WO2018072346A1 - 数据转发设备,数据转发方法、装置和系统 - Google Patents
数据转发设备,数据转发方法、装置和系统 Download PDFInfo
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- WO2018072346A1 WO2018072346A1 PCT/CN2017/070316 CN2017070316W WO2018072346A1 WO 2018072346 A1 WO2018072346 A1 WO 2018072346A1 CN 2017070316 W CN2017070316 W CN 2017070316W WO 2018072346 A1 WO2018072346 A1 WO 2018072346A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B11/00—Transmission systems employing ultrasonic, sonic or infrasonic waves
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/80—Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02D—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
- Y02D30/00—Reducing energy consumption in communication networks
- Y02D30/70—Reducing energy consumption in communication networks in wireless communication networks
Definitions
- the present invention relates to the field of communications technologies, and in particular, to a data forwarding device, a data forwarding method, apparatus, and system.
- the smartphone cannot transmit the received notification message to the computer, so that the user working with the computer can know the content of the notification message in time, and the user needs to interrupt the work in the hand and unlock the smart phone to read the message to understand the notification message.
- Content inconvenience to the user's work, affecting the user's work efficiency.
- the present invention provides a data forwarding device, a data forwarding method, device and system, which realize the transmission of the notification information received by the mobile terminal to the computer, and the compatibility is good, and is suitable for the intelligence under various systems.
- the embodiment of the present invention adopts the following technical solutions:
- an embodiment of the present invention provides a data forwarding device, including a signal transmitter and a microphone;
- the signal transmitter includes a main control chip, a Bluetooth chip and a speaker, and the Bluetooth chip and the speaker are both connected to the main control chip;
- the Bluetooth chip is configured to receive notification information sent by the first terminal by using Bluetooth
- the main control chip is configured to convert the notification information into binary information
- the speaker for transmitting the binary information by a frequency change of an acoustic signal
- the microphone is configured to receive the sound wave signal and send the sound wave signal to a second terminal.
- the embodiment of the present invention provides a data forwarding method, where the method is applied to the data forwarding device in the foregoing first aspect, where the method includes:
- the embodiment of the present invention provides a data forwarding device, where the device is applied to the data forwarding device in the foregoing first aspect, where the device includes:
- a data receiving module configured to receive, by using the Bluetooth chip, data that is sent by the first terminal and that carries the notification information
- An encoding module configured to encode the data by the control chip to obtain binary data
- control module configured to control the speaker to emit sound waves of different frequencies according to the binary data
- a sound wave signal receiving module configured to receive the sound wave signal through the microphone, and transmit the sound wave signal to a second terminal, so that the second terminal obtains the binary data according to the sound wave signal, and obtains the Notification information.
- the embodiment of the present invention further provides a data forwarding system, where the system includes the data forwarding device described in the foregoing first aspect, the system further includes a first terminal and a second terminal;
- the first terminal is configured to send data carrying the notification information to the data forwarding device
- the data forwarding device is configured to encode the received data to obtain binary data, and send the binary data to the second terminal;
- the second terminal is configured to receive the binary data, parse the obtained notification information, and display the notification information on a display screen.
- the data forwarding device includes a main control chip, a Bluetooth chip and a speaker, and the Bluetooth chip and the speaker are connected to the main control chip.
- Receiving the notification information sent by the first terminal through the Bluetooth chip converting the notification information into binary information through the main control chip, transmitting the binary information by controlling the frequency change of the sound wave signal sent by the speaker, and receiving the sound wave signal emitted by the speaker through the microphone And transmitting the sound wave signal to the second terminal, so that the second terminal obtains the binary information according to the sound wave signal, parses the binary information to obtain the notification information, and displays the content of the notification information, for example, the data forwarding device receives the notification information received by the smart phone end. , forwarded to the computer display, so that when the user works with the computer, You don't need to check your phone frequently to know the notification information received by your phone, and it does not affect the user's work efficiency.
- FIG. 1 is a schematic structural diagram of a data forwarding device according to Embodiment 1 of the present invention.
- FIG. 2 is a schematic flowchart of a data forwarding method according to Embodiment 2 of the present invention.
- FIG. 3 is a schematic flowchart of a data forwarding method according to Embodiment 3 of the present invention.
- FIG. 4 is a schematic structural diagram of a data forwarding device according to Embodiment 4 of the present invention.
- FIG. 5 is a schematic structural diagram of a data forwarding apparatus according to Embodiment 5 of the present invention.
- FIG. 6 is a schematic structural diagram of a data forwarding system according to Embodiment 6 of the present invention.
- FIG. 1 is an embodiment of the present invention.
- FIG. 1 A schematic diagram of a structure of a data forwarding device.
- a data forwarding device 1 comprising a signal transmitter 11 and a microphone 12;
- the signal transmitter 11 includes a main control chip 111, a Bluetooth chip 112 and a speaker 113, and the Bluetooth chip 112 and the speaker 113 are both connected to the main control chip 111;
- the Bluetooth chip 112 is configured to receive notification information that is sent by the first terminal by using Bluetooth;
- the main control chip 111 is configured to convert the notification information into binary information
- a speaker 113 for transmitting binary information by a frequency change of the acoustic wave signal
- the microphone 12 is configured to receive the acoustic signal and transmit the acoustic signal to the second terminal.
- the speaker 113 is a tweeter.
- the speaker 113 can also be a normal speaker, but the sound waves generally emitted by the ordinary speaker can be heard by the human ear, and the sound frequency that the human can hear is about 20-20000HZ, such sound waves will interfere with the user and
- the speaker 113 is a high-frequency speaker, which emits high-frequency sound waves, such as sound waves of 30000HZ and 40000HZ, which are not heard by the human ear and do not interfere with the user and Others, and strong anti-interference ability.
- the microphone 12 in the present solution has no physical connection relationship with the signal transmitter 11 , and the two are independent components in terms of hardware relationship, and only one-way signal transmission based on sound waves can be realized, and
- the microphone 12 in the present solution is not necessarily a microphone specially prepared for the data forwarding device 1.
- a separate microphone purchased separately or a microphone integrated in the computer can be used to implement the solution.
- the data forwarding device receives the notification information sent by the first terminal through the Bluetooth chip, converts the notification information into binary information through the main control chip, and realizes sending the binary by controlling the frequency change of the acoustic signal sent by the speaker.
- the information is received by the microphone and sent to the second terminal, so that the second terminal obtains the binary information according to the frequency change of the acoustic signal, parses the binary information to obtain the notification information, and displays the information.
- Data forwarding device through the speaker and microphone communication group The notification information received by the first terminal is forwarded to the second terminal for display, for example, the notification information received by the smart phone can be forwarded to the computer for display under various systems, and the compatibility is good, so that the user works when using the computer. It is not necessary to frequently check the mobile phone to know the notification information received by the mobile phone, and does not affect the user's work efficiency.
- the Bluetooth communication does not depend on the wifi router, and is suitable for a scene without a wifi signal and consumes low power.
- FIG. 2 is a schematic flowchart of a data forwarding method according to Embodiment 2 of the present invention.
- the method of the embodiment may be performed by the data forwarding device in the first embodiment, and is applicable to transmitting the notification information received by the terminal such as a smart phone to a scene displayed by a terminal such as a computer.
- a data forwarding method is applied to the data forwarding device described in the first embodiment, and includes the following steps:
- S210 Receive, by using a Bluetooth chip, data that is sent by the first terminal and carries the notification information.
- the signal transmitter part of the data forwarding device in this embodiment may be an object such as a pendant, a brooch, a badge, or the like that can be hung on the upper body of the user, or a bracelet-like object that can be worn on the wrist of the user.
- the user can be worn close to the second terminal, and the speaker of the data forwarding device faces away from the user's body.
- the first terminal receives the notification information
- the data carrying the notification information is sent to the data forwarding device through the Bluetooth
- the signal transmitter of the data forwarding device receives the data carrying the notification information through the Bluetooth chip.
- S220 The data is encoded by the control chip to obtain binary data.
- the control chip encodes the data into binary data according to an existing custom protocol, that is, encodes the data carrying the notification information according to the custom protocol.
- an existing custom protocol that is, encodes the data carrying the notification information according to the custom protocol.
- S230 Control the speaker to emit sound waves of different frequencies according to the binary data.
- the control chip controls the speaker to emit the first frequency acoustic wave signal and the second frequency acoustic wave signal respectively according to the numbers 1 and 0 in the binary data. Specifically, when the sound wave signal of the first frequency is outputted by the control speaker, it represents the number 1, and when the sound wave signal of the second frequency is output, it represents the number 0; or when the sound wave signal is outputted by the control speaker, it represents the number 1, and when the sound wave signal is stopped, the representative signal is stopped. The number is 0.
- the speaker is a high-frequency speaker that can emit high-frequency sound waves.
- the custom number 1 indicates that the high-frequency speaker emits a high-frequency sound wave signal of 40000HZ, and the number 0 indicates that the high-frequency speaker emits a high-frequency sound wave signal of 30000HZ;
- the number 1 can be customized to indicate that the tweeter emits a high frequency sound wave signal of 40000 Hz, and the number 0 indicates that the high frequency speaker does not emit a sound wave signal.
- the duration of the speaker being in a certain state may be controlled according to a custom protocol, for example, Each number 1 indicates that the speaker emits a first frequency acoustic signal for 0.1 second. Each digit 0 indicates that the speaker emits a second frequency acoustic signal for 0.1 second. Two consecutive digits 1 (ie, 11) indicate that the speaker emits the first frequency. The acoustic signal lasts for 0.2 seconds, that is, the duration of each status bit of the speaker is 0.1 second.
- S240 Receive an acoustic wave signal through a microphone, and transmit the acoustic wave signal to the second terminal, so that the second terminal obtains binary data according to the acoustic wave signal, and parses and obtains the notification information.
- the microphone transmits the received acoustic wave signal to the second terminal in real time, and the second terminal obtains binary data according to the frequency change of the acoustic wave signal, and the notification information is obtained after parsing the binary data, and the notification information is displayed on the second terminal. On the display.
- the first terminal is a terminal such as a smart phone
- the second terminal is a terminal such as a computer.
- the data forwarding device receives the data carrying the notification information sent by the first terminal through the Bluetooth chip, and encodes the data through the control chip to obtain binary data, according to
- the binary data control speaker emits sound waves of different frequencies, transmits binary data according to the frequency change of the sound wave signal, receives the sound wave signal through the microphone, and transmits the sound wave signal to the second terminal, so that the second terminal obtains the frequency change according to the sound wave signal.
- Binary data parsed to get notification information.
- the data forwarding device can forward the notification information received by the first terminal to the second terminal through the communication combination of the speaker and the microphone.
- the notification information received by the smart phone can be forwarded to the computer for display under various systems, and is compatible.
- Bluetooth communication is not dependent on the wifi router, and is suitable for scenarios without wifi signals. Low battery.
- FIG. 3 is a schematic flowchart of a data forwarding method according to Embodiment 3 of the present invention.
- the main difference between this embodiment and the second embodiment is that the content of the handshake is recognized by the Bluetooth chip and the sound signal of the preset frequency is turned on for the preset duration.
- a data forwarding method which is applied to the data forwarding device described in any of the foregoing embodiments, includes the following steps:
- S310 Perform handshake identification with the first terminal by using a Bluetooth chip.
- the data forwarding device is connected to the first terminal in the same manner as the ordinary smart bracelet and the smart phone.
- the smart phone pre-installs the corresponding application, scans the data forwarding device through Bluetooth and initiates a pairing operation, and the pairing successfully completes the handshake identification. After the smart phone is close to the data forwarding device, the data forwarding device automatically connects to the smart phone. , continuously monitor the notification information received by the smartphone without the user manually intervening in the connection operation.
- S320 Receive, by using a Bluetooth chip, data that is sent by the first terminal and carries the notification information.
- the smart phone receives the notification information, and sends the data carrying the notification information under the Bluetooth protocol to the data forwarding device through the Bluetooth, and the data forwarding device receives the data through the Bluetooth.
- S330 The data is encoded by the control chip to obtain binary data.
- S340 Turn on the speaker to continuously output the sound wave signal of the preset frequency for a preset time period.
- the acoustic signal of the preset frequency is one of the acoustic signals of different frequencies in S350 described below.
- the signal transmitter sends the acoustic signal through the speaker to transmit the binary data, it is required to notify the second terminal to start transmitting the acoustic signal corresponding to the binary data according to the provisions of the custom protocol, with each status bit duration of 0.1 second, the number 1 means that the speaker emits a sound signal of 40000HZ, and the number 0 means that the speaker emits a sound signal of 30000HZ.
- three consecutive digits 1 are added before the binary data to be transmitted, that is, the speaker emits a sound signal of 40000HZ for 0.3 seconds.
- the signal transmitter notifies the second terminal that binary data carrying the notification information is to be transmitted.
- S350 Control the speaker to emit sound waves of different frequencies according to the binary data.
- S360 Receive an acoustic wave signal through a microphone, and transmit the acoustic wave signal to the second terminal, so that the second terminal obtains binary data according to the acoustic wave signal, and parses and obtains the notification information.
- the microphone of the data forwarding device can be a microphone provided by the computer terminal, and when the second terminal is a desktop computer without a microphone, The microphone of the data forwarding device needs to be connected to the desktop computer. Both methods are used to ensure that the acoustic signal received by the microphone can be transmitted to the user's computer in time for subsequent analysis.
- the data forwarding device performs handshake handshake with the first terminal through the Bluetooth chip, and receives data carrying the notification information sent by the first terminal, and encodes the data by the control chip to obtain binary data, and starts the speaker output.
- the sound signal of the preset frequency continues for a preset duration, and the sound signal of different frequencies is controlled by the speaker according to the binary data, and the frequency of the sound wave signal changes.
- the binary data is transmitted, the acoustic wave signal is received through the microphone, and the acoustic wave signal is transmitted to the second terminal, so that the second terminal obtains binary data according to the frequency change of the acoustic wave signal, and the notification information is obtained by parsing.
- the data forwarding device can forward the notification information received by the first terminal to the second terminal through the communication combination of the speaker and the microphone.
- the notification information received by the smart phone can be forwarded to the computer for display under various systems, and is compatible. Good sex, so that when users use the computer to work, you don't need to frequently check the mobile phone to know the notification information received by the mobile phone, which does not affect the user's work efficiency.
- Bluetooth communication is not dependent on the wifi router, and is suitable for scenarios without wifi signals. Low battery.
- the foregoing embodiment 2 and the third embodiment are embodiments of the data conversion method provided by the embodiment of the present invention.
- the following embodiments 4 and 5 are embodiments of the data forwarding device provided by the embodiment of the present invention, and the data forwarding device and the foregoing
- the data forwarding method belongs to a general inventive concept. For details not described in detail in the embodiment of the data forwarding device, reference may be made to the embodiment of the data forwarding method described above.
- FIG. 4 is a schematic structural diagram of a data forwarding device according to Embodiment 4 of the present invention.
- a data forwarding device 400 which is applied to the data forwarding device in any of the above embodiments, may include the following content:
- the data receiving module 410 is configured to receive, by using a Bluetooth chip, data that is sent by the first terminal and carries the notification information.
- the encoding module 420 is configured to encode the data by the control chip to obtain binary data.
- the control module 430 is configured to control the speaker to emit sound waves of different frequencies according to the binary data.
- the sound wave signal receiving module 440 is configured to receive the sound wave signal through the microphone and transmit the sound wave signal to the second terminal, so that the second terminal obtains the binary data according to the sound wave signal, and parses the notification information.
- control module 430 is specifically configured to:
- the control speaker outputs the acoustic signal when it represents the number 1, and when the output of the acoustic signal is stopped, it represents the number 0; or
- the control speaker outputs the first frequency of the acoustic signal when it represents the number 1, and the output of the second frequency of the acoustic signal represents the number 0.
- the data forwarding device receives the data carrying the notification information sent by the first terminal through the Bluetooth chip, encodes the data by the control chip to obtain binary data, and controls the speaker to emit sound signals of different frequencies according to the binary data.
- the binary data is transmitted by the frequency change of the acoustic wave signal, the acoustic wave signal is received by the microphone, and the acoustic wave signal is transmitted to the second terminal, so that the second terminal obtains binary data according to the frequency change of the acoustic wave signal, and the notification information is obtained by parsing.
- the data forwarding device can forward the notification information received by the first terminal to the second terminal through the communication combination of the speaker and the microphone.
- the notification information received by the smart phone can be forwarded to the computer for display under various systems, and is compatible.
- Good sex so that when users use the computer to work, you don't need to frequently check the mobile phone to know the notification information received by the mobile phone, which does not affect the user's work efficiency.
- Bluetooth communication is not dependent on the wifi router, and is suitable for scenarios without wifi signals. Low battery.
- FIG. 5 is a schematic structural diagram of a data forwarding device according to Embodiment 5 of the present invention.
- the main difference between this embodiment and the fourth embodiment is that the handshake identification module 510 and the opening module 540 are added.
- a data forwarding device 500 which is applied to the data forwarding device in any of the above embodiments, may include the following content:
- the handshake identification module 510 is configured to perform handshake identification with the first terminal by using a Bluetooth chip.
- the data receiving module 520 is configured to receive, by using a Bluetooth chip, data that is sent by the first terminal and carries the notification information.
- the encoding module 530 is configured to encode the data by the control chip to obtain binary data.
- the opening module 540 is configured to enable the speaker to continuously output the sound wave signal of the preset frequency for a preset time period, wherein the sound wave signal of the preset frequency is one of the sound wave signals of the different frequencies.
- the control module 550 is configured to control the speaker to emit sound waves of different frequencies according to the binary data.
- the sound wave signal receiving module 560 is configured to receive the sound wave signal through the microphone and transmit the sound wave signal to the second terminal, so that the second terminal obtains the binary data according to the sound wave signal, and obtains the notification information by parsing.
- the data forwarding device performs handshake handshake with the first terminal through the Bluetooth chip, and receives data carrying the notification information sent by the first terminal, and encodes the data by the control chip to obtain binary data, and starts the speaker output.
- the sound wave signal of the preset frequency continues for a preset time length, and the sound wave signal of different frequencies is controlled by the speaker according to the binary data, the binary data is transmitted by the frequency change of the sound wave signal, the sound wave signal is received by the microphone, and the sound wave signal is transmitted to the second terminal.
- the notification information is obtained by parsing.
- the data forwarding device can forward the notification information received by the first terminal to the second terminal through the communication combination of the speaker and the microphone.
- the notification information received by the smart phone can be forwarded to the computer for display under various systems, and is compatible. Good sex, so that when users use the computer to work, you don't need to frequently check the mobile phone to know the notification information received by the mobile phone, which does not affect the user's work efficiency.
- Bluetooth communication is not dependent on the wifi router, and is suitable for scenarios without wifi signals. Low battery.
- FIG. 6 is a schematic structural diagram of a data forwarding system according to Embodiment 6 of the present invention.
- a data forwarding system 600 including the data forwarding device 1 described in any of the above embodiments, further comprising a first terminal 2 and a second terminal 3;
- the first terminal 2 is configured to send data carrying the notification information to the data forwarding device 1.
- the data forwarding device 1 is configured to encode the received data to obtain binary data, and send 3 binary data to the second terminal.
- the second terminal 3 is configured to receive binary data, parse the notification information, and display the notification information on the display screen.
- the main process of the second terminal 3 receiving the binary data is: the second terminal 3 receives the sound wave signal transmitted by the data forwarding device 1 through the microphone in real time, and recognizes the frequency change of the sound wave signal, and the sound wave signal received at intervals of 0.1 second is performed.
- Frequency identification for identifying the high frequency sound band recording number 1 with a frequency of 40000HZ, recording the number 0 for the high frequency sound band of 30000HZ, and then combining all the recorded numbers 1 and 0 in the recording order, the code forwarding device 1 can be restored.
- Binary data for identifying the high frequency sound band recording number 1 with a frequency of 40000HZ, recording the number 0 for the high frequency sound band of 30000HZ, and then combining all the recorded numbers 1 and 0 in the recording order, the code forwarding device 1 can be restored.
- the data forwarding device receives the data carrying the notification information sent by the first terminal, converts the data into binary information, and implements sending the binary information by controlling the frequency change of the sound wave signal sent by the speaker, and The binary data is sent to the second terminal, so that the second terminal parses the binary data to obtain the notification information and displays it.
- the solution of the embodiment may be implemented to forward the notification information received by the first terminal to the second terminal, and display the content of the notification information in the second terminal, for example, the notification information received by the smart phone may be forwarded to the computer under various systems.
- the above shows that the compatibility is good, so that when the user works with the computer, the notification information received by the mobile phone can be known without frequently checking the mobile phone, and the working efficiency of the user is not affected.
- the Bluetooth communication is not dependent on the wifi router, and is applicable to the no-wifi signal. Scene and low power consumption.
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Abstract
本发明实施例公开了一种数据转发设备,数据转发方法、装置和系统。数据转发设备包括信号发射器和麦克风,信号发射器包括主控芯片、蓝牙芯片和扬声器,蓝牙芯片和扬声器均与主控芯片相连。数据转发设备通过扬声器与麦克风的通信组合可实现将第一终端接收到的通知信息转发到第二终端显示,例如,可实现各种系统下转发智能手机接收到的通知信息到电脑上显示,兼容性好,使得用户使用电脑工作时,无需频繁查看手机即可得知手机接收到的通知信息,不影响用户的工作效率,采用蓝牙通信不依赖于wifi路由器,适用于无wifi信号的场景且耗电量低,同时可保障用户信息安全。
Description
本发明涉及通信技术领域,尤其涉及一种数据转发设备,数据转发方法、装置和系统。
随着现代生活节奏的不断加快和人们生活水平的不断提高,计算机和智能手机的使用在人们的日常生活中已经越来越普及,使用计算机办公、通过智能手机与他人联系已成为一种常见的生活模式。
通常情况下,智能手机是无法将接收到的通知消息传送给计算机,以便使用计算机工作的用户及时得知通知消息的内容,用户需要中断手中工作,解锁智能手机读取消息才能了解该通知消息的内容,给用户工作带来不便,影响用户的工作效率。
为解决上述问题,现有技术中,Mac OS系统下的电脑与iOS系统下的手机之间通过蓝牙或wifi(wireless-fidelity,无线保真)可实现将手机的通知信息传送给电脑的功能;但是iOS系统下的手机和安卓系统下的手机,与Windows系统下电脑之间则难以实现该功能;安卓手机可以通过wifi局域网与Windows系统下的电脑实现该功能,但是很依赖wifi路由器,如果用户在外办公,则难以实现该功能,且存在信息安全问题;此外,采用wifi进行局域网数据传送的方案,也不支持iOS系统下的手机。
发明内容
为解决相关技术问题,本发明提供一种数据转发设备,数据转发方法、装置和系统,实现将手机端接收的通知信息传输至电脑端显示,并且兼容性好,适用于各种系统下的智能手机与电脑。
为实现上述目的,本发明实施例采用如下技术方案:
第一方面,本发明实施例提供了一种数据转发设备,包括信号发射器和麦克风;
所述信号发射器包括主控芯片、蓝牙芯片和扬声器,所述蓝牙芯片和扬声器均与所述主控芯片相连;
所述蓝牙芯片,用于接收第一终端通过蓝牙发送的通知信息;
所述主控芯片,用于将所述通知信息转换为二进制信息;
所述扬声器,用于通过声波信号的频率变化发送所述二进制信息;
所述麦克风,用于接收所述声波信号,并将所述声波信号发送到第二终端。
第二方面,本发明实施例提供了一种数据转发方法,所述方法应用于上述第一方面中所述的数据转发设备,所述方法包括:
通过所述蓝牙芯片接收所述第一终端发送的携带有通知信息的数据;
通过所述控制芯片对所述数据进行编码得到二进制数据;
根据所述二进制数据控制所述扬声器发出不同频率的声波信号;
通过所述麦克风接收所述声波信号,并将所述声波信号传输给第二终端,以使所述第二终端根据所述声波信号获得所述二进制数据,解析获得所述通知信息。
第三方面,本发明实施例对应提供了一种数据转发装置,所述装置应用于上述第一方面中所述的数据转发设备,所述装置包括:
数据接收模块,用于通过所述蓝牙芯片接收所述第一终端发送的携带有通知信息的数据;
编码模块,用于通过所述控制芯片对所述数据进行编码得到二进制数据;
控制模块,用于根据所述二进制数据控制所述扬声器发出不同频率的声波信号;
声波信号接收模块,用于通过所述麦克风接收所述声波信号,并将所述声波信号传输给第二终端,以使所述第二终端根据所述声波信号获得所述二进制数据,解析获得所述通知信息。
第四方面,本发明实施例还提供了一种数据转发系统,所述系统包括上述第一方面中所述的数据转发设备,所述系统还包括第一终端和第二终端;
所述第一终端,用于向所述数据转发设备发送携带有通知信息的数据;
所述数据转发设备,用于将接收的所述数据进行编码得到二进制数据,并向所述第二终端发送所述二进制数据;
所述第二终端,用于接收所述二进制数据,解析获得所述通知信息,并在显示屏显示所述通知信息。
本发明实施例提供的技术方案带来的有益效果:
本技术方案中,数据转发设备包括主控芯片、蓝牙芯片和扬声器,蓝牙芯片和扬声器均与主控芯片相连。通过蓝牙芯片接收第一终端发送的通知信息,通过主控芯片将该通知信息转换为二进制信息,通过控制扬声器发出的声波信号的频率变化向外发送该二进制信息,通过麦克风接收扬声器发出的声波信号,并将该声波信号发送给第二终端,以使第二终端根据声波信号获得二进制信息,解析二进制信息获得通知信息并显示通知信息的内容,例如数据转发设备接收智能手机端接收到的通知信息,转发至电脑端显示,使得用户使用电脑工作时,
无需频繁查看手机即可得知手机接收到的通知信息,不影响用户的工作效率。
为了更清楚地说明本发明实施例中的技术方案,下面将对本发明实施例描述中所需要使用的附图作简单的介绍,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,还可以根据本发明实施例的内容和这些附图获得其他的附图。
图1是本发明实施例一提供的一种数据转发设备的结构示意图;
图2是本发明实施例二提供的一种数据转发方法的流程示意图;
图3是本发明实施例三提供的一种数据转发方法的流程示意图;
图4是本发明实施例四提供的一种数据转发装置的架构示意图;
图5是本发明实施例五提供的一种数据转发装置的架构示意图;
图6是本发明实施例六提供的一种数据转发系统的结构示意图。
为使本发明解决的技术问题、采用的技术方案和达到的技术效果更加清楚,下面将结合附图对本发明实施例的技术方案作进一步的详细描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
实施例一
为实现将智能手机端接收的通知信息传输至电脑端显示,并且有良好的兼容性,本发明实施例提供了一种数据转发设备,请参考图1,其是本发明实施例
一提供的一种数据转发设备的结构示意图。
一种数据转发设备1,包括信号发射器11和麦克风12;
信号发射器11包括主控芯片111、蓝牙芯片112和扬声器113,蓝牙芯片112和扬声器113均与主控芯片111相连;
蓝牙芯片112,用于接收第一终端通过蓝牙发送的通知信息;
主控芯片111,用于将通知信息转换为二进制信息;
扬声器113,用于通过声波信号的频率变化发送二进制信息;
麦克风12,用于接收声波信号,并将声波信号发送到第二终端。
优选的,上述扬声器113为高频扬声器。在其他实施例中,扬声器113也可以是普通喇叭,只是普通喇叭一般发出的声波都是人耳可以听到的,人能听到的声波频率约为20-20000HZ,这样的声波会干扰用户及用户身边的人;而在本实施例中,扬声器113为高频扬声器,其发出的是高频声波,例如30000HZ、40000HZ的声波,这种高频声波人耳听不到,不会干扰用户和他人,而且抗干扰能力强。需要说明的是,本方案中的麦克风12与信号发射器11并无物理上连接关系,两者从硬件关系上而言是两个独立的部件,只能实现基于声波的单向信号传输,而且,本方案中的麦克风12也不一定是为该数据转发设备1特意准备的麦克风,单独购买的独立麦克风或者是电脑中集成的麦克风均可用于实现本方案。
综上,在本技术方案中,数据转发设备通过蓝牙芯片接收第一终端发送的通知信息,通过主控芯片将通知信息转换为二进制信息,通过控制扬声器发出的声波信号的频率变化来实现发送二进制信息,通过麦克风接收声波信号并发送给第二终端,以使第二终端根据声波信号的频率变化获得二进制信息,解析二进制信息获得通知信息并显示。数据转发设备通过扬声器与麦克风的通信组
合可实现将第一终端接收到的通知信息转发到第二终端显示,例如,可实现各种系统下转发智能手机接收到的通知信息到电脑上显示,兼容性好,使得用户使用电脑工作时,无需频繁查看手机即可得知手机接收到的通知信息,不影响用户的工作效率,采用蓝牙通信不依赖于wifi路由器,适用于无wifi信号的场景且耗电量低。
实施例二
请参考图2,其是发明实施例二提供的一种数据转发方法的流程示意图。本实施例的方法可以由上述实施例一中的数据转发设备来执行,适用于将智能手机等终端接收的通知信息传输至电脑等终端显示的场景。
一种数据转发方法,应用于上述实施例一中所述的数据转发设备,包括如下步骤:
S210:通过蓝牙芯片接收第一终端发送的携带有通知信息的数据。
示例性的,本实施例中的数据转发设备的信号发射器部分可以是类似吊坠、胸针、工牌等可以挂在用户上半身的物体,还可以是可佩戴在用户手腕上的手环类物体,佩戴在用户身上可靠近第二终端即可,且数据转发设备的扬声器的朝向背向用户身体。当第一终端接收到通知信息时,通过蓝牙向数据转发设备发送携带该通知信息的数据,数据转发设备的信号发射器通过蓝牙芯片接收该携带通知信息的数据。
S220:通过控制芯片对数据进行编码得到二进制数据。
示例性的,数据转发设备的信号发射器接收到携带通知信息的数据后,控制芯片根据已有的自定义协议将该数据编码为二进制数据,即根据自定义协议将携带通知信息的数据编码为数字0和1的组合代码。
S230:根据二进制数据控制扬声器发出不同频率的声波信号。
示例性的,控制芯片根据二进制数据中的数字1和0,控制扬声器分别发出第一频率声波信号和第二频率声波信号。具体的,可以为控制扬声器输出第一频率的声波信号时代表数字1,输出第二频率的声波信号时代表数字0;或可以为控制扬声器输出声波信号时代表数字1,停止输出声波信号时代表数字0。
举例来说,扬声器为可发出高频声波信号的高频扬声器,可以自定义数字1表示高频扬声器发出40000HZ的高频声波信号,数字0表示高频扬声器发出30000HZ的高频声波信号;或还可以自定义数字1表示高频扬声器发出40000HZ的高频声波信号,数字0表示高频扬声器不发出声波信号。
再举例来说,控制芯片在根据二进制数据控制扬声器处于发出第一频率声波信号的状态或第二频率声波信号的状态时,可根据自定义协议来控制扬声器处于某个状态的持续时间,例如,每个数字1都表示扬声器发出第一频率声波信号持续0.1秒,每个数字0都表示扬声器发出第二频率声波信号持续0.1秒,两个连续的数字1(即11)表示扬声器发出第一频率声波信号持续0.2秒,也即扬声器的每个状态位的持续时间为0.1秒。
S240:通过麦克风接收声波信号,并将声波信号传输给第二终端,以使第二终端根据声波信号获得二进制数据,解析获得通知信息。
示例性的,麦克风将接收的声波信号实时传输给第二终端,第二终端根据声波信号的频率变化获得二进制数据,对二进制数据解析后可得通知信息,并将通知信息显示在第二终端的显示屏上。
在本实施例中,第一终端为智能手机等终端,第二终端为电脑等终端。
综上,在本技术方案中,数据转发设备通过蓝牙芯片接收第一终端发送的携带有通知信息的数据,通过控制芯片对数据进行编码得到二进制数据,根据
二进制数据控制扬声器发出不同频率的声波信号,以声波信号的频率变化来发送二进制数据,通过麦克风接收声波信号,并将声波信号传输给第二终端,以使第二终端根据声波信号的频率变化获得二进制数据,解析获得通知信息。数据转发设备通过扬声器与麦克风的通信组合可实现将第一终端接收到的通知信息转发到第二终端显示,例如,可实现各种系统下转发智能手机接收到的通知信息到电脑上显示,兼容性好,使得用户使用电脑工作时,无需频繁查看手机即可得知手机接收到的通知信息,不影响用户的工作效率,采用蓝牙通信不依赖于wifi路由器,适用于无wifi信号的场景且耗电量低。
实施例三
请参考图3,其是本发明实施例三提供的一种数据转发方法的流程示意图。本实施例与实施例二的主要区别在于,增加了通过蓝牙芯片与第一终端进行握手识别,和开启扬声器输出预置频率的声波信号持续预置时长的内容。
一种数据转发方法,应用于上述任一实施例中所述的数据转发设备,包括如下步骤:
S310:通过蓝牙芯片与第一终端进行握手识别。
示例性的,数据转发设备与第一终端的连接方式,和普通智能手环与智能手机之间的连接方式一样。
举例来说,智能手机预先安装对应的应用程序,通过蓝牙扫描数据转发设备并发起配对操作,配对成功完成握手识别,后续只需智能手机靠近数据转发设备,则数据转发设备会自动连接上智能手机,持续监听智能手机接收的通知信息,而不需用户再手动介入连接操作。
S320:通过蓝牙芯片接收第一终端发送的携带有通知信息的数据。
示例性的,智能手机接收到通知信息,通过蓝牙向数据转发设备发送蓝牙协议下的携带通知信息的数据,数据转发设备通过蓝牙接收该数据。
S330:通过控制芯片对数据进行编码得到二进制数据。
S340:开启扬声器在预置时长内持续输出预置频率的声波信号。
示例性的,预置频率的声波信号为下述S350中不同频率的声波信号中的一种。在信号发射器通过扬声器发出声波信号以发送二进制数据之前,需要根据自定义协议的规定通知第二终端接下来将开始发送二进制数据对应的声波信号,以每个状态位持续时间为0.1秒,数字1表示扬声器发出40000HZ的声波信号,数字0表示扬声器发出30000HZ的声波信号为例来说,在待发送的二进制数据前添加三个连续的数字1,即扬声器发出40000HZ的声波信号持续0.3秒,则表示信号发射器通知第二终端将要发送携带通知信息的二进制数据。
S350:根据二进制数据控制扬声器发出不同频率的声波信号。
S360:通过麦克风接收声波信号,并将声波信号传输给第二终端,以使第二终端根据声波信号获得二进制数据,解析获得通知信息。
举例来说,当第二终端为自带麦克风的笔记本电脑、平板电脑等终端时,数据转发设备的麦克风采用电脑终端自带的麦克风即可,当第二终端为不带麦克风的台式电脑时,则需要将数据转发设备的麦克风与台式电脑保持连接,这两种方式都是为保证麦克风接收的声波信号能及时传输至用户的电脑端,以便及时进行后续分析。
综上,在本技术方案中,数据转发设备通过蓝牙芯片与第一终端进行握手识别及接收第一终端发送的携带有通知信息的数据,通过控制芯片对数据进行编码得到二进制数据,开启扬声器输出预置频率的声波信号持续预置时长,根据二进制数据控制扬声器发出不同频率的声波信号,以声波信号的频率变化来
发送二进制数据,通过麦克风接收声波信号,并将声波信号传输给第二终端,以使第二终端根据声波信号的频率变化获得二进制数据,解析获得通知信息。数据转发设备通过扬声器与麦克风的通信组合可实现将第一终端接收到的通知信息转发到第二终端显示,例如,可实现各种系统下转发智能手机接收到的通知信息到电脑上显示,兼容性好,使得用户使用电脑工作时,无需频繁查看手机即可得知手机接收到的通知信息,不影响用户的工作效率,采用蓝牙通信不依赖于wifi路由器,适用于无wifi信号的场景且耗电量低。
上述实施例二和实施例三位为发明实施例提供的数据转换方法的实施例,下述实施例四和实施例五为本发明实施例提供的数据转发装置的实施例,数据转发装置与上述数据转发方法属于一个总的发明构思,在数据转发装置的实施例中未详尽描述的细节内容,可参考上述数据转发方法的实施例。
实施例四
请参考图4,其是本发明实施例四提供的一种数据转发装置的架构示意图。
一种数据转发装置400,应用于上述任一实施例中的数据转发设备,可以包括如下内容:
数据接收模块410,用于通过蓝牙芯片接收第一终端发送的携带有通知信息的数据。
编码模块420,用于通过控制芯片对数据进行编码得到二进制数据。
控制模块430,用于根据二进制数据控制扬声器发出不同频率的声波信号。
声波信号接收模块440,用于通过麦克风接收声波信号,并将声波信号传输给第二终端,以使第二终端根据声波信号获得二进制数据,解析获得通知信息。
优选的,控制模块430具体用于:
控制扬声器输出声波信号时代表数字1,停止输出声波信号时代表数字0;或
控制扬声器输出第一频率的声波信号时代表数字1,输出第二频率的声波信号时代表数字0。
综上,在本技术方案中,数据转发设备通过蓝牙芯片接收第一终端发送的携带有通知信息的数据,通过控制芯片对数据进行编码得到二进制数据,根据二进制数据控制扬声器发出不同频率的声波信号,以声波信号的频率变化来发送二进制数据,通过麦克风接收声波信号,并将声波信号传输给第二终端,以使第二终端根据声波信号的频率变化获得二进制数据,解析获得通知信息。数据转发设备通过扬声器与麦克风的通信组合可实现将第一终端接收到的通知信息转发到第二终端显示,例如,可实现各种系统下转发智能手机接收到的通知信息到电脑上显示,兼容性好,使得用户使用电脑工作时,无需频繁查看手机即可得知手机接收到的通知信息,不影响用户的工作效率,采用蓝牙通信不依赖于wifi路由器,适用于无wifi信号的场景且耗电量低。
实施例五
请参考图5,其是本发明实施例五提供的一种数据转发装置的架构示意图。本实施例与实施例四的主要区别在于,增加了握手识别模块510和开启模块540。
一种数据转发装置500,应用于上述任一实施例中的数据转发设备,可以包括如下内容:
握手识别模块510,用于通过蓝牙芯片与第一终端进行握手识别。
数据接收模块520,用于通过蓝牙芯片接收第一终端发送的携带有通知信息的数据。
编码模块530,用于通过控制芯片对数据进行编码得到二进制数据。
开启模块540,用于开启扬声器在预置时长内持续输出预置频率的声波信号,其中,预置频率的声波信号为上述不同频率的声波信号中的一种。
控制模块550,用于根据二进制数据控制扬声器发出不同频率的声波信号。
声波信号接收模块560,用于通过麦克风接收声波信号,并将声波信号传输给第二终端,以使第二终端根据声波信号获得二进制数据,解析获得通知信息。
综上,在本技术方案中,数据转发设备通过蓝牙芯片与第一终端进行握手识别及接收第一终端发送的携带有通知信息的数据,通过控制芯片对数据进行编码得到二进制数据,开启扬声器输出预置频率的声波信号持续预置时长,根据二进制数据控制扬声器发出不同频率的声波信号,以声波信号的频率变化来发送二进制数据,通过麦克风接收声波信号,并将声波信号传输给第二终端,以使第二终端根据声波信号的频率变化获得二进制数据,解析获得通知信息。数据转发设备通过扬声器与麦克风的通信组合可实现将第一终端接收到的通知信息转发到第二终端显示,例如,可实现各种系统下转发智能手机接收到的通知信息到电脑上显示,兼容性好,使得用户使用电脑工作时,无需频繁查看手机即可得知手机接收到的通知信息,不影响用户的工作效率,采用蓝牙通信不依赖于wifi路由器,适用于无wifi信号的场景且耗电量低。
实施例六
请参考图6,其是本发明实施例六提供的一种数据转发系统的结构示意图。
一种数据转发系统600,包括上述任一实施例中所述的数据转发设备1,还包括括第一终端2和第二终端3;
第一终端2,用于向数据转发设备1发送携带有通知信息的数据。
数据转发设备1,用于将接收的数据进行编码得到二进制数据,并向第二终端发3送二进制数据。
第二终端3,用于接收二进制数据,解析获得通知信息,并在显示屏显示通知信息。
举例来说,第二终端3接收二进制数据的主要过程为:第二终端3接收数据转发设备1通过麦克风实时传输过来的声波信号,识别声波信号的频率变化,间隔0.1秒接收到的声波信号进行频率识别,对于识别出频率为40000HZ的高频声波段记录数字1,对于30000HZ的高频声波段记录数字0,然后按记录顺序将全部记录的数字1和0组合,则可还原出数据转发设备1所编码的二进制数据。
综上,在本技术方案中,数据转发设备接收第一终端发送的携带通知信息的数据,将该数据转换为二进制信息,通过控制扬声器发出的声波信号的频率变化来实现发送二进制信息,并将二进制数据发送给第二终端,以使第二终端解析二进制数据获得通知信息并显示。本实施例的方案可实现将第一终端接收的通知信息转发至第二终端,并在第二终端显示通知信息的内容,例如,可实现各种系统下转发智能手机接收到的通知信息到电脑上显示,兼容性好,使得用户使用电脑工作时,无需频繁查看手机即可得知手机接收到的通知信息,不影响用户的工作效率,采用蓝牙通信不依赖于wifi路由器,适用于无wifi信号的场景且耗电量低。
注意,上述仅为本发明的较佳实施例及所运用技术原理。本领域技术人员会理解,本发明不限于这里所述的特定实施例,对本领域技术人员来说能够进行各种明显的变化、重新调整和替代而不会脱离本发明的保护范围。因此,虽
然通过以上实施例对本发明进行了较为详细的说明,但是本发明不仅仅限于以上实施例,在不脱离本发明构思的情况下,还可以包括更多其他等效实施例,而本发明的范围由所附的权利要求范围决定。
Claims (11)
- 一种数据转发设备,其特征在于,包括信号发射器和麦克风;所述信号发射器包括主控芯片、蓝牙芯片和扬声器,所述蓝牙芯片和扬声器均与所述主控芯片相连;所述蓝牙芯片,用于接收第一终端通过蓝牙发送的通知信息;所述主控芯片,用于将所述通知信息转换为二进制信息;所述扬声器,用于通过声波信号的频率变化发送所述二进制信息;所述麦克风,用于接收所述声波信号,并将所述声波信号发送到第二终端。
- 如权利要求1所述的设备,其特征在于,所述扬声器为高频扬声器。
- 一种数据转发方法,其特征在于,所述方法应用于权利要求1-2任一项所述的数据转发设备,所述方法包括:通过所述蓝牙芯片接收所述第一终端发送的携带有通知信息的数据;通过所述控制芯片对所述数据进行编码得到二进制数据;根据所述二进制数据控制所述扬声器发出不同频率的声波信号;通过所述麦克风接收所述声波信号,并将所述声波信号传输给第二终端,以使所述第二终端根据所述声波信号获得所述二进制数据,解析获得所述通知信息。
- 如权利要求3所述的方法,其特征在于,所述根据所述二进制数据控制所述扬声器发出不同频率的声波信号,包括:控制扬声器输出声波信号时代表数字1,停止输出声波信号时代表数字0;或控制扬声器输出第一频率的声波信号时代表数字1,输出第二频率的声波信号时代表数字0。
- 如权利要求4所述的方法,其特征在于,所述根据所述二进制数据控制 所述扬声器发出不同频率的声波信号之前,还包括:开启所述扬声器在预置时长内持续输出预置频率的声波信号,其中,所述预置频率的声波信号为所述不同频率的声波信号中的一种。
- 如权利要求3-5任一项所述方法,其特征在于,所述通过所述蓝牙芯片接收所述第一终端发送的携带有通知信息的数据之前,还包括:通过所述蓝牙芯片与所述第一终端进行握手识别。
- 一种数据转发装置,所述装置应用于权利要求1-2任一项所述的数据转发设备,所述装置包括:数据接收模块,用于通过所述蓝牙芯片接收所述第一终端发送的携带有通知信息的数据;编码模块,用于通过所述控制芯片对所述数据进行编码得到二进制数据;控制模块,用于根据所述二进制数据控制所述扬声器发出不同频率的声波信号;声波信号接收模块,用于通过所述麦克风接收所述声波信号,并将所述声波信号传输给第二终端,以使所述第二终端根据所述声波信号获得所述二进制数据,解析获得所述通知信息。
- 如权利要求7所述的装置,其特征在于,所述控制模块,具体用于:控制扬声器输出声波信号时代表数字1,停止输出声波信号时代表数字0;或控制扬声器输出第一频率的声波信号时代表数字1,输出第二频率的声波信号时代表数字0。
- 如权利要求8所述的装置,其特征在于,还包括:开启模块,用于开启所述扬声器在预置时长内持续输出预置频率的声波信 号,其中,所述预置频率的声波信号为所述不同频率的声波信号中的一种。
- 如权利要求7-9任一项所述的装置,其特征在于,还包括:握手识别模块,用于通过所述蓝牙芯片与所述第一终端进行握手识别。
- 一种数据转发系统,所述系统包括权利要求1-2任一项所述的数据转发设备,所述系统还包括第一终端和第二终端;所述第一终端,用于向所述数据转发设备发送携带有通知信息的数据;所述数据转发设备,用于将接收的所述数据进行编码得到二进制数据,并向所述第二终端发送所述二进制数据;所述第二终端,用于接收所述二进制数据,解析获得所述通知信息,并在显示屏显示所述通知信息。
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