WO2014086201A1 - 无线通信方法和装置 - Google Patents
无线通信方法和装置 Download PDFInfo
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- WO2014086201A1 WO2014086201A1 PCT/CN2013/084829 CN2013084829W WO2014086201A1 WO 2014086201 A1 WO2014086201 A1 WO 2014086201A1 CN 2013084829 W CN2013084829 W CN 2013084829W WO 2014086201 A1 WO2014086201 A1 WO 2014086201A1
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- bluetooth
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/50—Allocation or scheduling criteria for wireless resources
- H04W72/51—Allocation or scheduling criteria for wireless resources based on terminal or device properties
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L69/00—Network arrangements, protocols or services independent of the application payload and not provided for in the other groups of this subclass
- H04L69/14—Multichannel or multilink protocols
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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
- H04W4/02—Services making use of location information
- H04W4/023—Services making use of location information using mutual or relative location information between multiple location based services [LBS] targets or of distance thresholds
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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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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/10—Connection setup
- H04W76/15—Setup of multiple wireless link connections
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W84/00—Network topologies
- H04W84/02—Hierarchically pre-organised networks, e.g. paging networks, cellular networks, WLAN [Wireless Local Area Network] or WLL [Wireless Local Loop]
- H04W84/10—Small scale networks; Flat hierarchical networks
- H04W84/12—WLAN [Wireless Local Area Networks]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W84/00—Network topologies
- H04W84/18—Self-organising networks, e.g. ad-hoc networks or sensor networks
Definitions
- the subject matter disclosed herein relates to the field of communications, and in particular, to a wireless communication method and apparatus. Background technique
- Bluetooth is a communication specification between multi-communication devices that supports voice and data communications, providing wireless communication within 10 meters of one or more communication devices.
- WIFI is a wireless communication technology based on the IEEE802.i l standard for interoperability between wireless communication devices.
- Bluetooth and WIFI have their own limitations, such as Bluetooth, the transmission distance is short, the speed is low, and it is restricted by obstacles, and the transmission stability of WIFI is poor, so that the communication link in the existing wireless communication system is wirelessly communicated.
- the limitation of the method makes it difficult to provide a smooth communication link and the communication quality is poor.
- the present invention provides a wireless communication method and apparatus for smoothing a communication link in a wireless communication system and improving communication quality.
- a wireless communication method comprising the steps of:
- each communication device When the communication distance between the communication devices is less than or equal to the distance threshold, each communication device transmits multimedia data through the WIFI channel and transmits a control command through the Bluetooth channel.
- a wireless communication apparatus including:
- a channel establishing unit establishing a WIFI channel and a Bluetooth channel between each communication device;
- a communication distance detecting unit detecting a communication distance between the communication devices;
- the first data transmission unit when the communication distance between the communication devices is less than or equal to the distance threshold, each communication device transmits the multimedia data through the WIFI channel, and transmits the control command through the Bluetooth channel.
- a computer program comprising program code, when When the computer program is run on a computer, the program code performs the steps in accordance with the wireless communication method described above.
- each communication device when the communication distance between the communication devices is greater than the distance threshold, each communication device performs communication by using WIFI, and when the communication distance between the communication devices is less than or equal to the distance threshold, each communication device Adopt WIFI to transmit multimedia data and adopt Bluetooth transmission control command, which can realize seamless switching between Bluetooth and WIFI, integrate the advantages of Bluetooth and WIFI communication, ensure the smooth communication link in small-scale wireless communication system, and improve communication quality. . DRAWINGS
- FIG. 1 is a flowchart showing an implementation of a wireless communication method according to an embodiment of the present invention
- FIG. 2 is a flowchart showing an implementation of a wireless communication method according to another embodiment of the present invention.
- FIG. 3 is a block diagram showing the structure of a wireless communication device according to an embodiment of the present invention. detailed description
- each communication device when the communication distance between the communication devices is greater than the distance threshold, each communication device uses WIFI to communicate. When the communication distance between the communication devices is less than or equal to the distance threshold, each communication device adopts WIFI.
- the transmission of multimedia data and the use of Bluetooth transmission control commands enable seamless switching between Bluetooth and WIFI, combining the respective advantages of Bluetooth and WIFI communication to ensure smooth communication links in small-scale wireless communication systems and improve communication quality.
- the method provided by the embodiments of the present invention can be applied to a small-scale wireless communication system, such as a digital home network system.
- a small-scale wireless communication system such as a digital home network system.
- the principle is the same as that of the digital home network system. Taking the digital home network system including the remote controller and the set-top box as an example, it can be understood that when the digital home network system includes other devices, the communication principle is the same.
- FIG. 1 illustrates an implementation flow of a wireless communication method in accordance with an embodiment of the present invention.
- the wireless communication method starts from step S101.
- step S101 a WIFI channel and a Bluetooth channel are established between the communication devices.
- each communication device may be any communication device in a small-range wireless communication system, such as a remote controller, a set-top box, or the like in a digital home network.
- step S102 the communication distance between the communication devices is detected.
- the communication distance between the communication devices that need to communicate is detected, such as detecting the communication distance between the remote controller and the set top box in the digital home network system.
- the specific method for detecting the communication distance between the communication devices may be any one of the methods provided by the prior art.
- the following methods provided by the embodiments of the present invention may also be used:
- the communication distance between the communication devices is estimated based on the strength of the Bluetooth signal between the communication devices.
- the specific process belongs to the prior art, and details are not described herein again.
- step S103 when the communication distance between the communication devices is less than or equal to the distance threshold, each communication device transmits multimedia data through the WIFI channel, and transmits a control command through the Bluetooth channel.
- the Bluetooth The channel has the characteristics of small amount of data transmitted, stable channel, and real-time performance. Therefore, when the communication distance between the communication devices is less than or equal to the distance threshold, each communication device transmits a control command through the Bluetooth channel, which can satisfy the control command. Real-time and correct transmission requirements. Moreover, the control command generally transmits a small amount of data, so that the Bluetooth channel can correctly transmit the control command with a small amount of data.
- the WIFI channel since the multimedia data has low requirements on the real-time performance of the channel, and the multimedia data generally transmits a large amount of data, and the WIFI channel has the characteristics of large amount of data transmitted and low real-time performance, The WIFI channel transmits multimedia data, which can meet the transmission requirements of multimedia data.
- the Bluetooth channel is switched to the WIFI channel, thereby achieving seamless switching between the Bluetooth channel and the WIFI channel, ensuring a small-scale communication system.
- the communication link between the communication devices is smooth. The specific process of switching from the Bluetooth channel to the WIFI channel belongs to the prior art, and details are not described herein again.
- each communication device transmitting the multimedia data through the WIFI channel specifically includes:
- the strength of the WIFI signal is detected.
- the WIFI channel is determined according to the strength of the WIFI signal, the WIFI channel is directly used to transmit the multimedia data.
- the specific process of transmitting the multimedia data through the Bluetooth channel is as follows:
- the multimedia data to be transmitted is added to the end of the Bluetooth transmission queue, and the data is transmitted according to the Bluetooth transmission queue.
- the multimedia data since the multimedia data has lower real-time requirements, and the control command has higher real-time requirements, when the multimedia data is switched to the Bluetooth channel, the multimedia data is added to the team of the Bluetooth transmission queue.
- the tail ensures that the control commands in the Bluetooth transmission queue are transmitted first, satisfying the real-time requirements of the control commands, and transmitting multimedia data at the same time.
- each communication device transmitting the control command through the Bluetooth channel specifically includes:
- A2 Detect the strength of the Bluetooth signal when the communication distance between the communication devices is less than or equal to the distance threshold.
- the specific process for detecting the strength of the Bluetooth signal is prior art and will not be described herein.
- the Bluetooth channel is determined according to the strength of the Bluetooth signal, the Bluetooth channel is used to directly transmit the control command.
- the specific process for determining whether the Bluetooth channel is available according to the strength of the Bluetooth signal is as follows: Determine whether the strength of the Bluetooth signal is within the Bluetooth strength threshold range, and if so, determine that the Bluetooth channel is unavailable, and if not, determine that the Bluetooth channel is available.
- the Bluetooth strength threshold range is the range of the strength of the Bluetooth signal when the Bluetooth channel is unavailable. For example, when the intensity of the Bluetooth signal is divided into 10 levels, the Bluetooth intensity threshold is typically in the range of 0.5-1.
- the control command to be transmitted is added to the queue header of the WIFI transmission queue, and the data is transmitted according to the WIFI transmission queue.
- control command since the control command has higher real-time requirements, and the multimedia data has lower real-time requirements, the control command is added to the queue of the WIFI transmission queue when switching to the WIFI channel to transmit the control command.
- the header ensures the priority transmission of the control commands in the WIFI transmission queue to meet the real-time requirements of the control commands.
- the method further includes:
- each communication device communicates through the WIFI channel.
- the distance threshold is preset or customized by the user as needed.
- the distance threshold can be the Bluetooth communication distance.
- the Bluetooth communication distance refers to the working distance when communicating by Bluetooth, which is generally 10 meters.
- each communication device communicates through the WIFI channel. Since the Bluetooth communication distance is generally 10 meters, and the WIFI communication distance can generally reach 96 kilometers, when the communication distance between the communication devices is greater than the distance threshold, such as greater than the Bluetooth communication distance, the WIFI channel is used for communication, which can ensure each When the communication distance between the communication devices is greater than the distance threshold, the link between the communication devices is also smooth.
- the communication of each communication device through the WIFI channel specifically includes:
- the strength of the WIFI signal is detected.
- the specific process for detecting the strength of the WIFI signal is known in the prior art, and details are not described herein again.
- the output transmission failure prompt is sent to inform the user that the communication distance between the communication devices is too far, and the WIFI channel and the Bluetooth channel cannot communicate.
- the specific process for determining whether the WIFI channel is available according to the strength of the WIFI signal is as follows: Determine whether the strength of the WIFI signal is within the WIFI intensity threshold range, and if so, determine that the WIFI channel is unavailable, and if not, determine that the WIFI channel is available.
- the WIFI intensity threshold range refers to the intensity range of the WIFI signal when the WIFI channel is unavailable. For example, when the intensity of the WIFI signal is divided into 10 levels, the WIFI intensity threshold range is generally 0-1. That is, when the strength of the WIFI signal is the highest 10, the WIFI intensity threshold range of 0-1 means that when the signal strength of the WIFI is between 0 and 1, it can be judged that if it is farther away, the WIFI signal will be interrupted.
- each communication device When it is determined according to the strength of the WIFI signal that each WIFI channel is available, each communication device communicates through the WIFI channel.
- the communication of each communication device through the WIFI channel means that the communication commands and multimedia data are transmitted between the communication devices through the WIFI channel.
- FIG. 2 shows an implementation flow of a wireless communication method according to another embodiment of the present invention.
- the communication device is a remote controller and a set top box, and the principle is the same for other communication devices.
- the wireless communication method starts from step S201.
- step S201 the remote controller and the set top box are activated to establish a WIFI channel and a Bluetooth channel between the remote controller and the set top box.
- the specific process is as described above, and will not be described herein.
- step S202 the remote controller and the set top box monitor the strength of the WIFI signal and the strength of the Bluetooth signal in real time.
- the real-time monitoring can monitor the intensity of the WIFI signal and the strength of the Bluetooth signal for each preset time (eg, 2 seconds).
- step S203 a communication distance between the communication devices is detected.
- the specific process is as described above, and will not be described herein.
- step S204 when the communication distance between the remote controller and the set top box is greater than the distance threshold, the remote controller and the set top box communicate via the WIFI channel.
- the specific process is as follows:
- the remote controller When the communication distance between the remote controller and the set top box is greater than the distance threshold (such as the Bluetooth communication distance), it is determined whether the WIFI channel is available according to the intensity of the monitored WIFI signal, and if so, the remote controller communicates with the set top box through the WIFI channel. For example, the control command and the media data are transmitted through the WIFI communication signal. If not, the transmission failure prompt is output to inform the user that the communication distance between the communication devices is too far, and the WIFI channel and the Bluetooth channel cannot communicate.
- the distance threshold such as the Bluetooth communication distance
- the strengths of the WIFI signals monitored by the remote controller and the set top box may be different, in this embodiment, when the communication distance between the remote controller and the set top box is greater than the distance threshold, if the remote controller needs to The set top box transmits control commands or multimedia data, and judges whether the WIFI channel is available according to the strength of the WIFI signal monitored by the remote controller. If the set top box needs to transmit control commands or multimedia data to the remote controller, the WIFI signal is determined according to the strength of the WIFI signal monitored by the set top box. Whether the channel is available.
- step S205 when the communication distance between the remote controller and the set top box is less than or equal to the distance threshold, the multimedia data is transmitted between the remote controller and the set top box through the WIFI channel, and transmitted through the Bluetooth channel. control commands.
- the communication data of each communication device through the WIFI channel is specifically:
- the WIFI channel determines whether the WIFI channel is available according to the intensity of the monitored WIFI signal, and if so, directly transmit the multimedia data by using the WIFI channel, and if not, switch to the Bluetooth channel. , transmitting the multimedia data through a Bluetooth channel.
- the specific process of transmitting multimedia data through the Bluetooth channel is as described above, and will not be described herein.
- the communication commands transmitted by the communication devices through the Bluetooth channel specifically include:
- the Bluetooth channel determines whether the Bluetooth channel is available according to the intensity of the monitored Bluetooth signal, and if so, directly use the Bluetooth channel to transmit the control command, and if not, switch to the WIFI channel.
- the control command is transmitted through the WIFI channel. The specific process of transmitting the control command through the WIFI channel is as described above, and details are not described herein again.
- the strength of the WIFI signal monitored in real time can be directly used to determine whether the WIF channel is available, and the Bluetooth is utilized.
- the strength of the signal determines whether the Bluetooth channel is available, so that the WIFI and the Bluetooth channel can be switched more quickly and accurately, so that the communication link in the small-scale wireless communication system is smoother, and the user has a smooth network experience.
- Fig. 3 shows the structure of a wireless communication device according to an embodiment of the present invention, and only parts related to the embodiment of the present invention are shown for convenience of explanation.
- the wireless communication device can be used for any communication device with Bluetooth and WIFI, such as a remote controller with Bluetooth and WIFI, a set top box, etc., and can be a software unit, a hardware unit or a combination of hardware and software running in these devices, It can be integrated as a stand-alone pendant into these Bluetooth and WIFI communication devices or in these application systems with Bluetooth and WIFI communication devices, as detailed below:
- the wireless communication device includes a channel establishment unit 1, a communication distance detecting unit 2, and a first data transmission unit 3.
- the "first" in the first data transmission unit 3 and the “second” in the second data transmission unit 4 mentioned later are only used to distinguish the components, do not represent the order, and do not represent the first data transmission.
- the unit must have a second data transmission unit, or there must be a first data transmission unit with the second data transmission unit. among them:
- the channel establishing unit 1 establishes a WIFI channel and a Bluetooth channel between the communication devices.
- the communication distance detecting unit 2 detects the communication distance between the respective communication devices.
- each communication device When the communication distance between the communication devices of the first data transmission unit 3 is less than or equal to the distance threshold, each communication device transmits multimedia data through the WIFI channel, and transmits a control command through the Bluetooth channel.
- the first data transmission unit 3 includes a first WIFI signal detection module 31, a first WIFI communication module 32, and a first Bluetooth communication module 33. among them:
- the first WIFI signal detecting module 31 detects the strength of the WIFI signal when the communication distance between the communication devices is less than or equal to the distance threshold.
- the first WIFI communication module 32 directly transmits the multimedia data by using the WIFI channel when determining that the WIFI channel is available according to the strength of the WIFI signal.
- the first Bluetooth communication module 33 switches to the Bluetooth channel when the WIFI channel is not available according to the strength of the WIFI signal, and transmits the multimedia data through the Bluetooth channel.
- the first Bluetooth communication module 33 adds the multimedia data to be transmitted to the end of the Bluetooth transmission queue, and transmits data according to the Bluetooth transmission queue.
- the first data transmission unit 3 further includes a Bluetooth signal detection module 34, a second Bluetooth communication module 35, and a second WIFI communication module 36. among them:
- the Bluetooth signal detecting module 34 detects the strength of the Bluetooth signal when the communication distance between the communication devices is less than or equal to the distance threshold.
- the second Bluetooth communication module 35 directly transmits the control command using the Bluetooth channel when determining that the Bluetooth channel is available according to the strength of the Bluetooth signal.
- the second WIFI communication module 36 switches to the WIFI channel when the Bluetooth channel is not available according to the strength of the Bluetooth signal, and transmits the control command through the WIFI channel.
- the second WIFI communication module 36 adds a control command to be transmitted to the queue header of the WIFI transmission queue, and transmits data according to the WIFI transmission queue.
- the apparatus further includes a second data transmission unit 4.
- each communication device communicates via the WIFI channel.
- the distance threshold is preset or customized by the user as needed.
- the distance threshold can be a Bluetooth communication distance.
- the Bluetooth communication distance refers to the working distance when communicating by Bluetooth, generally
- the second data transmission unit 4 includes a second WIFI signal detection module 41, a transmission failure prompting module 42 and a third WIFI communication module 43. among them:
- the second WIFI signal detecting module 41 detects the strength of the WIFI signal when the communication distance between the communication devices is greater than the distance threshold.
- the transmission failure prompting module 42 outputs a transmission failure prompt when determining that the WIFI channel is unavailable according to the strength of the WIFI signal, to inform the user that the communication distance between the communication devices is too far, and the WIFI channel and the Bluetooth channel cannot communicate.
- the third WIFI communication module 43 communicates through the WIFI channel when determining that the WIFI channel is available according to the strength of the WIFI signal.
- the wireless communication method according to Fig. 1 may be a wireless communication method performed by each unit in the wireless communication device shown in Fig. 3.
- step S101 shown in Fig. 1 can be performed by the channel establishing unit 1 shown in Fig. 3.
- step S102 shown in Fig. 1 can be performed by the communication distance detecting unit 2 shown in Fig. 3.
- Step S103 shown in Fig. 1 can be performed by the first data transfer unit 3 shown in Fig. 3.
- each unit included is only divided according to functional logic, but is not limited to the above division, as long as the corresponding function can be realized; in addition, the specific names of each functional unit are only for It is convenient to distinguish one from another and is not intended to limit the scope of protection of the present invention.
- each unit in the wireless communication apparatus shown in FIG. 3 may be separately or completely combined into one or several other units, or one of the units may be further removed. It is divided into multiple units that are functionally smaller. This can achieve the same operation without affecting the implementation of the technical effects of the embodiments of the present invention.
- the computer program can be recorded, for example, on a computer readable recording medium, and loaded in the above computing device through a computer readable recording medium and operated therein.
- each communication device uses WIFI to communicate, and when the communication distance between the communication devices is less than or equal to the distance threshold, each communication device
- the WIFI transmits multimedia data and adopts the Bluetooth transmission control command, so that seamless switching between Bluetooth and WIFI can be realized, and the advantages of Bluetooth and WIFI communication are integrated to ensure smooth communication links in the small-scale wireless communication system.
- the multimedia data since the multimedia data has low real-time requirements, and the control command has high real-time requirements, when the multimedia data is transmitted when switching to the Bluetooth channel, the multimedia data is added to the Bluetooth transmission queue.
- the tail of the team ensures that the control commands in the Bluetooth transmission queue are transmitted first, satisfying the real-time requirements of the control commands, and transmitting multimedia data at the same time.
- the control command since the control command has higher real-time requirements, and the multimedia data has lower real-time requirements, when the control command is switched to the WIFI channel, the control command is added to the queue header of the WIFI transmission queue, thereby ensuring The control commands are preferentially transmitted in the WIFI transmission queue to meet the real-time requirements of the control commands.
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Abstract
本发明适用于通信领域,提供了一种无线通信方法和装置,所述方法包括:在各通信设备之间建立WIFI信道和蓝牙信道;检测各通信设备之间的通信距离;以及当各通信设备之间的通信距离小于或者等于距离阈值时,各通信设备通过WIFI信道传输多媒体数据,通过蓝牙信道传输控制命令。本发明提供的方法可以在蓝牙和WIFI之间实现无缝切换,综合蓝牙和WIFI通信各自的优势,保证小范围无线通信系统中通信链路的顺畅,提高通信质量。
Description
无线通信方法和装置 技术领域
这里公开的主题内容涉及通信领域,尤其涉及一种无线通信方法和装置。 背景技术
现有的无线通信方式典型的包括蓝牙通信和 WIFI通信。其中蓝牙是多通 信设备之间的通信规范, 其支持语音和数据通信, 提供一个或者多个通信设 备之间在 10米范围内的无线通讯。 WIFI是一个建立于 IEEE802.i l标准的实 现无线通信设备间互联互通的无线通讯技术。
在现有的小范围无线通信系统, 如数字家庭网络系统等中, 各通信设备 实现无线传输的方式一般为单独采用蓝牙传输, 或者单独采用 WIFI传输。 发明内容
由于蓝牙和 WIFI均存在各自的限制, 如蓝牙的传输距离短、速度低、且 受障碍物限制, 而 WIFI的传输稳定性较差,从而使得现有的无线通信系统中 通信链路受无线通信方式的限制, 难以提供顺畅的通信链路, 通信质量差。
有鉴于此, 本发明提供一种无线通信方法及装置, 以使得无线通信系统 中通信链顺畅, 提高通信质量。
根据本发明的一个方面, 提供一种无线通信方法, 包括步骤:
在各通信设备之间建立 WIFI信道和蓝牙信道;
检测各通信设备之间的通信距离; 以及
当各通信设备之间的通信距离小于或者等于距离阈值时, 各通信设备通 过 WIFI信道传输多媒体数据, 通过蓝牙信道传输控制命令。
根据本发明的另一方面, 提供一种无线通信装置, 包括:
信道建立单元, 在各通信设备之间建立 WIFI信道和蓝牙信道; 通信距离检测单元, 检测各通信设备之间的通信距离; 以及
第一数据传输单元, 在各通信设备之间的通信距离小于或者等于距离阈 值时,各通信设备通过 WIFI信道传输多媒体数据,通过蓝牙信道传输控制命 令。
根据本发明的再一个方面, 还提供一种包括程序代码的计算机程序, 当
所述计算机程序运行在计算机上时, 所述程序代码执行根据上述无线通信方 法的各步骤。
在本发明的上述方面中, 通过在各通信设备之间的通信距离大于距离阈 值时,各通信设备采用 WIFI进行通信,在各通信设备之间的通信距离小于或 者等于距离阈值时,各通信设备采用 WIFI传输多媒体数据,采用蓝牙传输控 制命令, 从而可以在蓝牙和 WIFI之间实现无缝切换, 综合蓝牙和 WIFI通信 各自的优势, 保证小范围无线通信系统中通信链路的顺畅, 提高通信质量。 附图说明
为了更清楚地说明本发明的各个方面, 下面将对实施例或现有技术描述 中所需要使用的附图作筒单地介绍, 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 性的前提下, 还可以根据这些附图获得其他的附图。
图 1是根据本发明的实施例的无线通信方法的实现流程图;
图 2是根据本发明的另一实施例的无线通信方法的实现流程图; 图 3是根据本发明的实施例的无线通信装置的结构框图。 具体实施方式
以下结合附图对本发明的各个实施例进行进一步详细说明。 应当理解, 此处所描述的具体实施例仅仅用以解释本发明, 并不用于限定本发明。
在本发明实施例中, 当各通信设备之间的通信距离大于距离阈值时, 各 通信设备采用 WIFI进行通信,当各通信设备之间的通信距离小于或者等于距 离阈值时, 各通信设备采用 WIFI传输多媒体数据, 采用蓝牙传输控制命令, 从而可以在蓝牙和 WIFI之间实现无缝切换, 综合蓝牙和 WIFI通信各自的优 势, 保证小范围无线通信系统中通信链路的顺畅, 提高通信质量。
本发明实施例提供的方法可以适用于小范围无线通信系统, 如数字家庭 网络系统等。 为了使清楚、 筒要、 完整的说明根据本发明实施例的无线通信 方法, 以下以数字家庭网络系统为例进行说明, 对于其他小范围无线通信系 统, 其原理与数字家庭网络系统一致。 以数字家庭网络系统包括遥控器和机 顶盒为例, 可以理解, 数字家庭网络系统包括其他设备时, 其通信原理相同。
为了说明本发明的各个方面, 下面通过具体实施例来进行说明。
图 1示出了根据本发明的实施例的无线通信方法的实现流程。 该无线通 信方法从步骤 S101开始。
在步骤 S101 , 在各通信设备之间建立 WIFI信道和蓝牙信道。
在本实施例中, 各通信设备可以为小范围无线通信系统中的任意通信设 备, 如为数字家庭网络中的遥控器、 机顶盒等。
其中各通信设备之间建立 WIFI信道和蓝牙信道的具体过程属于现有技 术, 在此不再赘述。
在步骤 S102, 检测各通信设备之间的通信距离。
在本实施例中, 检测需要进行通信的各通信设备之间的通信距离, 如检 测数字家庭网络系统中的遥控器和机顶盒之间的通信距离。 其中检测各通信 设备之间的通信距离的具体方法可以采用现有技术提供的任意一种方法。 也 可以采用本发明实施例提供的如下方法:
根据各通信设备之间蓝牙信号的强弱值, 估算各通信设备之间的通信距 离。 其具体过程属于现有技术, 在此不再赘述。
在步骤 S103 , 当各通信设备之间的通信距离小于或者等于距离阈值时, 各通信设备通过 WIFI信道传输多媒体数据, 通过蓝牙信道传输控制命令。
在本实施例中, 当各通信设备之间的通信距离小于或者等于距离阈值时, 由于控制命令主要用于控制通信设备立即作出对应响应, 需要保证控制命令 传输的实时性和正确性, 而蓝牙信道具有传输的数据量小、 信道稳定、 实时 性要的特性, 因此, 当各通信设备之间的通信距离小于或者等于距离阈值时, 各通信设备通过蓝牙信道传输控制命令, 可以满足控制命令对于实时性和正 确性的传输要求。 而且控制命令一般传输的数据量小, 从而蓝牙信道也可以 正确的传输该数据量小的控制命令。
在本实施例中, 由于多媒体数据对于信道的实时性要求较低, 且多媒体 数据一般传输的数据量较大, 而 WIFI信道正好具有传输的数据量大、 实时性 较低的特性, 因此, 采用 WIFI信道来传输多媒体数据, 可以满足多媒体数据 的传输需求。
在本实施例中, 当各通信设备之间的通信距离小于或者等于距离阈值时, 如果当前要传输的数据为控制命令, 则采用蓝牙信道传输该控制命令, 当需 要传输的数据由控制命令变成多媒体数据时, 则从蓝牙信道切换至 WIFI信 道,从而实现蓝牙信道与 WIFI信道之间的无缝切换,保证小范围通信系统中
各通信设备之间的通信链路的顺畅。其中从蓝牙信道切换至 WIFI信道的具体 过程属于现有技术, 在此不再赘述。
在本发明另一实施例中, 当各通信设备之间的通信距离小于或者等于距 离阈值时, 各通信设备通过 WIFI信道传输多媒体数据具体包括:
Al、 当各通信设备之间的通信距离小于或者等于距离阈值时,检测 WIFI 信号的强度。
Bl、 当依据 WIFI信号的强度判定 WIFI信道可用时, 直接采用 WIFI信 道传输多媒体数据。
Cl、当依据 WIFI信号的强度判定 WIFI信道不可用时,切换至蓝牙信道, 通过蓝牙信道传输该多媒体数据。
其中通过蓝牙信道传输该多媒体数据的具体过程如下:
将需要传输的多媒体数据增加至蓝牙传输队列的队尾, 按照蓝牙传输队 列传输数据。
在本实施例中, 由于多媒体数据对实时性要求较低, 而控制命令对实时 性要求较高, 从而在切换至蓝牙信道来传输多媒体数据时, 通过将该多媒体 数据增加至蓝牙传输队列的队尾,从而保证蓝牙传输队列中控制命令先传输, 满足控制命令的实时性要求, 同时可以传输多媒体数据。
在本发明另一实施例中, 当各通信设备之间的通信距离小于或者等于距 离阈值时, 各通信设备通过蓝牙信道传输控制命令具体包括:
A2、 当各通信设备之间的通信距离小于或者等于距离阈值时, 检测蓝牙 信号的强度。 其中检测蓝牙信号的强度的具体过程为现有技术, 在此不再赘 述。
B2、 当依据蓝牙信号的强度判定蓝牙信道可用时, 直接采用蓝牙信道传 输控制命令。
其中依据蓝牙信号的强度判断蓝牙信道是否可用的具体过程如下: 判断蓝牙信号的强度是否在蓝牙强度阈值范围内, 若是, 则判定蓝牙信 道不可用, 若否, 则判定蓝牙信道可用。 其中蓝牙强度阈值范围是指蓝牙信 道不可用时蓝牙信号的强度范围。 如当将蓝牙信号的强度分为 10等级时, 该 蓝牙强度阈值范围一般为 0.5-1。
C2、 当依据蓝牙信号的强度判定蓝牙信道不可用时, 切换至 WIFI信道, 通过 WIFI信道传输该控制命令。
其中通过 WIFI信道传输该控制命令的具体过程如下:
将需要传输的控制命令增加至 WIFI传输队列的队列头, 按照 WIFI传输 队列传输数据。
在本实施例中, 由于控制命令对实时性要求较高, 而多媒体数据对实时 性要求较低,从而在切换至 WIFI信道来传输控制命令时,通过将该控制命令 增加至 WIFI传输队列的队列头, 从而保证 WIFI传输队列中控制命令优先传 输, 满足控制命令的实时性要求。
在本发明另一实施例中, 该方法还包括:
当各通信设备之间的通信距离大于距离阈值时, 各通信设备通过 WIFI 信道进行通信。
其中距离阈值为预设或者用户根据需要自定义的。 该距离阈值可以为蓝 牙通信距离。 其中蓝牙通信距离是指采用蓝牙进行通信时的工作距离, 一般 为 10米。
当各通信设备之间的通信距离大于距离阈值, 如大于蓝牙通信距离时, 各通信设备通过 WIFI信道进行通信。 由于蓝牙通信距离一般为 10米, 而 WIFI通信距离一般可以达到 96公里, 因此, 当各通信设备之间的通信距离 大于距离阈值, 如大于蓝牙通信距离时, 采用 WIFI信道进行通信, 可以保证 各通信设备之间的通信距离大于距离阈值时, 各通信设备之间的链路也是顺 畅的。
在本发明另一实施例中, 当各通信设备之间的通信距离大于距离阈值时, 各通信设备通过 WIFI信道进行通信具体包括:
A3、 当各通信设备之间的通信距离大于距离阈值时, 检测 WIFI信号的 强度。 其中检测 WIFI信号的强度的具体过程为现有技术, 在此不再赘述。
B3、 当依据 WIFI信号的强度判定 WIFI信道不可用时, 输出传输失败提 示, 以告知用户各通信设备之间的通信距离过远, WIFI信道和蓝牙信道均无 法进行通信。
其中依据 WIFI信号的强度判断 WIFI信道是否可用的具体过程如下: 判断 WIFI信号的强度是否在 WIFI强度阈值范围内,若是,则判定 WIFI 信道不可用, 若否, 则判定 WIFI信道可用。 其中 WIFI强度阈值范围是指 WIFI信道不可用时 WIFI信号的强度范围。 如当将 WIFI信号的强度分为 10 等级时, 则该 WIFI强度阈值范围一般为 0-1。 即当 WIFI信号的强度最高为
10, 则该 WIFI强度阈值范围为 0-1是指 WIFI的信号强度在 0至 1之间时, 就可以判断如果再远一点, WIFI信号就要中断。
C3、 当依据 WIFI信号的强度判定 WIFI信道可用时, 各通信设备通过 WIFI信道进行通信。 其中各通信设备通过 WIFI信道进行通信是指各通信设 备之间通过 WIFI信道传输控制命令和多媒体数据。
图 2示出了根据本发明的另一实施例的无线通信方法的实现流程, 为了 便于说明, 以通信设备为遥控器和机顶盒为例, 对于其他通信设备, 其原理 相同。 该无线通信方法从步骤 S201开始。
在步骤 S201 , 启动遥控器和机顶盒, 建立遥控器和机顶盒之间的 WIFI 信道和蓝牙信道。 其具体过程如上所述, 在此不再赘述。
在步骤 S202, 遥控器和机顶盒实时监测其 WIFI信号的强度和蓝牙信号 的强度。
其中实时监测可以为每预设时间(如 2秒)监测一次 WIFI信号的强度和 蓝牙信号的强度。
在步骤 S203 , 检测各通信设备之间的通信距离。 其具体过程如上所述, 在此不再赘述。
在步骤 S204, 当遥控器和机顶盒之间的通信距离大于距离阈值时, 遥控 器和机顶盒通过 WIFI信道进行通信。 其具体过程如下:
当遥控器和机顶盒之间的通信距离大于距离阈值(如蓝牙通信距离 )时, 根据监测到的 WIFI信号的强度判断 WIFI信道是否可用, 如果是, 则遥控器 与机顶盒之间通过 WIFI信道进行通信, 如通过 WIFI通信信号传输控制命令 和媒体数据, 如果否, 则输出传输失败提示, 以告知用户各通信设备之间的 通信距离过远, WIFI信道和蓝牙信道均无法进行通信。
在本实施例中,由于遥控器和机顶盒各自监测到的 WIFI信号的强度可能 不同, 因此, 在本实施例中, 当遥控器和机顶盒之间的通信距离大于距离阈 值时, 如果遥控器需要向机顶盒传输控制命令或者多媒体数据, 则根据遥控 器监测到的 WIFI信号的强度判断 WIFI信道是否可用, 如果机顶盒需要向遥 控器传输控制命令或者多媒体数据,则根据机顶盒监测到的 WIFI信号的强度 判断 WIFI信道是否可用。
在步骤 S205, 当遥控器和机顶盒之间的通信距离小于或者等于距离阈值 时,遥控器和机顶盒之间通过 WIFI信道传输多媒体数据,通过蓝牙信道传输
控制命令。
其中当各通信设备之间的通信距离小于或者等于距离阈值时, 各通信设 备通过 WIFI信道传输多媒体数据具体为:
当各通信设备之间的通信距离小于或者等于距离阈值时, 根据监测到的 WIFI信号的强度判断 WIFI信道是否可用, 如果是, 则直接采用 WIFI信道 传输多媒体数据, 如果否, 则切换至蓝牙信道, 通过蓝牙信道传输该多媒体 数据。 其中通过蓝牙信道传输多媒体数据的具体过程如上所述, 在此不再赘 述。
当各通信设备之间的通信距离小于或者等于距离阈值时, 各通信设备通 过蓝牙信道传输控制命令具体包括:
当各通信设备之间的通信距离小于或者等于距离阈值时, 根据监测到的 蓝牙信号的强度判断蓝牙信道是否可用, 如果是, 则直接采用蓝牙信道传输 控制命令, 如果否, 则切换至 WIFI信道, 通过 WIFI信道传输该控制命令。 其中通过 WIFI信道传输该控制命令的具体过程如上所述, 在此不再赘述。
在本实施例中,通过实时监测通信设备的 WIFI信号的强度和蓝牙信号的 强度,在需要进行数据传输时, 即可直接利用实时监测到的 WIFI信号的强度 来判断 WIF信道是否可用, 利用蓝牙信号的强度来判断蓝牙信道是否可用, 从而可以更加快速、准确在 WIFI和蓝牙信道之间进行切换,使得小范围无线 通信系统中的通信链路更顺畅, 给用户带来流畅的网络体验。
图 3示出了根据本发明的实施例的无线通信装置的结构, 为了便于说明 仅示出了与本发明实施例相关的部分。
该无线通信装置可以用于任何具有蓝牙和 WIFI的通信设备,例如具有蓝 牙和 WIFI的遥控器、机顶盒等, 可以是运行于这些设备内的软件单元、硬件 单元或者软硬件相结合的单元, 也可以作为独立的挂件集成到这些具有蓝牙 和 WIFI的通信设备中或者运行于这些具有蓝牙和 WIFI的通信设备的应用系 统中, 详述如下:
该无线通信装置包括信道建立单元 1、 通信距离检测单元 2和第一数据 传输单元 3。 其中第一数据传输单元 3中的 "第一" 和后续提及的第二数据 传输单元 4中的 "第二" 仅用于区分各部件, 并不代表顺序, 也不代表有第 一数据传输单元就一定有第二数据传输单元, 或者有第二数据传输单元就一 定有第一数据传输单元。 其中:
信道建立单元 1在各通信设备之间建立 WIFI信道和蓝牙信道。
通信距离检测单元 2检测各通信设备之间的通信距离。
第一数据传输单元 3在各通信设备之间的通信距离小于或者等于距离阈 值时,各通信设备通过 WIFI信道传输多媒体数据,通过蓝牙信道传输控制命 令。
在本发明另一实施例中,该第一数据传输单元 3包括第一 WIFI信号检测 模块 31、 第一 WIFI通信模块 32和第一蓝牙通信模块 33。 其中:
第一 WIFI信号检测模块 31在各通信设备之间的通信距离小于或者等于 距离阈值时, 检测 WIFI信号的强度。
第一 WIFI通信模块 32在依据 WIFI信号的强度判定 WIFI信道可用时, 直接采用 WIFI信道传输多媒体数据。
第一蓝牙通信模块 33在依据 WIFI信号的强度判定 WIFI信道不可用时, 切换至蓝牙信道, 通过蓝牙信道传输该多媒体数据。
在本发明另一实施例中,该述第一蓝牙通信模块 33将需要传输的多媒体 数据增加至蓝牙传输队列的队尾, 按照蓝牙传输队列传输数据。
在本发明另一实施例中, 该第一数据传输单元 3还包括蓝牙信号检测模 块 34、 第二蓝牙通信模块 35和第二 WIFI通信模块 36。 其中:
蓝牙信号检测模块 34在各通信设备之间的通信距离小于或者等于距离 阈值时, 检测蓝牙信号的强度。
第二蓝牙通信模块 35在依据蓝牙信号的强度判定蓝牙信道可用时,直接 采用蓝牙信道传输控制命令。
第二 WIFI通信模块 36在依据蓝牙信号的强度判定蓝牙信道不可用时, 切换至 WIFI信道, 通过 WIFI信道传输该控制命令。
在本发明另一实施例中, 该第二 WIFI通信模块 36将需要传输的控制命 令增加至 WIFI传输队列的队列头, 按照 WIFI传输队列传输数据。
在本发明另一实施例中, 该装置还包括第二数据传输单元 4。 该第二数 据传输单元 4在各通信设备之间的通信距离大于距离阈值时, 各通信设备通 过 WIFI信道进行通信。
其中距离阈值为预设或者用户根据需要自定义的。 该距离阈值可以为蓝 牙通信距离。 其中蓝牙通信距离是指采用蓝牙进行通信时的工作距离, 一般
在本发明另一实施例中,该第二数据传输单元 4包括第二 WIFI信号检测 模块 41、 传输失败提示模块 42和第三 WIFI通信模块 43。 其中:
第二 WIFI信号检测模块 41在各通信设备之间的通信距离大于距离阈值 时, 检测 WIFI信号的强度。
传输失败提示模块 42在依据 WIFI信号的强度判定 WIFI信道不可用时, 输出传输失败提示, 以告知用户各通信设备之间的通信距离过远, WIFI信道 和蓝牙信道均无法进行通信。
第三 WIFI通信模块 43在依据 WIFI信号的强度判定 WIFI信道可用时, 各通信设备通过 WIFI信道进行通信。
根据本发明的一个实施例, 根据图 1所示的无线通信方法可以是由图 3 所示的无线通信装置中的各个单元来执行的无线通信方法。 例如, 图 1所示 的步骤 S101可以由图 3所示的信道建立单元 1来执行。图 1所示的步骤 S102 可以由图 3所示的通信距离检测单元 2来执行。图 1所示的步骤 S103可以由 图 3所示的第一数据传输单元 3来执行。 值得注意的是, 上述系统, 所包括 的各个单元只是按照功能逻辑进行划分的, 但并不局限于上述的划分, 只要 能够实现相应的功能即可; 另外, 各功能单元的具体名称也只是为了便于相 互区分, 并不用于限制本发明的保护范围。 根据本发明的另一个实施例, 图 3所示的无线通信装置中的各个单元可以分别或全部合并为一个或若干个另 外的单元来构成, 或者其中的某个(些)单元还可以再拆分为功能上更小的 多个单元来构成。 这可以实现同样的操作, 而不影响本发明的实施例的技术 效果的实现。
本领域普通技术人员可以理解, 实现上述实施例方法中的全部或部分步 骤是可以通过程序来指令相关的硬件来完成, 所述的程序可以在存储于一计 算机可读取存储介质中, 所述的存储介质, 如 ROM/RAM、 磁盘、 光盘等。 根据本发明的另一个实施例, 可以通过在包括中央处理单元(CPU )、 随机存 取存储器(RAM )、 只读存储器(ROM )等处理元件和存储元件的例如计算 机的通用计算设备上运行能够执行如图 1中所示的无线通信方法的计算机程 序(包括程序代码), 来构造如图 3中所示的无线通信装置, 以及来实现根据 本发明的实施例的无线通信方法。 所述计算机程序可以记载于例如计算机可 读记录介质上, 并通过计算机可读记录介质装载于上述计算设备中, 并在其 中运行。
在本发明的各个实施例中, 当各通信设备之间的通信距离大于距离阈值 时,各通信设备采用 WIFI进行通信, 当各通信设备之间的通信距离小于或者 等于距离阈值时,各通信设备采用 WIFI传输多媒体数据,采用蓝牙传输控制 命令, 从而可以在蓝牙和 WIFI之间实现无缝切换, 综合蓝牙和 WIFI通信各 自的优势, 保证小范围无线通信系统中通信链路的顺畅。 另外, 在本实施例 中, 由于多媒体数据对实时性要求较低, 而控制命令对实时性要求较高, 从 在切换至蓝牙信道来传输多媒体数据时, 通过将该多媒体数据增加至蓝牙传 输队列的队尾, 从而保证蓝牙传输队列中控制命令先传输, 满足控制命令的 实时性要求, 同时可以传输多媒体数据。 同时, 由于控制命令对实时性要求 较高, 而多媒体数据对实时性要求较低,从而在切换至 WIFI信道来传输控制 命令时, 通过将该控制命令增加至 WIFI传输队列的队列头, 从而保证 WIFI 传输队列中控制命令优先传输, 满足控制命令的实时性要求。
以上描述了本发明的各个实施例, 但是它们不用以限制本发明的范围, 本发明的范围由后附的权利要求来定义。 在不脱离本发明的精神和原则的情 况下, 所作的任何修改、 等同替换和改进等, 均应包含在权利要求的保护范 围之内。
Claims
1、 一种无线通信方法, 包括步骤:
在各通信设备之间建立 WIFI信道和蓝牙信道;
检测各通信设备之间的通信距离; 以及
当各通信设备之间的通信距离小于或者等于距离阈值时, 各通信设备通 过 WIFI信道传输多媒体数据, 通过蓝牙信道传输控制命令。
2、 如权利要求 1所述的方法, 其中, 所述距离阈值为蓝牙通信距离。
3、 如权利要求 1所述的方法, 还包括步骤:
当各通信设备之间的通信距离大于距离阈值时, 各通信设备通过 WIFI 信道进行通信。
4、 如权利要求 3所述的方法, 其中, 所述当各通信设备之间的通信距离 大于距离阈值时, 各通信设备通过 WIFI信道进行通信的步骤包括步骤: 当各通信设备之间的通信距离大于距离阈值时, 检测 WIFI信号的强度; 当依据 WIFI信号的强度判定 WIFI信道不可用时, 输出传输失败提示; 以及
当依据 WIFI信号的强度判定 WIFI信道可用时, 各通信设备通过 WIFI 信道进行通信。
5、 如权利要求 1至 4任一项所述的方法, 其中, 所述当各通信设备之间 的通信距离小于或者等于距离阈值时,各通信设备通过 WIFI信道传输多媒体 数据的步骤包括步骤:
当各通信设备之间的通信距离小于或者等于距离阈值时,检测 WIFI信号 的强度;
当依据 WIFI信号的强度判定 WIFI信道可用时, 直接采用 WIFI信道传 输多媒体数据; 以及
当依据 WIFI信号的强度判定 WIFI信道不可用时, 切换至蓝牙信道, 通
过蓝牙信道传输该多媒体数据。
6、 如权利要求 5所述的方法, 其中, 所述当依据 WIFI信号的强度判定 WIFI信道不可用时, 切换至蓝牙信道, 通过蓝牙信道传输该多媒体数据的步 骤包括步骤:
将需要传输的多媒体数据增加至蓝牙传输队列的队尾, 按照蓝牙传输队 列传输数据。
7、 如权利要求 1至 4任一项所述的方法, 其中, 所述当各通信设备之间 的通信距离小于或者等于距离阈值时, 各通信设备通过蓝牙信道传输控制命 令的步骤包括步骤:
当各通信设备之间的通信距离小于或者等于距离阈值时, 检测蓝牙信号 的强度;
当依据蓝牙信号的强度判定蓝牙信道可用时, 直接采用蓝牙信道传输控 制命令; 以及
当依据蓝牙信号的强度判定蓝牙信道不可用时,切换至 WIFI信道,通过 WIFI信道传输该控制命令。
8、 如权利要求 7所述的方法, 其中, 所述当依据蓝牙信号的强度判定蓝 牙信道不可用时, 切换至 WIFI信道, 通过 WIFI信道传输该控制命令的步骤 包括步骤:
将需要传输的控制命令增加至 WIFI传输队列的队列头, 按照 WIFI传输 队列传输数据。
9、 一种无线通信装置, 包括:
信道建立单元, 被配置为在各通信设备之间建立 WIFI信道和蓝牙信道; 通信距离检测单元, 被配置为检测各通信设备之间的通信距离; 以及 第一数据传输单元, 被配置为在各通信设备之间的通信距离小于或者等 于距离阈值时,各通信设备通过 WIFI信道传输多媒体数据,通过蓝牙信道传 输控制命令。
10、 如权利要求 9所述的装置, 还包括:
第二数据传输单元, 被配置为在各通信设备之间的通信距离大于距离阈 值时, 各通信设备通过 WIFI信道进行通信。
11、 如权利要求 10所述的装置, 其中, 所述第二数据传输单元包括: 第一 WIFI信号检测模块,被配置为在各通信设备之间的通信距离大于距 离阈值时, 检测 WIFI信号的强度;
传输失败提示模块, 被配置为在依据 WIFI信号的强度判定 WIFI信道不 可用时, 输出传输失败提示; 以及
第一 WIFI通信模块, 被配置为在依据 WIFI信号的强度判定 WIFI信道 可用时, 各通信设备通过 WIFI信道进行通信。
12、 如权利要求 10或 11所述的装置, 其中, 所述第一数据传输单元包 括:
第二 WIFI信号检测模块,被配置为在各通信设备之间的通信距离小于或 者等于距离阈值时, 检测 WIFI信号的强度;
第二 WIFI通信模块, 被配置为在依据 WIFI信号的强度判定 WIFI信道 可用时, 直接采用 WIFI信道传输多媒体数据; 以及
第一蓝牙通信模块, 被配置为在依据 WIFI信号的强度判定 WIFI信道不 可用时, 切换至蓝牙信道, 通过蓝牙信道传输该多媒体数据。
13、 如权利要求 12所述的装置, 其中, 所述第一蓝牙通信模块还被配置 为将需要传输的多媒体数据增加至蓝牙传输队列的队尾, 按照蓝牙传输队列 传输数据。
14、 如权利要求 10或 11所述的装置, 其中, 所述第一数据传输单元包 括:
蓝牙信号检测模块, 被配置为在各通信设备之间的通信距离小于或者等 于距离阈值时, 检测蓝牙信号的强度;
第二蓝牙通信模块, 被配置为在依据蓝牙信号的强度判定蓝牙信道可用 时, 直接采用蓝牙信道传输控制命令; 以及
第三 WIFI通信模块,被配置为在依据蓝牙信号的强度判定蓝牙信道不可 用时, 切换至 WIFI信道, 通过 WIFI信道传输该控制命令。
15、 如权利要求 14所述的装置, 其中, 所述第三 WIFI通信模块还被配 置为将需要传输的控制命令增加至 WIFI传输队列的队列头, 按照 WIFI传输 队列传输数据。
16、 一种包括程序代码的计算机程序, 当所述计算机程序运行在计算机 上时, 所述程序代码执行根据权利要求 1所述的无线通信方法的各步骤。
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Patent Citations (3)
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|---|---|---|---|---|
| CN101779419A (zh) * | 2007-07-30 | 2010-07-14 | 马维尔国际贸易有限公司 | 同时维持蓝牙和802.11连接以增加数据吞吐量 |
| US20100144340A1 (en) * | 2008-12-04 | 2010-06-10 | Eran Sudak | Method and apparatus of subchannelization of wireless communication system |
| CN102684775A (zh) * | 2011-03-18 | 2012-09-19 | 易永联科技(北京)有限公司 | 用于在用户设备之间传输数据的方法和装置 |
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| Publication number | Publication date |
|---|---|
| US20150271808A1 (en) | 2015-09-24 |
| US10172138B2 (en) | 2019-01-01 |
| CN103856993A (zh) | 2014-06-11 |
| CN103856993B (zh) | 2016-08-31 |
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