WO2017161762A1 - 数据传输方法、装置及系统 - Google Patents

数据传输方法、装置及系统 Download PDF

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Publication number
WO2017161762A1
WO2017161762A1 PCT/CN2016/088991 CN2016088991W WO2017161762A1 WO 2017161762 A1 WO2017161762 A1 WO 2017161762A1 CN 2016088991 W CN2016088991 W CN 2016088991W WO 2017161762 A1 WO2017161762 A1 WO 2017161762A1
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Prior art keywords
data
transmitted
transmission
data transmission
data block
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PCT/CN2016/088991
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English (en)
French (fr)
Inventor
蔡钧
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乐视控股(北京)有限公司
乐视云计算有限公司
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Priority to US15/247,893 priority Critical patent/US20170279738A1/en
Publication of WO2017161762A1 publication Critical patent/WO2017161762A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L45/00Routing or path finding of packets in data switching networks
    • H04L45/24Multipath

Definitions

  • the embodiments of the present invention relate to the field of communications technologies, and in particular, to a data transmission method, apparatus, and system.
  • Data transmission is an important part of the network. With the continuous development and improvement of communication technologies, more and more data is transmitted from one node to another on the network. Moreover, the amount of data is also increasing, which is increasingly demanding the network.
  • the method of transmitting data in the prior art is to transmit by using a data transmission path. Affected by other services in the network, the available bandwidth of this data transmission path may be degraded, resulting in a decrease in data transmission speed or a network failure, resulting in interruption of the data transmission, and only a retransmission mechanism may be adopted after the interruption.
  • the retransmission mechanism of the prior art is not robust enough, resulting in time-consuming data transmission and network processing resources. Therefore, the data transmission method in the prior art has a problem of low transmission efficiency and poor fault tolerance.
  • the embodiments of the present invention provide a data transmission method, device, and system, which are used to solve the problem that the transmission efficiency is low and the fault tolerance is poor due to the adoption of one data transmission path.
  • an embodiment of the present invention provides a data transmission method, where the method includes:
  • the client determines a data transmission path between itself and the transmission service platform, and selects at least two data transmission paths from the determined data transmission path;
  • Dividing the data to be transmitted obtaining at least two data blocks; and transmitting the home information of each data block to the transmission service platform; wherein the attribution information is used to indicate the data to be transmitted to which the data block belongs;
  • the data block obtained after the segmentation is transmitted to the transmission service platform through the selected at least two data transmission paths.
  • an embodiment of the present invention provides a data transmission method, where the method includes:
  • the transmission service platform receives the home information of the data block sent by the client, where the home information is used to indicate the data to be transmitted to which the data block belongs;
  • Data blocks belonging to the same data to be transmitted are determined according to the attribution information.
  • an embodiment of the present invention provides a data transmission apparatus, where the apparatus includes:
  • a path obtaining module configured to determine a data transmission path between itself and the transmission service platform, and select at least two data transmission paths from the determined data transmission path;
  • a sharding module configured to perform sharding on the data to be transmitted, to obtain at least two data blocks, and send the home information of each data block to the transmission service platform; wherein the attribution information is used to indicate the data to be transmitted to which the data block belongs;
  • a transmission module configured to transmit the data block obtained after the segmentation to the transmission service platform by using the selected at least two data transmission paths.
  • an embodiment of the present invention further provides a data transmission apparatus, where the apparatus includes:
  • the home information receiving module is configured to receive the home information of the data block sent by the client, where the home information is used to indicate the data to be transmitted to which the data block belongs;
  • a data block receiving module configured to receive a data block that is transmitted by the client through the selected at least two data transmission paths
  • a determining module configured to determine, according to the attribution information, a data block that belongs to the same data to be transmitted.
  • an embodiment of the present invention further provides a data transmission system, including:
  • a client configured to determine a data transmission path between the transmission service platform and select at least two data transmission paths from the determined data transmission path; and, to segment the data to be transmitted, to obtain at least two data blocks; And transmitting the home information of each data block to the transmission service platform; wherein the attribution information is used to indicate the data to be transmitted to which the data block belongs; and the data block obtained after the segmentation is transmitted to the transmission service through the selected at least two data transmission paths. platform;
  • the transmission service platform is configured to receive the home information of the data block sent by the client, and receive the data block transmitted by the client through the selected at least two data transmission paths; and determine the data blocks belonging to the same data to be transmitted according to the attribution information.
  • the client determines its own transmission Transmitting at least two data transmission paths between the service platforms, and selecting at least two data transmission paths therefrom; and dividing the data to be transmitted to obtain at least two data blocks; and then, at least two data blocks to be segmented
  • the data transmission paths assigned to the selection are transmitted to the transmission service platform.
  • FIG. 1 is an exemplary flowchart of a data transmission method according to Embodiment 1 of the present invention.
  • FIG. 2 is an exemplary flowchart of a data transmission method according to Embodiment 2 of the present invention.
  • Embodiment 3 is an exemplary flowchart of a data transmission method in Embodiment 3 of the present invention.
  • FIG. 4 is a schematic structural diagram of a data transmission apparatus according to Embodiment 4 of the present invention.
  • FIG. 5 is a schematic structural diagram of a data transmission apparatus according to Embodiment 5 of the present invention.
  • FIG. 6 is a schematic structural diagram of a data transmission system according to Embodiment 5 of the present invention.
  • the client determines a data transmission path between itself and the transmission service platform, and selects at least two data transmission paths therefrom; and performs segmentation on the transmission data to obtain at least two data blocks; The obtained at least two data blocks are transmitted to the transmission service platform through the selected data transmission paths.
  • data to be transmitted is divided into a plurality of data blocks, data is transmitted using at least two data transmission paths at the same time, and only one transmission path is used to transmit data compared with the prior art, which can improve data transmission. effectiveness.
  • FIG. 1 it is a schematic flowchart of a data transmission method according to an embodiment of the present invention. The method is applied to a client, and includes the following steps:
  • Step 101 The client determines a data transmission path between itself and the transmission service platform, and selects at least two data transmission paths from the determined data transmission path.
  • the client described in the embodiment of the present invention may be a mobile terminal client, such as a mobile phone client, or a client of a non-mobile terminal, such as a client of a desktop computer.
  • Step 102 Perform segmentation on the data to be transmitted, obtain at least two data blocks, and send the home information of each data block to the transmission service platform; wherein the attribution information is used to indicate the data to be transmitted to which the data block belongs.
  • step 101 and step 102 The execution order of step 101 and step 102 is not limited.
  • the attribution information may include a unique identifier of each data block, such as a sequence number of each data block.
  • the attribution information may be determined according to the prior art, as long as the transmission service platform can confirm which data blocks belong to the same data to be transmitted, which is not limited by the embodiment of the present invention.
  • Step 103 The data block obtained after the segmentation is transmitted to the transmission service platform through the selected at least two data transmission paths.
  • the transmission service platform can determine the data blocks belonging to the same data to be transmitted according to the attribution information.
  • data to be transmitted is divided into multiple data blocks
  • data is transmitted by using at least two data transmission paths, and the home information of the database is sent to the transmission service platform, so that the transmission service platform can determine which The data blocks belong to the same data to be transmitted.
  • the transmission service platform can determine which The data blocks belong to the same data to be transmitted.
  • the data transmission path used may be degraded for various reasons and is not suitable for continuing to transmit data to be transmitted, which may result in a data transmission process to be transmitted.
  • the stability of the decline in this embodiment, in the embodiment of the present invention, in order to improve the stability of the data transmission, the data block obtained after the segmentation is transmitted to the transmission service platform through the selected at least two data transmission paths, and may further include the following steps:
  • Step A1 Monitor the transmission rate of each selected data transmission path.
  • Step A2 For any selected data transmission path, determine whether the transmission rate is less than a preset rate.
  • Step A3 If yes, the data block allocated to the data transmission path that has not started to be transmitted is allocated to the data transmission path transmission whose transmission rate is greater than the preset rate.
  • the data transmission path whose transmission rate is greater than the preset rate in step A3 may be selected.
  • the data transmission path in at least two data transmission paths.
  • the previously selected data transmission path is L1, L2, L3, and when the L1 transmission rate is less than the preset rate, the data block that L1 has not started to transmit is allocated to the L2 transmission.
  • the data transmission path whose transmission rate is greater than the preset rate in step A3 may also be the data transmission path that is not selected in step 101.
  • the client-to-transport service platform has four data transmission paths L1, L2, L3, and L4, wherein L1, L2, and L3 are selected for transmitting data blocks, and thereafter, the L1 transmission rate is monitored to be less than a preset rate, and L4 is When the transmission rate is greater than the preset rate, the data block that L1 has not started to transmit is allocated to the L4 transmission.
  • the data transmission path is continuously used to transmit the data block allocated thereto.
  • each data transmission path is responsible for transmitting 5 data blocks. If, during the transmission, L1 transmits 3 data blocks, the transmission rate is less than the preset rate, and the transmission rates of the other two data transmission paths (L2 and L3) are greater than or equal to the preset rate, then L1 remains.
  • the two data blocks are allocated to L2 and/or L3 transmissions to ensure the stability of data transmission.
  • the client for supporting various development language developments transmits data to the transport service platform.
  • Step 103 in the embodiment of the present invention may be performed by: calling a general interface to transmit the data block obtained after the segmentation to the transmission service platform through the selected at least two data transmission paths.
  • the general interface can be designed through the SDK (Software Development Kit). This generic interface can be called regardless of the development language and/or which version of the client. In this way, a variety of development languages and various versions of clients can be supported through a common interface.
  • the client for supporting various development language developments transmits data to the transport service platform.
  • the step 103 is further performed to: transmit, by using a universal proxy protocol, the data block obtained after the segmentation to the transmission service platform by using the selected at least two data transmission paths.
  • the general proxy protocol is, for example, a general proxy protocol such as HTTP (HyperText Transfer Protocol) or Socket (socket).
  • the data transmission path in the embodiment of the present invention may be multiple transmission links established by the same client, or may be established by each network card in at least two network cards used by the same client.
  • the transfer path to the transport service platform. It may also include a transmission link, and also a transmission path established between the network and the transmission service platform. This hair The embodiment does not limit this.
  • the transmission rate of each data transmission path may be represented by the signal quality of each network card, or by the load bandwidth of each data transmission path.
  • the data to be transmitted is transmitted to multiple data transmission paths, and in the process of transmitting data, the data transmission is replaced in time according to the transmission rate of each transmission path.
  • the path transmits the remaining data blocks, which can dynamically adapt to the network environment and ensure efficient and stable transmission of data to the transmission service platform.
  • an embodiment of the present invention provides a data transmission method, which is applied to a transmission service platform.
  • FIG. 2 it is a schematic flowchart of the method, and the method includes the following steps:
  • Step 201 The transmission service platform receives the home information of the data block sent by the client, where the home information is used to indicate the data to be transmitted to which the data block belongs.
  • Step 202 Receive a data block transmitted by the client through the selected at least two data transmission paths.
  • the data block is obtained after the client processes the data to be transmitted.
  • Step 203 Determine, according to the attribution information, a data block that belongs to the same data to be transmitted.
  • the attribution information includes a data identifier of the data to be transmitted and a sequence number of the database.
  • the data to be transmitted A includes three data blocks whose sequence numbers are 1, 2, and 3, respectively, and the attribution information of the three data blocks may respectively represent For A-1, A-2, and A-3, the server can determine, according to the attribution information, that the three databases A-1, A-2, and A-3 belong to the same data to be transmitted.
  • the transmission service platform may further process the received data block and send the data block to the client requesting the download data block, where the data processing is performed on the client requesting the live data block.
  • Data processing such as cloud transcoding.
  • the transport service platform can also store after receiving the data block.
  • the step 202 may be specifically performed by: receiving the client by calling the preset common interface set and the development language of the client. The same interface, and the data block transmitted through the selected at least two data transmission paths.
  • the step 202 may be specifically performed as: receiving the client through a universal proxy protocol, Receiving data blocks transmitted by the client through the universal proxy protocol and transmitted through the selected at least two data transmission paths.
  • the common proxy protocol used by different data transmission paths may be different.
  • the transmission service platform can receive the data block transmitted by the client through multiple data transmission paths, thereby improving the efficiency of data transmission.
  • the technical solution provided by the embodiment of the present invention dynamically adjusts which data transmission paths transmit the remaining data according to the transmission rate of each data transmission path, because the multi-data transmission path supports simultaneous transmission of data to be transmitted and supports transmission of data.
  • embodiments of the present invention are capable of supporting real-time data transmission of large amounts of data.
  • FIG. 3 it is a schematic flowchart of the transmission method, including the following steps:
  • Step 301 The smartphone determines a data transmission path between itself and the transmission service platform, and selects at least two data transmission paths from the determined data transmission path.
  • Step 302 The smart phone divides the live broadcast data to obtain at least two data blocks, and sends the home information of each data block to the transport service platform.
  • Step 303 The smart phone transmits the data block obtained after the segmentation to the transmission service platform through the selected at least two data transmission paths, and monitors the transmission rate of each selected data transmission path.
  • Step 304 Determine whether the transmission rate is smaller than the preset rate for any selected data transmission path. If yes, go to step 305; if no, continue to step 303.
  • Step 305 The smart phone allocates a data block allocated to the data transmission path that has not started to be transmitted to the data transmission path transmission whose transmission rate is greater than the preset rate.
  • Step 306 The transmission service platform receives the attribution information of the data block sent by the client.
  • Step 307 The transmission service platform receives the data block transmitted by the at least two data transmission paths selected by the client.
  • Step 308 The transmission service platform determines a data block that belongs to the same data to be transmitted according to the home information, and sends the received data block to the client that requests the live data.
  • the transport service platform may further perform data processing on the received data block and then send the data to the client requesting to download the data block, where the data processing is for requesting live broadcast.
  • Data processing by the client of the data block such as cloud transcoding.
  • the transport service platform can also store after receiving the data block.
  • the mobile phone transmits the data to the transmission service platform by using a plurality of network cards (for example, the network card 1, the network card 2, and the network card 3), and the mobile phone transmits the data to be transmitted. After that, at least two data blocks are obtained, and the at least two data blocks are allocated to the network card 1, the network card 2, and the network card 3 to be simultaneously transmitted to the transmission service platform. Moreover, the mobile phone monitors the transmission rate of each network card at the same time. When the transmission rate of one of the network cards is less than the preset rate, the data block of the network card that has not started to be transmitted is reallocated to the network card transmission whose transmission rate is greater than or equal to the preset rate.
  • a plurality of network cards for example, the network card 1, the network card 2, and the network card 3
  • the mobile phone can also switch the network card (ie, switch the data transmission path) to transmit data in real time by monitoring the transmission rate of each network card, so as to transmit real-time data. purpose. Improve the efficiency and stability of data transmission.
  • the embodiment of the present invention further provides a data transmission device, as shown in FIG. 4, which is a schematic structural diagram of the device, and the device includes:
  • the path obtaining module 401 is configured to acquire at least two data transmission paths between the self and the transmission service platform, and select at least two data transmission paths therefrom;
  • the sharding module 402 is configured to perform sharding on the data to be transmitted to obtain at least two data blocks, and send the home information of the data to be transmitted, which is used to represent the data block, to the transmission service platform, so as to enable the transmission service
  • the platform determines, according to the attribution information, a data block that belongs to the same data to be transmitted;
  • the transmission module 403 is configured to transmit the data block obtained after the segmentation to the transmission service platform by using the selected at least two data transmission paths.
  • the device further comprises:
  • a monitoring module configured to: the transmission module allocates at least two data blocks obtained after the segmentation to the selected data transmission path and transmits the data to the transmission service platform, and monitors the transmission rate of each selected data transmission path;
  • a judging module configured to determine, according to any selected data transmission path, whether the transmission rate is less than a preset rate
  • the adjusting module is configured to: if the judgment result of the determining module is yes, allocate the data block allocated to the data transmission path that has not been started to be transmitted to the data transmission whose transmission rate is greater than the preset rate Path transfer.
  • the transmission module is specifically configured to:
  • the universal interface is called, and at least two data blocks obtained after the segmentation are allocated to the selected data transmission paths and transmitted to the transmission service platform.
  • the transmission module is specifically configured to:
  • At least two data blocks obtained after the segmentation are allocated to the selected data transmission paths and transmitted to the transmission service platform by using a general proxy protocol.
  • the data to be transmitted is transmitted to the plurality of data transmission paths, and in the process of transmitting the data, the data transmission path is replaced according to the transmission rate of each transmission path.
  • the remaining data blocks can dynamically adapt to the network environment and ensure efficient and stable transmission of data to the transmission service platform.
  • FIG. 5 is a schematic structural diagram of the device, where the device includes:
  • the home information receiving module 501 is configured to receive, by the client, attribution information, which is used to indicate data to be transmitted, to which the data block belongs.
  • a data block receiving module 502 configured to receive a data block that is transmitted by the client through the selected at least two data transmission paths;
  • the determining module 503 is configured to determine, according to the home information, a data block that belongs to the same data to be transmitted.
  • the data block receiving module is specifically configured to:
  • the receiving client calls the data block transmitted by the selected at least two data transmission paths by calling the same interface of the preset common interface set as the client's development language.
  • the data block receiving module is specifically configured to:
  • the transmission service platform can receive the data block transmitted by the client through multiple data transmission paths, thereby improving the efficiency of data transmission.
  • FIG. 6 is a schematic structural diagram of the system, including:
  • the client 601 is configured to acquire at least two data transmissions between the user and the transmission service platform. a path, and selecting at least two data transmission paths therefrom; and dividing the data to be transmitted to obtain at least two data blocks; and transmitting, to the transmission, the home information of the data to be transmitted indicating the ownership of the data block a service platform; at least two data blocks obtained after the segmentation are allocated to the selected data transmission paths and transmitted to the transmission service platform;
  • the transmission service platform 602 is configured to receive, by the client, the home information of the data to be transmitted that is used to represent the data block to be transmitted; and receive the data block that is transmitted by the client through the selected at least two data transmission paths; The same data block of data to be transmitted.
  • the data transmission device provided in the embodiment of the present invention can maintain a corresponding relationship set between the remote controller and the output device, so that when the number of the remote controller and the output device is large, the output device determines the remaining of the certain remote controller.
  • the output device is output by which output device, which enables centralized management of the remote control and output device.
  • the device embodiments described above are merely illustrative, wherein the units described as separate components may or may not be physically separate, and the components displayed as units may or may not be physical units, ie may be located A place, or it can be distributed to multiple network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the solution of the embodiment. Those of ordinary skill in the art can understand and implement without deliberate labor.

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Abstract

本发明实施例提供数据传输方法、装置及系统。本发明方案中,客户端确定自身至传输服务平台之间的数据传输路径,并从中选择至少两条数据传输路径;以及,对待传输数据进行切分,获得至少两个数据块;并将各数据块的归属信息发送给传输服务平台;将切分后获得的至少两个数据块通过选择的各数据传输路径中传输给传输服务平台。本发明实施例中是将待传输数据切分为多个数据块后,同时使用至少两个数据传输路径传输数据,相对于现有技术仅适用一条传输路径传输数据,能够提高数据传输的效率。

Description

数据传输方法、装置及系统
本申请要求在2016年03月25日提交中国专利局、申请号为201610179918.6、发明名称为“数据传输方法、装置及系统”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明实施例涉及通信技术领域,尤其涉及数据传输方法、装置及系统。
背景技术
数据传输是网络的重要作用。随着通信技术的不断发展和完善,越来越多的数据,在网络上从一个节点传输到另一个节点。而且,数据量也有越来越大的趋势,这对网络的要求越来越高。
发明人在实现本发明的过程中发现,现有技术中传输数据的方法是采用一条数据传输路径传输。受网络中其他业务的影响,这一条数据传输路径可用的带宽可能会下降,导致数据传输速度降低,或者出现网络故障,导致该数据传输中断,中断后只能采取重传机制。但是现有技术的重传机制不够健全,导致数据的传输耗费时间和网络处理资源。故此,现有技术中数据传输方法存在传输效率低下、容错能力差的问题。
发明内容
本发明实施例提供数据传输方法、装置及系统,用以解决目前由于采用一条数据传输路径导致传输效率低下、容错能力差的等的问题。
本发明实施例提供的具体技术方案如下:
一方面,本发明实施例提供一种数据传输方法,所述方法包括:
客户端确定自身至传输服务平台之间的数据传输路径,并从确定的数据传输路径中选择至少两条数据传输路径;以及,
对待传输数据进行切分,获得至少两个数据块;并将各数据块的归属信息发送给传输服务平台;其中,归属信息用于表示数据块归属的待传输数据;
将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台。
另一方面,本发明实施例提供一种数据传输方法,所述方法包括:
传输服务平台接收客户端发送的数据块的归属信息,其中,归属信息用于表示数据块归属的待传输数据;以及,
接收客户端通过选择的至少两条数据传输路径传输的数据块;
根据归属信息确定属于同一待传输数据的数据块。
另一方面,本发明实施例提供一种数据传输装置,所述装置包括:
路径获取模块,用于确定自身至传输服务平台之间的数据传输路径,并从确定的数据传输路径中选择至少两条数据传输路径;
切分模块,用于对待传输数据进行切分,获得至少两个数据块;并将各数据块的归属信息发送给传输服务平台;其中,归属信息用于表示数据块归属的待传输数据;
传输模块,用于将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台。
另一方面,本发明实施例还提供一种数据传输装置,所述装置包括:
归属信息接收模块,用于接收客户端发送的数据块的归属信息,其中,归属信息用于表示数据块归属的待传输数据;
数据块接收模块,用于接收客户端通过选择的至少两条数据传输路径传输的数据块;
确定模块,用于根据归属信息确定属于同一待传输数据的数据块。
另一方面,本发明实施例还提供一种数据传输系统,包括:
客户端,用于确定自身至传输服务平台之间的数据传输路径,并从确定的数据传输路径中选择至少两条数据传输路径;以及,对待传输数据进行切分,获得至少两个数据块;并将各数据块的归属信息发送给传输服务平台;其中,归属信息用于表示数据块归属的待传输数据;将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台;
传输服务平台,用于接收客户端发送的数据块的归属信息;以及,接收客户端通过选择的至少两条数据传输路径传输的数据块;根据归属信息确定属于同一待传输数据的数据块。
本发明实施例有益效果如下:本发明实施例中,客户端确定自身至传 输服务平台之间的至少两条数据传输路径,并从中选择至少两条数据传输路径;并对待传输数据进行切分,获得至少两个数据块;然后,将切分得到的至少两个数据块分配给选择的各数据传输路径中传输给传输服务平台。这样,本发明实施例中是将待传输数据切分为多个数据块后,同时使用至少两个数据传输路径传输数据,相对于现有技术仅适用一条传输路径传输数据,能够提高数据传输的效率。
附图说明
图1为本发明实施例一中数据传输方法的示例性流程图;
图2为本发明实施例二中数据传输方法的示例性流程图;
图3为本发明实施例三中数据传输方法的示例性流程图;
图4为本发明实施例四中数据传输装置的结构示意图;
图5为本发明实施例五中数据传输装置的结构示意图;
图6为本发明实施例五中数据传输系统的结构示意图。
具体实施方式
为使本发明实施例的目的、技术方案和优点更加清楚,下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例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,本领域普通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。
本发明实施例中,客户端确定自身至传输服务平台之间的数据传输路径,并从中选择至少两条数据传输路径;并对待传输数据进行切分,获得至少两个数据块;然后,将切分得到的至少两个数据块通过选择的各数据传输路径中传输给传输服务平台。这样,本发明实施例中是将待传输数据切分为多个数据块后,同时使用至少两个数据传输路径传输数据,相对于现有技术仅适用一条传输路径传输数据,能够提高数据传输的效率。
下面,为便于进一步理解,对本发明实施例的技术方案进行说明。
实施例一
如图1所示,为本发明实施例提供的数据传输方法的流程示意图,该方法应用于客户端,包括以下步骤:
步骤101:客户端确定自身至传输服务平台之间的数据传输路径,并从确定的数据传输路径中选择至少两条数据传输路径。
本发明实施例中所述的客户端可以是移动终端客户端,例如手机客户端,也可以是非移动终端的客户端,例如台式电脑的客户端等。
步骤102:对待传输数据进行切分,获得至少两个数据块;并将各数据块的归属信息发送给传输服务平台;其中,归属信息用于表示数据块归属的待传输数据。
其中,步骤101和步骤102的执行顺序不受限。
其中,在一个实施例中,该归属信息可以包括各数据块的唯一标识,例如各数据块的序列号。当然,也可以根据现有技术确定归属信息,只要能够使传输服务平台确认哪些数据块属于同一待传输数据即可,本发明实施例对此不做限定。
步骤103:将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台。
这样,传输服务平台接收数据块后,能够根据归属信息,确定属于同一待传输数据的数据块。
这样,本发明实施例中将待传输数据切分为多个数据块后,同时使用至少两个数据传输路径传输数据,并将数据库的归属信息发送给传输服务平台,使得传输服务平台能够确定哪些数据块属于同一待传输数据。相对于现有技术仅适用一条传输路径传输数据,能够提高数据传输的效率。
其中,在一个实施例中,即使使用多条数据传输路径传输数据,使用的数据传输路径也可能因为各种原因,传输速率下降而不适于继续传输待传输数据,这将导致待传输数据传输过程的稳定性下降。对此,本发明实施例中,为了提高数据传输的稳定性,将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台的同时,还可以包括以下步骤:
步骤A1:监测选择的各数据传输路径的传输速率。
步骤A2:针对任一选择的数据传输路径,判断其传输速率是否小于预设速率。
步骤A3:若是,则将分配给该数据传输路径的尚未开始传输的数据块,分配给传输速率大于预设速率的数据传输路径传输。
其中,步骤A3中传输速率大于预设速率的数据传输路径可以是选择 的至少两条数据传输路径中的数据传输路径。例如,之前选择的数据传输路径为L1、L2、L3,当L1传输速率小于预设速率时,将L1尚未开始传输的数据块分配给L2传输。步骤A3中传输速率大于预设速率的数据传输路径还可以是步骤101中未被选择的数据传输路径。例如客户端至传输服务平台共有四条数据传输路径L1、L2、L3、L4,其中,L1、L2、L3被选择用于传输数据块,之后,监测到L1传输速率小于预设速率,而L4的传输速率大于预设速率,则将L1尚未开始传输的数据块分配给L4传输。
其中,在一个实施例中,若不小于预设速率,则继续使用该数据传输路径传输为其分配的数据块。
例如,对待传输数据进行切分后获得15个数据块,均分给编号分别为L1、L2和L3的三条数据传输路径传输,即每条数据传输路径负责传输5个数据块。若在传输的过程中,L1传输了3个数据块后,传输速率小于预设速率,而其它两条数据传输路径(L2和L3)的传输速率均大于或等于预设速率,则将L1剩余的两个数据块分配给L2和/或L3传输,以保证数据传输的稳定性。
其中,在一个实施例中,为了便于支持各种开发语言开发的客户端向传输服务平台传输数据。本发明实施例中步骤103可执行为:调用通用接口将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台。其中,可以通过SDK(Software Development Kit,软件开发工具包)设计通用接口。无论何种开发语言和/或何种版本的客户端均可以调用该通用接口。这样,通过通用接口,可以支持各种开发语言、各种版本的客户端。
其中,在一个实施例中,为了便于支持各种开发语言开发的客户端向传输服务平台传输数据。本发明实施例中步骤103还可执行为:通过通用代理协议,将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台。其中,通用代理协议例如是HTTP(HyperText Transfer Protocol,超文本传输协议)、Socket(套接字)等通用代理协议。
其中,在一个实施例中,本发明实施例中的数据传输路径可以是同一个客户端建立的多个传输链路,也可以是同一客户端使用的至少两个网卡中通过每个网卡建立的与传输服务平台之间的传输路径。也可以是即包括传输链路,也包括通过网卡建立的与传输服务平台之间的传输路径。本发 明实施例对此不做限定。
其中,在一个实施例中,各数据传输路径的传输速率可以通过各网卡的信号质量表示,也可通过各数据传输路径的负载带宽表示。
综上,本发明实施例中,通过将待传输数据分块后,分配给多条数据传输路径传输待传输数据,并在传输数据的过程中,根据各传输路径的传输速率,及时更换数据传输路径来传输剩余的数据块,能够动态的适应网络环境,保证数据高效、稳定的传输给传输服务平台。
实施例二
基于相同的发明构思,本发明实施例提供一种数据传输方法,应用于传输服务平台。如图2所示,为该方法的流程示意图,所述方法包括以下步骤:
步骤201:传输服务平台接收客户端发送的数据块的归属信息,其中,归属信息用于表示数据块归属的待传输数据。
步骤202:接收客户端通过选择的至少两条数据传输路径传输的数据块。
其中,数据块是客户端对待传输数据进行切分后获得的。
步骤203:根据归属信息确定属于同一待传输数据的数据块。
例如,归属信息包括待传输数据的数据标识以及数据库的序列号,例如,待传输数据A包括序列号分别为1、2、3的三个数据块,则三个数据块的归属信息可分别表示为A-1、A-2、A-3,那么服务器可以根据该归属信息确定A-1、A-2、A-3这三个数据库属于同一待传输数据。
其中,在一个实施例中,传输服务平台接收数据块后,还可以将接收的数据块做数据处理后发送给请求下载数据块的客户端,该数据处理是针对请求直播数据块的客户端做的数据处理,例如云转码等。
当然,传输服务平台接收数据块后也可以存储。
其中,在一个实施例中,为支持各种开发语言的客户端传输数据,本发明实施例中,步骤202可具体执行为:接收客户端通过调用预置的通用接口集合中与客户端的开发语言相同的接口,且通过选择的至少两条数据传输路径传输的数据块。
其中,在一个实施例中,为支持各种开发语言的客户端传输数据,本发明实施例中,步骤202还可具体执行为:接收客户端通过通用代理协议, 接收客户端通过通用代理协议,且通过选择的至少两条数据传输路径传输的数据块。
其中,传输同一待传输数据时,不同的数据传输路径所使用的通用代理协议可以不同。
本发明实施例中,传输服务平台,接收客户端通过多条数据传输路径传输的数据块,能够提高数据传输的效率。
实施例三
本发明实施例提供的技术方案,由于支持多数据传输路径同时传输待传输数据,并支持传输数据的过程中,根据各数据传输路径的传输速率,动态的调整由哪些数据传输路径传输剩余的数据块,故此,本发明实施例能够支持大数据量的实时数据传输。
下面,以智能手机传输直播数据为例,对本发明实施例中的数据传输方法进行说明。如图3所示,为该传输方法的流程示意图,包括以下步骤:
步骤301:智能手机确定自身至传输服务平台之间的数据传输路径,并从确定的数据传输路径中选择至少两条数据传输路径。
步骤302:智能手机对直播数据进行切分,获得至少两个数据块;并将各数据块的归属信息发送给传输服务平台。
步骤303:智能手机将切分后获得的数据块通过选择的至少两条数据传输路径中传输给传输服务平台,并监测选择的各数据传输路径的传输速率。
步骤304:针对任一选择的数据传输路径,判断其传输速率是否小于预设速率,若是,执行步骤305;若否,继续执行步骤303。
步骤305:智能手机将分配给该数据传输路径的尚未开始传输的数据块,分配给传输速率大于预设速率的数据传输路径传输。
步骤306:传输服务平台接收客户端发送的数据块的归属信息。
步骤307:传输服务平台接收客户端选择的至少两条数据传输路径传输的数据块。
步骤308:传输服务平台根据归属信息确定属于同一待传输数据的数据块,并将接收的数据块发送给请求直播数据的客户端。
其中,在一个实施例中,传输服务平台根据还可以将接收的数据块做数据处理后发送给请求下载数据块的客户端,该数据处理是针对请求直播 数据块的客户端做的数据处理,例如云转码等。
当然,传输服务平台接收数据块后也可以存储。
这里,以手机通过至少两个网卡(例如网卡1、网卡2和网卡3)建立多条数据传输路径传输数据给传输服务平台为例,对本发明实施例进行说明:手机将待传输数据进行切分后,获得至少两个数据块,并将该至少两个数据块分配给网卡1、网卡2和网卡3同时传输给传输服务平台。并且,手机同时监测各网卡的传输速率,当其中一个网卡的传输速率小于预设速率时,将该网卡的尚未开始传输的数据块重新分配给传输速率大于等于预设速率的网卡传输。这样,即使手机在高速运行的交通工具上,会不断的切换服务器基站,那么手机通过监测各网卡的传输速率,也能够及时的切换网卡(即切换数据传输路径)传输数据,达到传输实时数据的目的。提高数据传输的效率和稳定性。
实施例四
基于相同的发明构思,本发明实施例还提供一种数据传输装置,如图4所示,为该装置的结构示意图,所述装置包括:
路径获取模块401,用于获取自身至传输服务平台之间的至少两条数据传输路径,并从中选择至少两条数据传输路径;
切分模块402,用于对待传输数据进行切分,获得至少两个数据块;并将各数据块的用于表示数据块归属的待传输数据的归属信息发送给传输服务平台,以使传输服务平台根据归属信息,确定属于同一待传输数据的数据块;
传输模块403,用于将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台。
其中,在一个实施例中,所述装置还包括:
监测模块,用于传输模块将切分后获得的至少两个数据块分配给选择的各数据传输路径中传输给传输服务平台的同时,监测选择的各数据传输路径的传输速率;
判断模块,用于针对任一选择的数据传输路径,判断其传输速率是否小于预设速率;
调整模块,用于若判断模块的判断结果为是,则将分配给该数据传输路径的尚未开始传输的数据块,分配给传输速率大于预设速率的数据传输 路径传输。
其中,在一个实施例中,所述传输模块,具体用于:
调用通用接口,将切分后获得的至少两个数据块分配给选择的各数据传输路径中传输给传输服务平台。
其中,在一个实施例中,所述传输模块,具体用于:
通过通用代理协议,将切分后获得的至少两个数据块分配给选择的各数据传输路径中传输给传输服务平台。
本发明实施例中,通过将待传输数据分块后,分配给多条数据传输路径传输待传输数据,并在传输数据的过程中,根据各传输路径的传输速率,及时更换数据传输路径来传输剩余的数据块,能够动态的适应网络环境,保证数据高效、稳定的传输给传输服务平台。
实施例五
基于相同的发明构思,本发明实施例还提供一种数据传输装置,如图5所示,为该装置的结构示意图,所述装置包括:
归属信息接收模块501,用于接收客户端发送的用于表示数据块归属的待传输数据的归属信息;
数据块接收模块502,用于接收客户端通过选择的至少两条数据传输路径传输的数据块;
确定模块503,用于根据归属信息确定属于同一待传输数据的数据块。
其中,在一个实施例中,所述数据块接收模块,具体用于:
接收客户端通过调用预置的通用接口集合中与客户端的开发语言相同的接口,且通过选择的至少两条数据传输路径传输的数据块。
其中,在一个实施例中,所述所述数据块接收模块,具体用于:
接收客户端通过通用代理协议,且通过选择的至少两条数据传输路径传输的数据块。
本发明实施例中,传输服务平台,接收客户端通过多条数据传输路径传输的数据块,能够提高数据传输的效率。
实施例六
基于相同的发明构思,本发明实施例还提供一种数据传输系统,如图6所示,为该系统的结构示意图,包括:
客户端601,用于获取自身至传输服务平台之间的至少两条数据传输 路径,并从中选择至少两条数据传输路径;以及,对待传输数据进行切分,获得至少两个数据块;并将各数据块的用于表示数据块归属的待传输数据的归属信息发送给传输服务平台;将切分后获得的至少两个数据块分配给选择的各数据传输路径中传输给传输服务平台;
传输服务平台602,用于接收客户端发送的用于表示数据块归属的待传输数据的归属信息;以及,接收客户端通过选择的至少两条数据传输路径传输的数据块;根据归属信息确定属于同一待传输数据的数据块。
综上,本发明实施例中提供的数据传输装置,可以维护遥控器与输出设备的对应关系集合,便于当遥控器和输出设备数量较多时,由该输出装置确定某一确定的遥控器的剩余电量由哪个输出设备输出,这样便实现了集中管理遥控器和输出设备。
以上所描述的装置实施例仅仅是示意性的,其中所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部模块来实现本实施例方案的目的。本领域普通技术人员在不付出创造性的劳动的情况下,即可以理解并实施。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到各实施方式可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件。基于这样的理解,上述技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品可以存储在计算机可读存储介质中,如ROM/RAM、磁碟、光盘等,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行各个实施例或者实施例的某些部分所述的方法。
最后应说明的是:以上实施例仅用以说明本发明实施例的技术方案,而非对其限制;尽管参照前述实施例对本发明实施例进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明实施例各实施例技术方案的精神和范围。

Claims (15)

  1. 一种数据传输方法,其特征在于,所述方法包括:
    客户端确定自身至传输服务平台之间的数据传输路径,并从确定的数据传输路径中选择至少两条数据传输路径;以及,
    对待传输数据进行切分,获得至少两个数据块;并将各数据块的归属信息发送给传输服务平台;其中,归属信息用于表示数据块归属的待传输数据;
    将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台。
  2. 根据权利要求1所述的方法,其特征在于,将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台的同时,所述方法还包括:
    监测选择的各数据传输路径的传输速率;
    针对任一选择的数据传输路径,判断其传输速率是否小于预设速率;
    若是,则将分配给该数据传输路径的尚未开始传输的数据块,分配给传输速率大于预设速率的数据传输路径传输。
  3. 根据权利要求1或2所述的方法,其特征在于,所述将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台,具体包括:
    调用通用接口,将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台。
  4. 根据权利要求1或2所述的方法,其特征在于,所述将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台,具体包括:
    通过通用代理协议,将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台。
  5. 一种数据传输方法,其特征在于,所述方法包括:
    传输服务平台接收客户端发送的数据块的归属信息,其中,归属信息用于表示数据块归属的待传输数据;以及,
    接收客户端通过选择的至少两条数据传输路径传输的数据块;
    根据归属信息确定属于同一待传输数据的数据块。
  6. 根据权利要求5所述的方法,其特征在于,接收客户端通过选择的至少两条数据传输路径传输的数据块,具体包括:
    接收客户端通过调用预置的通用接口集合中与客户端的开发语言相同的接口,且通过选择的至少两条数据传输路径传输的数据块。
  7. 根据权利要求5所述的方法,其特征在于,接收客户端通过选择的至少两条数据传输路径传输的数据块,具体包括:
    接收客户端通过通用代理协议,且通过选择的至少两条数据传输路径传输的数据块。
  8. 一种数据传输装置,其特征在于,所述装置包括:
    路径获取模块,用于确定自身至传输服务平台之间的数据传输路径,并从确定的数据传输路径中选择至少两条数据传输路径;
    切分模块,用于对待传输数据进行切分,获得至少两个数据块;并将各数据块的归属信息发送给传输服务平台;其中,归属信息用于表示数据块归属的待传输数据;
    传输模块,用于将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台。
  9. 根据权利要求8所述的装置,其特征在于,所述装置还包括:
    监测模块,用于传输模块将切分后获得的至少两个数据块分配给选择的各数据传输路径中传输给传输服务平台的同时,监测选择的各数据传输路径的传输速率;
    判断模块,用于针对任一选择的数据传输路径,判断其传输速率是否小于预设速率;
    调整模块,用于若判断模块的判断结果为是,则将分配给该数据传输路径的尚未开始传输的数据块,分配给传输速率大于预设速率的数据传输路径传输。
  10. 根据权利要求8或9所述的装置,其特征在于,所述传输模块,具体用于:
    调用通用接口,将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台。
  11. 根据权利要求8或9所述的装置,其特征在于,所述传输模块,具体用于:
    通过通用代理协议,将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台。
  12. 一种数据传输装置,其特征在于,所述装置包括:
    归属信息接收模块,用于接收客户端发送的数据块的归属信息,其中,归属信息用于表示数据块归属的待传输数据;
    数据块接收模块,用于接收客户端通过选择的至少两条数据传输路径传输的数据块;
    确定模块,用于根据归属信息确定属于同一待传输数据的数据块。
  13. 根据权利要求12所述的装置,其特征在于,所述数据块接收模块,具体用于:
    接收客户端通过调用预置的通用接口集合中与客户端的开发语言相同的接口,且通过选择的至少两条数据传输路径传输的数据块。
  14. 根据权利要求12所述的装置,其特征在于,所述所述数据块接收模块,具体用于:
    接收客户端通过通用代理协议,且通过选择的至少两条数据传输路径传输的数据块。
  15. 一种数据传输系统,其特征在于,包括:
    客户端,用于确定自身至传输服务平台之间的数据传输路径,并从确定的数据传输路径中选择至少两条数据传输路径;以及,对待传输数据进行切分,获得至少两个数据块;并将各数据块的归属信息发送给传输服务平台;其中,归属信息用于表示数据块归属的待传输数据;将切分后获得的数据块通过选择的至少两条数据传输路径传输给传输服务平台;
    传输服务平台,用于接收客户端发送的数据块的归属信息;以及,接收客户端通过选择的至少两条数据传输路径传输的数据块;根据归属信息确定属于同一待传输数据的数据块。
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