
  • 2D graphics engine is a drawing engine for 2D drawing.
  • the kernel layer is the layer between hardware and software.
  • the kernel layer includes at least a display driver, a camera driver, an audio driver, and a sensor driver.
  • a corresponding hardware interrupt is sent to the kernel layer.
  • the kernel layer processes touch operations into original input events (including touch coordinates, time stamps of touch operations, and other information). Raw input events are stored at the kernel level.
  • the application framework layer obtains the original input event from the kernel layer, and identifies the control corresponding to the input event. Taking the touch operation as a touch and click operation, and the control corresponding to the click operation is the control of the smart personal education icon as an example, call an interface of the application framework layer, and transfer the information of the rowing machine 120 and the mode information of the smart personal education Send to this interface to control the rowing machine 120 to switch to the intelligent personal training mode, and display the interface 121 shown in FIG.
  • FIG. 3 is a schematic flowchart of a display method provided by an embodiment of the present application. As shown in Figure 3, the method can be illustrated in different stages, as follows:
  • the rowing machine establishes a communication connection with the first terminal.
  • the communication connection between the rowing machine and the first terminal can be established in the following ways: way 1, bluetooth connection; way 2, network connection.
  • the network connection may include a wifi connection and a local area network connection.
  • the rowing machine and the first terminal may also establish a communication connection in other ways, which are not specifically limited in this embodiment of the present application.
  • the rowing machine and the first terminal use one of the above methods for communication connection.
  • the rowing machine and the first terminal can use another of the above methods One way to communicate.
  • the rowing machine is disconnected from the wifi connection with the first terminal, and the rowing machine and the first terminal meet the condition of Bluetooth connection, and the rowing machine and the first terminal are connected with Bluetooth.
  • the rowing machine disconnects the Bluetooth connection with the first terminal, and the rowing machine and the first terminal meet the network connection conditions, and the rowing machine connects to the first terminal through the network.
  • the rowing machine determines that the rowing machine has not been registered, the rowing machine sends a Bluetooth broadcast.
  • the first terminal receives the Bluetooth broadcast sent by the rowing machine.
  • the Bluetooth broadcast carries information about the rowing machine, such as the first identifier of the rowing machine.
  • the Bluetooth broadcast carries the first identification of the rowing machine, and the first identification is used by the server or the first terminal to identify the identity of the rowing machine. Specifically, when the rowing machine is not logged into the server, the server sends the first identification of the rowing machine to the first terminal, and the first terminal stores the identification of the rowing machine in advance.
  • the bluetooth module of the rowing machine performs bluetooth broadcasting at a preset transmission frequency when sending bluetooth broadcasts, for example, once every preset T time, and the duration of sending bluetooth broadcasts is X seconds, where X Seconds, the Bluetooth broadcast information is sent continuously.
  • the Bluetooth module of the first terminal performs signal scanning, it scans at a preset scanning frequency, and the first terminal is preset to scan once every Y seconds, and each scan lasts Z seconds.
  • the first terminal can receive the Bluetooth broadcast.
  • the first terminal may scan once every 600ms, and the duration of each scan is 100ms.
  • the first terminal scans the Bluetooth broadcast sent by the rowing machine, and establishes a Bluetooth connection with the rowing machine.
  • the first terminal scans the Bluetooth broadcast sent by the rowing machine.
  • the first terminal analyzes the rowing machine information carried in the Bluetooth broadcast.
  • the first terminal establishes a Bluetooth connection with the rowing machine according to the information of the rowing machine. In this way, the first terminal and the rowing machine can transmit data through the Bluetooth connection.
  • the first terminal sends connection success information to the rowing machine.
  • the user temporarily leaves the rowing machine, and when the distance between the first terminal and the rowing machine exceeds a preset distance, for example, the preset distance is 10m, the first terminal disconnects the Bluetooth connection with the rowing machine. Within the preset time, the distance between the first terminal and the rowing machine is less than the preset distance, and the first terminal and the rowing machine are reconnected.
  • a preset distance for example, the preset distance is 10m
  • the first terminal receives the user's operation one on the first application.
  • operation one may include a gesture operation
  • the gesture operation may include a click operation, a press operation, a slide operation, and the like.
  • the click operation may include a single-click operation, a double-click operation, and the like.
  • the pressing operation may include a pressing operation for a preset time, a pressing operation for a preset strength, and the like.
  • the sliding operation may include a sliding operation of a preset track.
  • the operation one is used to instruct the first terminal to search for the rowing machine and establish a network connection with the rowing machine.
  • an icon of a rowing machine is displayed on the interface of the first application.
  • the first terminal sends a request one to the server, the request one is used to request to establish a network connection with the rowing machine, and the request one carries the first identifier and network information of the rowing machine.
  • the first terminal After the first terminal receives the user's click operation on the rowing machine icon displayed on the interface of the first application, the first terminal requests the server to establish a network connection with the rowing machine in response to the click operation. At this time, the first terminal sends the identification and network information of the rowing machine to the server.
  • the network information may include a network name and a password.
  • the server sends the network information to the rowing machine according to the request one.
  • the rowing machine receives the network information sent by the server.
  • the rowing machine connects to the network according to the network information.
  • the rowing machine After the rowing machine is connected to the network according to the network information, the rowing machine can communicate with the server, and the server communicates with the first terminal, so that the rowing machine can communicate with the first terminal.
  • the application interface of the first terminal may display a status of "connected".
  • the user can pre-start the rowing machine when the user is about to arrive home.
  • the user can connect the rowing machine to the home LAN, and after the connection, the user operates the first terminal to start the rowing machine.
  • the rowing machine may request registration from the server. That is to say, the rowing machine may request the server to bind the user account.
  • the first application corresponding to the server is installed on the first terminal, and the login account of the first application is the first user account.
  • the rowing machine may request the server to bind the first user account.
  • the information of the rowing machine can be displayed on the first application.
  • the rowing machine sends a request 2 to the server, and the request 2 is used to request binding of the first user account.
  • the server receives request two.
  • the second request carries information such as address information of the server.
  • the first user account may be a login account of the first application on the first terminal.
  • the server uses the first user account to register the rowing machine.
  • the server binds the first user account with the identifier of the rowing machine.
  • the server After the server binds the first user account with the identifier of the rowing machine, the server completes the registration of the rowing machine. At this point, the server will generate a registration success message.
  • the above registration success information may include text information, image information and the like.
  • the successful registration information as text information as an example, the successful registration information may be "the rowing machine has been registered".
  • other information can also be used, such as "the rowing machine can be logged in with the first user account” and so on.
  • the embodiments of this application do not make specific limitations.
  • the server sends registration success information to the rowing machine.
  • the rowing machine receives registration success information.
  • the server pushes the registration success information to the first terminal, and correspondingly, the first terminal receives the registration success information.
  • the first terminal displays registration success information.
  • the presentation form of the information of the rowing machine may include icons, cards and the like.
  • the first application on the first terminal displays a rowing machine card (such as the above-mentioned first card).
  • FIG. 5 it is a schematic diagram of an interface of a terminal provided in an embodiment of the present application.
  • the user clicks on the sports and health application.
  • the first terminal receives a user's click operation on the sports and health application.
  • the first terminal starts the sports and health application.
  • the interface of the first terminal jumps from the interface shown in FIG. 5 to the interface shown in FIG. 6 .
  • a rowing machine card 1112 is displayed on the interface.
  • the card of the rowing machine in S421 may be displayed on the first application of the first terminal.
  • the first application of the first terminal is linked with the rowing machine for control.
  • the first terminal receives operation 2 performed by the user on the first application on the terminal.
  • the first application may refer to an application related to a rowing machine.
  • the first application may be a sports application, such as a sports and health application.
  • the application can record the exercise data of the user using the rowing machine.
  • operation 2 may be the same as operation 1.
  • operation 2 may be the same as operation 1.
  • details of operation 2 refer to the above description, and details will not be repeated in this embodiment of the present application.
  • the first terminal starts the first application, and the first terminal displays an interface 1, on which a card of the rowing machine (such as the above-mentioned first card) is displayed.
  • a card of the rowing machine such as the above-mentioned first card
  • the terminal receives the user's operation two on the first application on the terminal. In response to operation two, the terminal starts the first application.
  • the terminal receives the user's click operation on the sports and health application.
  • the terminal starts the sports and health application.
  • the interface of the terminal jumps from the interface shown in FIG. 5 to the interface shown in FIG. 6 .
  • the rowing machine card is displayed on this interface.
  • the first terminal receives the user's operation three on the card of the rowing machine in the first application.
  • operation three may be the same as operation one, and operation three may refer to the above description for details, and will not be repeated in this embodiment of the present application.
  • the interface 2 may include a control for representing an aerobic rowing mode, a control for representing a strength training mode, and a control for representing an intelligent personal training mode.
  • the aerobic rowing mode is a mode that provides users with aerobic training. This mode enables the user to complete a complete contraction and stretching of the upper limbs, lower limbs, waist, abdomen, and back every time the user performs a rowing action, which can reach A full body muscle aerobic exercise effect.
  • the strength training mode is a mode that provides strength training for the user.
  • This mode can enable the user to do a rowing action, which requires the strength support of the user's arms, shoulders and back. The faster the user exercises, the more strength is needed. Large, can achieve the effect of strength training.
  • the personal training mode is a mode that provides professional exercise guidance for users, and this mode can guide users to exercise more professionally and scientifically.
  • the second interface may also include a control for indicating a course recommendation mode.
  • the course recommendation mode is a mode for recommending exercise courses to the user, and this mode enables the user to exercise while watching the exercise courses.
  • the rowing machine can adjust parameters such as the resistance gear in real time according to the content recommended by the course, so as to achieve the effect of synchronizing the user's exercise progress with the course playback progress.
  • the first terminal receives the user's operation three on the rowing machine card on the interface shown in FIG. 6 .
  • the interface of the first terminal jumps from the interface 1111 shown in FIG. 6 to the interface 1113 shown in FIG. A control 1115 for the training mode, a control 1116 for representing the intelligent personal training mode, and a control 1117 for representing the course recommendation.
  • connection status of "establishing a communication connection between the rowing machine and the first terminal" in the first stage can also be displayed on this interface.
  • the rowing machine has established a communication connection with the first terminal, so the connection status is connected, and the interface displays "connected” as shown in Fig. 7 .
  • the second terminal can detect the physiological information of the user and send the physiological information of the user to the first terminal. Subsequently, both the first terminal and the rowing machine can display the user's physiological information.
  • the user's physiological information may include the user's heart rate.
  • the first terminal receives the user's operation four on the interface two.
  • operation 4 may be the same as operation 1.
  • operation 4 refer to the above description, and details will not be repeated in this embodiment of the present application.
  • the operation four is used to instruct the first application to control the rowing machine to perform operations such as start, pause, end, adjust training load, or switch training modes.
  • the first terminal displays interface three, and correspondingly, the display screen of the rowing machine displays interface four, and interface four is linked with interface three.
  • interface 4 is linked with interface 3, which can be understood as the content of interface 4 changes with the content of interface 3, and the content of interface 4 is the same or similar to that of interface 3.
  • the display screen of the rowing machine is displayed in conjunction with the first application on the first terminal, and the specific implementation may vary according to the connection mode between the rowing machine and the first terminal. Specifically as follows:
  • the rowing machine is connected to the first terminal network.
  • S425 may specifically be implemented as:
  • the first terminal sends a request three to the server, where the request three is used to request to control the operation of the rowing machine.
  • the server receives request three sent by the first terminal.
  • the server invokes the rowing machine to be linked and displayed with the first application on the first terminal.
  • the server stores the first protocol (such as the aforementioned connection protocol), and the first protocol may include multiple interfaces for invoking the rowing machine, and each interface corresponds to a different function.
  • the first protocol may include multiple interfaces for invoking the rowing machine, and each interface corresponds to a different function.
  • an interface for switching to an aerobic rowing mode an interface for switching to a strength training mode
  • an interface for switching to an intelligent personal training mode an interface for switching to a course recommendation mode.
  • there are interfaces in specified modes for example, interfaces for dynamic activation in smart personal training mode, interfaces for adjusting training gears in strength training mode, and so on.
  • the server controls the display screen of the rowing machine to display in conjunction with the first application, so that the display screen of the rowing machine and the first application synchronously perform operations such as start, pause, end, adjust training load, and switch training modes.
  • the first terminal displays interface three, and correspondingly, the display screen of the rowing machine displays interface four, and the content of interface four is the same as or similar to interface three.
  • the display screen of the rowing machine is displayed in conjunction with the first application.
  • interface three of the first application displays a control for representing an aerobic rowing mode and a control for representing a strength training mode.
  • an aerobic rowing mode and a strength training mode are displayed on the display screen of the rowing machine.
  • the content displayed on the first application may not be exactly the same as the content displayed on the rowing machine.
  • the display forms of the aerobic rowing mode on the first application and the aerobic rowing mode on the rowing machine may not be exactly the same.
  • the rowing machine is connected with the first terminal via Bluetooth.
  • S425 may specifically be implemented as: in response to operation 4, the first terminal calls the rowing machine to display in linkage with the first terminal according to the stored second calling interface in the second protocol.
  • the second protocol stored on the first terminal may be the same as the above-mentioned first protocol. Therefore, the second protocol may also include multiple interfaces for calling the rowing machine, and each interface corresponds to a different function. For example, an interface for switching to an aerobic rowing mode, an interface for switching to a strength training mode, an interface for switching to an intelligent personal training mode, and an interface for switching to a course recommendation mode. Of course, there are interfaces in specified modes, for example, interfaces for dynamic activation in smart personal training mode, interfaces for adjusting training gears in strength training mode, and so on.
  • FIG. 4 is a schematic flowchart of a display method provided by an embodiment of the present application. As shown in Figure 4, the specific scenarios are as follows:
  • the first terminal receives the user's operation 4 on the control 3 used to indicate the smart personal education mode.
  • operation four is an operation for instructing the rowing machine to enter the intelligent personal training mode.
  • the first terminal displays the interface of the intelligent personal education, and correspondingly, the display screen of the rowing machine displays the interface of the intelligent personal education.
  • the display screen of the rowing machine is displayed in conjunction with the first application on the first terminal, and the specific implementation can be as follows:
  • S4251 may specifically be implemented as follows: in response to operation 4, the first terminal sends a request 3 for starting the smart personal education mode to the server, and the request 3 carries an invocation interface of the rowing machine.
  • the server receives request three sent by the first terminal.
  • the server invokes the rowing machine to enter the intelligent personal education mode according to the request three, and returns the interface information of the intelligent personal education mode to the first terminal.
  • the first terminal receives the interface information of the smart personal education mode.
  • the first terminal displays the interface of the intelligent personal education mode, and correspondingly, the display screen of the rowing machine displays the interface of the intelligent personal education mode.
  • the first terminal receives the user's click operation.
  • the first terminal displays the interface 1118 of the smart personal trainer as shown in FIG. 8A .
  • the interface 1118 may include a control 1119 for dynamic activation, a control 1120 for physical fitness, a control 1121 for performance improvement, and a control 1122 for customization.
  • the interface elements displayed on the display screen 120 of the rowing machine are at least partly the same as the interface elements displayed on the first terminal 110 .
  • dynamic activation can be understood as a primary training setting mode, which can be aimed at beginners or users who are in the warm-up stage.
  • Strong physique can be understood as an intermediate training setting mode, which can be aimed at intermediate scholar or users in the fitness stage.
  • Performance enhancement can be understood as an advanced training setup mode, which can be aimed at advanced academics or users in the stage of capacity development.
  • dynamic activation can be understood as low-level exercise intensity
  • physical fitness can be understood as intermediate exercise intensity
  • performance improvement can be understood as high-level exercise intensity
  • the user can operate the display interface of the first terminal to configure the exercise parameters. Details as follows:
  • the user needs to configure low-level exercise intensity parameters.
  • the user needs to operate the control used to represent the dynamic activation on the interface of the intelligent personal trainer displayed on the first terminal to realize the exercise parameter configuration.
  • the specific implementation can be:
  • the first terminal receives the user's operation 4 on the control used to indicate dynamic activation.
  • the first terminal displays a dynamically activated interface, and correspondingly, the display screen of the rowing machine displays the dynamically activated interface.
  • S4253 may specifically be implemented as: first, in response to operation four, the first terminal sends a request three for starting the dynamic activation mode to the server, and the request three carries the information of the rowing machine and the dynamic activation mode Activation mode information.
  • the server receives request three sent by the first terminal.
  • the server invokes the rowing machine to enter the dynamic activation mode, and controls the display screen of the rowing machine and the first application to display the interface of the dynamic activation mode.
  • the first terminal displays the interface of the dynamic activation mode, and correspondingly, the display screen of the rowing machine displays the interface of the dynamic activation mode.
  • the first terminal invokes an interface, and sends the information of the rowing machine and the information of the dynamic activation mode to the interface, the rowing machine switches to the dynamic activation mode, and displays the interface of the dynamic activation mode, and at the same time, The interface of the dynamic activation mode is also displayed on the first terminal.
  • the interface 1118 of the smart personal trainer as shown in FIG. 8A may include a control 1119 for indicating dynamic activation.
  • the interface 1118 of the first terminal 110 jumps from the interface 1118 shown in FIG. 8A to the interface 1123 shown in FIG. 8C .
  • the interface 1123 may include an exercise action display area 1124 , an exercise action recommendation area 1125 , an exercise resistance selection area 1126 , an action parameter setting area 1127 and a control 1128 for starting training.
  • the display area 1124 of the exercise action may display the user's exercising part, for example, the muscle mass exercised by the current exercise action.
  • the sports action recommendation area 1125 may include selection controls for multiple sports actions, and the multiple sports actions may include seated rowing, left and right rowing, bicep arching, face pulling, and the like.
  • the exercise resistance selection area 1126 may include a weight selection control, and the weight may include 0Kg, 10Kg, 20Kg, 30Kg, and 40Kg.
  • the exercise parameter setting area 1127 may include setting controls for the number of groups, setting controls for the number of single groups, setting controls for rest between groups, and the like.
  • the multiple motions can also include rowing with left and right emphasis, biceps curling, left push-up push-pull, right push-up push-pull, straight-leg push-pull push-pull, bent-leg abdomen, straight-leg abdomen, left side assist One-leg squats, right-assisted one-leg squats, left-heavy lunges, right-heavy lunges, kneeling left-heavy lunges, kneeling right-heavy lunges, etc.
  • the user After the user configures parameters in the motion recommendation area, exercise resistance selection area, and action parameter setting area, the user needs to train according to the configured parameters.
  • the user needs to click the control on the interface to start the training, as follows:
  • the first terminal receives the user's operation 4 on the control for starting the training.
  • the first terminal displays the exercise data interface, and correspondingly, the display screen of the rowing machine displays the exercise data interface.
  • S4255 may specifically be implemented as: first, in response to operation four, the first terminal sends a request three for starting training to the server, and the request three carries rowing machine information and training information.
  • the server receives request three sent by the first terminal.
  • the server calls the rowing machine to enter the training mode, and controls the display screen of the rowing machine and the first application to display the training interface.
  • the first terminal displays the training interface, and correspondingly, the display screen of the rowing machine displays the training interface.
  • the first terminal invokes an interface, and sends the information and training information of the rowing machine to the interface, the rowing machine enters the training mode, and displays the training interface, and at the same time, the first terminal also displays training interface.
  • the first terminal 110 receives the user's click operation.
  • the first terminal 110 displays the training interface as shown in FIG. 8D and FIG. 8E .
  • the interface shown in FIG. 8D shows the folded form of the training interface 1128
  • the interface shown in FIG. 8E shows the expanded form of the training interface 1128 .
  • the interface 1128 shown in FIG. 8D and FIG. 8E may include information such as exercise time, exercise progress, exercise calories consumed, and heart rate. It can be seen that part of the content of the training interface 1128 is displayed in Figure 8D, and the entire content of the training interface 1128 is displayed in Figure 8E.
  • the first terminal receives the user's operation five on control four used to indicate course recommendation.
  • operation five is an operation for instructing the rowing machine to enter the course recommendation mode.
  • the courses may also include comprehensive lower body training courses, stable core training courses, and whole body circuit training courses.
  • comprehensive lower body training courses the specific content of the lower limb comprehensive training course is shown in Table 1:
  • the first terminal displays the course recommendation interface, and correspondingly, the display screen of the rowing machine displays the course recommendation interface.
  • S4251' can specifically be implemented as: first, in response to operation five, the first terminal sends a request four for the course recommendation mode to the server, and the request four carries the information of the rowing machine and the course Recommended mode information.
  • the server receives request 4 sent by the first terminal.
  • the server calls the rowing machine to enter the course recommendation mode, and controls the display screen of the rowing machine and the first application to display the interface of the course recommendation mode.
  • the first terminal displays the interface of the course recommendation mode, and correspondingly, the display screen of the rowing machine displays the interface of the course recommendation mode.
  • the first terminal invokes an interface, and sends the information of the rowing machine and the course recommendation mode information to the interface, and the rowing machine switches to the course recommendation mode, and displays the interface of the course recommendation mode, and at the same time, The interface of the course recommendation mode is also displayed on the first terminal.
  • the first terminal 110 receives the user's click operation.
  • the first terminal 110 displays an aerobic rowing class interface 1129 as shown in FIG. 9A .
  • the interface 1129 may include a plurality of courses for displaying the aerobic rowing course, such as a whole-body circuit training course, a stable core training course, and a comprehensive lower body training course.
  • it may also include a first display control 1130 for displaying the actions involved in the aerobic rowing class, a second display control 1131 for displaying the instructions of the aerobic rowing class, and a button for indicating the start of training.
  • the user can slide along the horizontal axis of the display screen of the first terminal to switch the above-mentioned multiple courses.
  • the first terminal 110 displays the schematic diagram and parameters of each action under the first display control (eg, action control) 1130 as shown in FIG. 9A .
  • the display screen of the rowing machine 120 displays an interface 122 as shown in FIG. 9B , and the content displayed on the interface 122 is the same as or similar to the content displayed on the first terminal 110 .
  • the user can slide along the vertical axis of the display screen of the first terminal to browse the various movements involved in the whole body circuit training course, such as the various movements shown in Table 3.
  • the interface of the first terminal 110 jumps from the interface 1129 shown in FIG. 9A to the interface 1133 shown in FIG. 9C, on which aerobic rowing is displayed.
  • the display screen of the rowing machine 120 displays an interface 123 as shown in FIG. 9D , and the interface elements on the interface 123 are at least partly the same as those displayed on the first terminal 110 .
  • the display method provided in the embodiment of the present application may further include:
  • the rowing machine performs operations corresponding to the course content according to the course content.
  • the rowing machine performs the corresponding operation according to the content of the course.
  • the aerobic rowing class may include a seated rowing stage, a Y stretching stage and a face pulling stage.
  • the rowing machine is adjusted to the motion parameters corresponding to the seated rowing.
  • the seated rowing stage jumps to the Y stretching stage
  • the rowing machine is adjusted to the corresponding motion parameters of the Y stretching stage.
  • the rowing machine is adjusted to the corresponding exercise parameters of the face pull stage.
  • the course content can be stored on the rowing machine or on the server. If the course content is stored on the server, then S4252' can be specifically implemented as follows: the server can control the rowing machine to perform corresponding operations according to the course content stored on the server. Specifically, the server can call an interface to control the rowing machine to perform operations corresponding to the course content according to the course content.
  • the first terminal receives the user's operation six on the control two used to indicate the strength training mode.
  • operation six is an operation for instructing the rowing machine to enter the strength training mode.
  • the first terminal displays an interface used to represent the assessment of training ability level, and correspondingly, the interface elements displayed on the display screen of the rowing machine are at least partly the same as the interface elements displayed on the first terminal.
  • S4251" can be specifically implemented as: first, in response to operation six, the first terminal sends a request five for starting the strength training mode to the server, and the request five carries the information of the rowing machine and Strength training mode information.
  • the server receives the request five sent by the first terminal.
  • the server calls the rowing machine to enter the strength training mode according to the request three, and controls the display screen of the rowing machine and the first terminal to display the interface for evaluating the training ability level
  • the first terminal displays an interface for assessing training ability levels, and correspondingly, the display screen of the rowing machine displays an interface for evaluating training ability levels.
  • the first terminal invokes an interface and sends information about the rowing machine and strength training mode information are sent to this interface, the rowing machine enters the strength training mode, and displays the interface for evaluating the training ability level, and at the same time, the interface for evaluating the training ability level is also displayed on the first terminal.
  • the first terminal 110 receives the user's click operation.
  • the first terminal 110 displays an interface 1134 for evaluating the training ability level as shown in FIG. 10A .
  • the interface 1134 may include a control 1135 for maximal strength assessment, a control 1136 for training exercise preference assessment, and the like.
  • the display screen of the rowing machine displays the interface 124 shown in FIG. 10B , and the content displayed on the interface 124 is the same as or similar to the content displayed on the first terminal 110 .
  • the maximum strength evaluation can be understood as the need to evaluate the user's ability level before the user performs the rowing machine training.
  • the maximum strength evaluation may include the maximum strength evaluation of the action selected by the user.
  • the evaluation of training action preference can be understood as evaluating the maximum strength of the training action preferred by the user.
  • the first terminal receives the user's operation VII on the control used to indicate the maximum strength evaluation.
  • the seventh operation is an operation for instructing the rowing machine to enter the maximum strength evaluation.
  • the first terminal displays an interface for indicating that you select the action you want to evaluate, and correspondingly, the interface elements displayed on the display screen of the rowing machine are at least partly the same as the interface elements displayed on the first terminal .
  • S4253" can be specifically implemented as: first, in response to operation seven, the first terminal sends a request six for starting the maximum strength evaluation to the server, and the request six carries the rowing machine information and Maximum strength evaluation information.
  • the server receives request 6 sent by the first terminal.
  • the server calls the rowing machine to enter the maximum strength evaluation mode, and controls the display screen of the rowing machine and the first terminal to display "Please select the The first terminal displays the interface of "Please select the action you want to evaluate".
  • the first terminal invokes an interface and transfers the information of the rowing machine and the maximum strength evaluation information Send to this interface, the rowing machine switches to the maximum strength evaluation mode, and displays the interface of "please select the action you want to evaluate", and at the same time, the interface of "please select the action you want to evaluate" is also displayed on the first terminal.
  • the first terminal 110 receives the user's click operation.
  • the first terminal 110 displays an interface 1137 for selecting the action you want to evaluate as shown in FIG. 10C .
  • the interface 1137 may include actions that the user needs to select and their action images, such as seated rowing and its action images, Y stretching and its action images, face pulling and its action images, and the like.
  • the content displayed on the display screen of the rowing machine is the same or similar to the content displayed on the first terminal.
  • the details can be:
  • the first terminal receives the user's operation eight on the first action image.
  • the eighth operation is an operation for instructing the user to select the first action.
  • the user selects the "sitting rowing and its action image" control shown in FIG. 10C .
  • the first terminal displays an interface for starting the evaluation, and correspondingly, the interface elements displayed on the display screen of the rowing machine are at least partly the same as those displayed on the first terminal.
  • S4255" can be specifically implemented as: first, in response to operation eight, the first terminal sends a request seven for starting the evaluation to the server, and the request seven carries the rowing machine information and the first Action information.
  • the server receives request 7 sent by the first terminal.
  • the server calls the rowing machine to enter the maximum strength evaluation of the first action, and controls the display screen of the rowing machine and the first terminal to display "the first action maximum Strength evaluation" interface.
  • the first terminal displays the interface of "maximum strength evaluation of the first movement".
  • the first terminal invokes an interface and transfers the information of the rowing machine and the information of the first movement Sending to this interface, the rowing machine enters the maximum strength evaluation of the first movement, and displays the interface of "the maximum strength of the first movement is being evaluated", and at the same time, the interface of "the maximum strength of the first movement is being evaluated" is also displayed on the first terminal.
  • the first terminal 110 receives the user's click operation.
  • the first terminal 110 displays an interface 1138 for starting evaluation as shown in FIG. 10D .
  • the interface 1138 may include a first action and its action image, a default weight, the number of pulls, and a control 1139 for directly starting weight feedback.
  • the content displayed on the display screen of the rowing machine is the same or similar to the content displayed on the first terminal.
  • the details can be:
  • the first terminal receives the user's operation Nine on the control for directly starting the weight feedback.
  • the ninth operation is an operation for instructing the user to directly start weight feedback.
  • the user selects the "indicate direct start weight feedback" control 1139 on the interface 1138 shown in FIG. 10D .
  • the first terminal displays an interface for starting the assessment, and correspondingly, the interface elements displayed on the display screen of the rowing machine are at least partly the same as those displayed on the first terminal.
  • S4257 can be specifically implemented as: first, in response to operation 9, the first terminal sends a request 8 for starting the evaluation to the server, and the request 8 carries information about the rowing machine and weight feedback
  • the server receives the request 8 sent by the first terminal.
  • the server calls the rowing machine to enter the maximum strength evaluation of the first movement, and controls the display screen of the rowing machine and the first terminal to display "the maximum strength of the first movement
  • the first terminal displays the interface of "in evaluation of the maximum strength of the first action”.
  • the first terminal invokes an interface and sends the information of the rowing machine and the weight feedback information to In this interface, the rowing machine enters the maximum strength assessment of the first movement, and displays the interface of "maximum strength assessment of the first movement", and at the same time, the interface of "maximum strength assessment of the first movement" is also displayed on the first terminal.
  • the first terminal 110 receives the user's click operation. In response to this operation, the first terminal 110 displays an interface 1140 for starting evaluation as shown in FIG. 10E .
  • the interface 1140 may include an option control for weight feedback, and the selection control may include too light, light, moderate, heavy, and too heavy.
  • the content displayed on the display screen of the rowing machine is the same or similar to the content displayed on the first terminal.
  • the user needs to pull up to 6 times or the user can actively click to start the weight feedback. If the user feedback is too light, a single increase of 6kg, if the user feedback is light, a single increase of 3kg, until the end of the user feedback Evaluate. If the user feedback is too heavy, reduce it by 6kg at a time, if the user feedback is heavy, reduce it by 3kg at a time, and end the evaluation until the user feedback is "moderate”. If the user's feedback is moderate, a single increase of 3kg will be made until the user evaluates as "heavy" to end the evaluation.
  • the user operates the option control of the weight feedback shown in FIG. 10E.
  • the user clicks on the "heavier" control and the first terminal receives the user's operation.
  • the first terminal sends an adjustment request to the server, and the server reduces the weight by one gear (such as 3Kg) according to the adjustment request, and sends the adjusted information to the first terminal.
  • the interface of the first terminal is shown in Figure 10E
  • the interface jumps to the interface 1141 shown in FIG. 10F.
  • the user proceeds to a maximal force assessment.
  • the user can click the "start weight feedback directly" control 1142 shown on the interface 1141 in Figure 10F, and the interface of the first terminal will jump to the interface 1143 shown in Figure 10G for feedback .
  • the interface of the first terminal jumps to the interface 1143 of the evaluation result shown in FIG. 10G, which may include the maximum strength of the first action evaluation result.
  • the maximum strength evaluation result of seated rowing may be an optimum strength interval, and the optimum strength interval may be 18-22Kg.
  • the user can also choose the optimal load range and maximum load for different preferred actions based on the user's personal physiological data (height, weight, body fat, etc.) to evaluate. Specifically, it can be:
  • the first terminal receives the user's operation on the control used to indicate the training action preference evaluation.
  • operation ten is an operation for instructing the rowing machine to enter training action preference evaluation.
  • the first terminal displays an interface for indicating that you select the action you want to evaluate, and correspondingly, the interface elements displayed on the display screen of the rowing machine are at least partly the same as the interface elements displayed on the first terminal .
  • S4259" can be specifically implemented as: first, in response to operation 10, the first terminal sends a request 10 for starting training action preference evaluation to the server, and the request 10 carries rowing machine information and training action preference evaluation mode information.
  • the server receives the request 10 sent by the first terminal.
  • the server transfers the rowing machine to enter the training action preference evaluation mode according to the request 10, and controls the display screen of the rowing machine and the first terminal to display For the interface indicating "please select the action you like".
  • the first terminal displays the interface for indicating "please select the action you want to evaluate”.
  • the interface elements displayed on the display screen of the rowing machine are the same as those on the first terminal.
  • the displayed interface elements are at least partly the same.Second, in response to operation ten, the first terminal calls an interface, and sends the information of the rowing machine and the training action preference evaluation mode information to the interface, and the rowing machine enters the training action preference evaluation mode , and an interface for "please select the action you want to evaluate” is displayed, and at the same time, an interface for "please select the action you want to evaluate” is also displayed on the first terminal.
  • the first terminal 110 receives the user's click operation.
  • the first terminal 110 displays an interface 1144 of "Please select your favorite action” as shown in FIG. 10H .
  • the user's favorite actions and their action images can be included on the interface 1144 , such as seated rowing and its action images, Y stretching and its action images, face pulling and its action images, and so on.
  • the content displayed on the display screen of the rowing machine is the same or similar to the content displayed on the first terminal.
  • the interface of the first terminal After the user selects each action on the interface 1144 shown in FIG. 10H , the interface of the first terminal jumps to the interface 1145 shown in FIG. 10I for indicating training preference action evaluation. On this interface 1145 are displayed actions of user preference, and a control 1146 for indicating re-evaluation. After the user operates the control 1146 shown in FIG. 10I , the interface of the first terminal jumps to the interface 1138 for starting evaluation shown in FIG. 10D . The user can perform an action assessment based on the content displayed in the interface 1138 shown in Figure 10D.
  • the user Before the user starts exercising, the user can perform action evaluation in the above manner and obtain the evaluation result. Users can adjust the exercise weight gear of the rowing machine according to the evaluation results. At the same time, during the user's exercise, every time the user pulls the rowing machine, the rowing machine records the user's exercise data. Exemplarily, taking seated rowing as an example, before exercising, the user conducts a strength assessment, and sets 5 sets of movement times according to the strength assessment results, and each set of movement times is 10. After the user evaluates strength as shown in FIG. 10G , the user may click the return control in the upper left corner of the first terminal, and the first terminal displays the interface shown in FIG. 7 . Users can choose exercise modes, such as aerobic rowing or smart personal training. The user can click.
  • exercise modes such as aerobic rowing or smart personal training. The user can click.
  • the first terminal displays the interface 1147 shown in FIG. Time, calories (calorie), weight, number of exercise groups, number of exercises in this group, heart rate, power, exercise frequency, etc.
  • the interface 1147 has many display contents, and the first terminal can be divided into two pages for display, as shown in FIG. 10J and FIG. 10K .
  • What is to be expressed in Figure 10J and Figure 10K is: the user completes the first set of actions of the rowing machine, the time it takes the user to do the first set of actions is 00:00:08, and the calories consumed are 13 kcal.
  • the weight is 30 kg
  • the user's heart rate is 100 beats/min
  • the power of the rowing machine is 23W
  • the user's action frequency is 23 beats/min.
  • the content displayed on the display screen of the rowing machine shown in FIG. 10M , FIG. 10N and FIG. 10O is the same or similar to the content displayed on the first terminal.
  • the user can operate the weight adjustment interface of the rowing machine to adjust the weight of the strength training in real time.
  • the user may click on the control shown in FIG. 10O for representing the weight, and the control may be in the shape of a ring.
  • the rowing machine can adjust the weight in the strength training mode according to the clicked position of the user. For example, when the user clicks on position A, the rowing machine adjusts the strength to 200Kg; when the user clicks on position B, the rowing machine adjusts the strength to 50Kg.
  • the display screen of the rowing machine can switch to display the interfaces shown in Fig. 10M, Fig. 10N and Fig. 10O.
  • the interface of the first terminal is switched from the vertical screen display to the horizontal screen display, that is, the interface of the first terminal jumps from the interface shown in Figure 10J or Figure 10K to the interface shown in Figure 10L.
  • the first terminal can display all the information through one interface, so that the user can browse all the information without any operation.
  • the data types of the strength training mode are not limited to those shown in the above interface.
  • the data types of the strength training mode can also include average heart rate, maximum power, peak weight, peak power, total number of actions, total number of action sets, each set Exercise times, maximum heart rate, heart rate zone distribution, weight curve, power curve, exercise frequency curve, etc.
  • the aforementioned heart rate data can be obtained through a wearable device.
  • a user may wear a smart watch when exercising with a rowing machine, and the smart watch may detect the user's heart rate.
  • the smart watch sends the detected heart rate data to the first terminal.
  • the first terminal receives the heart rate data collected by the smart watch, and displays the heart rate data.
  • the first terminal can send the heart rate data to the rowing machine, and the rowing machine receives the heart rate data and displays the heart rate data on the display screen.
  • the first terminal receives the user's operation eleven on the control for the aerobic rowing mode.
  • operation eleven is an operation for instructing the rowing machine to enter the aerobic rowing mode.
  • the first terminal displays an interface for representing aerobic rowing.
  • the interface elements displayed on the display screen of the rowing machine are at least partly the same as the interface elements displayed on the first terminal.
  • the first terminal 110 receives the user's click operation.
  • the first terminal 110 displays an interface 1148 as shown in FIG. 11A .
  • prompt information such as "start training” and “please pull the rowing machine to start exercising” are displayed.
  • the content shown in FIG. 11B is displayed on the display screen of the rowing machine 120, which is the same as or similar to the content displayed on the first terminal.
  • the interface of the first terminal jumps from the interface 1148 shown in FIG. 11A to the interface 1149 shown in FIG. 11C .
  • this interface 1149 there can be displayed the planned kilometers, stroke times, exercise time, heat, power, resistance, heart rate, pace, stroke frequency, rotary controls, and the like. Since there are many displayed contents, the above contents can be displayed in pages.
  • the interface 1149 shown in FIG. 11C shows: the proposed kilometer is 0.08 kilometers, the exercise time is: 00:00:08, the heat is 13 kcal, the number of strokes is 11 times, and the power is 13 watts.
  • the resistance is 21 files, and the heart rate is 100 beats per minute. Since the interface shown in Figure 11C cannot display all the information, the remaining information is supplemented in the interface 1149 shown in Figure 11D, such as, the pace is 1'30 "/500 meters, and the paddle frequency is 23 times/minute.
  • the first terminal cannot display all information on one interface.
  • the first terminal when the user operates the rotation control 11491 displayed on the interface shown in Figure 11C or Figure 11D, the first terminal can switch to the landscape display mode, and in the landscape display mode, the first terminal displays the screen shown in Figure 11E interface 1150. All the information shown in FIG. 11C and FIG. 11D are displayed on the interface 1150 .
  • the user can slide along the horizontal axis of the display screen of the first terminal to switch between the interface shown in FIG. 11C and the interface shown in FIG. 11D . In this way, users can see all the information on one interface.
  • the display screen of the rowing machine can also display the above information in pages.
  • the content displayed on the display screen of the rowing machine shown in FIG. 11F , FIG. 11G and FIG. 11H is the same as or similar to the content displayed on the first terminal.
  • the rowing machine adjusts the resistance of aerobic rowing in response to the user's operation.
  • the user clicks the circle icon shown in FIG. 11H and in response to the user's click operation, the rowing machine adjusts the resistance of the aerobic rowing mode.
  • the adjustment of the resistance may be related to the click position of the circle icon on the interface shown in FIG. 11H by the user, or may be related to the frequency and number of clicks of the user on the interface shown in FIG. 11H .
  • the embodiments of this application do not make specific limitations.
  • the user does not wear a smart watch, that is, information such as the user's heart rate cannot be detected.
  • the interface of the first terminal jumps from interface 1148 shown in FIG. 11A to interface 1151 shown in FIG. 11I .
  • Information other than the heart rate in the above information can be displayed on the interface 1151 .
  • Fig. 11J is a partial interface view of Fig. 11I.
  • the first terminal can switch to the landscape display mode, and in the landscape display mode, the first terminal displays the interface 1152 shown in Figure 11K .
  • the rowing machine After the user finishes exercising, the rowing machine performs statistics and analysis on the user's exercise data to obtain statistical data.
  • the rowing machine After the user's exercise, the rowing machine will count and analyze the user's exercise data, get statistical data, and draw a statistical data interface to help the user remember each exercise result. In addition, the rowing machine will also conduct statistics and analysis on the user's daily, weekly and monthly training volume.
  • the first terminal acquires statistical data.
  • the first terminal can obtain statistical data from the rowing machine through the bluetooth transmission channel.
  • the Bluetooth transmission channel may be established in the first stage above.
  • the first terminal may also obtain statistical data from the server.
  • the server can obtain statistical data from the rowing machine through the network connection established between the server and the rowing machine.
  • the first terminal displays the statistical data.
  • the first terminal After acquiring the statistical data, the first terminal displays an interface including the statistical data.
  • the rowing machine will generate the user's exercise data.
  • the rowing machine performs statistics and analysis according to the user's exercise data to obtain statistical data.
  • the first terminal obtains the statistical data, and displays an interface 1153 as shown in FIG. 12A .
  • options such as pace, graphs and details are displayed. Under the details option, there are exercise time, calorie consumption, average pace, average speed, average stroke frequency, stroke times, resistance, etc.
  • the first terminal displays an interface 1154 as shown in FIG. 12B .
  • Graphical information such as heart rate, pace, paddle frequency, and resistance are displayed on the interface 1154 .
  • the first terminal displays an interface 1155 as shown in FIG. 12C . The average pace, fastest pace, distance and corresponding pace are displayed on the interface 1155 .
  • the first terminal acquires statistical data and displays an interface containing the statistical data.
  • the first terminal displays an interface 1156 as shown in FIG. 12D .
  • options such as grouping, graph and details are displayed.
  • the interface 1156 displayed on the first terminal includes calories, exercise time, total number of movements, peak power, peak weight, total number of exercise groups, average heart rate, etc.
  • the first terminal displays an interface 1157 as shown in FIG. 12E .
  • Graphical information such as heart rate, weight, power, and motion frequency are displayed on the interface 1157 .
  • the first terminal displays an interface 1158 as shown in FIG. 12F .
  • the interface 1158 displays the total number of exercise groups, the total number of exercises, etc.
  • the interface 1158 also displays the corresponding time, times, peak weight, peak power, and average heart rate of each group.
  • the data types of the aerobic rowing mode are not limited to those shown in the above interface.
  • the data types of the aerobic rowing mode can also include resistance level distribution, distance, maximum speed, stroke frequency curve, maximum stroke frequency, heart rate curve, average Heart rate, maximum heart rate, heart rate zone distribution, power curve, average power, maximum power, and more.
  • the rowing machine is equipped with a variety of handles and provides replaceable handle interfaces. status for quick release and replacement.
  • the upper end of the nylon drawstring is fixed with a metal ring
  • the handle for aerobic rowing is a straight handle
  • the handle for strength training is a triangular handle
  • the top of the handle is a gourd-shaped metal hook.
  • the rowing machine displays statistical data.
  • the rowing machine will generate the user's exercise data.
  • the rowing machine performs statistics and analysis according to the user's exercise data, obtains statistical data, and displays the pace interface shown in Figure 13A, the graph interface shown in Figure 13B, and the graph interface shown in Figure 13C.
  • the user can slide along the horizontal axis of the display screen of the rowing machine to switch between the pace interface, the graph interface and the graph interface.
  • the user can also slide along the vertical axis of the display screen of the rowing machine to browse the detailed content of each interface.
  • the terminal executes any one of the above methods.
  • a system provided in an embodiment of the present application the system executes any one of the above methods.
  • An embodiment of the present application also provides a computer-readable storage medium, including instructions, which, when run on a computer, cause the computer to execute any one of the above methods.
  • the embodiment of the present application also provides a computer program product containing instructions, which, when run on a computer, causes the computer to execute any one of the above methods.
  • the embodiment of the present application also provides a chip, the chip includes a processor and an interface circuit, the interface circuit is coupled to the processor, the processor is used to run computer programs or instructions to implement the above method, and the interface circuit is used to communicate with other modules outside the chip to communicate.
  • words such as “exemplary” or “for example” are used to mean an example, illustration or illustration. Any embodiment or design scheme described as “exemplary” or “for example” in the embodiments of the present application shall not be interpreted as being more preferred or more advantageous than other embodiments or design schemes. Rather, the use of words such as “exemplary” or “such as” is intended to present related concepts in a concrete manner.
  • the disclosed devices and methods may be implemented in other ways.
  • the device embodiments described above are only illustrative.
  • the division of the modules or units is only a logical function division. In actual implementation, there may be other division methods.
  • multiple units or components can be Incorporation or may be integrated into another device, or some features may be omitted, or not implemented.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be through some interfaces, and the indirect coupling or communication connection of devices or units may be in electrical, mechanical or other forms.
  • the unit described as a separate component may or may not be physically separated, and the component displayed as a unit may be one physical unit or multiple physical units, that is, it may be located in one place, or may be distributed to multiple different places . Part or all of the units can be selected according to actual needs to achieve the purpose of the solution of this embodiment.
  • each functional unit in each embodiment of the present application may be integrated into one processing unit, each unit may exist separately physically, or two or more units may be integrated into one unit.
  • the above-mentioned integrated units can be implemented in the form of hardware or in the form of software functional units.
  • the integrated unit is realized in the form of a software function unit and sold or used as an independent product, it can be stored in a readable storage medium.
  • the technical solution of the embodiment of the present application is essentially or the part that contributes to the prior art, or all or part of the technical solution can be embodied in the form of a software product, and the software product is stored in a storage medium Among them, several instructions are included to make a device (which may be a single-chip microcomputer, a chip, etc.) or a processor (processor) execute all or part of the steps of the methods described in the various embodiments of the present application.
  • the aforementioned storage medium includes: various media that can store program codes such as U disk, mobile hard disk, read only memory (ROM), random access memory (random access memory, RAM), magnetic disk or optical disk.

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Abstract

一种显示方法、终端、划船机和通信系统,该方法应用于通信系统,该通信系统可以包括第一终端和划船机,该方法可以包括:响应于对第一终端上第一卡片的第一操作,第一终端显示第一界面,第一界面上包括用于表示预设模式的第一控件,第一卡片与划船机相关。响应于对第一控件的第二操作,第一终端显示第二界面,划船机显示第三界面,第三界面上显示的界面元素与第二界面上显示的界面元素至少部分相同,实现第一终端与划船机联动显示。这样,用户在使用划船机进行运动的过程中,用户可以同步操作第一终端和划船机上显示的控件或同步查看第一终端和划船机上显示的信息,提高用户体验。

Description

一种显示方法、终端、划船机和通信系统
本申请要求于2021年12月31日提交中国专利局、申请号为202111673952.6、申请名称为“一种显示方法、终端、划船机和通信系统”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明实施例涉及终端技术领域,尤其涉及一种应用于终端和划船机的显示方法、终端、划船机和通信系统。
背景技术
随着人们对健康的重视,各种类型的健身器材层出不穷。划船机作为一种可以高效锻炼上肢、下肢、腰腹、背部等全身85%的肌肉的室内健身器材出现在公众的视野里。现有的划船机主要的锻炼模式为有氧划船模式,其通过脚蹬和手拉的有氧运动方式达到锻炼心肺、促进身体循环,减去内脏脂肪等目的。目前,中高端的划船机不仅可以调节阻力,而且可以设置各种训练或比赛模式,其可设定的运动参数也越来越丰富、越来越专业,这也带来了划船机参数设定的问题。特别是目前大部分划船机人机交互方式并不友好,以英文字符和数值为主的显示界面加上各种设定按钮,往往导致使用者不方便操作。
发明内容
本申请实施例提供的一种显示方法、终端、划船机和通信系统,实现终端与划船机联动显示,使得用户在运动过程中可以查看或操作终端或划船机上显示的信息,提高用户的运动体验。
为达到上述目的,本申请实施例采用如下技术方案。
第一方面,本申请实施例提供了一种显示方法,应用于通信系统,通信系统包括第一终端和划船机,该方法可以包括:响应于对第一终端上第一卡片的第一操作,第一终端显示第一界面,第一界面上包括用于表示预设模式的第一控件,第一卡片与划船机相关。响应于对第一控件的第二操作,第一终端显示第二界面,划船机显示第三界面,第三界面上显示的界面元素与第二界面上显示的界面元素至少部分相同,实现第一终端与划船机联动显示。这样,用户在使用划船机进行运动的过程中,用户可以同步操作第一终端和划船机上显示的控件或同步查看第一终端和划船机上显示的信息,提高用户体验。另外,用户在运动过程中,通过操作第一终端即可操作划船机,从而实现第一终端与划船机联动,无需用户暂停运动来调节划船机,提高了用户体验。
在一种具体可实现方式中,预设模式包括智能私教模式、课程推荐模式、力量训练模式、有氧划船模式等多个训练模式。这样,在有氧划船模式以外,为用户提供了更为丰富的训练模式。而且,用户可以在划船机上或第一终端上进行模式选择和切换,当第一终端上选择了其中一种训练模式,相应地,划船机也进入该训练模式。
在一些实施例中,预设模式可以包括智能私教模式,预设模式包括智能私教模式,第 一控件用于表示智能私教模式,第二界面上显示的界面元素包括用于表示动态激活的第二控件,方法还包括:响应于对第二控件的操作,第一终端显示第四界面,第四界面包括用于表示开始训练的第三控件。响应于对第三控件的操作,第一终端显示运动信息。划船机显示运动信息。本申请实施例中,增加了智能私教模式,这样,在有氧划船模式以外,为用户提供了更为丰富的训练模式,提高了用户体验。
在一种具体可实现方式中,第四界面还可以包括第十控件,该第十控件可以包括用于表示开始训练的控件、视频播放区域、用于选择动作的控件、用于选择训练重量的控件、用于配置动作参数的控件等。
在一些实施例中,预设模式包括力量训练模式,第一控件用于表示力量训练模式;第二界面上显示的界面元素包括第四控件和第五控件,第四控件用于指示用户进行力量评估,第五控件用于指示用户进行训练动作偏好评估。第三界面上显示的界面元素包括用于表示力量评估的控件和用于表示训练动作偏好评估的控件。这样,用户在进行锻炼之前,可以进行力量评估或偏好动作评估,使得用户可以充分了解自身状况,便于用户选择更适合自己的锻炼方式。
在一些实施例中,该方法还可以包括:响应于对第四控件的操作,第一终端显示用于表示第一重量的图标和用于进行重量反馈的第六控件。响应于对第六控件的操作,第一终端显示表示力量反馈的多个选项。响应于对多个选项中的第一选项的操作,第一终端显示第五界面,第五界面上包括用于表示第二重量的图标,划船机显示第六界面,第六界面包括用于表示第二重量的图标,其中,第二重量与第一重量不同。
在一种具体可实现方式中,多个项中每相邻两个选项对应的力量值相差第一阈值。示例性的,第一阈值可以为3千克。当然,第一阈值也可以选取其他数据,如,2千克。本申请实施例需要根据实际需求选取。
在一些实施例中,第五界面和第六界面上还包括力量评估结果和用于表示重新评估的第七控件。其中,该评估结果可以包括最佳力量区间。示例性的,最佳力量区间可以为18-22千克。
在一些实施例中,预设模式包括力量训练模式或有氧划船模式,第一控件用于表示力量训练模式或有氧划船模式,第二界面上显示的界面元素包括用于表示开始训练的第八控件,方法还包括:响应于对第八控件的操作,第一终端显示用于表示负荷调节的第九控件和用于表示第一负荷的图标,划船机显示用于表示负荷调节的第九控件和用于表示第一负荷的图标。响应于对第九控件的操作,第一终端显示用于表示第二负荷的图标,划船机显示用于表示第二负荷的图标,其中,第二负荷与第一负荷不同。这样,第一终端和划船机均可以实现负荷调节。示例性的,在用户运动过程中,用户可以操作划船机或第一终端上显示的第九控件灵活调节负荷,更能满足用户的实时性要求。
在一些实施例中,预设模式包括力量训练模式,负荷调节包括重量调节,第九控件为用于表示重量调节的控件;预设模式包括有氧划船模式,负荷调节包括阻力调节,第九控件为用于表示阻力调节的控件。
在一种具体可实现方式中,第三界面上显示的界面元素与第二界面上显示的界面元素至少部分相同,包括:第三界面与第二界面上显示的内容至少部分相同。
在一种具体可实现方式中,第三界面上显示的界面元素与第二界面上显示的界面元素 至少部分相同,包括:第三界面与第二界面上显示的布局至少部分相同。
在一些实施例中,预设模式包括课程推荐模式,第二界面包括预设课程对应动作、及用于表示开始训练的控件,方法还包括:响应于对该控件的操作,第一终端显示有预设课程的视频播放界面。划船机也显示有预设课程的视频播放界面。本申请实施例中,增加了课程推荐模式,这样,在有氧划船模式以外,为用户提供了更为丰富的训练模式,提高了用户体验。
在一些实施例中,该方法还可以包括:划船机根据预设课程的课程内容调节划船机的工作参数。本申请实施例中,增加了课程推荐模式,可以智能的根据课程内容调节划船机工作,使得用户可以跟着课程节奏训练,提高了用户体验。
在一些实施例中,通信系统还包括第二终端,方法还包括:第二终端检测第一信息,并将第一信息发送给第一终端。第一终端接收第一信息,并显示第一信息。第一终端将第一信息发送给划船机,划船机显示第一信息。这样,第一终端和划船机可以同步接收或显示其他终端发送的信息,使得第一终端和划船机的显示内容更丰富。
在一种具体可实现方式中,第一信息为用户的生理信息。示例性的,该用户的生理信息可以包括用户的心率、用户的肺活量、用户的血压等。
在一些实施例中,该通信系统还可以包括服务器,响应于对第一控件的第二操作,划船机显示第三界面,具体可以为:第一终端向服务器发送第一请求,第一请求中携带划船机的信息。服务器根据第一请求控制划船机显示第三界面。示例性的,在第一终端与划船机蓝牙断开后,第一终端和划船机可以进行网络连接,这样,第一终端可以通过服务器控制划船机工作,以实现第一终端和划船机联动显示。
在一种具体可实现方式中,第一终端和划船机均存储有连接协议,连接协议中可以包括多个接口。响应于对第一控件的第二操作,第一终端显示第二界面,划船机显示第三界面,具体可以为:响应于第二操作,第一终端显示第二界面,且第一终端调用多个接口中的第一接口,控制划船机显示第三界面。
第二方面,本申请实施例提供了一种显示方法,应用于第一终端,该方法可以包括:响应于对第一终端上第一卡片的第一操作,第一终端显示第一界面,第一界面上包括用于表示预设模式的第一控件,第一卡片与划船机相关。响应于对第一控件的第二操作,第一终端显示第二界面,且第一终端向划船机发送第一信息,第一信息用于指示划船机显示第三界面,第三界面上显示的界面元素与第二界面上显示的界面元素至少部分相同,实现第一终端与划船机联动显示。这样,用户在使用划船机进行运动的过程中,用户可以同步操作第一终端和划船机上显示的控件或同步查看第一终端和划船机上显示的信息,提高用户体验。另外,用户在运动过程中,通过操作第一终端即可操作划船机,从而实现第一终端与划船机联动,无需用户暂停运动来调节划船机,提高了用户体验。
在一种具体可实现方式中,预设模式包括智能私教模式、课程推荐模式、力量训练模式、有氧划船模式等多个训练模式。这样,在有氧划船模式以外,为用户提供了更为丰富的训练模式。而且,用户可以在划船机上或第一终端上进行模式选择和切换,当第一终端上选择了其中一种训练模式,相应地,划船机也进入该训练模式。
在一些实施例中,预设模式包括智能私教模式,第一控件用于表示智能私教模式,第二界面上显示的界面元素包括用于表示动态激活的第二控件,方法还包括:响应于对第二 控件的操作,第一终端显示第四界面,第四界面包括用于表示开始训练的第三控件。响应于对第三控件的操作,第一终端显示运动信息。第一终端向划船机发送第二信息,第二信息用于指示划船机显示运动信息。本申请实施例中,增加了智能私教模式,这样,在有氧划船模式以外,为用户提供了更为丰富的训练模式,提高了用户体验。
在一种具体可实现方式中,第四界面还可以包括第十控件,该第十控件可以包括用于表示开始训练的控件、视频播放区域、用于选择动作的控件、用于选择训练重量的控件、用于配置动作参数的控件等。
在一些实施例中,预设模式包括力量训练模式,第一控件用于表示力量训练模式;第二界面上显示的界面元素包括第四控件和第五控件,第四控件用于指示用户进行力量评估,第五控件用于指示用户进行训练动作偏好评估;第三界面上显示的界面元素包括用于表示力量评估的控件和用于表示训练动作偏好评估的控件。这样,用户在进行锻炼之前,可以进行力量评估或偏好动作评估,使得用户可以充分了解自身状况,便于用户选择更适合自己的锻炼方式。
在一些实施例中,该方法还可以包括:响应于对第四控件的操作,第一终端显示用于表示第一重量的图标和用于进行重量反馈的第六控件。响应于对第六控件的操作,第一终端显示表示力量反馈的多个选项。响应于对多个选项中的第一选项的操作,第一终端显示第五界面,第五界面上包括用于表示第二重量的图标。第一终端向换船机发送第三消息,第三消息用于指示划船机显示第六界面,第六界面包括用于表示第二重量的图标,其中,第二重量与第一重量不同。
在一种具体可实现方式中,第五界面和第六界面上还包括力量评估结果和用于表示重新评估的第七控件。
在一些实施例中,预设模式包括力量训练模式或有氧划船模式,第一控件用于表示力量训练模式或有氧划船模式,第二界面上显示的界面元素包括用于表示开始训练的第八控件,方法还包括:响应于对第八控件的操作,第一终端显示用于表示负荷调节的第九控件和用于表示第一负荷的图标,划船机显示用于表示负荷调节的第九控件和用于表示第一负荷的图标。响应于对第九控件的操作,第一终端显示用于表示第二负荷的图标,划船机显示用于表示第二负荷的图标,其中,第二负荷与第一负荷不同。这样,第一终端和划船机均可以实现负荷调节。示例性的,在用户运动过程中,用户可以操作划船机或第一终端上显示的第九控件灵活调节负荷,更能满足用户的实时性要求。
在一些实施例中,预设模式包括力量训练模式,负荷调节包括重量调节,第九控件为用于表示重量调节的控件;预设模式包括有氧划船模式,负荷调节包括阻力调节,第九控件为用于表示阻力调节的控件。
在一种具体可实现方式中,第三界面上显示的界面元素与第二界面上显示的界面元素至少部分相同,包括:第三界面与第二界面上显示的内容至少部分相同。
在一种具体可实现方式中,第三界面上显示的界面元素与第二界面上显示的界面元素至少部分相同,包括:第三界面与第二界面上显示的布局至少部分相同。
第三方面,本申请实施例提供了一种显示方法,应用于划船机,该方法包括:响应于对划船机的第一操作,划船机显示第一界面,第一界面上包括用于表示预设模式的第一控件。响应于对第一控件的第二操作,划船机显示第二界面,且划船机向第一终端发送第一 信息,第一信息用于指示第一终端显示第三界面,第三界面上显示的界面元素与第二界面上显示的界面元素至少部分相同,实现第一终端与划船机联动显示。这样,用户在使用划船机进行运动的过程中,用户可以同步操作第一终端和划船机上显示的控件或同步查看第一终端和划船机上显示的信息,提高用户体验。另外,用户在运动过程中,通过操作第一终端即可操作划船机,从而实现第一终端与划船机联动,无需用户暂停运动来调节划船机,提高了用户体验。
在一些实施例中,预设模式包括智能私教模式、课程推荐模式、力量训练模式、有氧划船模式等多个训练模式。这样,在有氧划船模式以外,为用户提供了更为丰富的训练模式。而且,用户可以在划船机上或第一终端上进行模式选择和切换,当第一终端上选择了其中一种训练模式,相应地,划船机也进入该训练模式。
在一些实施例中,预设模式包括智能私教模式,第一控件用于表示智能私教模式,第二界面上显示的界面元素包括用于表示动态激活的第二控件,方法还包括:响应于对第二控件的操作,划船机显示第四界面,第四界面包括用于表示开始训练的第三控件。响应于对第三控件的操作,划船机显示运动信息。划船机向第一终端发送第二信息,第二信息用于指示第一终端显示运动信息。本申请实施例中,增加了智能私教模式,这样,在有氧划船模式以外,为用户提供了更为丰富的训练模式,提高了用户体验。
在一种具体可实现方式中,第四界面还可以包括第十控件,该第十控件可以包括用于表示开始训练的控件、视频播放区域、用于选择动作的控件、用于选择训练重量的控件、用于配置动作参数的控件等。
在一些实施例中,预设模式包括力量训练模式,第一控件用于表示力量训练模式;第二界面上显示的界面元素包括第四控件和第五控件,第四控件用于指示用户进行力量评估,第五控件用于指示用户进行训练动作偏好评估;第三界面上显示的界面元素包括用于表示力量评估的控件和用于表示训练动作偏好评估的控件。这样,用户在进行锻炼之前,可以进行力量评估或偏好动作评估,使得用户可以充分了解自身状况,便于用户选择更适合自己的锻炼方式。
在一些实施例中,该方法还包括:响应于对第四控件的操作,划船机显示用于表示第一重量的图标和用于进行重量反馈的第六控件。响应于对第六控件的操作,划船机显示表示力量反馈的多个选项。响应于对多个选项中的第一选项的操作,划船机显示第五界面,第五界面上包括用于表示第二重量的图标。划船机向第一终端发送第三消息,第三消息用于指示第一终端显示第六界面,第六界面包括用于表示第二重量的图标,其中,第二重量与第一重量不同。
在一种具体可实现方式中,第五界面和第六界面上还包括力量评估结果和用于表示重新评估的第七控件。
在一些实施例中,预设模式包括力量训练模式或有氧划船模式,第一控件用于表示力量训练模式或有氧划船模式,第二界面上显示的界面元素包括用于表示开始训练的第八控件,方法还包括:响应于对第八控件的操作,划船机显示用于表示负荷调节的第九控件和用于表示第一负荷的图标,第一终端显示用于表示负荷调节的第九控件和用于表示第一负荷的图标。响应于对第九控件的操作,划船机显示用于表示第二负荷的图标,第一终端显示用于表示第二负荷的图标,其中,第二负荷与第一负荷不同。这样,第一终端和划船机 均可以实现负荷调节。示例性的,在用户运动过程中,用户可以操作划船机或第一终端上显示的第九控件灵活调节负荷,更能满足用户的实时性要求。
在一些实施例中,预设模式包括力量训练模式,负荷调节包括重量调节,第九控件为用于表示重量调节的控件;预设模式包括有氧划船模式,负荷调节包括阻力调节,第九控件为用于表示阻力调节的控件。
在一种具体可实现方式中,第三界面上显示的界面元素与第二界面上显示的界面元素至少部分相同,包括:第三界面与第二界面上显示的内容至少部分相同。
在一种具体可实现方式中,第三界面上显示的界面元素与第二界面上显示的界面元素至少部分相同,包括:第三界面与第二界面上显示的布局至少部分相同。
第四方面,本申请实施例提供了一种终端,该终端包括:一个或多个处理器;以及存储器,所述存储器中存储有代码;当所述代码被所述一个或多个处理器执行时,使得所述终端执行如第二方面所述的方法。
第五方面,本申请实施例提供了一种划船机,该划船机包括:一个或多个处理器;以及存储器,所述存储器中存储有代码;当所述代码被所述一个或多个处理器执行时,使得所述终端执行如第三方面所述的方法。
第六方面,本申请实施例提供了一种通信系统,该系统包括:第一终端、划船机;所述第一终端执行如第二方面所述的方法,或者,所述划船机执行如第三方面所述的方法。
在一些实施例中,该通信系统包括:第二终端;第二终端执行第一方面所述的方法。
第七方面,本申请实施例提供了一种芯片系统,该芯片系统应用于电子设备。该芯片系统包括一个或多个接口电路和一个或多个处理器;接口电路和处理器通过线路互联;接口电路用于从电子设备的存储器接收信号,并向处理器发送信号,信号包括存储器中存储的计算机指令;当处理器执行计算机指令时,使得电子设备执行如第二方面所述的方法,或电子设备执行如第三方面所述的方法。
第八方面,本申请实施例提供了一种计算机可读存储介质,包括计算机指令,当所述计算机指令在电子设备上运行时,使得所述电子设备执行如第一方面所述的方法。
第九方面,本申请实施例提供了一种计算机程序产品,当所述计算机程序产品在计算机上运行时,使得所述计算机执行如第二方面所述的方法,或计算机执行如第三方面所述的方法。
其中,上述第四方面至第九方面中各个实施例的具体实施方式及对应的技术效果可以参见上述第一方面至第三方面的具体实施方式及技术效果。
本申请实施例中,响应于接收到用户对第一终端上第一卡片的第一操作,第一终端显示第一界面,第一界面上包括用于表示预设模式的第一控件,该第一卡片与划船机相关。响应于接收到用户对第一控件的第二操作,第一终端显示第二界面,划船机显示第三界面,第三界面与第二界面的显示内容相同或相近,实现第一终端与划船机联动显示。这样,用户在使用划船机进行运动的过程中,用户可以同步操作第一终端和划船机上显示的控件或同步查看第一终端和划船机上显示的信息,提高用户体验。另外,用户在运动过程中,通过操作第一终端即可操作划船机,从而实现第一终端与划船机联动,无需用户暂停运动来 调节划船机,提高了用户体验。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其它的附图。
图1A为本申请实施例提供的一种系统的结构示意图;
图1B为本申请实施例提供的另一种系统的结构示意图;
图1C为本申请实施例提供的又一种系统的结构示意图;
图2A为本申请实施例提供的一种终端的结构示意图;
图2B为本申请实施例提供的一种终端的软件架构示意图;
图3为本申请实施例提供的一种显示方法的流程示意图;
图4为本申请实施例提供的一种显示方法的流程示意图;
图5为本申请实施例提供的第一终端的一种界面的示意图;
图6为本申请实施例提供的第一终端的又一种界面的示意图;
图7为本申请实施例提供的第一终端的又一种界面的示意图;
图8A为本申请实施例提供的第一终端的又一种界面的示意图;
图8B为本申请实施例提供的划船机的一种界面的示意图;
图8C为本申请实施例提供的第一终端的又一种界面的示意图;
图8D为本申请实施例提供的第一终端的又一种界面的示意图;
图8E为本申请实施例提供的第一终端的又一种界面的示意图;
图9A为本申请实施例提供的第一终端的又一种界面的示意图;
图9B为本申请实施例提供的划船机的又一种界面的示意图;
图9C为本申请实施例提供的第一终端的又一种界面的示意图;
图9D为本申请实施例提供的划船机的一种界面的示意图;
图10A为本申请实施例提供的第一终端的又一种界面的示意图;
图10B为本申请实施例提供的划船机的又一种界面的示意图;
图10C为本申请实施例提供的第一终端的又一种界面的示意图;
图10D为本申请实施例提供的第一终端的又一种界面的示意图;
图10E为本申请实施例提供的第一终端的又一种界面的示意图;
图10F为本申请实施例提供的第一终端的又一种界面的示意图;
图10G为本申请实施例提供的第一终端的又一种界面的示意图;
图10H为本申请实施例提供的第一终端的又一种界面的示意图;
图10I为本申请实施例提供的第一终端的又一种界面的示意图;
图10J为本申请实施例提供的第一终端的又一种界面的示意图;
图10K为本申请实施例提供的第一终端的又一种界面的示意图;
图10L为本申请实施例提供的第一终端的又一种界面的示意图;
图10M为本申请实施例提供的划船机的又一种界面的示意图;
图10N为本申请实施例提供的划船机的又一种界面的示意图;
图10O为本申请实施例提供的划船机的又一种界面的示意图;
图11A为本申请实施例提供的第一终端的一种界面的示意图;
图11B为本申请实施例提供的划船机的又一种界面的示意图;
图11C为本申请实施例提供的第一终端的一种界面的示意图;
图11D为本申请实施例提供的第一终端的一种界面的示意图;
图11E为本申请实施例提供的第一终端的一种界面的示意图;
图11F为本申请实施例提供的划船机的又一种界面的示意图;
图11G为本申请实施例提供的划船机的又一种界面的示意图;
图11H为本申请实施例提供的划船机的又一种界面的示意图;
图11I为本申请实施例提供的第一终端的又一种界面的示意图;
图11J为本申请实施例提供的第一终端的又一种界面的示意图;
图11K为本申请实施例提供的第一终端的又一种界面的示意图;
图12A为本申请实施例提供的第一终端的又一种界面的示意图;
图12B为本申请实施例提供的第一终端的又一种界面的示意图;
图12C为本申请实施例提供的第一终端的又一种界面的示意图;
图12D为本申请实施例提供的第一终端的又一种界面的示意图;
图12E为本申请实施例提供的第一终端的又一种界面的示意图;
图12F为本申请实施例提供的第一终端的又一种界面的示意图;
图13A为本申请实施例提供的划船机的又一种界面的示意图;
图13B为本申请实施例提供的划船机的又一种界面的示意图;
图13C为本申请实施例提供的划船机的又一种界面的示意图。
具体实施方式
以下,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本实施例的描述中,除非另有说明,“多个”的含义是两个或两个以上。
在本申请实施例中,划船机主要的锻炼模式可以分为有氧划船模式和力量训练模式。其中,有氧划船模式是通过脚蹬和手拉的方式进行有氧运动,帮助用户达到锻炼心肺、促进身体循环,减去内脏脂肪等目的。力量训练模式是通过脚蹬和手拉的方式进行无氧运动,帮助用户达到增加肌纤维、提高肌肉量和修饰线条的目的。根据不同的阻力来源,划船机的类型还可以分为水阻型、风阻型、液压型、磁控风阻型等。
以下,以水阻型、风阻型为例,分别对各个类型的划船机的工作原理进行说明,具体如下:
第一,水阻型划船机,其工作原理是用户拉动划船机的手柄,与手柄联动的桨叶在封闭的水箱中旋转。桨叶旋转的过程中水箱中的水会对桨叶产生阻力,该阻力的大小是由水箱中的水的容量决定的。在运动过程中,用户想要改变水对桨叶的阻力,需暂停运动,将水箱中水倒出,或者,向水箱中增加水。
第二,风阻型划船机,其工作原理是用户拉动划船机的握把,与握把联动的扇叶在风箱中旋转。扇叶旋转的过程中风箱中的风会对扇叶产生阻力,该阻力的大小是由 风箱中的风量决定的。在运动过程中,用户想要改变风对扇叶的阻力,需暂停运动,调整风箱的进风口大小。
第三,磁阻型划船机,其工作原理是通过改变划船机的飞轮所受的磁力大小进行锻炼。飞轮受到的磁力大小取决于飞轮周边磁铁的磁力大小。其中,改变磁铁磁力大小的方式可以包括以下两种:第一种是通过直线电机改变磁铁与飞轮之间的距离来改变磁铁磁力。第二种是通过改变电磁铁的电流大小来改变磁铁磁力。
目前,中高端的划船机不仅可以调节阻力,而且可以设置各种训练或比赛模式,其可设定的运动参数也越来越丰富、越来越专业,这也带来了划船机参数设定的问题。特别是目前大部分划船机人机交互方式并不友好,以英文字符和数值为主的显示界面加上各种设定按钮,往往导致使用者不方便操作。
为了解决上述技术问题,本申请实施例提供一种显示方法,该方法应用于通信系统,该通信系统包括第一终端和划船机,响应于接收到用户对第一终端上第一卡片的第一操作,第一终端显示第一界面,第一界面上包括用于表示预设模式的第一控件,该第一卡片与划船机相关。响应于接收到用户对第一控件的第二操作,第一终端显示第二界面,划船机显示第三界面,第三界面上显示的界面元素与第二界面上显示的界面元素至少部分相同,实现第一终端与划船机联动显示。这样,用户在使用划船机进行运动的过程中,用户可以同步操作第一终端和划船机上显示的控件或同步查看第一终端和划船机上显示的信息,提高用户体验。另外,用户在运动过程中,通过操作第一终端即可操作划船机,从而实现第一终端与划船机联动,无需用户暂停运动来调节划船机,提高了用户体验。
其中,第三界面上显示的界面元素与第二界面上显示的界面元素至少部分相同,包括如下解释:
解释一,第三界面与第二界面上显示的内容至少部分相同。示例性的,第一终端显示的图8A所示的“动态激活等控件”与划船机显示的图8B所示的“动态激活等控件”相同。
解释二,第三界面与第二界面上显示的布局至少部分相同。示例性的,第一终端显示的图9A所示的“坐姿划船、Y伸展、面拉三个控件及每个控件对应的说明”的布局,与划船机显示的图9B所示的“坐姿划船、Y伸展、面拉三个控件及每个控件对应的说明”的布局相同。
在一种具体可实现方式中,第一终端和划船机均存储有连接协议,该连接协议中包括多个接口,每个接口对应不同的功能。响应于接收到用户对第一控件的第二操作,第一终端显示第二界面。第一终端调用划船机的多个接口中的第一接口,控制划船机显示第三界面,第三界面与第二界面的显示内容相同或相近,从而实现第一终端与划船机联动显示。
示例性的,当接收到对控件A的操作,该控件A为图7中所示的有氧划船图标的控件。此时,第一终端调用接口a,并将划船机的信息和有氧划船的模式信息发送给接口a,划船机切换至有氧划船模式,并显示有氧划船的模式信息,同时,第一终端上也显示有氧划船的模式信息。当接收到对控件B的操作,该控件B为图7中所示的智能私教图标的控件。此时,第一终端调用接口b,并将划船机的信息和智能私教的模式信息发送给接口b,划船机切换至智能私教模式,并显示智能私教的模式信息,同时,第一终端上也显示智能私教的模式信息。
在一些实施例中,预设模式可以包括智能私教模式、课程推荐模式、力量训练模式和 有氧划船模式等多个训练模式。这样,在有氧划船模式以外,为用户提供了更为丰富的训练模式。而且,用户可以在划船机上或第一终端上进行模式选择和切换,当第一终端上选择了其中一种训练模式,相应地,划船机也进入该训练模式。
在一些实施例中,上述通信系统还可以包括服务器。相较于上述不同之处在于,第一终端可以向服务器发送请求,该请求中可以携带划船机的信息,服务器可以根据请求控制划船机显示第三界面,从而实现第一终端与划船机联动显示。示例性的,当接收到对控件C的操作,该控件C为图7中所示的力量训练图标的控件。此时,第一终端向服务器发送请求,该请求中携带划船机的信息和力量训练的模式信息。服务器根据该请求控制划船机切换至力量训练模式,并显示力量训练的模式信息,同时,第一终端上也显示力量训练的模式信息。
在一些实施例中,上述通信系统还可以包括第二终端,第二终端与第一终端进行通信。第二终端用于采集第一信号,该第一信号用于表征用户的生理信息,该用户的生理信息可以包括用户的心率、用户的肺活量、用户的血压等,本申请实施例不做具体限定。以用户的生理信息是用户的心率为例,第二终端根据第一信号生成用户的心率,并将用户的心率发送给第一终端。第一终端接收第二终端发送的用户的心率。第一终端显示用户的心率。同时,第一终端将用户的心率发送给划船机。划船机也显示用户的心率。
本申请实施例提供一种显示方法可以应用于图1A所示的系统。如图1A所示,该系统100A可以包括第一终端110和划船机120。
其中,上述第一终端110可以为手机、平板电脑、桌面型、膝上型、笔记本电脑、超级移动个人计算机(Ultra-mobile Personal Computer,UMPC)、手持计算机、上网本、个人数字助理(Personal Digital Assistant,PDA)、可穿戴终端、电视、虚拟现实设备等具有显示功能的设备,本申请实施例中对第一终端的具体形式不做特殊限制。
在一些实施例中,第一终端110和划船机120之间建立蓝牙通信连接。划船机120检测到用户的运动数据。划船机120将用户的运动数据发送给第一终端110,第一终端110显示用户的运动数据。
在一些实施例中,第一终端110上安装划船机对应的第一应用。第一终端110与划船机120均存储连接协议,该连接协议可以包括多个接口,各个接口可以对应不同的功能。当用户操作第一终端110上第一卡片(第一卡片与划船机相关)时,第一终端110可以将划船机120的信息和操作信息发送给连接协议中的接口,划船机120根据操作信息执行相应操作,从而控制划船机120与第一终端110之间联动。这样,用户可以在运动过程中操作第一终端110来控制划船机120动作。
当然,本申请实施例中通信系统并不局限于上述形态,该通信系统还可以包括服务器。故,本申请实施例提供一种显示方法可以应用于图1B所示的系统。如图1B所示,该系统100B还可以包括服务器130。
其中,服务器130安装第一应用,该第一应用与划船机120相关联,该第一应用用于记录用户采用划船机120进行运动的运动数据。该第一应用可以安装在第一终端110上,或者,该第一应用也可以内嵌在第一终端110的系统内。
如图1B所示,在该系统100B中,划船机120检测到用户的运动数据。划船机120 将用户的运动数据发送给服务器130。服务器130可以将用户的运动数据发送给第一终端110,第一终端110显示用户的运动数据。
在本申请实施例中,当用户操作第一终端110上第一卡片时,第一终端110向服务器130发送请求,该请求中携带划船机的信息。服务器根据该请求调用划船机120,来控制划船机120与第一终端110之间联动。这样,用户可以在运动过程中操作第一终端110来控制划船机120动作。
另外,为了获取用户的运动数据的同时还能获取其他信息,例如,用户的生理信息。本申请实施例提供一种显示方法可以应用于图1C所示的系统,该系统100C还可以包括第二终端140。
其中,第一终端110可以为手机、平板电脑、笔记本电脑、电视机等。第二终端140可以为可穿戴终端,如运动手环、智能手表等。
如图1C所示,在该系统100C中,划船机120检测到用户的运动数据。划船机120将用户的运动数据发送给第一终端110。第二终端140检测用户的生理信息(如心率)。第二终端140将用户的心率发送给第一终端110。第一终端110显示用户的运动数据的同时显示用户的生理信息。相应的,划船机120显示的内容与第一终端110显示内容相同或相近。
图2A是上述终端的结构框图。
如图2A所示,该终端(如第一终端110、第二终端140等)可以包括处理器210,存储器220,天线1,无线通信模块230,传感器模块240,按键250,显示屏260等。其中传感器模块240可以包括压力传感器240A,加速度传感器240B,距离传感器240C,触摸传感器240D等。
可以理解的是,本发明实施例示意的结构并不构成对第一终端110或第二终端140的具体限定。在本申请另一些实施例中,第一终端110或第二终端140可以包括比图示更多或更少的部件,或者组合某些部件,或者拆分某些部件,或者不同的部件布置。图示的部件可以以硬件,软件或软件和硬件的组合实现。
处理器210可以包括一个或多个处理单元,例如:处理器210可以包括应用处理器(application processor,AP),调制解调处理器,图形处理器(graphics processing unit,GPU),图像信号处理器(image signal processor,ISP),控制器,视频编解码器,数字信号处理器(digital signal processor,DSP),基带处理器,和/或神经网络处理器(neural-network processing unit,NPU)等。其中,不同的处理单元可以是独立的器件,也可以集成在一个或多个处理器中。
控制器可以根据指令操作码和时序信号,产生操作控制信号,完成取指令和执行指令的控制。
处理器210中还可以设置存储器,用于存储指令和数据。在一些实施例中,处理器210中的存储器为高速缓冲存储器。该存储器可以保存处理器210刚用过或循环使用的指令或数据。如果处理器210需要再次使用该指令或数据,可从所述存储器中直接调用。避免了重复存取,减少了处理器210的等待时间,因而提高了系统的效率。
第一终端110或第二终端140的无线通信功能可以通过天线1,无线通信模块230,调制解调处理器以及基带处理器等实现。
天线1用于发射和接收电磁波信号。第一终端110或第二终端140中的每个天线可用于覆盖单个或多个通信频带。不同的天线还可以复用,以提高天线的利用率。例如:可以将天线1复用为无线局域网的分集天线。在另外一些实施例中,天线可以和调谐开关结合使用。
无线通信模块230可以提供应用在第一终端110或第二终端140上的包括无线局域网(wireless local area networks,WLAN)(如无线保真(wireless fidelity,Wi-Fi)网络),蓝牙(bluetooth,BT),全球导航卫星系统(global navigation satellite system,GNSS),调频(frequency modulation,FM),近距离无线通信技术(near field communication,NFC),红外技术(infrared,IR)等无线通信的解决方案。无线通信模块230可以是集成至少一个通信处理模块的一个或多个器件。无线通信模块230经由天线1接收电磁波,将电磁波信号调频以及滤波处理,将处理后的信号发送到处理器210。无线通信模块230还可以从处理器210接收待发送的信号,对其进行调频,放大,经天线1转为电磁波辐射出去。在一些实施例中,第一终端110通过无线通信模块230与划船机120进行通信连接。示例性的,无线通信模块230可以为蓝牙,第一终端110通过蓝牙与划船机120进行蓝牙连接。或者,无线通信模块230可以为无线局域网,第一终端110通过无线局域网与划船机120进行网络连接。
第一终端110或第二终端140通过GPU,显示屏260,以及应用处理器等实现显示功能。GPU为图像处理的微处理器,连接显示屏260和应用处理器。GPU用于执行数学和几何计算,用于图形渲染。处理器210可包括一个或多个GPU,其执行程序指令以生成或改变显示信息。
显示屏260用于显示图像,视频等。显示屏260包括显示面板。显示面板可以采用液晶显示屏260(liquid crystal display,LCD),有机发光二极管(organic light-emitting diode,OLED),有源矩阵有机发光二极体或主动矩阵有机发光二极体(active-matrix organic light emitting diode的,AMOLED),柔性发光二极管(flex light-emitting diode,FLED),Miniled,MicroLed,Micro-oLed,量子点发光二极管(quantum dot light emitting diodes,QLED)等。在一些实施例中,第一终端110或第二终端140可以包括1个或N个显示屏260,N为大于1的正整数。
在一些实施例中,第一终端110的显示屏260显示的内容与划船机的显示屏显示的内容相同或相近。示例性的,显示屏260可以显示如图5-图7、图8A、图8C-图9C、图10A、图10C-图10L、图11A、图11C-图11E、图11I-图12F的界面。
存储器220可以用于存储计算机可执行程序代码,所述可执行程序代码包括指令。存储器220可以包括存储程序区和存储数据区。其中,存储程序区可存储操作系统,至少一个功能所需的应用程序(比如声音播放功能,图像播放功能等)等。存储数据区可存储第一终端110或第二终端140使用过程中所创建的数据(比如音频数据,电话本等)等。此外,存储器220可以包括高速随机存取存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件,闪存器件,通用闪存存储器(universal flash storage,UFS)等。处理器210通过运行存储在存储器220的指令,和/或存储在设置于处理器中的存储器的指令,执行第一终端110或第二终端140的各种功能应用以及数据处理。
压力传感器240A用于感受压力信号,可以将压力信号转换成电信号。在一些实 施例中,压力传感器240A可以设置于显示屏260。压力传感器240A的种类很多,如电阻式压力传感器240A,电感式压力传感器240A,电容式压力传感器240A等。电容式压力传感器240A可以是包括至少两个具有导电材料的平行板。当有力作用于压力传感器240A,电极之间的电容改变。第一终端110或第二终端140根据电容的变化确定压力的强度。当有触摸操作作用于显示屏260,第一终端110根据压力传感器240A检测所述触摸操作强度。第一终端110或第二终端140也可以根据压力传感器240A的检测信号计算触摸的位置。在一些实施例中,作用于相同触摸位置,但不同触摸操作强度的触摸操作,可以对应不同的操作指令。例如:当有触摸操作强度小于第一压力阈值的触摸操作作用于短消息应用图标时,执行查看短消息的指令。当有触摸操作强度大于或等于第一压力阈值的触摸操作作用于短消息应用图标时,执行新建短消息的指令。
加速度传感器240B可检测第一终端110或第二终端140在各个方向上(一般为三轴)加速度的大小。当第一终端110或第二终端140静止时可检测出重力的大小及方向。还可以用于识别电子设备姿态,应用于横竖屏切换,计步器等应用。
距离传感器240C,用于测量距离。第一终端110或第二终端140可以通过红外或激光测量距离。在一些实施例中,拍摄场景,第一终端110或第二终端140可以利用距离传感器240C测距以实现快速对焦。
触摸传感器240D,也称“触控器件”。触摸传感器240D可以设置于显示屏260,由触摸传感器240D与显示屏260组成触摸屏,也称“触控屏”。触摸传感器240D用于检测作用于其上或附近的触摸操作。触摸传感器240D可以将检测到的触摸操作传递给应用处理器,以确定触摸事件类型。可以通过显示屏260提供与触摸操作相关的视觉输出。在另一些实施例中,触摸传感器240D也可以设置于第一终端110或第二终端140的表面,与显示屏260所处的位置不同。
按键250包括开机键,音量键等。按键250可以是机械按键250。也可以是触摸式按键250。第一终端110或第二终端140可以接收按键250输入,产生与第一终端110或第二终端140的用户设置以及功能控制有关的键信号输入。
当然,第一终端110或第二终端140还可以包括其他功能单元,本申请实施例对此不进行限定。
在本申请实施例中,划船机120的组成结构除了包含上述第一终端110或第二终端140的结构之外,划船机120还可以包括:传动模块(包括皮带和飞轮)、磁控阻力模块、把手模块、座椅模块、轨道模块、脚踏模块、蜗卷弹簧等。
在一些实施例中,划船机120的压力传感器240A用于感受压力信号,可以将压力信号转换成电信号。在一些实施例中,压力传感器240A可以设置于座椅模块。当用户坐在座椅上时,压力传感器240A检测用户的按压强度,划船机120根据压力传感器240A检测所述按压强度。划船机120也可以根据压力传感器240A的检测信号启动划船机120。
在一些实施例中,划船机120的显示屏260可以显示如图8B、图9D、图10B、图10M-图10O、图11B、图11F-图11H的界面。
本申请实施例中,芯片系统可以由芯片构成,也可以包括芯片和其他分立器件。
第一终端110或第二终端140的软件系统可以采用分层架构,事件驱动架构,微核架构,微服务架构,或云架构。本发明实施例以分层架构的Android系统为例,示例性说明第一终端110或第二终端140的软件结构。
图2B是本发明实施例的第一终端110或第二终端140的软件结构框图。
分层架构将软件分成若干个层,每一层都有清晰的角色和分工。层与层之间通过软件接口通信。在一些实施例中,将Android系统分为四层,从上至下分别为应用程序层,应用程序框架层,安卓运行时(Android runtime)和系统库,以及内核层。
应用程序层可以包括一系列应用程序包。
如图2B所示,应用程序包可以包括运动健康应用,日历,通话,地图,导航,WLAN,蓝牙,音乐,视频,短信息等应用程序。
应用程序框架层为应用程序层的应用程序提供应用编程接口(application programming interface,API)和编程框架。应用程序框架层包括一些预先定义的函数。
在一些实施例中,第一终端110和划船机120均存储连接协议,该连接协议中可以包括多个应用编程接口。其中,各个应用程序接口中的每个应用程序接口对应不同的功能。
如图2B所示,应用程序框架层可以包括窗口管理器,内容提供器,视图系统,电话管理器,资源管理器,通知管理器等。
窗口管理器用于管理窗口程序。窗口管理器可以获取显示屏大小,判断是否有状态栏,锁定屏幕,截取屏幕等。
内容提供器用来存放和获取数据,并使这些数据可以被应用程序访问。所述数据可以包括视频,图像,音频,拨打和接听的电话,浏览历史和书签,电话簿等。
视图系统包括可视控件,例如显示文字的控件,显示图片的控件等。视图系统可用于构建应用程序。显示界面可以由一个或多个视图组成的。例如,包括短信通知图标的显示界面,可以包括显示文字的视图以及显示图片的视图。
电话管理器用于提供第一终端110或第二终端140的通信功能。例如通话状态的管理(包括接通,挂断等)。
资源管理器为应用程序提供各种资源,比如本地化字符串,图标,图片,布局文件,视频文件等等。
通知管理器使应用程序可以在状态栏中显示通知信息,可以用于传达告知类型的消息,可以短暂停留后自动消失,无需用户交互。比如通知管理器被用于告知下载完成,消息提醒等。通知管理器还可以是以图表或者滚动条文本形式出现在系统顶部状态栏的通知,例如后台运行的应用程序的通知,还可以是以对话窗口形式出现在屏幕上的通知。例如在状态栏提示文本信息,发出提示音,电子设备振动,指示灯闪烁等。
Android runtime包括核心库和虚拟机。Android runtime负责安卓系统的调度和管理。
核心库包含两部分:一部分是java语言需要调用的功能函数,另一部分是安卓的核心库。
应用程序层和应用程序框架层运行在虚拟机中。虚拟机将应用程序层和应用程序框架层的java文件执行为二进制文件。虚拟机用于执行对象生命周期的管理,堆栈管理,线程管理,安全和异常的管理,以及垃圾回收等功能。
系统库可以包括多个功能模块。例如:表面管理器(surface manager),媒体库(Media Libraries),三维图形处理库(例如:OpenGL ES),2D图形引擎(例如:SGL)等。
表面管理器用于对显示子系统进行管理,并且为多个应用程序提供了2D和3D图层的融合。
媒体库支持多种常用的音频,视频格式回放和录制,以及静态图像文件等。媒体库可以支持多种音视频编码格式,例如:MPEG4,H.264,MP3,AAC,AMR,JPG,PNG等。
三维图形处理库用于实现三维图形绘图,图像渲染,合成,和图层处理等。
2D图形引擎是2D绘图的绘图引擎。
内核层是硬件和软件之间的层。内核层至少包含显示驱动,摄像头驱动,音频驱动,传感器驱动。
下面结合显示场景,示例性说明第一终端110或第二终端140软件以及硬件的工作流程。
当触摸传感器240D接收到触摸操作,相应的硬件中断被发给内核层。内核层将触摸操作加工成原始输入事件(包括触摸坐标,触摸操作的时间戳等信息)。原始输入事件被存储在内核层。应用程序框架层从内核层获取原始输入事件,识别该输入事件所对应的控件。以该触摸操作是触摸单击操作,该单击操作所对应的控件为智能私教图标的控件为例,调用应用框架层的一个接口,并将划船机120的信息和智能私教的模式信息发送给该接口,控制划船机120切换至智能私教模式,并显示图8B所示的界面121,同时,通过调用内核层启动显示驱动,通过显示屏260显示图8A所示的界面1118。
此外,本申请的各实施例之间涉及的动作,术语等均可以相互参考,不予限制。本申请的实施例中各个设备之间交互的消息名称或消息中的参数名称等只是一个示例,不予限制。
本申请实施例中是以图1C所示的通信系统为例进行说明,具体如下:
图3为本申请实施例提供的一种显示方法的流程示意图。如图3所示,该方法可以分不同阶段进行说明,具体如下:
第一阶段,划船机与第一终端建立通信连接。
划船机与第一终端可以采用如下方式建立通信连接:方式一,蓝牙连接;方式二、网络连接。其中,网络连接可以包括wifi连接和局域网连接。当然,划船机与第一终端还可以采用其他方式建立通信连接,本申请实施例不做具体限定。
当然,上述连接方式可以组合使用,例如,划船机与第一终端采用上述方式中的一种方式进行通信连接,当该通信连接断开时,划船机与第一终端可以采用上述方式中的另一种方式进行通信连接。示例性的,划船机与第一终端断开wifi连接,且划船机与第一终端满足蓝牙连接的条件,划船机与第一终端进行蓝牙连接。或者,划船机与第一终端断开蓝牙连接,且划船机与第一终端满足网络连接的条件,划船机与第一终端进行网络连接。
以下,作为一种具体可实现方式,对划船机与第一终端建立通信连接的具体实现进行详细描述,如下所述:
S400、划船机通电启动。
S401、在划船机确定划船机未进行注册的情况下,划船机发送蓝牙广播。相应的,第一终端接收到划船机发送的蓝牙广播。
该蓝牙广播中携带划船机的信息,如,划船机的第一标识。
在一些实施例中,蓝牙广播中携带有划船机的第一标识,所述第一标识用于服务器或第一终端识别划船机的身份。具体地,当划船机未登录到服务器时,服务器将划船机的第一标识发送至第一终端,第一终端对划船机的标识进行预先存储。
在一些实施例中,划船机的蓝牙模块在发送蓝牙广播时以预设的发射频率进行蓝牙广播,例如,每隔预设T时间发送一次,并且发送蓝牙广播的时长为X秒,在这X秒中,蓝牙广播信息持续不间断的进行发送。对应地,第一终端的蓝牙模块在进行信号扫描时,以预设的扫描频率进行扫描,预设第一终端每隔Y秒扫描一次,并且每次扫描时长Z秒。其中,只要划船机发起了蓝牙广播,第一终端就可以接收到蓝牙广播。示例性的,第一终端可以每隔600ms扫描一次,每次扫描时长为100ms。
S402、第一终端扫描到划船机发送的蓝牙广播,并建立与划船机之间的蓝牙连接。
具体的,第一终端扫描到划船机发送的蓝牙广播。第一终端解析该蓝牙广播中携带的划船机的信息。第一终端根据划船机的信息,建立与划船机之间的蓝牙连接。这样,第一终端与划船机可以通过蓝牙连接传输数据。
S403、第一终端向划船机发送连接成功信息。
在一种场景中,用户暂时离开划船机,当第一终端与划船机的距离超过预设距离,如预设距离为10m时,第一终端与划船机断开蓝牙连接。在预设时间内,第一终端与划船机之间的距离小于预设距离,第一终端与划船机之间的重新连接。
以下,作为另一种具体可实现方式,对划船机与第一终端建立通信连接的具体实现进行详细描述,如下所述:
S404、第一终端接收到用户对第一应用的操作一。
其中,操作一可以包括手势操作,该手势操作可以包括点击操作、按压操作、滑动操作等。其中,点击操作可以包括单击操作、双击操作等。按压操作可以包括预设时间的按压操作、预设力度的按压操作等。滑动操作可以包括预设轨迹的滑动操作。当然,本申请实施例中对操作一的限定并不局限于上述列举的操作。
该操作一用于指示第一终端搜索划船机,并与划船机进行网络连接。示例性的,第一应用的界面上显示有划船机的图标。
S405、第一终端响应于操作一,第一终端向服务器发送请求一,该请求一用于请求与划船机建立网络连接,该请求一中携带划船机的第一标识和网络信息。
在第一终端接收用户对第一应用的界面上显示的划船机图标的点击操作之后,第一终端响应于该点击操作,向服务器请求与划船机建立网络连接。此时,第一终端将划船机的标识和网络信息发送给服务器。其中,网络信息可以包括网络名称和密码。
S406、服务器根据请求一,将网络信息发送给划船机。相应的,划船机接收到服务器发送的网络信息。
S407、划船机根据网络信息连接网络。
划船机根据网络信息连接网络之后,划船机可以跟服务器进行通信,服务器与第 一终端进行通信,这样,划船机就可以跟第一终端进行通信。
采用上述方式进行连接之后,第一终端的应用界面上可以显示“已连接”的状态。
在另一个场景中,当用户即将到家时,用户可以预先启动划船机。用户可以通过将划船机与家庭局域网进行网络连接,在连接之后,用户通过操作第一终端来启动划船机。
在划船机与第一终端建立连接之后,划船机可以向服务器请求进行注册。也就是说,划船机可以向服务器请求绑定用户账号。示例性的,服务器对应的第一应用安装在第一终端上,该第一应用的登录账号为第一用户账号。划船机可以向服务器请求绑定第一用户账号。在划船机绑定第一用户账号之后,划船机的信息可以显示在第一应用上。具体实现如下:
S408、划船机向服务器发送请求二,该请求二用于请求绑定第一用户账号。相应的,服务器接收请求二。
该请求二中携带服务器的地址信息等信息。
该第一用户账号可以为第一终端上的第一应用的登录账号。
S409、服务器根据请求二,采用第一用户账号对划船机进行注册。
具体的,服务器将第一用户账号与划船机的标识进行绑定。
S410、在注册完成之后,服务器生成注册成功信息。
在服务器将第一用户账号与划船机的标识进行绑定之后,即服务器完成划船机的注册。此时,服务器会生成注册成功信息。
其中,上述注册成功信息可以包括文本信息、图像信息等。以注册成功信息是文本信息为例,该注册成功信息可以为“划船机已注册完成”。当然,还可以为其他信息,如“划船机可以采用第一用户账号登录”等。本申请实施例不做具体限定。
S411、服务器将注册成功信息发送给划船机。相应的,划船机接收注册成功信息。
S412、服务器将注册成功信息推送给第一终端,相应的,第一终端接收到注册成功信息。
S413、第一终端显示注册成功信息。
其中,划船机的信息的展现形式可以包括图标、卡片等。以卡片为例,当用户操作第一终端上的第一应用之后,第一终端的第一应用显示划船机的卡片(如上述的第一卡片)。
示例性的,以第一应用是运动健康应用为例,如图5所示,为本申请实施例提供的一种终端的一种界面示意图。用户点击运动健康应用。第一终端接收到用户对运动健康应用的点击操作。响应于该点击操作,第一终端启动运动健康应用。此时,第一终端的界面由图5所示的界面跳转至图6所示的界面。在该界面上显示划船机的卡片1112。
可选地,在划船机注册成功之后,第一终端的第一应用上可以显示S421中的划船机的卡片。
第二阶段,第一终端的第一应用与划船机联动控制。
S420、第一终端接收到用户对终端上的第一应用的操作二。
其中,第一应用可以指与划船机相关的应用。示例性的,第一应用可以为运动类 应用,如运动健康应用。该应用中可以记录用户使用划船机进行运动的运动数据。
其中,操作二可以与操作一相同,操作二具体可详见上述描述,在本申请实施例中不在赘述。
S421、响应于操作二,第一终端启动第一应用,第一终端显示界面一,该界面一上显示划船机的卡片(如上述第一卡片)。
应理解为,终端接收用户对终端上的第一应用的操作二。响应于操作二,终端启动第一应用。
示例性的,如图5所示,以第一应用是运动健康应用为例,用户点击运动健康应用。终端接收到用户对运动健康应用的点击操作。响应于该点击操作,终端启动运动健康应用。此时,终端的界面由图5所示的界面跳转至图6所示的界面。在该界面上显示划船机的卡片。
S422、第一终端接收用户对第一应用中的划船机的卡片的操作三。
其中,操作三可以与操作一相同,操作三具体可详见上述描述,在本申请实施例中不在赘述。
S423、响应于操作三,第一终端显示界面二。
在一种具体可实现方式中,该界面二上可以包括用于表示有氧划船模式的控件、用于表示力量训练模式的控件、用于表示智能私教模式的控件。
其中,有氧划船模式是为用户提供有氧训练的模式,该模式能够使用户每做一次划船动作,可以使用户的上肢、下肢、腰腹部、背部都会完成一次完整的收缩与伸展,可以达到一个全身肌肉有氧练习效果。
其中,力量训练模式是为用户提供力量训练的模式,该模式能够使用户每做一次划船动作,需要用户的手臂、肩部及背部的力量支撑,在用户锻炼时运动越快需要的力度就越大,可以达到力量训练的效果。
其中,私教模式是为用户提供专业的锻炼指导的模式,该模式能够指导用户更专业、更科学的进行锻炼。
在另一种具体可实现方式中,该界面二上还可以包括用于表示课程推荐模式的控件。
其中,课程推荐模式是为用户推荐锻炼课程的模式,该模式能够使用户边观看锻炼课程边进行锻炼。同时,用户在锻炼的过程中,划船机可以根据课程推荐的内容实时调整阻力档位等参数,以达到用户锻炼进度与课程播放进度同步的效果。
示例性的,第一终端接收用户对图6所示的界面上划船机的卡片的操作三。响应于操作三,第一终端的界面由图6所示的界面1111跳转至图7所示的界面1113,在该界面1113上显示用于表示有氧划船模式的控件1114、用于表示力量训练模式的控件1115、用于表示智能私教模式的控件1116,用于表示课程推荐的控件1117。
当然,在该界面上还可以显示在第一阶段中“划船机与第一终端建立通信连接”的连接状态。在此申请实施例中,划船机与第一终端已建立通信连接,故连接状态为已连接,则在界面上显示如图7中所示“已连接”。
这里需要补充的是,第二终端可以检测用户的生理信息,并将用户的生理信息发送给第一终端。后续,第一终端和划船机均可以显示用户的生理信息。示例性的,用 户的生理信息可以包括用户的心率。
S424、第一终端接收用户对界面二的操作四。
其中,操作四可以与操作一相同,操作四具体可详见上述描述,在本申请实施例中不在赘述。
该操作四用于指示第一应用控制划船机执行启动、暂停、结束、调节训练负荷或切换训练模式等操作。
S425、响应于操作四,第一终端显示界面三,相应的,划船机的显示屏显示界面四,该界面四与界面三联动。
其中,界面四与界面三联动,可以理解为界面四的内容随着界面三的内容变化而变化,而且,界面四的内容与界面三的内容相同或相近。
划船机的显示屏与第一终端上的第一应用联动显示,具体实现可以根据划船机与第一终端的连接方式的不同而不同。具体如下所述:
第一种,划船机与第一终端网络连接。
在一种可实现方式中,S425具体可实现为:
S425a、响应于操作四,第一终端向服务器发送请求三,该请求三用于请求控制划船机工作。相应的,服务器接收到第一终端发送的请求三。
S425b、服务器根据请求三调用划船机与第一终端上的第一应用联动显示。
其中,服务器中存储有第一协议(如前面所述的连接协议),该第一协议中可以包含多个用于调用划船机的接口,各个接口对应不同的功能。例如,用于切换至有氧划船模式的接口、用于切换至力量训练模式的接口、用于切换至智能私教模式的接口、用于切换至课程推荐模式的接口。当然,还有指定模式下的接口,例如,在智能私教模式下用于动态激活的接口,在力量训练模式下用于调节训练档位的接口,等等。
本步骤中,服务器控制划船机的显示屏与第一应用联动显示,实现划船机的显示屏与第一应用同步执行启动、暂停、结束、调节训练负荷、切换训练模式等操作。
S425c、第一终端显示界面三,相应的,划船机的显示屏显示界面四,该界面四与界面三的内容相同或相近。
也就是说,划船机的显示屏与第一应用联动显示。
示例性的,第一应用的界面三显示用于表示有氧划船模式的控件、用于表示力量训练模式的控件。相应的,划船机的显示屏上显示有氧划船模式和力量训练模式。
这里需要说明的是,第一应用上显示的内容与划船机上显示的内容可以不完全相同。示例性的,第一应用上的有氧划船模式,与划船机上的有氧划船模式的显示形式可以不完全相同。
第二种,划船机与第一终端蓝牙连接。
在另一种可实现方式中,S425具体可实现为:响应于操作四,第一终端根据存储的第二协议中的第二调用接口,调用划船机与第一终端联动显示。
其中,第一终端上存储的第二协议与上述第一协议可以相同。故,第二协议中也可以包含多个用于调用划船机的接口,各个接口对应不同的功能。例如,用于切换至有氧划船模式的接口、用于切换至力量训练模式的接口、用于切换至智能私教模式的接口、用于切换至课程推荐模式的接口。当然,还有指定模式下的接口,例如,在智 能私教模式下用于动态激活的接口,在力量训练模式下用于调节训练档位的接口,等等。
以下针对不同的应用场景对S424-S425进行详细说明。图4为本申请实施例提供的一种显示方法的流程示意图。如图4所示,具体场景如下:
场景一,智能私教模式
S4241、第一终端接收用户对用于表示智能私教模式的控件三的操作四。
其中,操作四为作用于指示划船机进入智能私教模式的操作。
示例性的,用户点击图7所示的“智能私教”控件1116。
S4251、响应于操作四,第一终端显示智能私教的界面,相应的,划船机的显示屏显示智能私教的界面。
同理,划船机的显示屏与第一终端上的第一应用联动显示,具体实现可以如下:
在一种可实现方式中,S4251具体可实现为:响应于操作四,第一终端向服务器发送用于启动智能私教模式的请求三,该请求三中携带划船机的调用接口。相应的,服务器接收到第一终端发送的请求三。服务器根据请求三调用划船机进入智能私教模式,并向第一终端返回智能私教模式的界面信息。相应的,第一终端接收智能私教模式的界面信息。第一终端显示智能私教模式的界面,相应的,划船机的显示屏显示智能私教模式的界面。
示例性的,在用户点击图7所示的“智能私教”控件之后,第一终端接收到用户的点击操作。第一终端响应于该操作,显示如图8A所示的智能私教的界面1118。在该界面1118上可以包括用于表示动态激活的控件1119、用于表示强壮体魄的控件1120、用于表示表现提升的控件1121及用于表示自定义的控件1122。相应的,如图8B所示,划船机的显示屏120上显示的界面元素与第一终端110上显示的界面元素至少部分相同。
其中,动态激活可以理解为初级训练设置模式,该模式可以是针对初级学者或者处于热身阶段的用户。强壮体魄可以理解为中级训练设置模式,该模式可以是针对中级学者或者处于健身阶段的用户。表现提升可以理解为高级训练设置模式,该模式可以是针对高级学者或者处于能力提升阶段的用户。
当然,动态激活、强壮体魄和表现提升还可以理解为其他含义,例如,动态激活可以理解为低级运动强度,强壮体魄可以理解为中级运动强度,表现提升可以理解为高级运动强度。本申请实施例不做具体限定。
如果用户需要进一步对运动参数设置,用户可以操作第一终端的显示界面进行运动参数配置。具体如下:
假设,用户需要配置低级运动强度参数。用户需要在第一终端上显示的智能私教的界面上对用于表示动态激活的控件的操作,来实现运动参数配置。具体实现可以为:
S4252、第一终端接收用户对用于表示动态激活的控件的操作四。
S4253、响应于操作四,第一终端显示动态激活的界面,相应的,划船机的显示屏显示动态激活的界面。
在一种可实现方式中,S4253具体可实现为:第一种,响应于操作四,第一终端向服务器发送用于启动动态激活模式的请求三,该请求三中携带划船机的信息和动态 激活模式信息。相应的,服务器接收到第一终端发送的请求三。服务器根据请求三调用划船机进入动态激活模式,并控制划船机的显示屏与第一应用均显示动态激活模式的界面。第一终端显示动态激活模式的界面,相应的,划船机的显示屏显示动态激活模式的界面。第二种,响应于操作四,第一终端调用一个接口,并将划船机的信息和动态激活模式信息发送给该接口,划船机切换至动态激活模式,并显示动态激活模式的界面,同时,第一终端上也显示动态激活模式的界面。
示例性的,如图8A所示的智能私教的界面1118上可以包括用于表示动态激活的控件1119。用户点击图8A所示的界面上的“动态激活”控件1119,第一终端110接收该用户的点击操作。响应于该点击操作,第一终端110的界面1118由图8A所示的界面1118跳转至图8C所示的界面1123。在该界面1123上可以包括运动动作的展示区1124、运动动作的推荐区1125、运动阻力的选择区1126、动作参数的设置区1127及用于启动训练的控件1128。其中,运动动作的展示区1124可以展示用户的锻炼部位,例如,当前运动动作所锻炼的肌肉块。运动动作的推荐区1125中可以包括多个运动动作的选择控件,该多个运动动作可以包括坐姿划船、左右偏重划船、二头穹举和面拉等。运动阻力的选择区1126中可以包括重量大小的选择控件,该重量大小可以包括0Kg、10Kg、20Kg、30Kg和40Kg等。运动参数的设置区1127中可以包括组数的设置控件、单组组数的设置控件、组间休息的设置控件等。
当然,该多个运动动作还可以包括左右偏重划船、二头弯举、左侧俯撑推拉、右侧俯撑推拉、直腿俯撑推拉、屈腿收腹、直腿收腹、左侧辅助单腿蹲、右侧辅助单腿蹲、左侧偏重箭步蹲、右侧偏重箭步蹲、跪姿左侧偏重箭步蹲、跪姿右侧偏重箭步蹲,等等。
当用户在运动动作的推荐区、运动阻力的选择区及动作参数的设置区上配置参数后,用户需要根据配置参数进行训练。用户需要点击界面上的用于启动训练的控件,具体如下:
S4254、第一终端接收用户对用于启动训练的控件的操作四。
S4255、响应于操作四,第一终端显示运动数据的界面,相应的,划船机的显示屏显示运动数据的界面。
在一种可实现方式中,S4255具体可实现为:第一种,响应于操作四,第一终端向服务器发送用于启动训练的请求三,该请求三中携带划船机的信息和训练信息。相应的,服务器接收到第一终端发送的请求三。服务器根据请求三调用划船机进入训练模式,并控制划船机的显示屏与第一应用均显示训练的界面。第一终端显示训练界面,相应的,划船机的显示屏显示训练界面。第二种,响应于操作四,第一终端调用一个接口,并将划船机的信息和训练信息发送给该接口,划船机进入训练模式,并显示训练的界面,同时,第一终端上也显示训练的界面。
示例性的,在用户点击图8C所示的“开始训练”控件1128之后,第一终端110接收到用户的点击操作。第一终端110响应于该操作,显示如图8D和图8E所示的训练的界面。其中,图8D所示的界面显示训练界面1128的折叠形式,图8E所示的界面显示训练界面1128的展开形式。该图8D和图8E所示的界面1128上可以包括运动时间、运动进度、运动消耗热量及心率等信息。可见,图8D中显示训练界面1128的部 分内容,图8E中显示训练界面1128的全部内容。
场景二,课程推荐模式
S4241’、第一终端接收用户对用于表示课程推荐的控件四的操作五。
其中,操作五为作用于指示划船机进入课程推荐模式的操作。
示例性的,用户点击图7所示的“有氧划船课”控件。
在一些实施例中,课程还可以包括下肢综合训练课,稳定核心训练课以及全身循环训练课等。其中,下肢综合训练课程具体内容如表1所示:
表1
Figure PCTCN2022137205-appb-000001
其中,稳定核心训练课具体内容如表2所示:
表2
Figure PCTCN2022137205-appb-000002
Figure PCTCN2022137205-appb-000003
其中,全身循环训练课具体内容如表3所示:
表3
Figure PCTCN2022137205-appb-000004
S4251’、响应于操作五,第一终端显示课程推荐的界面,相应的,划船机的显示屏显示课程推荐的界面。
在一种可实现方式中,S4251’具体可实现为:第一种,响应于操作五,第一终端向服务器发送用于课程推荐模式的请求四,该请求四中携带划船机的信息和课程推荐模式信息。相应的,服务器接收到第一终端发送的请求四。服务器根据请求四调用划船机进入课程推荐模式,并控制划船机的显示屏和第一应用均显示课程推荐模式的界面。第一终端显示课程推荐模式的界面,相应的,划船机的显示屏显示课程推荐模式的界面。第二种,响应于操作五,第一终端调用一个接口,并将划船机的信息和课程 推荐模式信息发送给该接口,划船机切换至课程推荐模式,并显示课程推荐模式的界面,同时,第一终端上也显示课程推荐模式的界面。
示例性的,以有氧划船课为例,在用户点击图7所示的“有氧划船课”控件1117之后,第一终端110接收到用户的点击操作。第一终端110响应于该操作,显示如图9A所示的有氧划船课的界面1129。在该界面1129上可以包括用于显示有氧划船课包括的多个课程,如全身循环训练课,稳定核心训练课,及下肢综合训练课。在该界面1129上还可以包括用于显示有氧划船课所涉及的动作的第一显示控件1130、用于显示有氧划船课的课程的说明的第二显示控件1131及用于表示开始训练的控件1132。其中,在该界面1129上,用户可以沿着第一终端的显示屏的横轴滑动,来切换上述多个课程。当响应于用户的滑动操作切换至全身循环训练课时,第一终端110显示如图9A所示的第一显示控件(如动作控件)1130下各个动作的示意图及参数。相应的,划船机120的显示屏上显示如图9B所示的界面122,在该界面122上显示的内容与第一终端110上显示的内容相同或相近。另外,用户可以沿着第一终端的显示屏的纵轴滑动,来浏览全身循环训练课涉及的各个动作,如表3中所示的各个动作。当用户点击图9A所示的第二显示控件1131时,第一终端110的界面由图9A所示的界面1129跳转至图9C所示的界面1133,在该界面1133上显示有有氧划船课的课程说明、有氧划船课的相关课程、有氧划船课涉及的训练器械及训练建议。相应的,划船机120的显示屏上显示如图9D所示的界面123,在界面123的界面元素与第一终端110上显示的界面元素至少部分相同。
在一些实施例中,本申请实施例提供的显示方法还可以包括:
S4252’、划船机根据课程内容,执行课程内容对应的操作。
也就是说,划船机根据课程内容执行相应的操作。
示例性的,以有氧划船课为例,有氧划船课可以包括坐姿划船阶段、Y伸展阶段和面拉阶段。当有氧划船课开始,并进入坐姿划船阶段时,划船机调整至坐姿划船对应的运动参数。同理,当坐姿划船阶段跳转至Y伸展阶段时,划船机调整至Y伸展阶段对应的运动参数。同理,当从Y伸展阶段跳转至面拉阶段时,划船机调整至面拉阶段对应的运动参数。
在本申请实施例中,课程内容可以存储在划船机上,也可以存储在服务器上。若课程内容存储在服务器上,则S4252’具体可实现为:服务器可以根据服务器上存储的课程内容,控制划船机执行相应的操作。具体的,服务器可以根据课程内容,调用接口控制划船机执行课程内容对应的操作。
场景三,力量训练模式
S4241”、第一终端接收用户对用于表示力量训练模式的控件二的操作六。
其中,操作六为作用于指示划船机进入力量训练模式的操作。
示例性的,用户点击图7所示的“力量训练”控件1115。
S4251”、响应于操作六,第一终端显示用于表示训练能力水平评估的界面,相应的,划船机的显示屏上显示的界面元素与第一终端上显示的界面元素至少部分相同。
在一种可实现方式中,S4251”具体可实现为:第一种,响应于操作六,第一终端向服务器发送用于启动力量训练模式的请求五,该请求五中携带划船机的信息和力量 训练模式信息。相应的,服务器接收到第一终端发送的请求五。服务器根据请求三调用划船机进入力量训练模式,并控制划船机的显示屏和第一终端均显示训练能力水平评估的界面。第一终端显示训练能力水平评估的界面,相应的,划船机的显示屏显示训练能力水平评估的界面。第二种,响应于操作六,第一终端调用一个接口,并将划船机的信息和力量训练模式信息发送给该接口,划船机进入力量训练模式,并显示训练能力水平评估的界面,同时,第一终端上也显示训练能力水平评估的界面。
示例性的,在用户点击图7所示的“力量训练”控件1115之后,第一终端110接收到用户的点击操作。第一终端110响应于该操作,显示如图10A所示的训练能力水平评估的界面1134。在该界面1134上可以包括用于表示最大力量评估的控件1135、用于表示训练动作偏好评估的控件1136等。相应的,划船机的显示屏显示图10B所示的界面124,在该界面124上显示的内容与第一终端110上显示的内容相同或相近。
其中,最大力量评估可以理解为在用户进行划船机训练之前需要对用户的能力水平进行评估。具体的,最大力量评估可以包括对用户选择的动作的最大力量评估。
其中,训练动作偏好评估可以理解为对用户偏好的训练动作进行最大力量评估。
当用户需要对图10A所示的训练能力水平评估的界面1134进一步操作时,具体可以如下所述:
S4252”、第一终端接收用户对用于表示最大力量评估的控件的操作七。
其中,第七操为作用于指示划船机进入最大力量评估的操作。
示例性的,用户点击图10A所示的“最大力量评估”控件1135。
S4253”、响应于操作七,第一终端显示用于表示请选择您要评估的动作的界面,相应的,划船机的显示屏上显示的界面元素与第一终端上显示的界面元素至少部分相同。
在一种可实现方式中,S4253”具体可实现为:第一种,响应于操作七,第一终端向服务器发送用于启动最大力量评估的请求六,该请求六中携带划船机的信息和最大力量评估信息。相应的,服务器接收到第一终端发送的请求六。服务器根据请求六调用划船机进入最大力量评估模式,并控制划船机的显示屏和第一终端均显示“请选择您要评估的动作”的界面。第一终端显示“请选择您要评估的动作”的界面。第二种,响应于操作七,第一终端调用一个接口,并将划船机的信息和最大力量评估信息发送给该接口,划船机切换至最大力量评估模式,并显示“请选择您要评估的动作”的界面,同时,第一终端上也显示“请选择您要评估的动作”的界面。
示例性的,在用户点击图10A所示的“最大力量评估”控件1135之后,第一终端110接收到用户的点击操作。第一终端110响应于该操作,显示如图10C所示的请选择您要评估的动作的界面1137。在该界面1137上可以包括用户需要选择的动作及其动作图像,如坐姿划船及其动作图像、Y伸展及其动作图像、面拉及其动作图像等。相应的,划船机的显示屏上显示内容与第一终端上显示的内容相同或相近。
同理,当用户需要对图10C所示的界面1137进一步操作,具体可以为:
S4254”、第一终端接收用户对第一动作图像的操作八。
其中,第八操为作用于指示用户选取第一动作的操作。
示例性的,用户选择图10C所示的“坐姿划船及其动作图像”控件。
S4255”、响应于操作八,第一终端显示用于表示开始评估的界面,相应的,划船机的显示屏上显示的界面元素与第一终端上显示的界面元素至少部分相同。
在一种可实现方式中,S4255”具体可实现为:第一种,响应于操作八,第一终端向服务器发送用于启动评估的请求七,该请求七中携带划船机的信息和第一动作信息。相应的,服务器接收到第一终端发送的请求七。服务器根据请求七调用划船机进入第一动作最大力量评估,并控制划船机的显示屏和第一终端均显示“第一动作最大力量评估中”的界面。第一终端显示“第一动作最大力量评估中”的界面。第二种,响应于操作八,第一终端调用一个接口,并将划船机的信息和第一动作信息发送给该接口,划船机进入第一动作最大力量评估,并显示“第一动作最大力量评估中”的界面,同时,第一终端上也显示“第一动作最大力量评估中”的界面。
示例性的,在用户点击图10C所示的“坐姿划船及其动作图像”控件之后,第一终端110接收到用户的点击操作。第一终端110响应于该操作,显示如图10D所示的开始评估的界面1138。在该界面1138上可以包括第一动作及其动作图像、默认重量、拉动次数及用于表示直接开始重量反馈的控件1139。相应的,划船机的显示屏上显示内容与第一终端上显示的内容相同或相近。
同理,当用户需要对图10D所示的界面1138进一步操作,具体可以为:
S4256”、第一终端接收用户对用于表示直接开始重量反馈的控件的操作九。
其中,第九操为作用于指示用户直接开始重量反馈的操作。
示例性的,用户选择图10D所示的界面1138上的“表示直接开始重量反馈”控件1139。
S4257”、响应于操作九,第一终端显示用于表示开始评估的界面,相应的,划船机的显示屏上显示的界面元素与第一终端上显示的界面元素至少部分相同。
在一种可实现方式中,S4257”具体可实现为:第一种,响应于操作九,第一终端向服务器发送用于启动评估的请求八,该请求八中携带划船机的信息和重量反馈信息。相应的,服务器接收到第一终端发送的请求八。服务器根据请求八调用划船机进入第一动作最大力量评估,并控制划船机的显示屏和第一终端均显示“第一动作最大力量评估中”的界面。第一终端显示“第一动作最大力量评估中”的界面。第二种,响应于操作九,第一终端调用一个接口,并将划船机的信息和重量反馈信息发送给该接口,划船机进入第一动作最大力量评估,并显示“第一动作最大力量评估中”的界面,同时,第一终端上也显示“第一动作最大力量评估中”的界面。
示例性的,在用户点击图10D所示的“直接开始重量反馈”控件1139之后,第一终端110接收到用户的点击操作。第一终端110响应于该操作,显示如图10E所示的开始评估的界面1140。在该界面1140上可以包括重量反馈的选项控件,该选择控件可以包括太轻、较轻、适中、较重和太重等。相应的,划船机的显示屏上显示内容与第一终端上显示的内容相同或相近。
其中,针对每一级的重量,需要用户拉满6次或者用户可以主动点击开始重量反馈,如果用户反馈太轻,单次增加6kg,如果用户反馈较轻,单次增加3kg,直到用户反馈结束评估。如果用户反馈太重,单次降低6kg,如果用户反馈较重,单次降低3kg,直到用户反馈“适中”结束评估。如果用户反馈适中,则单次增加3kg,直到用户评估 为“较重”结束评估。
示例性的,用户操作图10E中所示的重量反馈的选项控件。示例性的,用户点击“较重”控件,第一终端接收到用户的操作。第一终端向服务器发送调整请求,服务器根据调整请求将重量降低一个档位(如3Kg),并将调整后的信息发送给第一终端,此时,第一终端的界面由图10E所示的界面跳转至图10F所示的界面1141。用户继续进行最大力量评估。如果用户在评估的过程中仍然觉得吃力,用户可以点击图10F中的界面1141上所示的“直接开始重量反馈”控件1142,第一终端的界面跳转至图10G所示的界面1143进行反馈。直至用户选择“适中”选项为止。当用户选择图10E所示的界面1140中的“适中”选项时,第一终端的界面跳转至图10G所示的评估结果的界面1143,在该界面1143上可以包括第一动作的最大力量评估结果。例如,图10G所示,坐姿划船的最大力量评估结果可以为最佳力量区间,该最佳力量区间可以为18-22Kg。
当然,用户也可以根据用户个人生理数据(身高,体重,体脂等)和训练目的(减脂、塑形、增肌)的基础上,对不同偏好动作的训练最佳负荷区间和最大负荷量进行评估。具体可以为:
S4258”、第一终端接收用户对用于表示训练动作偏好评估的控件的操作十。
其中,操作十为作用于指示划船机进入训练动作偏好评估的操作。
示例性的,用户点击图10A所示的“训练动作偏好评估”控件1136。
S4259”、响应于操作十,第一终端显示用于表示请选择您要评估的动作的界面,相应的,划船机的显示屏上显示的界面元素与第一终端上显示的界面元素至少部分相同。
在一种可实现方式中,S4259”具体可实现为:第一种,响应于操作十,第一终端向服务器发送用于启动训练动作偏好评估的请求十,该请求十中携带划船机的信息和训练动作偏好评估模式信息。相应的,服务器接收到第一终端发送的请求十。服务器根据请求十调用划船机进入训练动作偏好评估模式,并控制划船机的显示屏和第一终端均显示用于表示“请选择您喜好的动作”的界面。第一终端显示用于表示“请选择您要评估的动作”的界面,相应的,划船机的显示屏上显示的界面元素与第一终端上显示的界面元素至少部分相同。第二种,响应于操作十,第一终端调用一个接口,并将划船机的信息和训练动作偏好评估模式信息发送给该接口,划船机进入训练动作偏好评估模式,并显示用于表示“请选择您要评估的动作”的界面,同时,第一终端上也显示用于表示“请选择您要评估的动作”的界面。
示例性的,在用户点击图10A所示的“训练动作偏好评估”控件1136之后,第一终端110接收到用户的点击操作。第一终端110响应于该操作,显示如图10H所示的“请选择您喜好的动作”的界面1144。在该界面1144上可以包括用户喜欢的动作及其动作图像,如坐姿划船及其动作图像、Y伸展及其动作图像、面拉及其动作图像等。相应的,划船机的显示屏上显示内容与第一终端上显示的内容相同或相近。
当用户选择了图10H所示的界面1144上的各个动作之后,第一终端的界面跳转至图10I所示的用于表示训练偏好动作评估的界面1145。在该界面1145上显示用户偏好的动作,及用于表示重新评估的控件1146。当用户操作图10I所示的控件1146之后,第一终端的界面跳转至图10D所示的开始评估的界面1138。用户可以根据图10D所 示的界面1138中显示的内容进行动作评估。
在用户开始运动之前,用户可以采用上述方式进行动作评估,并得到评估结果。用户可以根据评估结果调整划船机的运动重量档位。同时在用户运动过程中,用户每拉动一次划船机,划船机记录用户的运动数据。示例性的,以坐姿划船为例,在运动之前,用户进行力量评估,并根据力量评估结果设置5组动作次数,每组动作拉动次数为10。如图10G所示的用户进行力量评估之后,用户可以点击第一终端左上角的退回控件,第一终端显示图7所示的界面。用户可以选择运动模式,如有氧划船或智能私教。用户可以点击当用户点击第一终端上显示的开始训练控件时,第一终端显示图10J所示的界面1147,在该界面1147上还可以包括当前组的记录次数、旋转控件、暂停控件、运动时间、卡路里(热量)、重量、动作组数、本组动作次数、心率、功率、动作频率,等等。该界面1147的显示内容比较多,第一终端可以分为两页进行显示,如图10J和图10K所示。图10J和图10K中所要表述的是:用户完成划船机动作的第一组动作,用户做第一组动作所用的时间为00:00:08,所消耗的热量为13千卡,用户的运动重量为30千克,用户的心率为100次/分钟,划船机的功率为23W,用户的动作频率为23次/分钟。此时,如图10M、图10N和图10O所示的划船机的显示屏上所显示的内容,该内容与第一终端上显示的内容相同或相近。可选地,用户可以操作划船机的重量调节界面,实时调节力量训练的重量。示例性的,用户可以点击图10O所示的用于表示重量的控件,该控件可以为圆环形。当用户点击图10O所示的圆环上的位置时,划船机可以根据用户的点击位置调整力量训练模式下的重量。例如,当用户点击位置A,划船机调整力量至200Kg;当用户点击位置B,划船机调整力量至50Kg。可选地,当用户可以沿着显示屏的横轴滑动时,划船机的显示屏可以切换显示图10M、图10N和图10O所示的界面。当用户操作图10J或图10K中所示的旋转控件11471时,第一终端的界面由竖屏显示切换成横屏显示,即第一终端的界面由图10J或图10K所示的界面跳转至图10L所示的界面。这样,第一终端可以通过一个界面显示所有的信息,使得用户无需任何操作就可以浏览全部信息。
当然,力量训练模式的数据类型并不局限于上述界面中显示的,力量训练模式的数据类型还可以包括平均心率、最大功率、峰值重量、峰值功率、总动作次数、总动作组数、每组动作次数、最大心率、心率区间分布、重量曲线、功率曲线、动作频率曲线,等等。
这里需要说明的是,上述心率数据可以通过穿戴设备获取。示例性的,用户采用划船机运动时可以佩戴智能手表,该智能手表可以检测用户的心率。智能手表将检测的心率数据发送给第一终端。第一终端接收到智能手表采集的心率数据,并显示该心率数据。同时,第一终端可以将心率数据发送给划船机,划船机接收到该心率数据,将该心率数据显示在显示屏上。
场景四,有氧划船模式
S4241”’、第一终端接收用户对用于有氧划船模式的控件的操作十一。
其中,操作十一为用于指示划船机进入有氧划船模式的操作。
示例性的,用户点击图7所示的“有氧划船”控件1114。
S4251”’、响应于操作十一,第一终端显示用于表示有氧划船的界面,相应的,划 船机的显示屏上显示的界面元素与第一终端上显示的界面元素至少部分相同。
其中,S4251”’的具体可实现方式参考上述的相关内容,本申请实施例不做限定。
示例性的,在用户点击图7所示的“有氧划船”控件1114之后,第一终端110接收到用户的点击操作。第一终端110响应于该操作,显示如图11A所示的界面1148。在该界面1148上显示有“开始训练”、“请拉动划船机,以开始运动”等提示信息。相应的,划船机120的显示屏上显示如图11B所示的内容,该内容与第一终端上显示的内容相同或相近。
当用户在拉动划船机时,第一终端的界面由图11A所示的界面1148跳转至图11C所示的界面1149。在该界面1149上可以显示有拟定的公里数、浆次、运动时间、热量、功率、阻力、心率、配速、浆频、旋转控件,等等。由于显示的内容较多,上述内容可以分页显示。示例性的,图11C所示的界面1149上显示有:拟定的公里数为0.08公里,运动时间为:00:00:08,热量为13千卡,浆次为11次,功率为13瓦,阻力为21档,心率为100次/分钟。由于图11C所示的界面不能显示全部信息,则在图11D所示的界面1149中补充显示其余信息,如,配速为1’30”/500米,浆频为23次/分钟。
由于在竖屏模式下,第一终端无法在一个界面上显示全部信息。本申请实施例中,当用户操作图11C或图11D的界面上显示的旋转控件11491时,第一终端可以切换至横屏显示模式,在横屏显示模式下,第一终端显示图11E所示的界面1150。在该界面1150上显示图11C和图11D显示的所有信息。其中,用户可以沿着第一终端的显示屏的横轴滑动来切换图11C所示的界面和图11D所示的界面。这样,用户可以在一个界面上看到全部信息。
同时,由于划船机的显示屏尺寸较小,不能同时显示所有信息,那么,划船机的显示屏也可以分页显示上述信息。如图11F、图11G和图11H所示的划船机的显示屏上所显示的内容,该内容与第一终端上显示的内容相同或相近。进一步地,当用户操作图11H所示的界面时,划船机响应于用户的操作,调节有氧划船的阻力。示例性的,如图11H所示,用户点击图11H所示圆环图标,响应于用户的点击操作,划船机调节有氧划船模式的阻力。其中,阻力的调节大小可以与用户在图11H所示的界面上的圆环图标的点击位置有关,也可以与用户在图11H所示的界面上的点击频率、次数相关。本申请实施例不做具体限定。
当然,在另一种实现方式中,用户未佩戴智能手表,即无法检测用户心率等信息。当用户在拉动划船机时,第一终端的界面由图11A所示的界面1148跳转至图11I所示的界面1151。在该界面1151上可以显示上述信息中除了心率之外的信息。图11J为图11I的部分界面图。同理,当用户对图11I或图11J的界面上显示的旋转控件11511时,第一终端可以切换至横屏显示模式,在横屏显示模式下,第一终端显示图11K所示的界面1152。
第三阶段,统计和分析运动数据。如图3所示:
S426、在用户运动结束之后,划船机对用户的运动数据进行统计和分析,得到统计数据。
在用户运动结束之后,划船机会对用户的运动数据进行统计和分析,得到统计数 据,并绘制统计数据界面,帮助用户记得每次的运动结果。另外,划船机也会对用户的每日、每周和每月的训练量进行统计和分析。
S427、第一终端获取统计数据。
第一终端可以通过蓝牙传输通道从划船机上获取统计数据。该蓝牙传输通道可以是在上述第一阶段中建立的。当然,第一终端也可以从服务器上获取统计数据。其中,该服务器可以通过服务器与划船机之间建立的网络连接,从划船机上获取统计数据。
S428、第一终端显示统计数据。
第一终端获取到统计数据之后,显示包含有统计数据的界面。
示例性的,当用户做有氧划船训练之后,划船机会产生用户的运动数据。划船机根据用户的运动数据进行统计和分析,得到统计数据。第一终端获取到该统计数据,并显示如图12A所示的界面1153。在该界面1153上显示配速、图表和详情等选项。在详情选项下显示有运动时间、消耗热量、平均配速、平均速度、平均浆频、浆次、阻力等。当用户操作图表选项时,第一终端显示如图12B所示的界面1154。在该界面1154上显示心率、配速、浆频、阻力等图表信息。同理,当用户操作配速选项时,第一终端显示如图12C所示的界面1155。在该界面1155上显示平均配速、最快配速、距离及其对应的配速等。
同理,示例性的,当用户做力量训练之后,第一终端获取到统计数据,并显示包含该统计数据的界面。例如,第一终端显示如图12D所示的界面1156。在该界面1156上显示有分组、图表和详情等选项。在详情选项下,第一终端显示的界面1156上包括热量、运动时间、总动作次数、峰值功率、峰值重量、总动作组数、平均心率等。当用户操作图表选项时,第一终端显示如图12E所示的界面1157。在该界面1157上显示心率、重量、功率、动作频率等图表信息。同理,当用户操作分组选项时,第一终端显示如图12F所示的界面1158。在该界面1158上显示总动作组数、总动作次数等,当然,在该界面1158上还显示各组对应的时间、次数、峰值重量、峰值功率和平均心率等。
当然,有氧划船模式的数据类型并不局限于上述界面中显示的,有氧划船模式的数据类型还可以包括阻力等级分布、距离、最大速度、浆频曲线、最大浆频、心率曲线、平均心率、最大心率、心率区间分布、功率曲线、平均功率、最大功率,等等。
这里需要补充的是,为了辅助用户在划船机上能进行有氧划船和力量训练两种不同的训练内容,该划船机配备多种把手,并提供可替换的把手接口,用户可根据运动目的和运动状态进行快拆和更换。例如,尼龙拉带上尾端固定金属环,有氧划船把手为一字型把手,力量训练把手为三角形把手,把手顶端为葫芦形金属钩。
S429、划船机显示统计数据。
示例性的,当用户做有氧划船训练之后,划船机会产生用户的运动数据。划船机根据用户的运动数据进行统计和分析,得到统计数据,并显示如图13A所示的配速界面、图13B所示图表界面和图13C所示图表界面。在一种可实现方式中,用户可以沿着划船机的显示屏的横轴滑动,切换配速界面、图表界面和图表界面。用户也可以沿着划船机的显示屏的纵轴滑动,浏览各个界面的详细内容。
本申请上述实施例中的各个方案在不矛盾的前提下,均可以进行结合。
本申请实施例提供的又一种终端。该终端执行上述任一方法。
本申请实施例提供的一种系统,该系统执行上述任一方法。
本申请实施例还提供了一种计算机可读存储介质,包括指令,当其在计算机上运行时,使得计算机执行上述任一方法。
本申请实施例还提供了一种包含指令的计算机程序产品,当其在计算机上运行时,使得计算机执行上述任一方法。
本申请实施例还提供了一种芯片,该芯片包括处理器和接口电路,该接口电路和该处理器耦合,该处理器用于运行计算机程序或指令,以实现上述方法,该接口电路用于与该芯片之外的其它模块进行通信。
在本申请的描述中,除非另有说明,“/”表示“或”的意思,例如,A/B可以表示A或B。本文中的“和/或”仅仅是一种描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。此外,“至少一个”是指一个或多个,“多个”是指两个或两个以上。“第一”、“第二”等字样并不对数量和执行次序进行限定,并且“第一”、“第二”等字样也并不限定一定不同。
在本申请的描述中,“示例性的”或者“例如”等词用于表示作例子、例证或说明。本申请实施例中被描述为“示例性的”或者“例如”的任何实施例或设计方案不应被解释为比其它实施例或设计方案更优选或更具优势。确切而言,使用“示例性的”或者“例如”等词旨在以具体方式呈现相关概念。
通过以上实施方式的描述,所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,仅以上述各功能模块的划分进行举例说明,实际应用中,可以根据需要而将上述功能分配由不同的功能模块完成,即将装置的内部结构划分成不同的功能模块,以完成以上描述的全部或者部分功能。
在本申请所提供的几个实施例中,应该理解到,所揭露的装置和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如,所述模块或单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个装置,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是一个物理单元或多个物理单元,即可以位于一个地方,或者也可以分布到多个不同地方。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本申请各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
所述集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个可读取存储介质中。基于这样的理解,本申请实施例的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分可以以软件产品的形式体现出来,该软件产品存储在一个存储介质中,包括若干指令用以使得一个设备 (可以是单片机,芯片等)或处理器(processor)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(read only memory,ROM)、随机存取存储器(random access memory,RAM)、磁碟或者光盘等各种可以存储程序代码的介质。
以上内容,仅为本申请的具体实施方式,但本申请的保护范围并不局限于此,任何在本申请揭露的技术范围内的变化或替换,都应涵盖在本申请的保护范围之内。因此,本申请的保护范围应以所述权利要求的保护范围为准。

Claims (39)

  1. 一种显示方法,应用于通信系统,所述通信系统包括第一终端和划船机,其特征在于,所述方法包括:
    响应于对所述第一终端上第一卡片的操作,所述第一终端显示第一界面,所述第一界面上包括用于表示预设模式的第一控件,所述第一卡片与所述划船机相关;
    响应于对所述第一控件的操作,所述第一终端显示第二界面,所述划船机显示第三界面,所述第三界面上显示的界面元素与所述第二界面上显示的界面元素至少部分相同。
  2. 根据权利要求1所述的方法,其特征在于,所述预设模式包括智能私教模式、课程推荐模式、力量训练模式或有氧划船模式。
  3. 根据权利要求2所述的方法,其特征在于,所述预设模式包括智能私教模式,所述第一控件用于表示所述智能私教模式,所述第二界面上显示的界面元素包括用于表示动态激活的第二控件,所述方法还包括:
    响应于对所述第二控件的操作,所述第一终端显示第四界面,所述第四界面包括用于表示开始训练的第三控件;
    响应于对所述第三控件的操作,所述第一终端显示运动信息,所述划船机显示所述运动信息。
  4. 根据权利要求2所述的方法,其特征在于,所述预设模式包括力量训练模式,所述第一控件用于表示所述力量训练模式;所述第二界面上显示的界面元素包括第四控件和第五控件,所述第四控件用于指示用户进行力量评估,所述第五控件用于指示用户进行训练动作偏好评估;所述第三界面上显示的界面元素包括用于表示力量评估的控件和用于表示训练动作偏好评估的控件。
  5. 根据权利要求4所述的方法,其特征在于,还包括:
    响应于对所述第四控件的操作,所述第一终端显示用于表示第一重量的图标和用于进行重量反馈的第六控件;
    响应于对所述第六控件的操作,所述第一终端显示表示力量反馈的多个选项;
    响应于对所述多个选项中的第一选项的操作,所述第一终端显示第五界面,所述第五界面上包括用于表示第二重量的图标,所述划船机显示第六界面,所述第六界面包括用于表示所述第二重量的图标,其中,所述第二重量与所述第一重量不同。
  6. 根据权利要求5所述的方法,其特征在于,所述第五界面和所述第六界面上还包括力量评估结果和用于表示重新评估的第七控件。
  7. 根据权利要求2所述的方法,其特征在于,所述预设模式包括力量训练模式或有氧划船模式,所述第一控件用于表示力量训练模式或有氧划船模式,所述第二界面上显示的界面元素包括用于表示开始训练的第八控件,所述方法还包括:
    响应于对所述第八控件的操作,所述第一终端显示用于表示负荷调节的第九控件和用于表示第一负荷的图标,所述划船机显示用于表示负荷调节的第九控件和用于表示所述第一负荷的图标;
    响应于对所述第九控件的操作,所述第一终端显示用于表示第二负荷的图标,所述划船机显示用于表示所述第二负荷的图标,其中,所述第二负荷与所述第一负荷不同。
  8. 根据权利要求7所述的方法,其特征在于,所述预设模式包括力量训练模式,所述 负荷调节包括重量调节,所述第九控件为用于表示重量调节的控件;所述预设模式包括有氧划船模式,所述负荷调节包括阻力调节,所述第九控件为用于表示阻力调节的控件。
  9. 根据权利要求1-8中任一项所述的方法,其特征在于,所述第三界面上显示的界面元素与所述第二界面上显示的界面元素至少部分相同,包括:
    所述第三界面与所述第二界面上显示的内容至少部分相同。
  10. 根据权利要求1-8中任一项所述的方法,其特征在于,所述第三界面上显示的界面元素与所述第二界面上显示的界面元素至少部分相同,包括:
    所述第三界面与所述第二界面上显示的布局至少部分相同。
  11. 根据权利要求1-10中任一项所述的方法,其特征在于,所述通信系统还包括第二终端,所述方法还包括:
    所述第二终端检测第一信息,并将所述第一信息发送给所述第一终端;
    所述第一终端将所述第一信息发送给所述划船机;
    所述运动信息包括所述第一信息。
  12. 根据权利要求11所述的方法,其特征在于,所述第一信息为所述用户的心率信息。
  13. 一种显示方法,应用于第一终端,其特征在于,所述方法包括:
    响应于对所述第一终端上第一卡片的第一操作,所述第一终端显示第一界面,所述第一界面上包括用于表示预设模式的第一控件,所述第一卡片与划船机相关;
    响应于对所述第一控件的第二操作,所述第一终端显示第二界面,且所述第一终端向所述划船机发送第一信息,所述第一信息用于指示所述划船机显示第三界面,所述第三界面上显示的界面元素与所述第二界面上显示的界面元素至少部分相同。
  14. 根据权利要求13所述的方法,其特征在于,所述预设模式包括智能私教模式、课程推荐模式、力量训练模式或有氧划船模式。
  15. 根据权利要求14所述的方法,其特征在于,所述预设模式包括智能私教模式,所述第一控件用于表示所述智能私教模式,所述第二界面上显示的界面元素包括用于表示动态激活的第二控件,所述方法还包括:
    响应于对所述第二控件的操作,所述第一终端显示第四界面,所述第四界面包括用于表示开始训练的第三控件;
    响应于对所述第三控件的操作,所述第一终端显示运动信息;
    所述第一终端向所述划船机发送第二信息,所述第二信息用于指示所述划船机显示所述运动信息。
  16. 根据权利要求14所述的方法,其特征在于,所述预设模式包括力量训练模式,所述第一控件用于表示所述力量训练模式;所述第二界面上显示的界面元素包括第四控件和第五控件,所述第四控件用于指示用户进行力量评估,所述第五控件用于指示用户进行训练动作偏好评估;所述第三界面上显示的界面元素包括用于表示力量评估的控件和用于表示训练动作偏好评估的控件。
  17. 根据权利要求16所述的方法,其特征在于,还包括:
    响应于对所述第四控件的操作,所述第一终端显示用于表示第一重量的图标和用于进行重量反馈的第六控件;
    响应于对所述第六控件的操作,所述第一终端显示表示力量反馈的多个选项;
    响应于对所述多个选项中的第一选项的操作,所述第一终端显示第五界面,所述第五界面上包括用于表示第二重量的图标;
    所述第一终端向所述划船机发送第三消息,所述第三消息用于指示所述划船机显示第六界面,所述第六界面包括用于表示所述第二重量的图标,其中,所述第二重量与所述第一重量不同。
  18. 根据权利要求17所述的方法,其特征在于,所述第五界面和所述第六界面上还包括力量评估结果和用于表示重新评估的第七控件。
  19. 根据权利要求14所述的方法,其特征在于,所述预设模式包括力量训练模式或有氧划船模式,所述第一控件用于表示力量训练模式或有氧划船模式,所述第二界面上显示的界面元素包括用于表示开始训练的第八控件,所述方法还包括:
    响应于对所述第八控件的操作,所述第一终端显示用于表示负荷调节的第九控件和用于表示第一负荷的图标,所述划船机显示用于表示负荷调节的第九控件和用于表示所述第一负荷的图标;
    响应于对所述第九控件的操作,所述第一终端显示用于表示第二负荷的图标,所述划船机显示用于表示所述第二负荷的图标,其中,所述第二负荷与所述第一负荷不同。
  20. 根据权利要求19所述的方法,其特征在于,所述预设模式包括力量训练模式,所述负荷调节包括重量调节,所述第九控件为用于表示重量调节的控件;所述预设模式包括有氧划船模式,所述负荷调节包括阻力调节,所述第九控件为用于表示阻力调节的控件。
  21. 根据权利要求13-20中任一项所述的方法,其特征在于,所述第三界面上显示的界面元素与所述第二界面上显示的界面元素至少部分相同,包括:
    所述第三界面与所述第二界面上显示的内容至少部分相同。
  22. 根据权利要求13-21中任一项所述的方法,其特征在于,所述第三界面上显示的界面元素与所述第二界面上显示的界面元素至少部分相同,包括:
    所述第三界面与所述第二界面上显示的布局至少部分相同。
  23. 一种显示方法,应用于划船机,其特征在于,所述方法包括:
    响应于对所述划船机的第一操作,所述划船机显示第一界面,所述第一界面上包括用于表示预设模式的第一控件;
    响应于对所述第一控件的第二操作,所述划船机显示第二界面,且所述划船机向第一终端发送第一信息,所述第一信息用于指示所述第一终端显示第三界面,所述第三界面上显示的界面元素与所述第二界面上显示的界面元素至少部分相同。
  24. 根据权利要求23所述的方法,其特征在于,所述预设模式包括智能私教模式、课程推荐模式、力量训练模式或有氧划船模式。
  25. 根据权利要求24所述的方法,其特征在于,所述预设模式包括智能私教模式,所述第一控件用于表示所述智能私教模式,所述第二界面上显示的界面元素包括用于表示动态激活的第二控件,所述方法还包括:
    响应于对所述第二控件的操作,所述划船机显示第四界面,所述第四界面包括用于表示开始训练的第三控件;
    响应于对所述第三控件的操作,所述划船机显示运动信息;
    所述划船机向所述第一终端发送第二信息,所述第二信息用于指示所述第一终端显示 所述运动信息。
  26. 根据权利要求24所述的方法,其特征在于,所述预设模式包括力量训练模式,所述第一控件用于表示所述力量训练模式;所述第二界面上显示的界面元素包括第四控件和第五控件,所述第四控件用于指示用户进行力量评估,所述第五控件用于指示用户进行训练动作偏好评估;所述第三界面上显示的界面元素包括用于表示力量评估的控件和用于表示训练动作偏好评估的控件。
  27. 根据权利要求26所述的方法,其特征在于,还包括:
    响应于对所述第四控件的操作,所述划船机显示用于表示第一重量的图标和用于进行重量反馈的第六控件;
    响应于对所述第六控件的操作,所述划船机显示表示力量反馈的多个选项;
    响应于对所述多个选项中的第一选项的操作,所述划船机显示第五界面,所述第五界面上包括用于表示第二重量的图标;
    所述划船机向所述第一终端发送第三消息,所述第三消息用于指示所述第一终端显示第六界面,所述第六界面包括用于表示所述第二重量的图标,其中,所述第二重量与所述第一重量不同。
  28. 根据权利要求27所述的方法,其特征在于,所述第五界面和所述第六界面上还包括力量评估结果和用于表示重新评估的第七控件。
  29. 根据权利要求24所述的方法,其特征在于,所述预设模式包括力量训练模式或有氧划船模式,所述第一控件用于表示力量训练模式或有氧划船模式,所述第二界面上显示的界面元素包括用于表示开始训练的第八控件,所述方法还包括:
    响应于对所述第八控件的操作,所述划船机显示用于表示负荷调节的第九控件和用于表示第一负荷的图标,所述第一终端显示用于表示负荷调节的第九控件和用于表示所述第一负荷的图标;
    响应于对所述第九控件的操作,所述划船机显示用于表示第二负荷的图标,所述第一终端显示用于表示所述第二负荷的图标,其中,所述第二负荷与所述第一负荷不同。
  30. 根据权利要求29所述的方法,其特征在于,所述预设模式包括力量训练模式,所述负荷调节包括重量调节,所述第九控件为用于表示重量调节的控件;所述预设模式包括有氧划船模式,所述负荷调节包括阻力调节,所述第九控件为用于表示阻力调节的控件。
  31. 根据权利要求23-30中任一项所述的方法,其特征在于,所述第三界面上显示的界面元素与所述第二界面上显示的界面元素至少部分相同,包括:
    所述第三界面与所述第二界面上显示的内容至少部分相同。
  32. 根据权利要求23-31中任一项所述的方法,其特征在于,所述第三界面上显示的界面元素与所述第二界面上显示的界面元素至少部分相同,包括:
    所述第三界面与所述第二界面上显示的布局至少部分相同。
  33. 一种终端,其特征在于,包括:一个或多个处理器;以及存储器,所述存储器中存储有代码;当所述代码被所述一个或多个处理器执行时,使得所述终端执行如权利要求13-22任一项所述的方法。
  34. 一种划船机,其特征在于,包括:一个或多个处理器;以及存储器,所述存储器中存储有代码;当所述代码被所述一个或多个处理器执行时,使得所述划船机执 行如权利要求23-32任一项所述的方法。
  35. 一种通信系统,其特征在于,包括:第一终端和划船机;所述第一终端执行如权利要求13-22中任一项所述的方法,或者,所述划船机执行如权利要求23-32任一项所述的方法。
  36. 根据权利要求35所述的通信系统,其特征在于,包括:第二终端;所述第二终端执行如权利要求11所述的方法。
  37. 一种芯片系统,其特征在于,该芯片系统应用于电子设备,该芯片系统包括一个或多个接口电路和一个或多个处理器;接口电路和处理器通过线路互联;接口电路用于从电子设备的存储器接收信号,并向处理器发送信号,信号包括存储器中存储的计算机指令;当处理器执行计算机指令时,使得电子设备执行如权利要求13-22中任一项所述的方法,或者,所述电子设备执行如权利要求23-32任一项所述的方法。
  38. 一种计算机可读存储介质,其特征在于,包括计算机指令,当所述计算机指令在电子设备上运行时,使得所述电子设备执行如权利要求13-22中任一项所述的方法,或者,所述电子设备执行如权利要求23-32任一项所述的方法。
  39. 一种计算机程序产品,其特征在于,当所述计算机程序产品在计算机上运行时,使得所述计算机执行如权利要求13-22中任一项所述的方法,或者,所述计算机执行如权利要求23-32任一项所述的方法。
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