WO2017067352A1 - 信息处理系统、方法及装置 - Google Patents

信息处理系统、方法及装置 Download PDF

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Publication number
WO2017067352A1
WO2017067352A1 PCT/CN2016/098939 CN2016098939W WO2017067352A1 WO 2017067352 A1 WO2017067352 A1 WO 2017067352A1 CN 2016098939 W CN2016098939 W CN 2016098939W WO 2017067352 A1 WO2017067352 A1 WO 2017067352A1
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WO
WIPO (PCT)
Prior art keywords
attack
competition
control device
attack information
information
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Application number
PCT/CN2016/098939
Other languages
English (en)
French (fr)
Inventor
赵明
鲁四喜
杨勇
荆彦青
Original Assignee
腾讯科技(深圳)有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
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Application filed by 腾讯科技(深圳)有限公司 filed Critical 腾讯科技(深圳)有限公司
Publication of WO2017067352A1 publication Critical patent/WO2017067352A1/zh
Priority to US15/844,066 priority Critical patent/US10569183B2/en

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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F9/00Games not otherwise provided for
    • A63F9/02Shooting or hurling games
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H27/00Toy aircraft; Other flying toys
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H30/00Remote-control arrangements specially adapted for toys, e.g. for toy vehicles
    • A63H30/02Electrical arrangements
    • A63H30/04Electrical arrangements using wireless transmission
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link
    • G08C17/02Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C23/00Non-electrical signal transmission systems, e.g. optical systems
    • G08C23/04Non-electrical signal transmission systems, e.g. optical systems using light waves, e.g. infrared

Definitions

  • Embodiments of the present invention relate to the field of data transmission, and in particular, to an information processing system, method, and apparatus.
  • the battle equipment can be an intelligent battle toy car, a smart battle toy aircraft, and the like.
  • the radio remote controller When the user uses a dedicated radio remote control to control the battle between the combat devices, the radio remote controller is triggered to send an attack command to the corresponding competition device by pressing a button designated on the radio remote controller, and the battle device receives the attack command and then transmits the infrared light. Simulated attack. After receiving the infrared rays, the other combat devices automatically simulate the state at the time of the attack and make actions such as tipping over and stopping.
  • the attack device Since the radio remote controller sends a single attack command to the combat device, the attack device has a single attack form, and the attacked attack device can automatically perform a simple predetermined action according to the predetermined logic, resulting in poor simulation battle effect; Due to the strong infrared ray scattering, the probability of a missed hit is higher through the infrared simulation attack between the combat devices.
  • embodiments of the present invention provide an information processing system, method, and apparatus.
  • the technical solution is as follows:
  • an information processing system comprising: at least two competing devices and a control device corresponding to each of the competing devices;
  • a first control device configured to send attack information to the first competition device
  • a first battle device for modulating attack information into a laser carrier signal by a modulation circuit, and Transmitting the laser carrier signal using a laser emitting component
  • a second battle device configured to receive the laser carrier signal by the laser receiving component, and demodulate the attack information from the laser carrier signal by using a demodulation circuit; and send the attack information to the second control device;
  • the second control device is configured to determine, according to the attack information, an attack state of the second battle device, and send a feedback instruction to the second battle device, where the feedback command is used to indicate the attack state of the second battle device.
  • an information processing method for a first control device, the method comprising:
  • the first battle device corresponds to the first control device
  • the first battle device is configured to modulate the attack information into the laser carrier signal by using a modulation circuit, and use the laser launch component to the second battle device Transmitting a laser carrier signal
  • the second battle device is configured to receive the laser carrier signal through the laser receiving component, and demodulate the attack information from the laser carrier signal through the demodulation circuit, and send the attack information to the second control device
  • the second control device And determining, by the attack information, the attack status of the second competition device, and sending a feedback instruction to the second competition device, where the feedback instruction is used to indicate the attack status of the second competition device.
  • an information processing method for a first battle device, the method comprising:
  • the attack information is modulated into the laser carrier signal by the modulation circuit, and the laser carrier component is used to transmit the laser carrier signal to the second battle device; the second battle device is configured to receive the laser carrier signal through the laser receiving component and pass the laser from the demodulation circuit
  • the attack signal is demodulated in the carrier signal, and the attack information is sent to the second control device.
  • the second control device is configured to determine, according to the attack information, an attack state of the second battle device, and send a feedback instruction to the second battle device.
  • the feedback instruction is used to indicate the attack status of the second competition device.
  • an information processing method for a second battle device, the method comprising:
  • the laser carrier signal is that after the first combat device receives the attack information sent by the first control device, the attack information is modulated into the laser carrier signal by using the modulation circuit, and is used.
  • the feedback instruction is used to indicate an attack state of the second competition device.
  • an information processing method for a second control device, the method comprising:
  • the attack information is demodulated by the second battle device from the laser carrier signal by using a demodulation circuit, and the laser carrier signal is the attack information sent by the first control device to the first control device.
  • the attack information is modulated by the modulation circuit, it is transmitted by using the laser emitting component;
  • the feedback instruction is used to indicate the attack status of the second competition device.
  • an information processing apparatus comprising:
  • a first information receiving module configured to receive attack information set by a user
  • a first information sending module configured to send the attack information to the first battle device, where the first battle device corresponds to the first control device;
  • the first battle device is configured to modulate the attack information into the laser carrier signal by using a modulation circuit And using the laser emitting component to transmit a laser carrier signal to the second battle device;
  • the second combat device is configured to receive the laser carrier signal through the laser receiving component, and demodulate the attack information from the laser carrier signal through the demodulation circuit to the second
  • the control device sends the attack information;
  • the second control device is configured to determine, according to the attack information, the attack state of the second battle device, and send a feedback instruction to the second battle device, where the feedback command is used to indicate that the second battle device is attacked status.
  • an information processing apparatus comprising:
  • a second information receiving module configured to receive attack information sent by the first control device, where the first control device corresponds to the first battle device
  • a first signal sending module configured to modulate the attack information into the laser carrier signal by the modulation circuit, and use the laser emitting component to transmit the laser carrier signal to the second competition device
  • the second competition device is configured to receive the laser carrier signal through the laser receiving component And demodulating the attack information from the laser carrier signal through the demodulation circuit, and transmitting the attack information to the second control device
  • the second control device is configured to determine, according to the attack information, the attack state of the second battle device, to the second
  • the competition device sends a feedback instruction, and the feedback instruction is used to indicate the attack status of the second competition device.
  • an information processing apparatus comprising:
  • a first signal receiving module configured to receive, by the laser receiving component, a laser carrier signal sent by the first competition device;
  • the laser carrier signal is that after the first combat device receives the attack information sent by the first control device, the attack is performed by using a modulation circuit Information is modulated into the laser carrier signal and transmitted using a laser emitting component;
  • a third information sending module configured to demodulate attack information from the laser carrier signal by using a demodulation circuit, and send the attack information to the second control device;
  • the second instruction receiving module is configured to receive a feedback instruction sent by the second control device according to the attack information, where the feedback instruction is used to indicate an attack state of the second competition device.
  • an information processing apparatus comprising:
  • the third information receiving module is configured to receive attack information sent by the second battle device, where the attack information is demodulated from the laser carrier signal by the demodulation circuit, and the laser carrier signal is received by the first battle device.
  • An attack information sent by the control device is modulated by the modulation circuit and then transmitted by the laser transmitting component;
  • a state determining module configured to determine, according to the attack information, an attack state of the second competition device
  • the second instruction sending module is configured to send a feedback instruction to the second competition device, where the feedback instruction is used to indicate the attack status of the second competition device.
  • the attack information is modulated into the laser carrier signal by the first battle device, and the second battle device receiving the laser carrier signal will demodulate the attack.
  • the information is sent to the corresponding second control device, and the second control device indicates, according to the attack information, that the second control device is in a responded attack state; the attacking device has a single attack form and the probability of a missed hit.
  • the attack information is transmitted by the laser carrier signal between the battle devices, and the amount of data carried is larger, which enriches the attack form of the battle device;
  • the divergence angle of the laser is small and is very little affected by ambient light, which can significantly reduce the probability of misunderstanding caused by diffuse reflection.
  • FIG. 1 is a schematic structural diagram of an information processing system according to an embodiment of the present invention.
  • FIG. 2 is a schematic structural diagram of a control device according to an embodiment of the present invention.
  • 3A is a schematic structural diagram of a competition device according to an embodiment of the present invention.
  • FIG. 3B is a schematic diagram of a laser emitting circuit according to an embodiment of the present invention.
  • 3C is a schematic diagram of a laser receiving circuit according to an embodiment of the present invention.
  • FIG. 3D is a schematic diagram of a laser receiving structure according to an embodiment of the present invention.
  • FIG. 3E is a schematic diagram of a astigmatism component in a laser receiving structure according to an embodiment of the present invention.
  • FIG. 3F is a schematic diagram of a astigmatism component in a laser receiving structure according to an embodiment of the present invention.
  • FIG. 5 is a flowchart of an information processing method according to another embodiment of the present invention.
  • FIG. 6 is a flowchart of an information processing method according to still another embodiment of the present invention.
  • FIG. 7 is a flowchart of an information processing method according to still another embodiment of the present invention.
  • FIG. 8A is a flowchart of an information processing method according to still another embodiment of the present invention.
  • FIG. 8B is a schematic diagram of an implementation of the information processing method provided in FIG. 8A; FIG.
  • FIG. 8C is a flowchart of a damage value correction process involved in the information processing method provided in FIG. 8A;
  • FIG. 8D is a flowchart of an aiming process involved in the information processing method provided in FIG. 8A;
  • FIG. 8E is a schematic diagram of implementation of a targeting process involved in the information processing method provided in FIG. 8D;
  • FIG. 8F is a flowchart of a directed attack process involved in the information processing method provided in FIG. 8A;
  • FIG. 9 is a block diagram showing the structure of an information processing apparatus according to an embodiment of the present invention.
  • FIG. 10 is a block diagram showing the structure of an information processing apparatus according to another embodiment of the present invention.
  • FIG. 11 is a block diagram showing the structure of an information processing apparatus according to still another embodiment of the present invention.
  • FIG. 12 is a block diagram showing the structure of an information processing apparatus according to still another embodiment of the present invention.
  • FIG. 13 is a schematic structural diagram of an information processing system according to an embodiment of the present invention.
  • FIG. 1 shows a schematic structural diagram of an information processing system according to an embodiment of the present invention.
  • the system includes a first control device 110, a first competition device 120, a second competition device 130, and a second control device 140.
  • the first control device 110 and the second control device 140 are both smart phones as an example, and the present invention is not limited thereto.
  • the first control device 110 and the first battle device 120 are connected by Bluetooth, infrared, etc., and transmit information through the wireless connection; correspondingly, the second control device 140 and the second battle device 130 pass Bluetooth, Infrared, etc. are connected, and information is transmitted through the wireless connection. It should be noted that the first control device 110 and the second control device 140 can also be connected through a data line or through Bluetooth or infrared.
  • the first battle device 120 and the second battle device 130 are battle devices for mounting a laser receiving assembly and a laser emitting assembly, wherein the laser receiving assembly is configured to receive a laser carrier signal, and the laser emitting component is configured to transmit a laser carrier signal.
  • the first battle device 120 and the second battle device 130 are also equipped with a laser modulation circuit (referred to as "modulation circuit”) and a laser demodulation circuit (referred to as “demodulation circuit”), and the laser modulation circuit is used to modulate information to the laser carrier.
  • a laser demodulation circuit is used to demodulate attack information from the laser carrier signal.
  • the first battle device 120 and the second battle device 130 may be smart battle toy cars, smart battle toy tanks, smart battle toy ships or smart battle toy airplanes, and the like.
  • the first battle equipment 120 and the second battle equipment 130 are all examples of an intelligent battle toy vehicle, and the present invention is not limited thereto.
  • the information processing system may further include two or more competing devices, and the present invention is not correct.
  • the number of battle devices is limited.
  • FIG. 2 is a schematic structural diagram of a control device according to an embodiment of the present invention.
  • the control device may be the first control device 120 or the second control device 140 in FIG. 1 , specifically:
  • the control device 200 may include an RF (Radio Frequency) circuit 210, a memory 220 including one or more computer readable storage media, an input unit 230, a display unit 240, a sensor 250, an audio circuit 260, and a short-range wireless transmission module. 270.
  • a processor 280 having one or more processing cores, and a power supply 290 and the like. It will be understood by those skilled in the art that the structure of the control device shown in FIG. 2 does not constitute a limitation to the control device, and may include more or less components than those illustrated, or a combination of certain components, or different component arrangements. among them:
  • the RF circuit 210 can be used for receiving and transmitting signals during and after receiving or transmitting information, in particular, receiving downlink information of the base station, and then processing it by one or more processors 280; and transmitting data related to the uplink to the base station.
  • the RF circuit 210 includes, but is not limited to, an antenna, at least one amplifier, a tuner, one or more oscillators, a Subscriber Identity Module (SIM) card, a transceiver, a coupler, an LNA (Low Noise Amplifier). , duplexer, etc.
  • SIM Subscriber Identity Module
  • RF circuitry 210 can also communicate with the network and other devices via wireless communication.
  • Wireless communication can use any communication standard or protocol, including but not limited to GSM (Global System of Mobile communication), GPRS (General Packet Radio Service), CDMA (Code Division Multiple Access) Divisional Multiple Access), WCDMA (Wideband Code Division Multiple Access), LTE (Long Term Evolution), e-mail, SMS (Short Messaging Service), and the like.
  • GSM Global System of Mobile communication
  • GPRS General Packet Radio Service
  • CDMA Code Division Multiple Access
  • WCDMA Wideband Code Division Multiple Access
  • LTE Long Term Evolution
  • e-mail Short Messaging Service
  • the memory 220 can be used to store software programs as well as modules.
  • the processor 280 executes various functional applications and data processing by running software programs and modules stored in the memory 220.
  • the memory 220 may mainly include a storage program area and a storage data area, wherein the storage program area may store an operating system, an application required for at least one function (such as a sound playing function, an image playing function, etc.), and the like; the storage data area may be stored according to Data (such as audio data, phone book, etc.) created by the use of the control device 200 is controlled.
  • memory 220 can include high speed random access memory, and can also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other volatile solid state storage device.
  • memory 220 may also include a memory controller to provide access to memory 220 by processor 280 and input unit 230.
  • FIG. 2 shows the RF circuit 210, it can be understood that it does not belong to the essential configuration of the control device 200, and may be omitted as needed within the scope of not changing the essence of the invention.
  • the input unit 230 can be configured to receive input numeric or character information and to generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function controls.
  • input unit 230 can include touch-sensitive surface 231 as well as other input devices 232.
  • Touch sensitive surface 231 also Known as a touch display or trackpad, it can collect touch operations on or near the user (such as the user using a finger, stylus, etc., on any touchable surface 231 or near the touch-sensitive surface 231. Operation), and drive the corresponding connecting device according to a preset program.
  • the touch-sensitive surface 231 can include two portions of a touch detection device and a touch controller.
  • the touch detection device detects the touch orientation of the user, and detects a signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device, converts the touch information into contact coordinates, and sends the touch information.
  • the processor 280 is provided and can receive commands from the processor 280 and execute them.
  • the touch-sensitive surface 231 can be implemented in various types such as resistive, capacitive, infrared, and surface acoustic waves.
  • the input unit 230 can also include other input devices 232.
  • other input devices 232 may include, but are not limited to, one or more of a physical keyboard, function keys (such as volume control buttons, switch buttons, etc.), trackballs, mice, joysticks, and the like.
  • Display unit 240 can be used to display information entered by the user or information provided to the user and various graphical user interfaces of control device 200, which can be composed of graphics, text, icons, video, and any combination thereof.
  • the display unit 240 may include a display panel 241.
  • the display panel 241 may be configured in the form of an LCD (Liquid Crystal Display), an OLED (Organic Light-Emitting Diode), or the like.
  • the touch-sensitive surface 231 can be overlaid on the display panel 241. When the touch-sensitive surface 231 detects a touch operation on or near it, it is transmitted to the processor 280 to determine the type of the touch event, and then the processor 280 is The type of touch event provides a corresponding visual output on display panel 241.
  • touch-sensitive surface 231 and display panel 241 are implemented as two separate components to implement input and input functions, in some embodiments, touch-sensitive surface 231 can be integrated with display panel 241 for input. And output function.
  • Control device 200 may also include at least one type of sensor 250, such as a light sensor, motion sensor, and other sensors.
  • the light sensor may include an ambient light sensor and a proximity sensor, wherein the ambient light sensor may adjust the brightness of the display panel 241 according to the brightness of the ambient light, and the proximity sensor may close the display panel 241 when the control device 200 moves to the ear. And / or backlight.
  • the gravity acceleration sensor can detect the magnitude of acceleration in all directions (usually three axes). When it is stationary, it can detect the magnitude and direction of gravity.
  • the audio circuit 260, the speaker 221, and the microphone 222 can provide a connection between the user and the control device 200. Audio interface.
  • the audio circuit 260 can transmit the converted electrical data of the received audio data to the speaker 221, and convert it into a sound signal output by the speaker 221; on the other hand, the microphone 222 converts the collected sound signal into an electrical signal, and the audio circuit 260 After receiving, it is converted into audio data, and then processed by the audio data output processor 280, transmitted to another control device via the RF circuit 210, or outputted to the memory 220 for further processing.
  • the audio circuit 260 may also include an earbud jack to provide communication of the peripheral earphones with the control device 200.
  • the short-range wireless transmission module 270 can be a WIFI (wireless fidelity) module, a Bluetooth module, or an infrared module.
  • the control device 200 can transmit information through the short-range wireless transmission module 270 with the wireless transmission module set on the competition device.
  • the processor 280 is a control center of the control device 200 that connects various portions of the entire control device using various interfaces and lines, by running or executing software programs and/or modules stored in the memory 220, and recalling stored in the memory 220. The data, the various functions of the control device 200 and the processing data are executed to thereby perform overall monitoring of the control device.
  • the processor 280 may include one or more processing cores; optionally, the processor 280 may integrate an application processor and a modem processor, where the application processor mainly processes an operating system, a user interface, and an application. Etc.
  • the modem processor primarily handles wireless communications. It can be understood that the above modem processor may not be integrated into the processor 280.
  • the control device 200 also includes a power source 290 (such as a battery) that supplies power to the various components.
  • a power source 290 such as a battery
  • the power source can be logically coupled to the processor 280 through a power management system to manage functions such as charging, discharging, and power management through the power management system.
  • Power supply 290 may also include any one or more of a DC or AC power source, a recharging system, a power failure detection circuit, a power converter or inverter, a power status indicator, and the like.
  • control device 200 may further include a camera, a Bluetooth module, and the like, and details are not described herein.
  • Control device 200 also includes a memory, and one or more programs, wherein one or more programs are stored in the memory and configured to be executed by one or more processors.
  • the program includes instructions for executing various operations on the control device side in the method examples described below.
  • FIG. 3A is a schematic structural diagram of a competition device according to an embodiment of the present invention.
  • the competition device may be the first competition device 120 or the second competition device 130 in FIG. Specifically:
  • the competition device 300 includes a control chip 310, a short-range wireless transmission module 320, and a laser emission group.
  • the short-range wireless transmission module 320 may be a WIFI (wireless fidelity) module, a Bluetooth module, or an infrared module.
  • the competition device 300 can transmit information through the short-range wireless transmission module 320 and the wireless transmission module corresponding to the control device 200.
  • the laser emitting component 330 can be a laser emitting tube disposed at the head of the competing device 300 for transmitting a laser carrier signal modulated by the laser modulating circuit 350.
  • the control chip 310 instructs the laser modulation circuit 350 to modulate the attack information into the laser carrier signal and transmit it through the laser transmitting component 330.
  • the laser receiving assembly 340 can be a laser receiving tube disposed at the end of the competing device 300 for receiving laser carrier signals transmitted by the other competing device 300 through the laser emitting assembly 330.
  • the control chip 310 After detecting that the laser receiving component 340 receives the laser carrier signal, the control chip 310 instructs the laser demodulating circuit 360 to demodulate the attack information from the laser carrier signal, and sends the attack information to the corresponding control through the short-range wireless transmission module 320.
  • Device 200 can be a laser receiving tube disposed at the end of the competing device 300 for receiving laser carrier signals transmitted by the other competing device 300 through the laser emitting assembly 330.
  • the control pins of the control chip 310 are connected to the distance wireless transmission module 320, the laser emitting component 330, the laser receiving component 340, the laser modulation circuit 350, and the laser demodulation circuit 360, respectively, to control the competition device 300.
  • Storage media employed by memory 370 include RAM, ROM, EPROM, EEPROM, flash memory or other solid state storage technologies, CD-ROM, DVD or other optical storage, tape cartridges, magnetic tape, magnetic disk storage or other magnetic storage devices, and the like.
  • One or more programs are stored in the memory 370, and the program is configured to be executed by the control chip 310.
  • the battle device 300 further includes a power source 380 (such as a battery) for supplying power to the various components.
  • a power source 380 (such as a battery) for supplying power to the various components.
  • the power source 380 can be logically connected to the control chip 310 through the power management system to manage charging, discharging, and power management through the power management system.
  • Power supply 380 may also include any one or more of a DC or AC power source, a recharging system, a power failure detection circuit, a power converter or inverter, a power status indicator, and the like.
  • the laser emitting circuit in the competition device can be as shown in FIG. 3B.
  • the PWM (Pulse Width Modulation) signal modulated by the control chip (ie, the control chip 310 in FIG. 3A) modulated by the control chip (ie, the control chip 310 in FIG. 3A) and having a duty ratio of 1:3 is amplified by the transistor Q1 and transmitted to the triode.
  • the attack information will be received by the combat device (through
  • the short-range wireless transmission module 320 in FIG. 3A receives) transmission to the transistor Q2 through a TXD (Transmit Data) pin.
  • TXD Transmit Data
  • the transistor Q2 is used to superimpose the PWM signal amplified by the transistor Q1 and the TXD pin to send attack information to obtain a pulse current of the superimposed signal, and send the pulse current to the laser transmitting tube DS1 (ie, the laser emitting component in FIG. 3A). 330).
  • the laser emission tube DS1 converts the pulse current of the superimposed signal into a laser carrier signal and transmits it. It should be noted that the user can adjust the transmission power of the laser transmitting tube DS1 by adjusting the resistance of the R5, thereby achieving the effect of controlling the transmission distance of the laser carrier signal.
  • the laser receiving circuit as shown in FIG. 3C needs to be provided in the competition device.
  • the internal laser demodulation circuit ie, the laser demodulation circuit 360 in FIG. 3A
  • demodulates the attack information carried in the laser carrier signal and sends the attack information to the attack information.
  • the control chip ie, the control chip 310 in FIG. 3A
  • the front side of the receiving side of the laser receiving component in the combat device may further include an astigmatism component, as shown in FIG. 3D. Laser receiving structure.
  • the laser receiving structure includes a astigmatism component 370 and at least one laser receiving component 340;
  • the astigmatism member 370 includes a light incident surface 3701 and a light exit surface 3702, and the astigmatism member 370 is a member for scattering laser light incident on the light incident surface 3701 and ejecting from the light exit surface 3702;
  • the light incident surface 3701 is opposite to the incident direction of the laser light
  • the receiving side 3401 of the at least one laser receiving component 340 is disposed opposite to the light emitting surface 3702.
  • the light-incident surface 3701 is a smooth surface
  • the light-emitting surface 3702 includes a convex structure arranged in an array
  • the convex structure is a tapered convex structure or a curved convex structure
  • astigmatism The parts are made of a light transmissive material.
  • the astigmatism member 370 includes a carrying portion 371 and a plurality of astigmatism portions 372 arranged on the carrying portion 371;
  • the bearing portion 371 includes a first surface and a second surface, the first surface and the second surface are parallel; the first surface is a light incident surface 3701 of the astigmatism member, and the bearing portion 3701 is connected to the plurality of astigmatism portions 372 through the second surface;
  • the astigmatism portion 372 includes a connection surface and a scattering surface; the astigmatism portion 372 passes through the connection surface and the carrier portion 371 The second surface is connected, and the scattering surface of the plurality of astigmatism portions 372 constitutes the light-emitting surface 3702 of the astigmatism member 370.
  • the bearing portion 371 is a rectangular parallelepiped, wherein the upper surface of the rectangular parallelepiped is a first surface and the lower surface is a second surface; the astigmatism portion 372 is a triangular prism, wherein the top surface ABC and the bottom surface abc of the triangular prism are equal.
  • the bearing portion 371 is a rectangular parallelepiped, wherein the upper surface of the rectangular parallelepiped is a first surface, and the lower surface is a second surface; the astigmatism portion 372 is a semi-cylindrical, and the semi-cylindrical rectangular cylinder is a connecting surface, a semi-cylindrical
  • the curved cylinder surface is a scattering surface, and the light-emitting surface 3702 formed by the scattering surface of the astigmatism portion 372 is a curved surface convex structure.
  • FIG. 4 shows a flowchart of an information processing method provided by an embodiment of the present invention. This embodiment is exemplified by applying the information processing method to the first control device 110 shown in FIG. 1.
  • the method includes:
  • Step 401 Receive attack information set by a user.
  • the attack information includes at least two attack parameters, including an attacker identifier, an attack type, an attack distance, a damage value, and an armor value.
  • Step 402 Send attack information to the first battle device, where the first battle device corresponds to the first control device; the first battle device is configured to modulate the attack information into the laser carrier signal by using a modulation circuit, and use the laser launch component to the second
  • the battle device transmits a laser carrier signal;
  • the second battle device is configured to receive the laser carrier signal through the laser receiving component, and demodulate the attack information from the laser carrier signal through the demodulation circuit, and send the attack information to the second control device;
  • the second control device is configured to determine, according to the attack information, an attack state of the second battle device, and send a feedback instruction to the second battle device, where the feedback command is used to indicate the attack state of the second battle device.
  • the information processing method provided in this embodiment sends attack information to the corresponding first combat device through the first control device, and the first battle device modulates the attack information into the laser carrier signal and transmits the received information.
  • the second battle device of the laser carrier signal sends the demodulated attack information to the corresponding second control device, and the second control device indicates that the second battle device is in the corresponding attack state according to the attack information;
  • the divergence angle of the laser is small and is very little affected by ambient light, which can significantly reduce the probability of misunderstanding caused by diffuse reflection.
  • FIG. 5 is a flowchart of an information processing method according to another embodiment of the present invention. This embodiment is exemplified by applying the information processing method to the first battle device 120 shown in FIG. 1.
  • the method includes:
  • Step 501 Receive attack information sent by the first control device, where the first control device corresponds to the first battle device.
  • the attack information includes at least two attack parameters, including an attacker identifier, an attack type, an attack distance, a damage value, and an armor value.
  • Step 502 Modulate the attack information into the laser carrier signal by using a modulation circuit, and use the laser emitting component to transmit the laser carrier signal to the second competition device;
  • the second competition device is configured to receive the laser carrier signal through the laser receiving component, and demodulate The circuit demodulates the attack information from the laser carrier signal, and sends the attack information to the second control device;
  • the second control device is configured to determine the attack state of the second battle device according to the attack information, and send a feedback instruction to the second battle device.
  • the feedback instruction is used to indicate the attack status of the second competition device.
  • the information processing method provided in this embodiment sends attack information to the corresponding first combat device through the first control device, and the first battle device modulates the attack information into the laser carrier signal and transmits the received information.
  • the second battle device of the laser carrier signal sends the demodulated attack information to the corresponding second control device, and the second control device indicates that the second control device is in the corresponding attack state according to the attack information;
  • the existing attack device has a single attack form and a high probability of a false hit.
  • the attack information is transmitted by the laser carrier signal between the battle devices, and is carried. The larger the amount of data, enriches the attack form of the combat equipment; in addition, the laser's divergence angle is small and is very little affected by ambient light, which can significantly reduce the probability of misunderstanding caused by diffuse reflection.
  • FIG. 6 is a flowchart of an information processing method according to still another embodiment of the present invention. This embodiment is exemplified by applying the information processing method to the second battle device 130 shown in FIG. 1.
  • the method includes:
  • Step 601 Receive, by the laser receiving component, a laser carrier signal sent by the first competition device.
  • the laser carrier signal is that after the first combat device receives the attack information sent by the first control device, the attack information is modulated into the laser carrier signal by using a modulation circuit. And using a laser emitting component to emit;
  • the attack information includes at least two attack parameters, including an attacker identifier, an attack type, an attack distance, a damage value, and an armor value.
  • Step 602 Demodulate attack information from the laser carrier signal by using a demodulation circuit, and send the attack information to the second control device.
  • Step 603 Receive a feedback instruction sent by the second control device according to the attack information, where the feedback instruction is used to indicate an attack state of the second competition device.
  • the information processing method provided in this embodiment sends attack information to the corresponding first combat device through the first control device, and the first battle device modulates the attack information into the laser carrier signal and transmits the received information.
  • the second battle device of the laser carrier signal sends the demodulated attack information to the corresponding second control device, and the second control device indicates that the second control device is in the corresponding attack state according to the attack information;
  • the existing attack device has a single attack form and a high probability of a false hit.
  • the attack information is transmitted by the laser carrier signal between the battle devices, and is carried. The larger the amount of data, enriches the attack form of the combat equipment; in addition, the laser's divergence angle is small and is very little affected by ambient light, which can significantly reduce the probability of misunderstanding caused by diffuse reflection.
  • FIG. 7 is a flowchart of an information processing method according to still another embodiment of the present invention. This embodiment is exemplified by applying the information processing method to the second control device 140 shown in FIG. 1.
  • the method includes:
  • Step 701 Receive attack information sent by the second battle device, where the attack information is demodulated from the laser carrier signal by the demodulation circuit, and the laser carrier signal is sent by the first control device to the first control device. Attack information, modulated by the modulation circuit, and then transmitted by the laser emitting component;
  • the attack information includes at least two attack parameters, including an attacker identifier, an attack type, an attack distance, a damage value, and an armor value.
  • Step 702 Determine, according to the attack information, an attack state of the second competition device.
  • Step 703 Send a feedback instruction to the second competition device, where the feedback instruction is used to indicate the attack status of the second competition device.
  • the information processing method provided in this embodiment sends attack information to the corresponding first combat device through the first control device, and the first battle device modulates the attack information into the laser carrier signal and transmits the received information.
  • the second battle device of the laser carrier signal sends the demodulated attack information to the corresponding second control device, and the second control device indicates that the second control device is in the corresponding attack state according to the attack information;
  • the existing attack device has a single attack form and a high probability of a false hit.
  • the attack information is transmitted by the laser carrier signal between the battle devices, and is carried. The larger the amount of data, enriches the attack form of the combat equipment; in addition, the laser's divergence angle is small and is very little affected by ambient light, which can significantly reduce the probability of misunderstanding caused by diffuse reflection.
  • FIG. 8A is a flowchart of an information processing method according to still another embodiment of the present invention. This embodiment is exemplified by applying the information processing method to the implementation environment shown in FIG. 1.
  • the method includes:
  • Step 801 The first control device receives the attack information set by the user.
  • control program An application for controlling the competition device (hereinafter referred to as "control program") is installed in the first control device, and is bound to the first competition device in advance.
  • control program An application for controlling the competition device (hereinafter referred to as "control program") is installed in the first control device, and is bound to the first competition device in advance.
  • a Bluetooth module is installed in the first control device and the first battle device, and the first control device opens the control program and inputs the Bluetooth address of the first battle device, that is, the first battle device is tied. And transfer information via Bluetooth.
  • the first control device When the first control device controls the first competition device to use the control program, the first control device receives the attack information set by the user. As a possible implementation manner, after the first control device is bound to the first competition device, the attack mode in which the first competition device can launch an attack is displayed. The first control device determines the attack information corresponding to the attack mode according to the attack mode selected by the user, where the attack information may include information such as an attack type, a damage value, and an attack speed.
  • the attack mode 83 in which the first competition device 82 can launch an attack is displayed, and the user selection is received.
  • Step 802 The first control device sends the attack information to the first competition device, where the first competition device corresponds to the first control device.
  • the first control device After receiving the attack information set by the user, the first control device sends the attack information to the first competition device through a connection with the first competition device.
  • Step 803 The first competition device receives the attack information sent by the first control device.
  • the first battle device receives the attack information sent by the first control device by using the connection.
  • Step 804 The first battle device modulates the attack information into the laser carrier signal by using a modulation circuit, and sends the laser carrier signal to the second competition device by using the laser transmitting component.
  • the first battle device After receiving the attack information, the first battle device knows that it needs to launch an attack on other combat devices.
  • the existing battle equipment sends an attack command through infrared to simulate the battle, but because the amount of data that the infrared can carry is small, the attack command sent by the battle device can only indicate the attack device and cannot carry more attack information;
  • the first battle device provided by the embodiment of the present invention is equipped with a laser modulation circuit.
  • the first battle device can modulate the attack information into the laser carrier signal through the laser modulation circuit, and perform the laser emission component. emission.
  • the amount of data that the laser carrier signal can carry is greatly increased, so that the laser carrier signal can carry more attack information.
  • the modulated laser carrier signal can carry the device identification, attack type, and attack of the first battle device. Distance and more.
  • the laser emitting component when the laser emitting component emits the laser carrier signal, it is usually emitted directly in front of the laser emitting component. Accordingly, only the laser receiving component directly in front of the laser emitting component can receive the laser carrier signal, as described below.
  • the laser receiving component received by the laser receiving component on the second battle device is taken as an example for description.
  • Step 805 The second competition device receives the laser carrier signal sent by the first competition device through the laser receiving component.
  • the laser carrier signal transmitted by the first competition device through the laser emission component is received by the laser receiving component on the second competition device.
  • Step 806 The second battle device demodulates the attack information from the laser carrier signal by using a demodulation circuit, and sends the attack information to the second control device.
  • the second battle device After receiving the laser carrier signal, the second battle device is aware that it has been attacked by other combat devices. Corresponding to the laser modulation circuit, a laser demodulation circuit for demodulating attack information from the laser modulation signal is installed in the second competition device. After receiving the laser carrier signal, the second battle device demodulates the attack information carried in the laser carrier signal by the laser demodulation circuit, and sends the attack information to the corresponding second control device.
  • a wireless connection is also established between the second battle device and the second control device, and the second battle device sends the second control device to the second control device through the wireless connection. Demodulated attack information.
  • Step 807 The second control device receives the attack information sent by the second competition device.
  • Step 808 The second control device determines, according to the attack information, an attack status of the second competition device.
  • the second control device After receiving the attack information, the second control device indicates the damage value caused by the attack according to the current device state and the attack information of the second battle device, and determines the attack state of the second battle device.
  • Step 809 The second control device sends a feedback instruction to the second competition device, where the feedback instruction is used to indicate the attack status of the second competition device.
  • the second control device sends a corresponding feedback instruction to the second competition device according to the determined attack state, where the feedback instruction is used to indicate that the second competition device is in a corresponding attack state, and the feedback instruction is also passed through the second control device.
  • the wireless connection between the two battle devices is sent.
  • the second control device may also obtain the device identifier and display it on the display interface, so that the user can know which attack device is attacked, and Interact with the user with the corresponding sound and vibration.
  • Step 810 The second competition device receives a feedback instruction sent by the second control device.
  • the attack state indicated by the feedback instruction is determined, and the corresponding operation is performed according to the determined attack state.
  • the attack state of the battle device includes the damage state.
  • the damaged state when the attacked state indicated by the feedback instruction is the damaged state, step 811 is performed; when the attacked state indicated by the feedback instruction is the damaged state, step 812 is performed.
  • Step 811 When the attacked state indicated by the feedback instruction is a damaged state, after the damaged state, the second combat device stops playing.
  • the game is stopped.
  • the connection between the second battle device and the second control device is disconnected, and the second control device cannot Control the second battle equipment.
  • Step 812 When the attacked state indicated by the feedback instruction is in a damaged state, after the damaged state, the second combat device stops playing against the predetermined duration and then re-combats.
  • the predetermined duration may be set by the user, or may be automatically set by the second control device according to the damage of the second battle device, which is not limited by the present invention.
  • the second battle device may also simulate an action such as tipping over after the attack, or issue a corresponding sound effect, which is not limited by the present invention.
  • the information processing method provided in this embodiment sends attack information to the corresponding first combat device through the first control device, and the first battle device modulates the attack information into the laser carrier signal and transmits the received information.
  • the second battle device of the laser carrier signal sends the demodulated attack information to the corresponding second control device, and the second control device indicates that the second control device is in the corresponding attack state according to the attack information;
  • the existing attack device has a single attack form and a high probability of a false hit.
  • the attack information is transmitted by the laser carrier signal between the battle devices, and is carried. The larger the amount of data, enriches the attack form of the combat equipment; in addition, the laser's divergence angle is small and is very little affected by ambient light, which can significantly reduce the probability of misunderstanding caused by diffuse reflection.
  • control device determines, according to the attack information sent by the combat device and the current device state of the combat device, the attack state after the attack device is attacked, and sends a corresponding feedback instruction to the combat device, thereby implementing the battle device and Controlling the interaction between devices increases the authenticity of the battle.
  • the attack information received by the second control device carries the attack type and the attack distance.
  • the foregoing step 808 may include the following sub-steps.
  • step 808a the second control device determines the damage value according to the type of attack.
  • the second control device obtains the attack type carried in the attack information, and determines the damage value of the damage according to the attack type.
  • the second control device may pre-store the corresponding relationship between different attack types and the damage value, and the corresponding relationship may be The schematic is shown in Table 1.
  • the first control device may also add the damage value to the attack information, that is, the second control device may directly obtain the damage value, and no longer needs to perform the search according to the damage type, which is not limited by the embodiment of the present invention.
  • step 808b the second control device uses the attack distance to attenuate the damage value.
  • the attack information sent by the first control device further carries an attack distance, where the attack distance may be a distance that the first battle device acquires from the front combat device through the infrared ranging device.
  • the second control device attenuates the damage value determined in the above step 808a according to the attack distance, thereby achieving a more realistic simulation effect.
  • the second control device searches for a corresponding damage attenuation formula according to the attack type carried in the attack information, and the correspondence between the attack type and the damage attenuation formula can be schematically shown in Table 2.
  • M 1 is the damage value corresponding to the machine gun
  • N 1 is the damage attenuation coefficient corresponding to the machine gun
  • M 2 is the damage value corresponding to the missile
  • N 2 is the damage attenuation coefficient corresponding to the missile
  • M 3 is the damage value corresponding to the cannon
  • N 3 is the damage attenuation coefficient corresponding to the cannon
  • L is the attack distance
  • the second control device brings the damage value and the attack distance into the corresponding damage attenuation formula, and calculates the damage value after the attenuation correction.
  • the second control device may further correct according to the defense value of the second battle device, as a possible implementation manner, when the defense value is the armor value, the first The second control device acquires the armor value of the second battle device, calculates a corresponding damage reduction percentage according to the armor value, and uses the damage reduction percentage to perform the damage reduction calculation on the damage value.
  • Step 808c The second control device determines, according to the corrected damage value and the current device state of the second competition device, the attack state of the second competition device.
  • step 808c can include the following sub-steps.
  • step 808c1 it is detected whether the corrected damage value is greater than the current life value included in the current device state.
  • the second control device detects whether the damage value obtained through the above step 808b is greater than the current life value of the maintenance. When the damage value is greater than the current life value, step 808c2 is performed; when the damage value is less than the current life value, step 808c3 is performed.
  • step 808c2 when the corrected damage value is greater than the current life value, it is determined that the second battle device is in a damaged state.
  • the corrected damage value is greater than the current life value, after updating the current life value using the damage value, the updated current life value will be less than 0, indicating that the second battle device has been damaged, and the second battle device should be in a damaged state.
  • step 808c3 when the corrected damage value is less than the current life value, it is determined that the second battle device is in a damaged state.
  • the corrected damage value is less than the current life value, after updating the current life value using the damage value, the updated current life value will be greater than 0, indicating that the second battle device can continue to play, and the second battle device should be subject to Damage status.
  • the foregoing step 802 may further include the following steps.
  • Step 815 The first control device sends an aiming instruction to the first combat device when receiving the continuous trigger signal.
  • the first control device After receiving the attack information set by the user, the first control device detects whether a persistent trigger signal is received, and the persistent trigger signal may be triggered when the user presses a physical button or a virtual button on the first control device. When receiving the continuous trigger signal, the first control device sends an aiming command to the first combat device.
  • the first control device 81 displays a corresponding aiming button 84 on the interface.
  • the first control device receives the continuous trigger signal and sends an aiming command to the first combat device 82.
  • Step 816 The first competition device receives an aiming instruction sent by the first control device, where the aiming command is sent by the first control device when receiving the continuous trigger signal.
  • the first competition device receives the aiming instruction sent by the first control device.
  • Step 817 after receiving the aiming instruction, the first battle device emits visible through the laser emitting component. Aiming at the laser.
  • the first battle device After receiving the aiming command, the first battle device transmits the aiming laser visible to the human eye forward through the laser emitting component. It should be noted that since the aiming laser only serves as an aiming, it is not required to be modulated by the laser modulation circuit.
  • the first combat device 82 transmits the aiming laser through the laser emitting unit disposed at the front end.
  • Step 818 when detecting that the persistent trigger signal ends, the first control device sends the attack information to the first competition device.
  • the first control device When the end of the continuous trigger signal is detected, indicating that the aiming is completed, the first control device sends the attack information to the first combat device.
  • the first control device may send the attack information together with the aiming command to the first battle device, so that the first battle device can perform the modulation of the laser carrier signal in the aiming state.
  • the first control device detects the end of the continuous pressing signal, the first aiming device sends a stop aiming command, and after receiving the stop aiming command, the first playing device transmits the modulated laser carrier signal through the laser transmitting component.
  • the control device when receiving the continuous trigger signal, the control device sends an aiming instruction indicating that it launches the aiming laser to the combat device, so that the aiming device can perform aiming before the attack, so that the attack target is more clear and the battle effect is more realistic.
  • the non-directional attack or the directional attack can be performed between the competing devices provided by the embodiments of the present invention.
  • the non-directional attack is adopted, since the volume of the combat device is usually small, there is a certain miss probability; when the directional attack is used, the competing device can Attacks against a specified target combat device and is guaranteed to achieve a 100% hit rate.
  • an exemplary embodiment is used to describe a directed attack.
  • the present embodiment uses a specified target combat device as a second combat device as an example.
  • Step 819 The first control device detects whether the attack information carries the device identifier of the second competition device.
  • the control program in the first control device can provide two attack modes, namely, a directed attack and a non-directional attack, for the user to select.
  • a directed attack When the user selects the non-directional attack, the attack information received by the first control device does not carry the device of the target combat device.
  • a directed attack When the user selects a directed attack, the user needs to select a corresponding target combat device, and the attack information received by the first control device carries the target combat device.
  • Equipment Identity Equipment Identity
  • the first control device After receiving the attack information, the first control device detects whether the attack information carries the device identifier of the target competition device.
  • the target battle device is used as the second battle device as an example.
  • the following steps 820 to 822 are performed; when the detection of the attack information does not carry the device identifier of the second competition device, the above steps 802 to 812 are performed.
  • Step 820 When the attack information carries the device identifier of the second competition device, the first control device searches for the corresponding second control device according to the device identifier of the second competition device.
  • the attack information When the attack information carries the device identifier of the second battle device, the first control device determines that the attack is a directed attack. Correspondingly, the attack information is directed attack information.
  • a wireless or wired connection is established in advance between each control device that performs the competition, and each device control device stores the device identifier of the other control device and the device identifier of the corresponding competition device. As shown in Table 3, the device identifier of the other control device and the device identifier of the corresponding competition device are stored in the first control device.
  • Control device identifier Device identification of the combat device Control device 2 Battle equipment 2 Control device 3 Battle equipment 3 Control device 4 Battle equipment 4
  • the first control device can find the device identifier of the corresponding second control device according to the device identifier of the second competition device.
  • Step 821 The first control device sends the attack information to the second control device by using a connection established in advance with the second control device.
  • the first control device directly sends the attack information (that is, the directed attack information) to the second control device according to the device identifier of the second control device.
  • Step 822 The second control device receives the attack information sent by the first control device through the pre-established connection.
  • the second control device receives the attack information sent by the first control device by using the connection.
  • the second control device determines, according to the attack information, the attack status of the second competition device, and sends a feedback instruction to the second competition device, indicating that the second competition device is in the corresponding attack state.
  • the second battle device receives the feedback command sent by the second control device, and the second battle device performs a corresponding operation according to the attack state indicated by the feedback instruction.
  • control device can not only control the non-directional attack of the combat device, but also designate the target combat device to perform a directed attack, enriching the attack form of the combat device, thereby improving system performance.
  • FIG. 9 is a structural block diagram of an information processing apparatus according to an embodiment of the present invention.
  • the information processing apparatus has a function of implementing the first control device side in the above method example, and the function may be implemented by hardware, or may be implemented by hardware by executing corresponding software.
  • the information processing apparatus includes a first information receiving module 910 and a first information sending module 920.
  • the first information receiving module 910 is configured to receive attack information set by a user.
  • the first information sending module 920 is configured to send the attack information to the first competition device, where the first competition device corresponds to the first control device; the first competition device is configured to use the modulation circuit to perform the attack The information is modulated into the laser carrier signal and the laser carrier signal is transmitted to the second combat device using the laser emitting component; the second combat device is configured to receive the laser carrier signal through the laser receiving component and pass the demodulation circuit from The attack information is demodulated in the laser carrier signal, and the attack information is sent to the second control device; the second control device is further configured to determine, according to the attack information, the received by the second battle device And the feedback command is used to send a feedback instruction to the second competition device, where the feedback instruction is used to indicate the attack status of the second competition device.
  • the information processing apparatus sends attack information to the corresponding first combat device through the first control device, and the first battle device modulates the attack information into the laser carrier signal and transmits the received information.
  • the second battle device of the laser carrier signal sends the demodulated attack information to the corresponding second control device, and the second control device indicates that the second control device is in the corresponding attack state according to the attack information;
  • the existing attack device has a single attack form and a high probability of a false hit.
  • the attack information is transmitted by the laser carrier signal between the battle devices, and is carried. The larger the amount of data, enriches the attack form of the combat equipment; in addition, the laser's divergence angle is small and is very little affected by ambient light, which can significantly reduce the probability of misunderstanding caused by diffuse reflection.
  • FIG. 10 is a structural block diagram of an information processing apparatus according to another embodiment of the present invention.
  • the information processing apparatus has a function of implementing the first battle device side in the above method example, and the function may be implemented by hardware or may be implemented by hardware corresponding software.
  • the information processing apparatus includes a second information receiving module 1010 and a first signal transmitting module 1020.
  • the second information receiving module 1010 is configured to receive attack information sent by the first control device, where the first control device corresponds to the first competition device.
  • a first signal sending module 1020 configured to modulate the attack information into a laser carrier signal by using a modulation circuit, and use the laser emitting component to transmit the laser carrier signal to a second competition device;
  • the second battle device is configured to pass Receiving, by the laser receiving component, the laser carrier signal, and demodulating the attack information from the laser carrier signal by a demodulation circuit, and transmitting the attack information to a second control device;
  • the second control device is configured to The attack information determines an attack state of the second battle device, and sends a feedback instruction to the second battle device, where the feedback command is used to indicate an attack state of the second battle device.
  • the information processing apparatus sends attack information to the corresponding first combat device through the first control device, and the first battle device modulates the attack information into the laser carrier signal and transmits the received information.
  • the second battle device of the laser carrier signal sends the demodulated attack information to the corresponding second control device, and the second control device indicates that the second control device is in the corresponding attack state according to the attack information;
  • the existing attack device has a single attack form and a high probability of a false hit.
  • the attack information is transmitted by the laser carrier signal between the battle devices, and is carried. The larger the amount of data, enriches the attack form of the combat equipment; in addition, the laser's divergence angle is small and is very little affected by ambient light, which can significantly reduce the probability of misunderstanding caused by diffuse reflection.
  • FIG. 11 is a structural block diagram of an information processing apparatus according to still another embodiment of the present invention.
  • the information processing apparatus has a function of implementing the second battle device side in the above method example, and the function may be implemented by hardware, or may be implemented by hardware corresponding software.
  • the information processing apparatus includes a first signal receiving module 1110, a third information transmitting module 1120, and a second command receiving module 1130.
  • the first signal receiving module 1110 is configured to receive, by the laser receiving component, a laser carrier signal sent by the first competition device, where the laser carrier signal is modulated by the first competition device after receiving the attack information sent by the first control device
  • the circuit modulates the attack information into a laser carrier signal and Emitted by a laser emitting component
  • the third information sending module 1120 is configured to demodulate the attack information from the laser carrier signal by using a demodulation circuit, and send the attack information to a second control device;
  • the second instruction receiving module 1130 is configured to receive a feedback instruction sent by the second control device according to the attack information, where the feedback instruction is used to indicate an attack state of the second competition device.
  • the information processing apparatus sends attack information to the corresponding first combat device through the first control device, and the first battle device modulates the attack information into the laser carrier signal and transmits the received information.
  • the second battle device of the laser carrier signal sends the demodulated attack information to the corresponding second control device, and the second control device indicates that the second control device is in the corresponding attack state according to the attack information;
  • the existing attack device has a single attack form and a high probability of a false hit.
  • the attack information is transmitted by the laser carrier signal between the battle devices, and is carried. The larger the amount of data, enriches the attack form of the combat equipment; in addition, the laser's divergence angle is small and is very little affected by ambient light, which can significantly reduce the probability of misunderstanding caused by diffuse reflection.
  • FIG. 12 is a structural block diagram of an information processing apparatus according to another embodiment of the present invention.
  • the information processing apparatus has a function of implementing the second control device side in the above method example, and the function may be implemented by hardware, or may be implemented by hardware by executing corresponding software.
  • the information processing apparatus includes a third information receiving module 1210, a state determining module 1220, and a second command sending module 1230.
  • the third information receiving module 1210 is configured to receive attack information sent by the second competition device, where the attack information is demodulated from the laser carrier signal by the demodulation circuit, where the laser carrier signal is
  • the first battle device receives the attack information sent by the first control device, and modulates the attack information by using a modulation circuit, and then uses the laser transmitting component to transmit.
  • the state determining module 1220 is configured to determine, according to the attack information, an attack state of the second competition device.
  • the second instruction sending module 1230 is configured to send a feedback instruction to the second competition device, where the feedback instruction is used to indicate the attack status of the second competition device.
  • the information processing apparatus sends attack information to the corresponding first combat device through the first control device, and the first battle device modulates the attack information into the laser carrier signal and transmits the received information.
  • the second playing device of the laser carrier signal sends the demodulated attack information to the corresponding second control device, and the second control device indicates, according to the attack information, that the second control device is Corresponding attack state; solving the problem that the battle device has a single attack form and a high probability of a false hit in the prior art; compared with the traditional infrared transmission attack command, in the embodiment of the present invention, the battle device passes
  • the laser carrier signal transmits the attack information, which carries a larger amount of data and enriches the attack form of the combat device.
  • the divergence angle of the laser is small and is affected by the ambient light is very small, which can significantly reduce the probability of misunderstanding caused by diffuse reflection. .
  • FIG. 13 is a schematic structural diagram of an information processing system according to an embodiment of the present invention.
  • the information processing system includes: a first control device 900, a first competition device 1000, a second competition device 1100, and a second control device 1200.
  • the first control device 900 includes: a first information receiving module 910 and a first information sending module 920.
  • the first information receiving module 910 is configured to receive attack information set by a user.
  • the first information sending module 920 is configured to send the attack information to the first competition device 1000, where the first competition device 1000 corresponds to the first control device 900; the first competition device 1000 is used to pass the modulation circuit. Modulating the attack information into a laser carrier signal and transmitting the laser carrier signal to a second combat device 1100 using a laser emitting component; the second combat device 1100 is configured to receive the laser carrier signal through a laser receiving component, And the demodulating circuit demodulates the attack information from the laser carrier signal, and sends the attack information to the second control device 1200.
  • the second control device 1200 is further configured to determine, according to the attack information, the The attacked state of the second battle device 1100 sends a feedback command to the second battle device 1100, where the feedback command is used to indicate the attack state of the second competition device 1100.
  • the first control device 900 further includes: a first instruction sending module 930.
  • a first instruction sending module 930 configured to send an aiming instruction to the first competing device 1000 when receiving the persistent triggering signal; the first competing device 1000 is configured to, after receiving the aiming instruction, pass the The laser emitting assembly emits a visible aiming laser.
  • the first information sending module 920 is configured to send the attack information to the first competition device 1000 when detecting that the persistent trigger signal ends.
  • the attack information carries the device identifier of the second competition device 1100.
  • the first control device 900 further includes: a searching module 940 and a second information sending module 950.
  • the searching module 940 is configured to search for the corresponding second control device 1200 according to the device identifier of the second competition device 1100 when the device information of the second competition device 1100 is carried in the attack information.
  • the second information sending module 950 is configured to send the attack information to the second control device 1200 by using a connection established in advance with the second control device 1200.
  • the first battle device 1000 includes a second information receiving module 1010 and a first signal sending module 1020.
  • the second information receiving module 1010 is configured to receive attack information sent by the first control device 900, where the first control device 900 corresponds to the first competition device 1000.
  • the first signal sending module 1020 is configured to modulate the attack information into a laser carrier signal by using a modulation circuit, and transmit the laser carrier signal to the second competition device 1100 by using a laser transmitting component; Receiving the laser carrier signal through a laser receiving component, and demodulating the attack information from the laser carrier signal by a demodulation circuit, and transmitting the attack information to a second control device 1200; the second control device The 1200 is configured to determine, according to the attack information, an attack status of the second competition device 1100, and send a feedback instruction to the second competition device 1100, where the feedback instruction is used to indicate the second competition device 1100.
  • the attacked state at the location.
  • the first competition device 1000 further includes: a first instruction receiving module 1030 and a transmitting module 1040.
  • the first instruction receiving module 1030 is configured to receive an aiming instruction sent by the first control device 900, where the aiming instruction is sent by the first control device 900 when receiving a continuous trigger signal.
  • the transmitting module 1040 is configured to emit a visible aiming laser through the laser emitting component after receiving the aiming instruction.
  • the second battle device 1100 includes a first signal receiving module 1110, a third information transmitting module 1120, and a second command receiving module 1130.
  • the first signal receiving module 1110 is configured to receive, by the laser receiving component, the laser carrier signal sent by the first competition device 1000; the laser carrier signal is after the first competition device 1000 receives the attack information sent by the first control device 900.
  • the attack information is modulated into a laser carrier signal by a modulation circuit and transmitted using a laser emitting component.
  • the third information sending module 1120 is configured to demodulate the attack information from the laser carrier signal by using a demodulation circuit, and send the attack information to the second control device 1200.
  • the second instruction receiving module 1130 is configured to receive a feedback instruction sent by the second control device 1200 according to the attack information, where the feedback instruction is used to indicate an attack state of the second competition device 1100.
  • the attacked state includes a damaged state and a damaged state.
  • the second battle device 1100 further includes: a first battle module 1140 and a second battle module 1150.
  • the first battle module 1140 is configured to stop the game after being in the damaged state when the attacked state indicated by the feedback instruction is the damaged state.
  • the second battle module 1150 is configured to: when the attacked state indicated by the feedback instruction is the damaged state, after being in the damaged state, stop the competition for a predetermined period of time and then re-play the game.
  • the second control device 1200 includes a third information receiving module 1210, a state determining module 1220, and a second command sending module 1230.
  • the third information receiving module 1210 is configured to receive attack information sent by the second competition device 1100, where the attack information is demodulated by the second competition device 1100 from a laser carrier signal by using a demodulation circuit, where the laser carrier
  • the signal is that the first battle device 1000 receives the attack information sent by the first control device 900, and the attack information is modulated by the modulation circuit, and then transmitted by using the laser transmitting component.
  • the state determining module 1220 is configured to determine, according to the attack information, an attack state of the second competition device 1100.
  • the second instruction sending module 1230 is configured to send a feedback instruction to the second competition device 1100, where the feedback instruction is used to indicate the attack status of the second competition device 1100.
  • the attack information carries an attack type and an attack distance.
  • the state determining module 1220 includes: a value determining unit, a value correcting unit, and a state determining unit (not shown).
  • the value determining unit is configured to determine the damage value according to the attack type.
  • a numerical value correcting unit is configured to perform attenuation correction on the damage value using the attack distance.
  • the state determining unit is configured to determine the attack state of the second competition device 1100 according to the modified damage value and the current device state of the second competition device 1100.
  • the state determining unit is configured to: detect whether the corrected damage value is greater than a current vital value included in the current device state; and when the corrected damage value is greater than the current vital value Determining that the second battle device 1100 is in a damaged state; when the corrected damage value is less than the current life value, determining that the second competition device 1100 is in a damaged state.
  • the attack information carries the device identifier of the second competition device 1100.
  • the second control device 1200 further includes: a fourth information receiving module 1240.
  • the fourth information receiving module 1240 is configured to receive the pre-established by the first control device 900.
  • the attack information is sent, and the attack information is sent by the first control device 900 after detecting that the attack information set by the user carries the device identifier of the second competition device 1100.
  • the attack information carries the device identifier of the first competition device 1000.
  • the second control device 1200 further includes: a display module 1250.
  • the display module 1250 is configured to obtain the device identifier of the first competition device 1000 carried in the attack information, and display the device identifier of the first competition device 1000 on the display interface.
  • the information processing system sends attack information to the corresponding first battle device through the first control device, and the first battle device modulates the attack information into the laser carrier signal and transmits the received information.
  • the second battle device of the laser carrier signal sends the demodulated attack information to the corresponding second control device, and the second control device indicates that the second control device is in the corresponding attack state according to the attack information;
  • the existing attack device has a single attack form and a high probability of a false hit.
  • the attack information is transmitted by the laser carrier signal between the battle devices, and is carried. The larger the amount of data, enriches the attack form of the combat equipment; in addition, the laser's divergence angle is small and is very little affected by ambient light, which can significantly reduce the probability of misunderstanding caused by diffuse reflection.
  • the control device when receiving the continuous trigger signal, the control device sends an aiming instruction indicating that it launches the aiming laser to the combat device, so that the aiming device can perform aiming before the attack, so that the trajectory target is more clear and the battle effect is more realistic.
  • control device determines, according to the attack information sent by the combat device and the current device state of the combat device, the attack state after the attack device is attacked, and sends a corresponding feedback instruction to the combat device, thereby implementing the battle device and Controlling the interaction between devices increases the authenticity of the battle.
  • control device can not only control the non-directional attack of the combat device, but also designate the target combat device to perform a directed attack, enriching the attack form of the combat device, thereby improving system performance.
  • the information processing apparatus provided by the foregoing embodiment is only illustrated by the division of each functional module.
  • the function distribution may be completed by different functional modules according to requirements, that is, the first control device.
  • the internal structures of the first battle device, the second battle device, and the second control device are divided into different functional modules to complete all or part of the functions described above.
  • the information processing apparatus provided in the above embodiment is the same concept as the information processing method embodiment. For details of the implementation process, refer to the method embodiment, which is not described here.
  • a non-transitory computer readable storage medium comprising instructions, such as a memory comprising instructions executable by a processor of a first control device to perform the first of the above method embodiments Controlling the various steps of the device side, or the above instructions may be executed by the processor of the second control device to complete the steps of the second control device side in the above method embodiment, or the instructions may be executed by the control chip of the first combat device to complete the above The steps of the first battle device side in the method embodiment, or the above instructions may be executed by the control chip of the second battle device to complete the steps of the second battle device side in the foregoing method embodiment.
  • the non-transitory computer readable storage medium may be a ROM, a random access memory (RAM), a CD-ROM, a magnetic tape, a floppy disk, and an optical data storage device.
  • a plurality as referred to herein means two or more.
  • "and/or” describing the association relationship of the associated objects, indicating that there may be three relationships, for example, A and/or B, which may indicate that there are three cases where A exists separately, A and B exist at the same time, and B exists separately.
  • the character "/" generally indicates that the contextual object is an "or" relationship.
  • a person skilled in the art may understand that all or part of the steps of implementing the above embodiments may be completed by hardware, or may be instructed by a program to execute related hardware, and the program may be stored in a computer readable storage medium.
  • the storage medium mentioned may be a read only memory, a magnetic disk or an optical disk or the like.

Abstract

一种信息处理系统、方法及装置,属于数据传输领域。所述系统包括:第一控制设备(110),用于向第一对战设备(120)发送攻击信息;第一对战设备(120),用于通过调制电路(350)将攻击信息调制到激光载波信号中,并使用激光发射组件(330)发射激光载波信号;第二对战设备(130),用于通过激光接收组件(340)接收激光载波信号,并通过解调电路(360)从激光载波信号中解调出攻击信息,并向第二控制设备(140)发送攻击信息;第二控制设备(140),用于根据攻击信息确定第二对战设备(130)所处的受攻击状态,向第二对战设备(130)发送反馈指令,反馈指令用于指示第二对战设备(130)所处的受攻击状态。所述信息处理系统、方法及装置解决了现有的对战设备攻击形式单一,且误命中概率较高的问题。

Description

信息处理系统、方法及装置
本申请要求于2015年10月19日提交中国专利局、申请号为201510682729.6、发明名称为“信息处理系统、方法及装置”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
本发明实施例涉及数据传输领域,特别涉及一种信息处理系统、方法及装置。
背景技术
随着遥控技术的发展,人们可以使用专用的无线电遥控器控制对战设备进行对战。对战设备可以是智能对战玩具车、智能对战玩具飞机等。
用户使用专用的无线电遥控器控制对战设备之间进行对战时,通过按压无线电遥控器上指定的按键,触发无线电遥控器向对应的对战设备发送攻击指令,对战设备接收到攻击指令后,通过发射红外线模拟攻击。其他对战设备接收到该红外线后,自动模拟受到攻击时的状态,做出翻倒、停止等动作。
由于无线电遥控器向对战设备发送的是单一的攻击指令,导致对战设备的攻击形式单一,且受到攻击的对战设备只能根据预定逻辑自动执行简单的预定动作,导致模拟对战效果不佳;另外,由于红外线散射较强,对战设备之间通过红外线模拟攻击,误命中的概率较高。
发明内容
为了解决上述技术中存在的问题,本发明实施例提供了一种信息处理系统、方法及装置。所述技术方案如下:
根据本发明实施例的第一方面,提供一种信息处理系统,该系统中包括至少两个对战设备和每个对战设备各自对应的控制设备;
第一控制设备,用于向第一对战设备发送攻击信息;
第一对战设备,用于通过调制电路将攻击信息调制到激光载波信号中,并 使用激光发射组件发射该激光载波信号;
第二对战设备,用于通过激光接收组件接收该激光载波信号,并通过解调电路从激光载波信号中解调出攻击信息;向第二控制设备发送该攻击信息;
所述第二控制设备,用于根据攻击信息确定第二对战设备所处的受攻击状态;向第二对战设备发送反馈指令,反馈指令用于指示第二对战设备所处的受攻击状态。
根据本发明实施例的第二方面,提供一种信息处理方法,用于第一控制设备,所述方法包括:
接收用户设置的攻击信息;
向第一对战设备发送该攻击信息,第一对战设备与第一控制设备对应;第一对战设备用于通过调制电路将攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备发射激光载波信号;第二对战设备用于通过激光接收组件接收激光载波信号,并通过解调电路从激光载波信号中解调出攻击信息,向第二控制设备发送该攻击信息;第二控制设备用于根据攻击信息确定所述第二对战设备所处的受攻击状态,向第二对战设备发送反馈指令,反馈指令用于指示第二对战设备所处的受攻击状态。
根据本发明实施例的第三方面,提供一种信息处理方法,用于第一对战设备,所述方法包括:
接收第一控制设备发送的攻击信息,第一控制设备与第一对战设备对应;
通过调制电路将攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备发射激光载波信号;第二对战设备用于通过激光接收组件接收激光载波信号,并通过解调电路从激光载波信号中解调出攻击信息,向第二控制设备发送该攻击信息;第二控制设备用于根据该攻击信息确定第二对战设备所处的受攻击状态,向第二对战设备发送反馈指令,反馈指令用于指示第二对战设备所处的受攻击状态。
根据本发明实施例的第四方面,提供一种信息处理方法,用于第二对战设备,所述方法包括:
通过激光接收组件接收第一对战设备发送的激光载波信号;激光载波信号是第一对战设备接收到第一控制设备发送的攻击信息后,通过调制电路将攻击信息调制到激光载波信号中,并使用激光发射组件发射的;
通过解调电路从激光载波信号中解调出攻击信息,并向第二控制设备发送 该攻击信息;
接收第二控制设备根据该攻击信息发送的反馈指令,反馈指令用于指示第二对战设备所处的受攻击状态。
根据本发明实施例的第五方面,提供一种信息处理方法,用于第二控制设备,所述方法包括:
接收第二对战设备发送的攻击信息,攻击信息是第二对战设备通过解调电路从激光载波信号中解调出的,激光载波信号是第一对战设备接收到第一控制设备发送的攻击信息,通过调制电路将攻击信息进行调制后,使用激光发射组件发射的;
根据该攻击信息确定第二对战设备所处的受攻击状态;
向第二对战设备发送反馈指令,反馈指令用于指示第二对战设备所处的受攻击状态。
根据本发明实施例的第六方面,提供一种信息处理装置,所述装置包括:
第一信息接收模块,用于接收用户设置的攻击信息;
第一信息发送模块,用于向第一对战设备发送所述攻击信息,第一对战设备与第一控制设备对应;第一对战设备用于通过调制电路将所述攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备发射激光载波信号;第二对战设备用于通过激光接收组件接收激光载波信号,并通过解调电路从激光载波信号中解调出攻击信息,向第二控制设备发送攻击信息;第二控制设备用于根据攻击信息确定第二对战设备所处的受攻击状态,向第二对战设备发送反馈指令,反馈指令用于指示第二对战设备所处的受攻击状态。
根据本发明实施例的第七方面,提供一种信息处理装置,所述装置包括:
第二信息接收模块,用于接收第一控制设备发送的攻击信息,第一控制设备与第一对战设备对应;
第一信号发送模块,用于通过调制电路将攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备发射激光载波信号;第二对战设备用于通过激光接收组件接收激光载波信号,并通过解调电路从激光载波信号中解调出攻击信息,向第二控制设备发送攻击信息;第二控制设备用于根据攻击信息确定第二对战设备所处的受攻击状态,向第二对战设备发送反馈指令,反馈指令用于指示第二对战设备所处的受攻击状态。
根据本发明实施例的第八方面,提供一种信息处理装置,所述装置包括:
第一信号接收模块,用于通过激光接收组件接收第一对战设备发送的激光载波信号;激光载波信号是第一对战设备接收到第一控制设备发送的攻击信息后,通过调制电路将所述攻击信息调制到激光载波信号中,并使用激光发射组件发射的;
第三信息发送模块,用于通过解调电路从激光载波信号中解调出攻击信息,并向第二控制设备发送攻击信息;
第二指令接收模块,用于接收第二控制设备根据该攻击信息发送的反馈指令,反馈指令用于指示第二对战设备所处的受攻击状态。
根据本发明实施例的第九方面,提供一种信息处理装置,所述装置包括:
第三信息接收模块,用于接收第二对战设备发送的攻击信息,攻击信息是第二对战设备通过解调电路从激光载波信号中解调出的,激光载波信号是第一对战设备接收到第一控制设备发送的攻击信息,通过调制电路将攻击信息进行调制后,使用激光发射组件发射的;
状态确定模块,用于根据所述攻击信息确定所述第二对战设备所处的受攻击状态;
第二指令发送模块,用于向第二对战设备发送反馈指令,反馈指令用于指示第二对战设备所处的受攻击状态。
本发明实施例提供的技术方案带来的有益效果包括:
通过第一控制设备向相应的第一对战设备发送攻击信息,由第一对战设备将攻击信息调制到激光载波信号中并进行发射,接收到该激光载波信号的第二对战设备将解调出攻击信息发送给对应的第二控制设备,由第二控制设备根据该攻击信息指示第二控制设备处于响应的受攻击状态;解决了现有技术存在的对战设备攻击形式单一,以及误命中的概率较高的问题;相较于传统的红外线传输攻击指令,本发明实施例中,对战设备之间通过激光载波信号进行攻击信息的传输,携带的数据量更大,丰富了对战设备的攻击形式;另外,激光的发散角小且受环境光影响非常小,能够显著降低漫反射带来的误中概率。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例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发明的一些实施例,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他的附图。
图1是本发明一个实施例提供的信息处理系统的结构示意图;
图2是本发明一个实施例提供的控制设备的结构示意图;
图3A是本发明一个实施例提供的对战设备的结构示意图;
图3B是本发明一个实施例提供的激光发射电路的示意图;
图3C是本发明一个实施例提供的激光接收电路的示意图;
图3D是本发明一个实施例提供的激光接收结构的示意图;
图3E是本发明一个实施例提供的激光接收结构中散光部件的示意图;
图3F是本发明一个实施例提供的激光接收结构中散光部件的示意图;
图4是本发明一个实施例提供的信息处理方法的流程图;
图5是本发明另一个实施例提供的信息处理方法的流程图;
图6是本发明再一个实施例提供的信息处理方法的流程图;
图7是本发明又一个实施例提供的信息处理方法的流程图;
图8A是本发明还一个实施例提供的信息处理方法的流程图;
图8B是图8A提供的信息处理方法的实施示意图;
图8C是图8A提供的信息处理方法所涉及的伤害数值修正过程的流程图;
图8D是图8A提供的信息处理方法所涉及的瞄准过程的流程图;
图8E是图8D提供的信息处理方法所涉及瞄准过程的实施示意图;
图8F是图8A提供的信息处理方法所涉及的定向攻击过程流程图;
图9是本发明一个实施例提供的信息处理装置的结构方框图;
图10是本发明另一个实施例提供的信息处理装置的结构方框图;
图11是本发明再一个实施例提供的信息处理装置的结构方框图;
图12是本发明又一个实施例提供的信息处理装置的结构方框图;
图13是本发明一个实施例提供的信息处理系统的架构示意图。
具体实施方式
为使本发明的目的、技术方案和优点更加清楚,下面将结合附图对本发明实施方式作进一步地详细描述。
系统环境
请参考图1,其示出了本发明一个实施例提供的信息处理系统的结构示意 图。该系统包括第一控制设备110、第一对战设备120、第二对战设备130和第二控制设备140。
第一控制设备110和第二控制设备140中均运行有用于控制对战设备的应用程序,其中,第一控制设备110用于控制第一对战设备120,第二控制设备140用于控制第二对战设备130。第一控制设备110和第二控制设备120可以是智能手机、平板电脑、电子书阅读器、MP3播放器(Moving Picture Experts Group Audio Layer III,动态影像专家压缩标准音频层面3)、MP4(Moving Picture Experts Group Audio Layer IV,动态影像专家压缩标准音频层面4)播放器或膝上型便携计算机等等。图1中,以第一控制设备110和第二控制设备140均为智能手机为例进行说明,并不对本发明构成限定。
第一控制设备110和第一对战设备120之间通过蓝牙、红外线等方式相连,并通过该无线连接进行信息的传输;相应的,第二控制设备140和第二对战设备130之间通过蓝牙、红外线等方式相连,并通过该无线连接进行信息的传输。需要说明的是,第一控制设备110和第二控制设备140之间也可以通过数据线或通过蓝牙、红外线相连。
第一对战设备120和第二对战设备130是安装激光接收组件以及激光发射组件的对战设备,其中,激光接收组件用于接收激光载波信号,激光发射组件用于发射激光载波信号。第一对战设备120和第二对战设备130中还安装有激光调制电路(简称“调制电路”)和激光解调电路(简称“解调电路”),激光调制电路用于将信息调制到激光载波信号中,激光解调电路用于从激光载波信号中解调出攻击信息。第一对战设备120和第二对战设备130可以为智能对战玩具车、智能对战玩具坦克、智能对战玩具舰船或智能对战玩具飞机等等。图1中以第一对战设备120和第二对战设备130均为智能对战玩具车为例进行说明,并不对本发明构成限定。
需要说明的是,本实施例仅以该信息处理系统中包含两个对战设备为例进行说明,在实际实施过程中,该信息处理系统中还可以包括两个以上的对战设备,本发明并不对对战设备的个数进行限定。
计算机架构
图2示出了本发明一个实施例提供的控制设备的结构示意图,该控制设备可以是图1中的第一控制设备120或第二控制设备140,具体来讲:
控制设备200可以包括RF(Radio Frequency,射频)电路210、包括有一个或一个以上计算机可读存储介质的存储器220、输入单元230、显示单元240、传感器250、音频电路260、短距离无线传输模块270、包括有一个或者一个以上处理核心的处理器280、以及电源290等部件。本领域技术人员可以理解,图2中示出的控制设备结构并不构成对控制设备的限定,可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。其中:
RF电路210可用于收发信息或通话过程中,信号的接收和发送,特别地,将基站的下行信息接收后,交由一个或者一个以上处理器280处理;另外,将涉及上行的数据发送给基站。通常,RF电路210包括但不限于天线、至少一个放大器、调谐器、一个或多个振荡器、用户身份模块(SIM)卡、收发信机、耦合器、LNA(Low Noise Amplifier,低噪声放大器)、双工器等。此外,RF电路210还可以通过无线通信与网络和其他设备通信。无线通信可以使用任一通信标准或协议,包括但不限于GSM(Global System of Mobile communication,全球移动通讯系统)、GPRS(General Packet Radio Service,通用分组无线服务)、CDMA(Code Division Multiple Access,码分多址)、WCDMA(Wideband Code Division Multiple Access,宽带码分多址)、LTE(Long Term Evolution,长期演进)、电子邮件、SMS(Short Messaging Service,短消息服务)等。
存储器220可用于存储软件程序以及模块。处理器280通过运行存储在存储器220的软件程序以及模块,从而执行各种功能应用以及数据处理。存储器220可主要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;存储数据区可存储根据控制设备200的使用所创建的数据(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、或其他易失性固态存储器件。相应地,存储器220还可以包括存储器控制器,以提供处理器280和输入单元230对存储器220的访问。虽然图2示出了RF电路210,但是可以理解的是,其并不属于控制设备200的必须构成,完全可以根据需要在不改变发明的本质的范围内而省略。
输入单元230可用于接收输入的数字或字符信息,以及产生与用户设置以及功能控制有关的键盘、鼠标、操作杆、光学或者轨迹球信号输入。具体地,输入单元230可包括触敏表面231以及其他输入设备232。触敏表面231,也 称为触摸显示屏或者触控板,可收集用户在其上或附近的触摸操作(比如用户使用手指、触笔等任何适合的物体或附件在触敏表面231上或在触敏表面231附近的操作),并根据预先设定的程式驱动相应的连接装置。可选的,触敏表面231可包括触摸检测装置和触摸控制器两个部分。其中,触摸检测装置检测用户的触摸方位,并检测触摸操作带来的信号,将信号传送给触摸控制器;触摸控制器从触摸检测装置上接收触摸信息,并将它转换成触点坐标,再送给处理器280,并能接收处理器280发来的命令并加以执行。此外,可以采用电阻式、电容式、红外线以及表面声波等多种类型实现触敏表面231。除了触敏表面231,输入单元230还可以包括其他输入设备232。具体地,其他输入设备232可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、鼠标、操作杆等中的一种或多种。
显示单元240可用于显示由用户输入的信息或提供给用户的信息以及控制设备200的各种图形用户接口,这些图形用户接口可以由图形、文本、图标、视频和其任意组合来构成。显示单元240可包括显示面板241,可选的,可以采用LCD(Liquid Crystal Display,液晶显示器)、OLED(Organic Light-Emitting Diode,有机发光二极管)等形式来配置显示面板241。进一步的,触敏表面231可覆盖在显示面板241之上,当触敏表面231检测到在其上或附近的触摸操作后,传送给处理器280以确定触摸事件的类型,随后处理器280根据触摸事件的类型在显示面板241上提供相应的视觉输出。虽然在图2中,触敏表面231与显示面板241是作为两个独立的部件来实现输入和输入功能,但是在某些实施例中,可以将触敏表面231与显示面板241集成而实现输入和输出功能。
控制设备200还可包括至少一种传感器250,比如光传感器、运动传感器以及其他传感器。具体地,光传感器可包括环境光传感器及接近传感器,其中,环境光传感器可根据环境光线的明暗来调节显示面板241的亮度,接近传感器可在控制设备200移动到耳边时,关闭显示面板241和/或背光。作为运动传感器的一种,重力加速度传感器可检测各个方向上(一般为三轴)加速度的大小,静止时可检测出重力的大小及方向,可用于识别手机姿态的应用(比如横竖屏切换、相关游戏、磁力计姿态校准)、振动识别相关功能(比如计步器、敲击)等;至于控制设备200还可配置的陀螺仪、气压计、湿度计、温度计、红外线传感器等其他传感器,在此不再赘述。
音频电路260、扬声器221,传声器222可提供用户与控制设备200之间 的音频接口。音频电路260可将接收到的音频数据转换后的电信号,传输到扬声器221,由扬声器221转换为声音信号输出;另一方面,传声器222将收集的声音信号转换为电信号,由音频电路260接收后转换为音频数据,再将音频数据输出处理器280处理后,经RF电路210以发送给另一控制设备,或者将音频数据输出至存储器220以便进一步处理。音频电路260还可能包括耳塞插孔,以提供外设耳机与控制设备200的通信。
短距离无线传输模块270可以是WIFI(wireless fidelity,无线保真)模块、蓝牙模块或红外线模块等。控制设备200通过短距离无线传输模块270可以与对战设备上设置的无线传输模块进行信息的传输。
处理器280是控制设备200的控制中心,利用各种接口和线路连接整个控制设备的各个部分,通过运行或执行存储在存储器220内的软件程序和/或模块,以及调用存储在存储器220内的数据,执行控制设备200的各种功能和处理数据,从而对控制设备进行整体监控。可选的,处理器280可包括一个或多个处理核心;可选的,处理器280可集成应用处理器和调制解调处理器,其中,应用处理器主要处理操作系统、用户界面和应用程序等,调制解调处理器主要处理无线通信。可以理解的是,上述调制解调处理器也可以不集成到处理器280中。
控制设备200还包括给各个部件供电的电源290(比如电池),优选的,电源可以通过电源管理系统与处理器280逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗管理等功能。电源290还可以包括一个或一个以上的直流或交流电源、再充电系统、电源故障检测电路、电源转换器或者逆变器、电源状态指示器等任意组件。
尽管未示出,控制设备200还可以包括摄像头、蓝牙模块等,在此不再赘述。
控制设备200还包括有存储器,以及一个或者一个以上的程序,其中一个或者一个以上程序存储于存储器中,且经配置以由一个或者一个以上处理器执行。所述程序包含用于执行下述方法示例中控制设备侧的各项操作的指令。
图3A示出了本发明一个实施例提供的对战设备的结构示意图。该对战设备可以是图1中的第一对战设备120或第二对战设备130。具体来讲:
对战设备300包括控制芯片310、短距离无线传输模块320、激光发射组 件330、激光接收组件340、激光调制电路350、激光解调电路360、存储器370和电源380。
短距离无线传输模块320可以是WIFI(wireless fidelity,无线保真)模块、蓝牙模块或红外线模块等。对战设备300通过短距离无线传输模块320可以与控制设备200上对应设置的无线传输模块进行信息的传输。
激光发射组件330可以是设置在对战设备300头部的激光发射管,用于发射经过激光调制电路350调制后的激光载波信号。对战设备300通过短距离无线传输模块320接收到控制设备200发送的攻击信息后,控制芯片310指示激光调制电路350将该攻击信息调制到激光载波信号中,并通过激光发射组件330进行发射。
激光接收组件340可以是设置在对战设备300尾部的激光接收管,用于接收其他对战设备300通过激光发射组件330发射的激光载波信号。控制芯片310检测到激光接收组件340接收到激光载波信号后,指示激光解调电路360从该激光载波信号解调出攻击信息,并通过短距离无线传输模块320将该攻击信息发送至对应的控制设备200。
控制芯片310的各个控制引脚分别与距离无线传输模块320、激光发射组件330、激光接收组件340、激光调制电路350和激光解调电路360相连,控制对战设备300进行对战。
存储器370采用的存储介质包括RAM、ROM、EPROM、EEPROM、闪存或其他固态存储其技术,CD-ROM、DVD或其他光学存储、磁带盒、磁带、磁盘存储或其他磁性存储设备等等。该存储器370中存储有一个或者一个以上的程序,该程序被配置由控制芯片310执行。
对战设备300还包括给各个部件供电的电源380(比如电池),优选的,电源380可以通过电源管理系统与控制芯片310逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗管理等功能。电源380还可以包括一个或一个以上的直流或交流电源、再充电系统、电源故障检测电路、电源转换器或者逆变器、电源状态指示器等任意组件。
在一种可能的实现方式中,对战设备中的激光发射电路可以如图3B所示。对战设备中控制芯片(即图3A中的控制芯片310)调制出的调制频率为180KHz且占空比为1:3的PWM(Pulse Width Modulation,脉冲宽度调制)信号经过三极管Q1放大后传输至三极管Q2,同时,对战设备将接收到的攻击信息(通过 图3A中的短距离无线传输模块320接收)通过TXD(Transmit Data,发送数据)引脚发送至三极管Q2。三极管Q2用于将经过三极管Q1放大后的PWM信号与TXD引脚发送攻击信息进行叠加,得到叠加信号的脉冲电流,并将该脉冲电流发送至激光发射管DS1(即图3A中的激光发射组件330)。激光发射管DS1将叠加信号的脉冲电流转换为激光载波信号,并进行发射。需要说明的是,用户可以通过调节R5的阻值,对激光发射管DS1的发射功率进行调节,从而实现控制激光载波信号传输距离的效果。
对应的,对战设备中还需要设置有如图3C所示的激光接收电路。对战设备通过三极管Q3接收到激光载波信号后,经过内部的激光解调电路(即图3A中的激光解调电路360)解调出激光载波信号中携带的攻击信息,并将该攻击信息发送至控制芯片(即图3A中的控制芯片310),由控制芯片对该攻击信息进行处理。
由于激光发射组件发射的激光光束投射在其他对战设备上时产生的光斑较小,导致激光接收组件很难接收到激光光束。为了提高激光接收组件的接收率,同时减少对战设备中激光接收组件的数量,作为一种可能的实现方式,对战设备中激光接收组件接收侧的前方还可以包括散光部件,形成如图3D所示的激光接收结构。
其中,激光接收结构中包括散光部件370和至少一个激光接收组件340;
散光部件370包括进光面3701和出光面3702,散光部件370是用于将射入进光面3701的激光散射后从出光面3702射出的部件;
进光面3701与激光入射方向相对;
至少一个激光接收组件340的接收侧3401与出光面3702相对设置。
为了达到散光效果,散光部件370中,进光面3701为光滑表面,出光面3702包括呈阵列排布的凸起结构,该凸起结构为锥形凸起结构或弧面凸起结构,且散光部件采用透光材料制成。
散光部件370包括承载部371和阵列排布于承载部371上的若干个散光部372;
承载部371包括第一表面和第二表面,第一表面和第二表面平行;第一表面是散光部件的进光面3701,承载部3701通过第二表面与若干个散光部372相连;
散光部372包括连接面和散射面;散光部372通过连接面与承载部371的 第二表面相连,若干个散光部372的散射面构成散光部件370的出光面3702。如图3E所示,承载部371为长方体,其中,长方体的上表面为第一表面,下表面为第二表面;散光部372为三棱柱,其中三棱柱的顶面ABC和底面abc均为等腰三角形,且AB=CB,ab=cb,三棱柱的矩形柱面ACca为连接面,矩形柱面ABba和BCcb为散射面,散光部372的散射面构成的出光面3702即为锥形凸起结构。
如图3F所示,承载部371为长方体,其中,长方体的上表面为第一表面,下表面为第二表面;散光部372为半圆柱,半圆柱的矩形柱面即为连接面,半圆柱的弧形柱面即为散射面,散光部372的散射面构成的出光面3702即为弧面凸起结构。
为了更详细地说明本发明实施例,下面采用方法实施例对本发明实施例提供的信息处理系统的运作原理进行阐述。
请参考图4,其示出了本发明一个实施例提供的信息处理方法的流程图。本实施例以该信息处理方法应用于图1所示的第一控制设备110来举例说明。该方法包括:
步骤401,接收用户设置的攻击信息;
该攻击信息中包括至少两个攻击参数,该攻击参数包括攻击方标识、攻击类型、攻击距离、伤害数值和护甲值等等。
步骤402,向第一对战设备发送攻击信息,第一对战设备与第一控制设备对应;第一对战设备用于通过调制电路将攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备发射激光载波信号;第二对战设备用于通过激光接收组件接收该激光载波信号,并通过解调电路从激光载波信号中解调出攻击信息,向第二控制设备发送该攻击信息;第二控制设备用于根据该攻击信息确定第二对战设备所处的受攻击状态,向第二对战设备发送反馈指令,反馈指令用于指示第二对战设备所处的受攻击状态。
综上所述,本实施例提供的信息处理方法,通过第一控制设备向相应的第一对战设备发送攻击信息,由第一对战设备将攻击信息调制到激光载波信号中并进行发射,接收到该激光载波信号的第二对战设备将解调出的攻击信息发送给对应的第二控制设备,由第二控制设备根据该攻击信息指示第二对战设备处于相应的受攻击状态;解决了现有技术存在的对战设备攻击形式单一,以及误 命中的概率较高的问题;相较于传统的红外线传输攻击指令,本发明实施例中,对战设备之间通过激光载波信号进行攻击信息的传输,携带的数据量更大,丰富了对战设备的攻击形式;另外,激光的发散角小且受环境光影响非常小,能够显著降低漫反射带来的误中概率。
请参考图5,其示出了本发明另一个实施例提供的信息处理方法的流程图。本实施例以该信息处理方法应用于图1所示的第一对战设备120来举例说明。该方法包括:
步骤501,接收第一控制设备发送的攻击信息,第一控制设备与第一对战设备对应;
该攻击信息中包括至少两个攻击参数,该攻击参数包括攻击方标识、攻击类型、攻击距离、伤害数值和护甲值等等。
步骤502,通过调制电路将攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备发射激光载波信号;第二对战设备用于通过激光接收组件接收激光载波信号,并通过解调电路从激光载波信号中解调出攻击信息,向第二控制设备发送攻击信息;第二控制设备用于根据攻击信息确定第二对战设备所处的受攻击状态,向第二对战设备发送反馈指令,反馈指令用于指示第二对战设备所处的受攻击状态。
综上所述,本实施例提供的信息处理方法,通过第一控制设备向相应的第一对战设备发送攻击信息,由第一对战设备将攻击信息调制到激光载波信号中并进行发射,接收到该激光载波信号的第二对战设备将解调出攻击信息发送给对应的第二控制设备,由第二控制设备根据该攻击信息指示第二控制设备处于相应的受攻击状态;解决了现有技术存在的对战设备攻击形式单一,以及误命中的概率较高的问题;相较于传统的红外线传输攻击指令,本发明实施例中,对战设备之间通过激光载波信号进行攻击信息的传输,携带的数据量更大,丰富了对战设备的攻击形式;另外,激光的发散角小且受环境光影响非常小,能够显著降低漫反射带来的误中概率。
请参考图6,其示出了本发明再一个实施例提供的信息处理方法的流程图。本实施例以该信息处理方法应用于图1所示的第二对战设备130来举例说明。该方法包括:
步骤601,通过激光接收组件接收第一对战设备发送的激光载波信号;激光载波信号是第一对战设备接收到第一控制设备发送的攻击信息后,通过调制电路将攻击信息调制到激光载波信号中,并使用激光发射组件发射的;
该攻击信息中包括至少两个攻击参数,该攻击参数包括攻击方标识、攻击类型、攻击距离、伤害数值和护甲值等等。
步骤602,通过解调电路从激光载波信号中解调出攻击信息,并向第二控制设备发送该攻击信息;
步骤603,接收第二控制设备根据该攻击信息发送的反馈指令,反馈指令用于指示第二对战设备所处的受攻击状态。
综上所述,本实施例提供的信息处理方法,通过第一控制设备向相应的第一对战设备发送攻击信息,由第一对战设备将攻击信息调制到激光载波信号中并进行发射,接收到该激光载波信号的第二对战设备将解调出攻击信息发送给对应的第二控制设备,由第二控制设备根据该攻击信息指示第二控制设备处于相应的受攻击状态;解决了现有技术存在的对战设备攻击形式单一,以及误命中的概率较高的问题;相较于传统的红外线传输攻击指令,本发明实施例中,对战设备之间通过激光载波信号进行攻击信息的传输,携带的数据量更大,丰富了对战设备的攻击形式;另外,激光的发散角小且受环境光影响非常小,能够显著降低漫反射带来的误中概率。
请参考图7,其示出了本发明又一个实施例提供的信息处理方法的流程图。本实施例以该信息处理方法应用于图1所示的第二控制设备140来举例说明。该方法包括:
步骤701,接收第二对战设备发送的攻击信息,攻击信息是第二对战设备通过解调电路从激光载波信号中解调出的,激光载波信号是第一对战设备接收到第一控制设备发送的攻击信息,通过调制电路将攻击信息进行调制后,使用激光发射组件发射的;
该攻击信息中包括至少两个攻击参数,该攻击参数包括攻击方标识、攻击类型、攻击距离、伤害数值和护甲值等等。
步骤702,根据攻击信息确定第二对战设备所处的受攻击状态;
步骤703,向第二对战设备发送反馈指令,反馈指令用于指示第二对战设备所处的受攻击状态。
综上所述,本实施例提供的信息处理方法,通过第一控制设备向相应的第一对战设备发送攻击信息,由第一对战设备将攻击信息调制到激光载波信号中并进行发射,接收到该激光载波信号的第二对战设备将解调出攻击信息发送给对应的第二控制设备,由第二控制设备根据该攻击信息指示第二控制设备处于相应的受攻击状态;解决了现有技术存在的对战设备攻击形式单一,以及误命中的概率较高的问题;相较于传统的红外线传输攻击指令,本发明实施例中,对战设备之间通过激光载波信号进行攻击信息的传输,携带的数据量更大,丰富了对战设备的攻击形式;另外,激光的发散角小且受环境光影响非常小,能够显著降低漫反射带来的误中概率。
请参考图8A,其示出了本发明还一个实施例提供的信息处理方法的流程图。本实施例以该信息处理方法应用于图1所示实施环境来举例说明。该方法包括:
步骤801,第一控制设备接收用户设置的攻击信息。
第一控制设备中安装有用于控制对战设备的应用程序(以下简称“控制程序”),并预先与第一对战设备进行绑定。作为一种可能的实现方式,第一控制设备和第一对战设备中都安装有蓝牙模块,第一控制设备打开控制程序,并输入第一对战设备的蓝牙地址,即与第一对战设备进行绑定,并通过蓝牙进行信息的传输。
当第一控制设备使用该控制程序控制第一对战设备进行对战时,第一控制设备即接收用户设置的攻击信息。作为一种可能的实现方式,第一控制设备与第一对战设备绑定后,显示第一对战设备可发动攻击的攻击模式。第一控制设备根据用户选择的攻击模式,确定该攻击模式对应的攻击信息,其中,攻击信息可以包括攻击类型、伤害数值、攻击速度等信息。
如图8B所示,第一控制设备81与第一对战设备82绑定后,显示第一对战设备82可发动攻击的攻击模式83,并接收用户选择。
步骤802,第一控制设备向第一对战设备发送该攻击信息,第一对战设备与第一控制设备对应。
接收到用户设置的攻击信息后,第一控制设备通过与第一对战设备之间的连接,向第一对战设备发送该攻击信息。
步骤803,第一对战设备接收第一控制设备发送的攻击信息。
对应的,第一对战设备通过该连接接收第一控制设备发送的攻击信息。
步骤804,第一对战设备通过调制电路将攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备发送该激光载波信号。
第一对战设备接收到该攻击信息后,即知悉需要向其他对战设备发动攻击。现有的对战设备通过红外线发送攻击指令来模拟对战,但是由于红外线所能携带的数据量很小,导致对战设备发送的攻击指令仅能指示对战设备进行攻击,无法携带更多的攻击信息;而本发明实施例提供的第一对战设备中安装有激光调制电路,当接收到攻击信息时,第一对战设备即能够通过激光调制电路将攻击信息调制到激光载波信号中,并通过激光发射组件进行发射。相较于红外线,激光载波信号能够携带的数据量大大增加,使得激光载波信号能够携带更多的攻击信息,比如,经过调制的激光载波信号可以携带第一对战设备的设备标识、攻击类型、攻击距离等等。
需要说明的是,激光发射组件发射激光载波信号时,通常是沿激光发射组件的正前方发射,相应的,只有在该激光发射组件正前方的激光接收组件才能接收到该激光载波信号,下述步骤中,以第二对战设备上的激光接收组件接收到激光载波信号为例进行说明。
步骤805,第二对战设备通过激光接收组件接收第一对战设备发送的激光载波信号。
当第二对战设备位于第一对战设备正前方时,第一对战设备通过激光发射组件发射的激光载波信号被第二对战设备上的激光接收组件接收。
步骤806,第二对战设备通过解调电路从激光载波信号中解调出攻击信息,并向第二控制设备发送该攻击信息。
第二对战设备接收到该激光载波信号后,即知悉受到了其它对战设备的攻击。与激光调制电路对应,第二对战设备中安装有用于从激光调制信号解调出攻击信息的激光解调电路。第二对战设备接收到激光载波信号后,即通过激光解调电路解调出激光载波信号中携带的攻击信息,并将攻击信息发送至对应的第二控制设备。
与第一对战设备和第一控制设备之间建立的无线连接相似,第二对战设备与第二控制设备之间也建立有无线连接,第二对战设备即通过该无线连接向第二控制设备发送解调出的攻击信息。
步骤807,第二控制设备接收第二对战设备发送的攻击信息。
步骤808,第二控制设备根据该攻击信息确定第二对战设备所处的受攻击状态。
第二控制设备接收到该攻击信息后,根据第二对战设备当前的设备状态和攻击信息指示攻击造成的伤害数值,确定第二对战设备处于的受攻击状态。
步骤809,第二控制设备向第二对战设备发送反馈指令,反馈指令用于指示第二对战设备所处的受攻击状态。
第二控制设备根据确定出的受攻击状态向第二对战设备发送相应的反馈指令,该反馈指令用于指示第二对战设备处于相应的受攻击状态,该反馈指令也是通过第二控制设备与第二对战设备之间的无线连接发送。
需要说明的是,当攻击信息中携带有第一对战设备的设备标识时,第二控制设备还可以获取该设备标识,在显示界面进行显示,方便用户知悉受到了哪个对战设备的攻击,并可配以相应的音效、震动与用户进行交互。
步骤810,第二对战设备接收第二控制设备发送的反馈指令。
第二对战设备到反馈指令后,确定该反馈指令指示的受攻击状态,并根据确定的受攻击状态执行相应的操作,作为一种可能的实施方式,对战设备所处的受攻击状态包括损毁状态和受损状态,当反馈指令指示的受攻击状态为损毁状态时,执行步骤811;当反馈指令指示的受攻击状态为受损状态时,执行步骤812。
步骤811,当反馈指令指示的受攻击状态为损毁状态时,在处于损毁状态后,第二对战设备停止对战。
第二对战设备确定受攻击状态为损毁状态时,即停止对战,可选地,在处于损毁状态时,第二对战设备与第二控制设备之间的连接将断开,第二控制设备将无法控制第二对战设备。
步骤812,当反馈指令指示的受攻击状态为受损状态时,在处于受损状态后,第二对战设备停止对战预定时长后重新对战。
第二对战设备确定受攻击状态为受损状态时,停止对战预定时长后,重新进行对战,在停止对战的预定时长内,第二控制设备将无法向第二对战设备发送任何指令。该预定时长可以由用户自行进行设置,也可以由第二控制设备根据第二对战设备的受损情况自动设置,本发明并不对此进行限定。
需要说明的是,第二对战设备接收到反馈指令后,还可以模拟受到攻击后翻倒等动作,或者发出相应的音效,本发明并不对此进行限定。
综上所述,本实施例提供的信息处理方法,通过第一控制设备向相应的第一对战设备发送攻击信息,由第一对战设备将攻击信息调制到激光载波信号中并进行发射,接收到该激光载波信号的第二对战设备将解调出攻击信息发送给对应的第二控制设备,由第二控制设备根据该攻击信息指示第二控制设备处于相应的受攻击状态;解决了现有技术存在的对战设备攻击形式单一,以及误命中的概率较高的问题;相较于传统的红外线传输攻击指令,本发明实施例中,对战设备之间通过激光载波信号进行攻击信息的传输,携带的数据量更大,丰富了对战设备的攻击形式;另外,激光的发散角小且受环境光影响非常小,能够显著降低漫反射带来的误中概率。
本实施例中,控制设备根据对战设备发送的攻击信息以及对战设备当前的设备状态,确定对战设备受到攻击后所处的受攻击状态,并向对战设备发送相应的反馈指令,从而实现对战设备与控制设备之间的互动,提高了对战的真实性。
由于不同的攻击类型造成的伤害不同,且攻击距离也会对伤害产生影响,为了更加真实的模拟出攻击造成的伤害,第二控制设备接收到的攻击信息携带有攻击类型和攻击距离。可选地,如图8C所示,上述步骤808,可以包括如下子步骤。
步骤808a,第二控制设备根据攻击类型确定伤害数值。
第二控制设备获取攻击信息中携带的攻击类型,并根据该攻击类型确定造成伤害的伤害数值,其中,第二控制设备中可以预先存储有不同攻击类型和伤害数值的对应关系,该对应关系可以示意性如表一所示。
表一
攻击类型 伤害数值
机枪 20
导弹 60
加农炮 100
需要说明的是,第一控制设备也可以将伤害数值添加到攻击信息中,即第二控制设备可以直接获取伤害数值,不再需要根据伤害类型进行查找,本发明实施例并不对此构成限定。
步骤808b,第二控制设备使用攻击距离对伤害数值进行衰减修正。
第一控制设备发送的攻击信息中,还携带有攻击距离,其中,该攻击距离可以是第一对战设备通过红外线测距装置获取的与前方对战设备的距离。
第二控制设备根据该攻击距离对上述步骤808a确定的伤害数值进行衰减修正,从而达到更加真实的模拟效果。
作为一种可能的实现方式,第二控制设备根据攻击信息中携带的攻击类型查找到相应的伤害衰减公式,攻击类型与伤害衰减公式的对应关系可以示意性如表二所示。
表二
攻击类型 伤害衰减公式
机枪 M1×L×N1
导弹 M2×L×N2
加农炮 M2×L×N3
其中,M1为机枪对应的伤害数值,N1为机枪对应的伤害衰减系数;M2为导弹对应的伤害数值,N2为导弹对应的伤害衰减系数;M3为加农炮对应的伤害数值,N3为加农炮对应的伤害衰减系数,L为攻击距离。
第二控制设备将伤害数值和攻击距离带入相应的伤害衰减公式中,计算得到衰减修正后的伤害数值。
需要说明的是,在对伤害数值进行修正时,第二控制设备还可以根据第二对战设备的防御数值,进行进一步修正,作为一种可能的实现方式,当防御数值为护甲值时,第二控制设备获取第二对战设备的护甲值,根据该护甲值计算出对应的伤害减免百分比,并使用伤害减免百分比对伤害数值进行伤害减免计算。
比如,护甲值X与伤害减免百分比α的对应关系为:α=100/(100+X),第二控制设备获取到第二对战设备的护甲值为100,且伤害数值为100,计算得到第二对战设备实际受到的伤害数值为100*(1-100/(100+100))=50。
步骤808c,第二控制设备根据修正后的伤害数值和第二对战设备的当前设备状态,确定第二对战设备所处的受攻击状态。
第二控制设备中维护有第二对战设备的当前设备状态,该当前设备状态中包括当前生命数值。第二对战设备每次受到攻击后,第二控制设备用当前生命值中减去此次攻击所造成的伤害数值,得到更新后的生命数值,并根据更新后的生命数值进一步确定第二设备应当处于的受攻击状态。作为一种可能的实现 方式,步骤808c可以包括如下子步骤。
步骤808c1,检测修正后的伤害数值是否大于当前设备状态中包括的当前生命数值。
第二控制设备检测经过上述步骤808b得到的伤害数值是否大于维护的当前生命数值,当伤害数值大于当前生命数值时,执行步骤808c2;当伤害数值小于当前生命数值时,执行步骤808c3。
步骤808c2,当修正后的伤害数值大于当前生命数值时,确定第二对战设备处于损毁状态。
由于修正后的伤害数值大于当前生命数值,使用该伤害数值对当前生命数值进行更新后,更新后的当前生命数值将小于0,表示第二对战设备已损毁,第二对战设备应处于损毁状态。
步骤808c3,当修正后的伤害数值小于当前生命数值时,确定第二对战设备处于受损状态。
由于修正后的伤害数值小于当前生命数值,使用该伤害数值对当前生命数值进行更新后,更新后的当前生命数值将大于0,表示第二对战设备还能够继续对战,第二对战设备应处于受损状态。
可选地,如图8D所示,上述步骤802之前还可以包括如下步骤。
步骤815,第一控制设备在接收到持续触发信号时,向第一对战设备发送瞄准指令。
第一控制设备接收到用户设置的攻击信息后,检测是否接收到持续触发信号,该持续触发信号可以是用户按压第一控制设备上的实体按键或虚拟按键时触发的。当接收到该持续触发信号时,第一控制设备即向第一对战设备发送瞄准指令。
比如,如图8E所示,第一控制设备81接收到用户设置的用户攻击信息后,在界面上显示相应的瞄准按钮84。当用户按压瞄准按钮84时,第一控制设备即接收到持续触发信号,并向第一对战设备82发送瞄准指令。
步骤816,第一对战设备接收第一控制设备发送的瞄准指令,该瞄准指令是第一控制设备在接收到持续触发信号时发送的。
对应的,第一对战设备接收第一控制设备发送的瞄准指令。
步骤817,接收到瞄准指令后,第一对战设备通过激光发射组件发射可见 的瞄准激光。
第一对战设备接收到瞄准指令后,即通过激光发射组件向前发射人眼可见的瞄准激光。需要说明的是,由于该瞄准激光仅起到瞄准作用,所以不需要经过激光调制电路调制。
比如,如图8E所示,第一对战设备82接收到瞄准指令后,通过设置在前端的激光发射组件发射瞄准激光。
步骤818,在检测到持续触发信号结束时,第一控制设备向第一对战设备发送该攻击信息。
当检测到持续触发信号结束时,表示瞄准完毕,第一控制设备即向第一对战设备发送该攻击信息。
需要说明的是,第一控制设备可以将攻击信息和瞄准指令一同发送至第一对战设备,使得第一对战设备在瞄准状态下就能进行激光载波信号的调制。当第一控制设备检测到持续按压信号结束时,向第一对战设备发送停止瞄准指令,第一对战设备接收到该停止瞄准指令后,即通过激光发射组件发射调制好的激光载波信号。
本实施例中,控制设备在接收到持续触发信号时,向对战设备发送指示其发射瞄准激光的瞄准指令,使得对战设备进行攻击前能够进行瞄准,使得攻击目标更加明确,对战效果更加真实。
本发明实施例提供的对战设备之间可以进行非定向攻击或定向攻击,采用非定向攻击时,由于对战设备的体积通常较小,存在一定的未击中概率;采用定向攻击时,对战设备能够向指定的目标对战设备发动攻击,且能够保证达到百分百的击中率。下面采用一个示意性实施例就定向攻击进行说明,为了方便描述,本实施例以指定的目标对战设备为第二对战设备为例进行说明。
如图8E所示,上述步骤801后,还可以包括如下步骤。
步骤819,第一控制设备检测攻击信息中是否携带有第二对战设备的设备标识。
第一控制设备中的控制程序可以提供定向攻击和非定向攻击两种攻击模式供用户选择,当用户选择非定向攻击时,第一控制设备接收到的攻击信息中不会携带目标对战设备的设备标识;当用户选择定向攻击时,用户需要选择相应的目标对战设备,第一控制设备接收到的攻击信息中即携带目标对战设备的 设备标识。
第一控制设备接收到攻击信息后,检测该攻击信息中是否携带目标对战设备的设备标识,本实施例中,以目标对战设备为第二对战设备为例进行说明。
当检测攻击信息中携带有第二对战设备的设备标识时,执行下述步骤820至步骤822;当检测攻击信息中未携带第二对战设备的设备标识时,执行上述步骤802至步骤812。
步骤820,当攻击信息中携带有第二对战设备的设备标识时,第一控制设备根据第二对战设备的设备标识查找对应的第二控制设备。
当攻击信息中携带第二对战设备的设备标识时,第一控制设备即确定此次攻击为定向攻击,相应的,该攻击信息即为定向攻击信息。
进行对战的各个控制设备之间预先建立无线或有线连接,且各个控制设备中保存有其它控制设备的设备标识及其对应的对战设备的设备标识。如表三所示,第一控制设备中保存有其它控制设备的设备标识及其对应的对战设备的设备标识。
表三
控制设备的设备标识 对战设备的设备标识
控制设备2 对战设备2
控制设备3 对战设备3
控制设备4 对战设备4
第一控制设备根据第二对战设备的设备标识,即可查找到对应的第二控制设备的设备标识。
步骤821,第一控制设备通过预先与第二控制设备建立的连接,向第二控制设备发送攻击信息。
由于第一控制设备与各个对战设备均建立了连接,第一控制设备根据查找到第二控制设备的设备标识,直接向第二控制设备发送该攻击信息(即定向攻击信息)。
步骤822,第二控制设备接收第一控制设备通过预先建立的连接发送的攻击信息。
对应的,第二控制设备通过该连接接收第一控制设备发送的攻击信息。
之后,第二控制设备根据攻击信息确定第二对战设备所处的受攻击状态,向第二对战设备发送反馈指令,指示第二对战设备处于相应的受攻击状态。第 二对战设备接收第二控制设备发送的反馈指令,第二对战设备根据反馈指令所指示的受攻击状态执行相应的操作。
本实施例中,控制设备不仅可以控制对战设备进行非定向攻击,还可以指定目标对战设备进行定向攻击,丰富了对战设备的攻击形式,从而提升系统性能。
下述为本发明装置实施例,对于装置实施例中未详尽描述的细节,可以参考上述一一对应的方法实施例。
请参考图9,其示出了本发明一个实施例提供的信息处理装置的结构方框图。该信息处理装置具有实现上述方法示例中第一控制设备侧的功能,所述功能可以由硬件实现,也可以由硬件执行相应的软件实现。该信息处理装置包括:第一信息接收模块910和第一信息发送模块920。
第一信息接收模块910,用于接收用户设置的攻击信息。
第一信息发送模块920,用于向第一对战设备发送所述攻击信息,所述第一对战设备与所述第一控制设备对应;所述第一对战设备用于通过调制电路将所述攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备发射所述激光载波信号;所述第二对战设备用于通过激光接收组件接收所述激光载波信号,并通过解调电路从所述激光载波信号中解调出所述攻击信息,向第二控制设备发送所述攻击信息;所述第二控制设备还用于根据所述攻击信息确定所述第二对战设备所处的受攻击状态,向所述第二对战设备发送反馈指令,所述反馈指令用于指示所述第二对战设备所处的所述受攻击状态。
综上所述,本实施例提供的信息处理装置,通过第一控制设备向相应的第一对战设备发送攻击信息,由第一对战设备将攻击信息调制到激光载波信号中并进行发射,接收到该激光载波信号的第二对战设备将解调出攻击信息发送给对应的第二控制设备,由第二控制设备根据该攻击信息指示第二控制设备处于相应的受攻击状态;解决了现有技术存在的对战设备攻击形式单一,以及误命中的概率较高的问题;相较于传统的红外线传输攻击指令,本发明实施例中,对战设备之间通过激光载波信号进行攻击信息的传输,携带的数据量更大,丰富了对战设备的攻击形式;另外,激光的发散角小且受环境光影响非常小,能够显著降低漫反射带来的误中概率。
请参考图10,其示出了本发明另一个实施例提供的信息处理装置的结构方框图。该信息处理装置具有实现上述方法示例中第一对战设备侧的功能,所述功能可以由硬件实现,也可以由硬件执行相应的软件实现。该信息处理装置包括:第二信息接收模块1010和第一信号发送模块1020。
第二信息接收模块1010,用于接收第一控制设备发送的攻击信息,所述第一控制设备与第一对战设备对应。
第一信号发送模块1020,用于通过调制电路将所述攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备发射所述激光载波信号;所述第二对战设备用于通过激光接收组件接收所述激光载波信号,并通过解调电路从所述激光载波信号中解调出所述攻击信息,向第二控制设备发送所述攻击信息;所述第二控制设备用于根据所述攻击信息确定所述第二对战设备所处的受攻击状态,向所述第二对战设备发送反馈指令,所述反馈指令用于指示所述第二对战设备所处的受攻击状态。
综上所述,本实施例提供的信息处理装置,通过第一控制设备向相应的第一对战设备发送攻击信息,由第一对战设备将攻击信息调制到激光载波信号中并进行发射,接收到该激光载波信号的第二对战设备将解调出攻击信息发送给对应的第二控制设备,由第二控制设备根据该攻击信息指示第二控制设备处于相应的受攻击状态;解决了现有技术存在的对战设备攻击形式单一,以及误命中的概率较高的问题;相较于传统的红外线传输攻击指令,本发明实施例中,对战设备之间通过激光载波信号进行攻击信息的传输,携带的数据量更大,丰富了对战设备的攻击形式;另外,激光的发散角小且受环境光影响非常小,能够显著降低漫反射带来的误中概率。
请参考图11,其示出了本发明再一个实施例提供的信息处理装置的结构方框图。该信息处理装置具有实现上述方法示例中第二对战设备侧的功能,所述功能可以由硬件实现,也可以由硬件执行相应的软件实现。该信息处理装置包括:第一信号接收模块1110、第三信息发送模块1120和第二指令接收模块1130。
第一信号接收模块1110,用于通过激光接收组件接收第一对战设备发送的激光载波信号;所述激光载波信号是所述第一对战设备接收到第一控制设备发送的攻击信息后,通过调制电路将所述攻击信息调制到激光载波信号中,并使 用激光发射组件发射的;
第三信息发送模块1120,用于通过解调电路从所述激光载波信号中解调出所述攻击信息,并向第二控制设备发送所述攻击信息;
第二指令接收模块1130,用于接收所述第二控制设备根据所述攻击信息发送的反馈指令,所述反馈指令用于指示所述第二对战设备所处的受攻击状态。
综上所述,本实施例提供的信息处理装置,通过第一控制设备向相应的第一对战设备发送攻击信息,由第一对战设备将攻击信息调制到激光载波信号中并进行发射,接收到该激光载波信号的第二对战设备将解调出攻击信息发送给对应的第二控制设备,由第二控制设备根据该攻击信息指示第二控制设备处于相应的受攻击状态;解决了现有技术存在的对战设备攻击形式单一,以及误命中的概率较高的问题;相较于传统的红外线传输攻击指令,本发明实施例中,对战设备之间通过激光载波信号进行攻击信息的传输,携带的数据量更大,丰富了对战设备的攻击形式;另外,激光的发散角小且受环境光影响非常小,能够显著降低漫反射带来的误中概率。
请参考图12,其示出了本发明另一个实施例提供的信息处理装置的结构方框图。该信息处理装置具有实现上述方法示例中第二控制设备侧的功能,所述功能可以由硬件实现,也可以由硬件执行相应的软件实现。该信息处理装置包括:第三信息接收模块1210、状态确定模块1220和第二指令发送模块1230。
第三信息接收模块1210,用于接收第二对战设备发送的攻击信息,所述攻击信息是所述第二对战设备通过解调电路从激光载波信号中解调出的,所述激光载波信号是第一对战设备接收到第一控制设备发送的攻击信息,通过调制电路将所述攻击信息进行调制后,使用激光发射组件发射的。
状态确定模块1220,用于根据所述攻击信息确定所述第二对战设备所处的受攻击状态。
第二指令发送模块1230,用于向所述第二对战设备发送反馈指令,所述反馈指令用于指示所述第二对战设备所处的所述受攻击状态。
综上所述,本实施例提供的信息处理装置,通过第一控制设备向相应的第一对战设备发送攻击信息,由第一对战设备将攻击信息调制到激光载波信号中并进行发射,接收到该激光载波信号的第二对战设备将解调出攻击信息发送给对应的第二控制设备,由第二控制设备根据该攻击信息指示第二控制设备处于 相应的受攻击状态;解决了现有技术存在的对战设备攻击形式单一,以及误命中的概率较高的问题;相较于传统的红外线传输攻击指令,本发明实施例中,对战设备之间通过激光载波信号进行攻击信息的传输,携带的数据量更大,丰富了对战设备的攻击形式;另外,激光的发散角小且受环境光影响非常小,能够显著降低漫反射带来的误中概率。
请参考图13,其示出了本发明一个实施例提供的信息处理系统的架构示意图。该信息处理系统包括:第一控制设备900、第一对战设备1000、第二对战设备1100和第二控制设备1200。
第一控制设备900包括:第一信息接收模块910和第一信息发送模块920。
第一信息接收模块910,用于接收用户设置的攻击信息。
第一信息发送模块920,用于向第一对战设备1000发送所述攻击信息,所述第一对战设备1000与所述第一控制设备900对应;所述第一对战设备1000用于通过调制电路将所述攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备1100发射所述激光载波信号;所述第二对战设备1100用于通过激光接收组件接收所述激光载波信号,并通过解调电路从所述激光载波信号中解调出所述攻击信息,向第二控制设备1200发送所述攻击信息;所述第二控制设备1200还用于根据所述攻击信息确定所述第二对战设备1100所处的受攻击状态,向所述第二对战设备1100发送反馈指令,所述反馈指令用于指示所述第二对战设备1100所处的所述受攻击状态。
可选地,第一控制设备900还包括:第一指令发送模块930。
第一指令发送模块930,用于在接收到持续触发信号时,向所述第一对战设备1000发送瞄准指令;所述第一对战设备1000用于在接收到所述瞄准指令后,通过所述激光发射组件发射可见的瞄准激光。
所述第一信息发送模块920,用于在检测到所述持续触发信号结束时,向所述第一对战设备1000发送所述攻击信息。
可选地,攻击信息中携带有所述第二对战设备1100的设备标识。
第一控制设备900,还包括:查找模块940和第二信息发送模块950。
查找模块940,用于当所述攻击信息中携带有所述第二对战设备1100的设备标识时,根据所述第二对战设备1100的设备标识查找对应的第二控制设备1200。
第二信息发送模块950,用于通过预先与所述第二控制设备1200建立的连接,向所述第二控制设备1200发送所述攻击信息。
第一对战设备1000包括:第二信息接收模块1010和第一信号发送模块1020。
第二信息接收模块1010,用于接收第一控制设备900发送的攻击信息,所述第一控制设备900与所述第一对战设备1000对应。
第一信号发送模块1020,用于通过调制电路将所述攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备1100发射所述激光载波信号;所述第二对战设备1100用于通过激光接收组件接收所述激光载波信号,并通过解调电路从所述激光载波信号中解调出所述攻击信息,向第二控制设备1200发送所述攻击信息;所述第二控制设备1200用于根据所述攻击信息确定所述第二对战设备1100所处的受攻击状态,向所述第二对战设备1100发送反馈指令,所述反馈指令用于指示所述第二对战设备1100所处的所述受攻击状态。
可选地,第一对战设备1000还包括:第一指令接收模块1030和发射模块1040。
第一指令接收模块1030,用于接收所述第一控制设备900发送的瞄准指令,所述瞄准指令是所述第一控制设备900在接收到持续触发信号时发送的。
发射模块1040,用于接收到所述瞄准指令后,通过所述激光发射组件发射可见的瞄准激光。
第二对战设备1100包括:第一信号接收模块1110、第三信息发送模块1120和第二指令接收模块1130。
第一信号接收模块1110,用于通过激光接收组件接收第一对战设备1000发送的激光载波信号;所述激光载波信号是所述第一对战设备1000接收到第一控制设备900发送的攻击信息后,通过调制电路将所述攻击信息调制到激光载波信号中,并使用激光发射组件发射的。
第三信息发送模块1120,用于通过解调电路从所述激光载波信号中解调出所述攻击信息,并向第二控制设备1200发送所述攻击信息。
第二指令接收模块1130,用于接收所述第二控制设备1200根据所述攻击信息发送的反馈指令,所述反馈指令用于指示所述第二对战设备1100所处的受攻击状态。
可选地,所述受攻击状态包括受损状态和损毁状态。
第二对战设备1100,还包括:第一对战模块1140和第二对战模块1150。
第一对战模块1140,用于当所述反馈指令指示的所述受攻击状态为所述损毁状态时,在处于所述损毁状态后,停止对战。
第二对战模块1150,用于当所述反馈指令指示的所述受攻击状态为所述受损状态时,在处于所述受损状态后,停止对战预定时长后重新对战。
第二控制设备1200包括:第三信息接收模块1210、状态确定模块1220和第二指令发送模块1230。
第三信息接收模块1210,用于接收第二对战设备1100发送的攻击信息,所述攻击信息是所述第二对战设备1100通过解调电路从激光载波信号中解调出的,所述激光载波信号是第一对战设备1000接收到第一控制设备900发送的攻击信息,通过调制电路将所述攻击信息进行调制后,使用激光发射组件发射的。
状态确定模块1220,用于根据所述攻击信息确定所述第二对战设备1100所处的受攻击状态。
第二指令发送模块1230,用于向所述第二对战设备1100发送反馈指令,所述反馈指令用于指示所述第二对战设备1100所处的所述受攻击状态。
可选地,所述攻击信息携带有攻击类型和攻击距离。
所述状态确定模块1220,包括:数值确定单元、数值修正单元和状态确定单元(图中未示出)。
数值确定单元,用于根据所述攻击类型确定伤害数值。
数值修正单元,用于使用所述攻击距离对所述伤害数值进行衰减修正。
状态确定单元,用于根据修正后的所述伤害数值和所述第二对战设备1100的当前设备状态,确定所述第二对战设备1100所处的所述受攻击状态。
可选地,所述状态确定单元,用于:检测修正后的所述伤害数值是否大于所述当前设备状态中包括的当前生命数值;当修正后的所述伤害数值大于所述当前生命数值时,确定所述第二对战设备1100处于损毁状态;当修正后的所述伤害数值小于所述当前生命数值时,确定所述第二对战设备1100处于受损状态。
可选地,所述攻击信息中携带有所述第二对战设备1100的设备标识。第二控制设备1200,还包括:第四信息接收模块1240。
第四信息接收模块1240,用于接收所述第一控制设备900通过预先建立的 连接发送的所述攻击信息;所述攻击信息是所述第一控制设备900检测到用户设置的所述攻击信息中携带有所述第二对战设备1100的设备标识后发送的。
可选地,所述攻击信息携带有所述第一对战设备1000的设备标识。第二控制设备1200,还包括:显示模块1250。
显示模块1250,用于获取所述攻击信息中携带的所述第一对战设备1000的设备标识,并在显示界面显示所述第一对战设备1000的设备标识。
综上所述,本实施例提供的信息处理系统,通过第一控制设备向相应的第一对战设备发送攻击信息,由第一对战设备将攻击信息调制到激光载波信号中并进行发射,接收到该激光载波信号的第二对战设备将解调出攻击信息发送给对应的第二控制设备,由第二控制设备根据该攻击信息指示第二控制设备处于相应的受攻击状态;解决了现有技术存在的对战设备攻击形式单一,以及误命中的概率较高的问题;相较于传统的红外线传输攻击指令,本发明实施例中,对战设备之间通过激光载波信号进行攻击信息的传输,携带的数据量更大,丰富了对战设备的攻击形式;另外,激光的发散角小且受环境光影响非常小,能够显著降低漫反射带来的误中概率。
本实施例中,控制设备在接收到持续触发信号时,向对战设备发送指示其发射瞄准激光的瞄准指令,使得对战设备进行攻击前能够进行瞄准,使得轨迹目标更加明确,对战效果更加真实。
本实施例中,控制设备根据对战设备发送的攻击信息以及对战设备当前的设备状态,确定对战设备受到攻击后所处的受攻击状态,并向对战设备发送相应的反馈指令,从而实现对战设备与控制设备之间的互动,提高了对战的真实性。
本实施例中,控制设备不仅可以控制对战设备进行非定向攻击,还可以指定目标对战设备进行定向攻击,丰富了对战设备的攻击形式,从而提升系统性能。
需要说明的是:上述实施例提供的信息处理装置,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,即将第一控制设备、第一对战设备、第二对战设备和第二控制设备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。另外,上述实施例提供的信息处理装置与信息处理方法实施例属于同一构思, 其具体实现过程详见方法实施例,这里不再赘述。
在示例性实施例中,还提供了一种包括指令的非临时性计算机可读存储介质,例如包括指令的存储器,上述指令可由第一控制设备的处理器执行以完成上述方法实施例中第一控制设备侧的各个步骤,或者上述指令可由第二控制设备的处理器执行以完成上述方法实施例中第二控制设备侧的各个步骤,或者上述指令可由第一对战设备的控制芯片执行以完成上述方法实施例中第一对战设备侧的各个步骤,或者上述指令可由第二对战设备的控制芯片执行以完成上述方法实施例中第二对战设备侧的各个步骤。例如,所述非临时性计算机可读存储介质可以是ROM、随机存取存储器(RAM)、CD-ROM、磁带、软盘和光数据存储设备等。
应当理解的是,在本文中提及的“多个”是指两个或两个以上。“和/或”,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。字符“/”一般表示前后关联对象是一种“或”的关系。
上述本发明实施例序号仅仅为了描述,不代表实施例的优劣。
本领域普通技术人员可以理解实现上述实施例的全部或部分步骤可以通过硬件来完成,也可以通过程序来指令相关的硬件完成,所述的程序可以存储于一种计算机可读存储介质中,上述提到的存储介质可以是只读存储器,磁盘或光盘等。
以上所述仅为本发明的较佳实施例,并不用以限制本发明,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (30)

  1. 一种信息处理系统,其特征在于,所述系统中包括至少两个对战设备和每个对战设备各自对应的控制设备;
    第一控制设备,用于向第一对战设备发送攻击信息;
    所述第一对战设备,用于通过调制电路将所述攻击信息调制到激光载波信号中,并使用激光发射组件发射所述激光载波信号;
    第二对战设备,用于通过激光接收组件接收所述激光载波信号,并通过解调电路从所述激光载波信号中解调出所述攻击信息;向第二控制设备发送所述攻击信息;
    所述第二控制设备,用于根据所述攻击信息确定所述第二对战设备所处的受攻击状态;向所述第二对战设备发送反馈指令,所述反馈指令用于指示所述第二对战设备所处的所述受攻击状态。
  2. 根据权利要求1所述的系统,其特征在于,
    所述第一控制设备,还用于在接收到持续触发信号时,向所述第一对战设备发送瞄准指令;
    所述第一对战设备,还用于在接收到所述瞄准指令后,通过所述激光发射组件发射可见的瞄准激光;
    所述第一控制设备,还用于在检测到所述持续触发信号结束时,向所述第一对战设备发送所述攻击信息。
  3. 根据权利要求1或2所述的系统,其特征在于,所述攻击信息携带有攻击类型和攻击距离;
    所述第二控制设备,用于根据所述攻击类型确定伤害数值;使用所述攻击距离对所述伤害数值进行衰减修正;根据修正后的所述伤害数值和所述第二对战设备的当前设备状态,确定所述第二对战设备所处的所述受攻击状态。
  4. 根据权利要求3所述的系统,其特征在于,所述受攻击状态包括受损状态和损毁状态;
    所述第二控制设备,用于检测修正后的所述伤害数值是否大于所述当前设 备状态中包括的当前生命数值;当修正后的所述伤害数值大于所述当前生命数值时,确定所述第二对战设备处于所述损毁状态;当修正后的所述伤害数值小于所述当前生命数值时,确定所述第二对战设备处于所述受损状态;
    所述第二对战设备,还用于在处于所述损毁状态后,停止对战;在处于所述受损状态后,停止对战预定时长后重新对战。
  5. 根据权利要求1所述的系统,其特征在于,所述攻击信息中携带有所述第二对战设备的设备标识;
    所述第一控制设备,还用于接收用户设置的所述攻击信息;当所述攻击信息中携带有所述第二对战设备的设备标识时,根据所述第二对战设备的设备标识查找对应的第二控制设备;通过预先与所述第二控制设备建立的连接,向所述第二控制设备发送所述攻击信息。
  6. 根据权利要求1所述的系统,其特征在于,所述攻击信息携带有所述第一对战设备的设备标识;
    所述第二控制设备,还用于获取所述攻击信息中携带的所述第一对战设备的设备标识,并在显示界面显示所述第一对战设备的设备标识。
  7. 一种信息处理方法,其特征在于,用于第一控制设备,所述方法包括:
    接收用户设置的攻击信息;
    向第一对战设备发送所述攻击信息,所述第一对战设备与所述第一控制设备对应;所述第一对战设备用于通过调制电路将所述攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备发射所述激光载波信号;所述第二对战设备用于通过激光接收组件接收所述激光载波信号,并通过解调电路从所述激光载波信号中解调出所述攻击信息,向第二控制设备发送所述攻击信息;所述第二控制设备用于根据所述攻击信息确定所述第二对战设备所处的受攻击状态,向所述第二对战设备发送反馈指令,所述反馈指令用于指示所述第二对战设备所处的所述受攻击状态。
  8. 根据权利要求7所述的方法,其特征在于,所述接收用户设置的攻击信息之后,还包括:
    在接收到持续触发信号时,向所述第一对战设备发送瞄准指令;所述第一对战设备用于在接收到所述瞄准指令后,通过所述激光发射组件发射可见的瞄准激光;
    在检测到所述持续触发信号结束时,向所述第一对战设备发送所述攻击信息。
  9. 根据权利要求7或8所述的方法,其特征在于,所述攻击信息中携带有所述第二对战设备的设备标识;
    所述接收用户设置的攻击信息之后,还包括:
    当所述攻击信息中携带有所述第二对战设备的设备标识时,根据所述第二对战设备的设备标识查找对应的第二控制设备;
    通过预先与所述第二控制设备建立的连接,向所述第二控制设备发送所述攻击信息。
  10. 一种信息处理方法,其特征在于,用于第一对战设备,所述方法包括:
    接收第一控制设备发送的攻击信息,所述第一控制设备与所述第一对战设备对应;
    通过调制电路将所述攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备发射所述激光载波信号;所述第二对战设备用于通过激光接收组件接收所述激光载波信号,并通过解调电路从所述激光载波信号中解调出所述攻击信息,向第二控制设备发送所述攻击信息;所述第二控制设备用于根据所述攻击信息确定所述第二对战设备所处的受攻击状态,向所述第二对战设备发送反馈指令,所述反馈指令用于指示所述第二对战设备所处的所述受攻击状态。
  11. 根据权利要求10所述的方法,其特征在于,所述接收第一控制设备发送的攻击信息之前,还包括:
    接收所述第一控制设备发送的瞄准指令,所述瞄准指令是所述第一控制设备在接收到持续触发信号时发送的;
    接收到所述瞄准指令后,通过所述激光发射组件发射可见的瞄准激光。
  12. 一种信息处理方法,其特征在于,用于第二对战设备,所述方法包括:
    通过激光接收组件接收第一对战设备发送的激光载波信号;所述激光载波信号是所述第一对战设备接收到第一控制设备发送的攻击信息后,通过调制电路将所述攻击信息调制到激光载波信号中,并使用激光发射组件发射的;
    通过解调电路从所述激光载波信号中解调出所述攻击信息,并向第二控制设备发送所述攻击信息;
    接收所述第二控制设备根据所述攻击信息发送的反馈指令,所述反馈指令用于指示所述第二对战设备所处的受攻击状态。
  13. 根据权利要求12所述的方法,其特征在于,所述受攻击状态包括受损状态和损毁状态;
    所述接收所述第二控制设备发送的反馈指令之后,包括:
    当所述反馈指令指示的所述受攻击状态为所述损毁状态时,在处于所述损毁状态后,停止对战;
    当所述反馈指令指示的所述受攻击状态为所述受损状态时,在处于所述受损状态后,停止对战预定时长后重新对战。
  14. 一种信息处理方法,其特征在于,用于第二控制设备,所述方法包括:
    接收第二对战设备发送的攻击信息,所述攻击信息是所述第二对战设备通过解调电路从激光载波信号中解调出的,所述激光载波信号是第一对战设备接收到第一控制设备发送的攻击信息,通过调制电路将所述攻击信息进行调制后,使用激光发射组件发射的;
    根据所述攻击信息确定所述第二对战设备所处的受攻击状态;
    向所述第二对战设备发送反馈指令,所述反馈指令用于指示所述第二对战设备所处的所述受攻击状态。
  15. 根据权利要求14所述的方法,其特征在于,所述攻击信息携带有攻击类型和攻击距离;
    所述根据所述攻击信息确定所述第二对战设备所处的受攻击状态,包括:
    根据所述攻击类型确定伤害数值;
    使用所述攻击距离对所述伤害数值进行衰减修正;
    根据修正后的所述伤害数值和所述第二对战设备的当前设备状态,确定所述第二对战设备所处的所述受攻击状态。
  16. 根据权利要求15所述的方法,其特征在于,所述根据修正后的所述伤害数值和所述第二对战设备的当前设备状态,确定所述第二对战设备所处的所述受攻击状态,包括:
    检测修正后的所述伤害数值是否大于所述当前设备状态中包括的当前生命数值;
    当修正后的所述伤害数值大于所述当前生命数值时,确定所述第二对战设备处于损毁状态;
    当修正后的所述伤害数值小于所述当前生命数值时,确定所述第二对战设备处于受损状态。
  17. 根据权利要求14所述的方法,其特征在于,所述攻击信息中携带有所述第二对战设备的设备标识,所述根据所述攻击信息确定所述第二对战设备所处的受攻击状态之前,还包括:
    接收所述第一控制设备通过预先建立的连接发送的所述攻击信息;所述攻击信息是所述第一控制设备检测到用户设置的所述攻击信息中携带有所述第二对战设备的设备标识后发送的。
  18. 根据权利要求14至17任一所述的方法,其特征在于,所述攻击信息携带有所述第一对战设备的设备标识;
    所述接收第二对战设备发送的攻击信息之后,还包括:
    获取所述攻击信息中携带的所述第一对战设备的设备标识,并在显示界面显示所述第一对战设备的设备标识。
  19. 一种信息处理装置,其特征在于,所述装置包括:
    第一信息接收模块,用于接收用户设置的攻击信息;
    第一信息发送模块,用于向第一对战设备发送所述攻击信息,所述第一对战设备与第一控制设备对应;所述第一对战设备用于通过调制电路将所述攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备发射所述激 光载波信号;所述第二对战设备用于通过激光接收组件接收所述激光载波信号,并通过解调电路从所述激光载波信号中解调出所述攻击信息,向第二控制设备发送所述攻击信息;所述第二控制设备还用于根据所述攻击信息确定所述第二对战设备所处的受攻击状态,向所述第二对战设备发送反馈指令,所述反馈指令用于指示所述第二对战设备所处的所述受攻击状态。
  20. 根据权利要求19所述的装置,其特征在于,所述装置还包括:
    第一指令发送模块,用于在接收到持续触发信号时,向所述第一对战设备发送瞄准指令;所述第一对战设备用于在接收到所述瞄准指令后,通过所述激光发射组件发射可见的瞄准激光;
    所述第一信息发送模块,用于在检测到所述持续触发信号结束时,向所述第一对战设备发送所述攻击信息。
  21. 根据权利要求19或20所述的装置,其特征在于,所述攻击信息中携带有所述第二对战设备的设备标识;
    所述装置还包括:
    查找模块,用于当所述攻击信息中携带有所述第二对战设备的设备标识时,根据所述第二对战设备的设备标识查找对应的第二控制设备;
    第二信息发送模块,用于通过预先与所述第二控制设备建立的连接,向所述第二控制设备发送所述攻击信息。
  22. 一种信息处理装置,其特征在于,所述装置包括:
    第二信息接收模块,用于接收第一控制设备发送的攻击信息,所述第一控制设备与第一对战设备对应;
    第一信号发送模块,用于通过调制电路将所述攻击信息调制到激光载波信号中,并使用激光发射组件向第二对战设备发射所述激光载波信号;所述第二对战设备用于通过激光接收组件接收所述激光载波信号,并通过解调电路从所述激光载波信号中解调出所述攻击信息,向第二控制设备发送所述攻击信息;所述第二控制设备用于根据所述攻击信息确定所述第二对战设备所处的受攻击状态,向所述第二对战设备发送反馈指令,所述反馈指令用于指示所述第二对战设备所处的所述受攻击状态。
  23. 根据权利要求22所述的装置,其特征在于,所述装置还包括:
    第一指令接收模块,用于接收所述第一控制设备发送的瞄准指令,所述瞄准指令是所述第一控制设备在接收到持续触发信号时发送的;
    发射模块,用于接收到所述瞄准指令后,通过所述激光发射组件发射可见的瞄准激光。
  24. 一种信息处理装置,其特征在于,所述装置包括:
    第一信号接收模块,用于通过激光接收组件接收第一对战设备发送的激光载波信号;所述激光载波信号是所述第一对战设备接收到第一控制设备发送的攻击信息后,通过调制电路将所述攻击信息调制到激光载波信号中,并使用激光发射组件发射的;
    第三信息发送模块,用于通过解调电路从所述激光载波信号中解调出所述攻击信息,并向第二控制设备发送所述攻击信息;
    第二指令接收模块,用于接收所述第二控制设备根据所述攻击信息发送的反馈指令,所述反馈指令用于指示所述第二对战设备所处的受攻击状态。
  25. 根据权利要求24所述的装置,其特征在于,所述受攻击状态包括受损状态和损毁状态;
    所述装置还包括:
    第一对战模块,用于当所述反馈指令指示的所述受攻击状态为所述损毁状态时,在处于所述损毁状态后,停止对战;
    第二对战模块,用于当所述反馈指令指示的所述受攻击状态为所述受损状态时,在处于所述受损状态后,停止对战预定时长后重新对战。
  26. 一种信息处理装置,其特征在于,所述装置包括:
    第三信息接收模块,用于接收第二对战设备发送的攻击信息,所述攻击信息是所述第二对战设备通过解调电路从激光载波信号中解调出的,所述激光载波信号是第一对战设备接收到第一控制设备发送的攻击信息,通过调制电路将所述攻击信息进行调制后,使用激光发射组件发射的;
    状态确定模块,用于根据所述攻击信息确定所述第二对战设备所处的受攻 击状态;
    第二指令发送模块,用于向所述第二对战设备发送反馈指令,所述反馈指令用于指示所述第二对战设备所处的所述受攻击状态。
  27. 根据权利要求26所述的装置,其特征在于,所述攻击信息携带有攻击类型和攻击距离;
    所述状态确定模块,包括:
    数值确定单元,用于根据所述攻击类型确定伤害数值;
    数值修正单元,用于使用所述攻击距离对所述伤害数值进行衰减修正;
    状态确定单元,用于根据修正后的所述伤害数值和所述第二对战设备的当前设备状态,确定所述第二对战设备所处的所述受攻击状态。
  28. 根据权利要求27所述的装置,其特征在于,所述状态确定单元,用于:
    检测修正后的所述伤害数值是否大于所述当前设备状态中包括的当前生命数值;
    当修正后的所述伤害数值大于所述当前生命数值时,确定所述第二对战设备处于损毁状态;
    当修正后的所述伤害数值小于所述当前生命数值时,确定所述第二对战设备处于受损状态。
  29. 根据权利要求26所述的装置,其特征在于,所述攻击信息中携带有所述第二对战设备的设备标识;
    所述装置,还包括:
    第四信息接收模块,用于接收所述第一控制设备通过预先建立的连接发送的所述攻击信息;所述攻击信息是所述第一控制设备检测到用户设置的所述攻击信息中携带有所述第二对战设备的设备标识后发送的。
  30. 根据权利要求26至29任一所述的装置,其特征在于,所述攻击信息携带有所述第一对战设备的设备标识;
    所述装置,还包括:
    显示模块,用于获取所述攻击信息中携带的所述第一对战设备的设备标识, 并在显示界面显示所述第一对战设备的设备标识。
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