WO2011150776A1 - 数据包处理方法、设备及系统 - Google Patents

数据包处理方法、设备及系统 Download PDF

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Publication number
WO2011150776A1
WO2011150776A1 PCT/CN2011/074813 CN2011074813W WO2011150776A1 WO 2011150776 A1 WO2011150776 A1 WO 2011150776A1 CN 2011074813 W CN2011074813 W CN 2011074813W WO 2011150776 A1 WO2011150776 A1 WO 2011150776A1
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WO
WIPO (PCT)
Prior art keywords
type communication
machine type
header
data packet
communication server
Prior art date
Application number
PCT/CN2011/074813
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English (en)
French (fr)
Inventor
马洁
李龠
杨晖
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Publication of WO2011150776A1 publication Critical patent/WO2011150776A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/06Optimizing the usage of the radio link, e.g. header compression, information sizing, discarding information

Definitions

  • the embodiments of the present invention relate to the field of data transmission technologies, and in particular, to a data packet processing method, device, and system. Background technique
  • M2M Machine-to-Machine
  • MTC machine type communication
  • the MTC equipment here can be a water meter, an electric meter, a vending machine, or a Point of Sells (hereinafter referred to as a POS machine).
  • POS machine Point of Sells
  • the interaction between existing M2Ms is implemented using a cellular transmission system.
  • the process of reporting data by the MTC device refers to the process in which the terminal reports data to the access device in the existing cellular network transmission system.
  • the design of the data packet is mainly implemented for the voice call service.
  • the protocol Internet Protocol; hereinafter referred to as IP
  • IP header compression mechanism of the data packet network uses a Packet Data Convergence Protocol (PDCP) compression based on the ROCH (Robust Header Compression) algorithm.
  • PDCP Packet Data Convergence Protocol
  • ROCH Robot Header Compression
  • the inventor has found that at least the following problems exist in the prior art: Since the existing MTC device has a single service type and the amount of data uploaded by the application layer is relatively small, usually only the package is included. Including an uploaded packet, the IP header compression mechanism does not work well. Moreover, in the process of data packet transmission, the IP packet header usually includes 40 bytes, which may exceed the application layer data amount reported by the MTC device at one time; the amount of data used by the packet header is equivalent to the application layer data amount or the packet header data amount is even larger than the application data. The amount of data to transmit the application layer data will cause the data transmission reported by the MTC device to be inefficient. Summary of the invention
  • the embodiment of the invention provides a data packet processing method, device and system, which are used to solve the problem that the data transmission efficiency of the MTC device uploaded in the prior art is low, and improve the transmission efficiency of the data packet uploaded by the MTC.
  • the embodiment of the invention provides a data packet processing method, including:
  • the index information includes the index identifier, the identifier of the machine type communication server, and the address of the communication server carrying the machine type Correspondence between the header information;
  • Transmitting the data packet to the access device so that the access device can modify the index identifier in the packet header to the header information carrying the address of the machine type communication server according to the index information. And sending the modified data packet according to the header information carrying the address of the machine type communication server.
  • the embodiment of the invention further provides a data packet processing method, including:
  • the packet header of the data packet includes an index identifier corresponding to the identifier of the corresponding machine type communication server;
  • the index information includes the index identifier, the machine type communication server identifier Corresponding relationship between the header information carrying the address of the machine type communication server;
  • the header information that carries the address of the machine type communication server corresponding to the index identifier; Modifying the index identifier in the packet header to the header information carrying the address of the machine type communication server;
  • the embodiment of the invention further provides a data packet processing method, including:
  • the allocation relationship table includes a correspondence between the radio bearer resource information and the identifier of the machine type communication server;
  • the radio bearer resource corresponding to the radio bearer resource information Transmitting, by the radio bearer resource corresponding to the radio bearer resource information, a data packet that does not include a packet header, to enable the access device to pass the radio bearer in the allocation relationship table.
  • the radio bearer resource determined by the resource information receives the data packet, and according to the mapping relationship between the distribution relationship table and the identifier of the machine type communication server and the header information carrying the address of the machine type communication server,
  • the data packet adds a header including the header information carrying the address of the machine type communication server; and transmits the data packet of the increased header to the machine type communication server.
  • the embodiment of the invention further provides a data packet processing method, including:
  • the data packet includes the carrying the type communication server address Header of the header information
  • the embodiment of the invention provides a machine type communication device, including:
  • a processing module configured to set, according to the index information, a packet header of the data packet to be sent as an index identifier corresponding to the identifier of the machine type communication server;
  • the index information includes the index identifier and the identifier Determining a relationship between the machine type communication server identifier and the header information carrying the address of the machine type communication server;
  • a sending module configured to send the data packet to the access device, to enable the access device to modify the index identifier in the packet header to carry the device type communication according to the index information
  • the header information of the server address and sending the modified data packet according to the header information carrying the address of the machine type communication server.
  • An embodiment of the present invention provides an access device, including:
  • the packet header of the data packet includes an index identifier corresponding to the identifier of the corresponding machine type communication server;
  • the index information includes the index identifier, Corresponding relationship between the machine type communication server identifier and the header information carrying the address of the machine type communication server;
  • a first obtaining module configured to obtain, in the index information, the header information that carries the address of the machine type communication server corresponding to the index identifier;
  • a first processing module configured to modify the index identifier in the packet header to the header information that carries the address of the machine type communication server;
  • a first sending module configured to send the modified data packet according to the header information that carries the address of the machine type communication server.
  • the embodiment of the invention further provides a machine type communication device, including:
  • An obtaining module configured to obtain an allocation relationship table, where the allocation relationship table includes a correspondence between the wireless bearer resource information and the identifier of the machine type communication server;
  • a sending module configured to send, by using the radio bearer resource corresponding to the radio bearer resource information, a data packet that does not include a packet header, according to the allocation relationship table, so that the access device can pass the allocation relationship table And the radio bearer resource determined by the radio bearer resource information receives the data packet; and according to the allocation relationship table, and the correspondence between the machine type communication server identifier and the header information carrying the address of the machine type communication server Relationship, adding, to the data packet, the header information that includes the address of the communication server carrying the machine type a header; and transmitting the packet of the added header to the machine type communication server.
  • An embodiment of the present invention further provides an access device, including:
  • a receiving module configured to receive, by using a radio bearer resource in the relationship table, a radio bearer resource receiver type communication device, according to the allocation relationship table, a data packet that does not include a packet header;
  • the allocation relationship table includes the radio bearer Correspondence between resource information and machine type communication server identifier;
  • a first processing module configured to add, according to the correspondence relationship table, a correspondence between the machine type communication server identifier and the header information of the machine type communication server address, including the carrying a header of the header information of the machine type communication server address;
  • a first sending module configured to send the data packet of the increased header to the machine type communication server.
  • An embodiment of the present invention provides a data packet processing system, including: a machine type communication device, an access device, and a machine type communication server device;
  • the machine type communication device is configured to set, according to the index information, a packet header of the data packet to be sent as an index identifier corresponding to the device type communication server device identifier; the index information includes the index identifier, the machine type communication server Corresponding relationship between the device identifier and the header information carrying the address of the machine type communication server device; and sending the data packet to the access device;
  • the access device is configured to receive the data packet sent by the device type communication device, and obtain, in the index information, the header information that carries the address of the machine type communication server corresponding to the index identifier; And modifying the index identifier in the packet header to the header information carrying the address of the machine type communication server; and sending the modified data packet according to the header information carrying the address of the machine type communication server .
  • the embodiment of the invention further provides a data packet processing system, comprising: a machine type communication device, an access device and a machine type communication server device;
  • the machine type communication device is configured to acquire an allocation relationship table, where the allocation relationship table includes a correspondence between the radio bearer resource information and the device type communication server device identifier; and according to the allocation relationship table, Transmitting, by the bearer resource corresponding to the radio bearer resource information, a data packet that does not include a packet header to the access device;
  • the access device configured to receive, by using a radio bearer resource determined by the radio bearer resource information in the allocation relationship table, a data packet that is not included in the packet header sent by the machine type communication device according to the allocation relationship table; according to the allocation relationship table Corresponding relationship between the machine type communication server device identifier and the header information carrying the machine type communication server device address, adding, to the data packet, the header information including the address of the machine type communication server a packet header; and transmitting the data packet of the increased header to the machine type communication server device.
  • the device type communication device sends a packet header to the access device as a data packet corresponding to the index identifier; or the device type communication device includes the radio bearer resource information and the MTC server identifier.
  • the allocation allocation relationship table of the correspondence relationship sends a data packet that does not include the packet header to the access device.
  • the access device modifies the header or adds the header for the received data packet according to the corresponding situation, and accurately transmits the modified packet header or the data packet after the header is added to the machine type communication device.
  • the technical solution of the embodiment of the present invention can effectively reduce the overhead of the packet type of the data packet sent by the machine type communication device to the access device to the device type communication server, and improve the air interface transmission efficiency of the device type communication device to the access device; Thereby, the transmission efficiency of the data packet reported by the machine type communication device is ensured.
  • FIG. 1 is a flowchart of a data packet processing method according to Embodiment 1 of the present invention
  • FIG. 2 is a flowchart of a data packet processing method according to Embodiment 2 of the present invention
  • FIG. 3 is a flowchart of a data packet processing method according to Embodiment 3 of the present invention.
  • FIG. 4 is a flowchart of a data packet processing method according to Embodiment 4 of the present invention.
  • FIG. 5 is a flowchart of a data packet processing method according to Embodiment 5 of the present invention.
  • FIG. 6 is a flowchart of a data packet processing method according to Embodiment 6 of the present invention.
  • FIG. 7 is a schematic structural diagram of an MTC device according to Embodiment 7 of the present invention.
  • Embodiment 8 is a schematic structural diagram of an access device according to Embodiment 8 of the present invention.
  • FIG. 9 is a schematic structural diagram of an access device according to Embodiment 9 of the present invention.
  • FIG. 10 is a schematic structural diagram of an MTC device according to Embodiment 10 of the present invention.
  • FIG. 1 is a schematic structural diagram of an access device according to Embodiment 11 of the present invention.
  • FIG. 12 is a schematic structural diagram of an access device according to Embodiment 12 of the present invention.
  • FIG. 13 is a schematic structural diagram of an access device according to Embodiment 13 of the present invention.
  • FIG. 14 is a schematic structural diagram of a data packet processing system according to Embodiment 14 of the present invention
  • FIG. 15 is a schematic structural diagram of a data packet processing system according to Embodiment 15 of the present invention.
  • FIG. 1 is a flowchart of a data packet processing method according to Embodiment 1 of the present invention.
  • the execution body of this embodiment is an MTC device; for example, it may be a water meter, an electric meter, a vending machine, a POS machine, or the like.
  • the data packet processing method in this embodiment may specifically include the following steps: Step 100: Set, according to the index information, a packet header of the data packet to be sent as an index identifier corresponding to the MTC server identifier.
  • the index information includes a mapping relationship between the index identifier, the MTC server identifier, and the header information carrying the address of the MTC server.
  • the index information is pre-stored in the MTC device, and the index information includes an index identifier, that is, an index number, an MTC server identifier, and a correspondence relationship between the header information carrying the MTC server address.
  • the MTC server here is a target MTC server corresponding to the execution subject MTC device of the present embodiment.
  • the MTC device Based on the index information, the MTC device sets the header of the to-be-sent packet to be sent to the MTC server as the index identifier corresponding to the MTC server identifier. Since the amount of data of the index identifier is relatively small, the overhead of the packet header can be effectively saved compared with the header of the prior art which occupies a large amount of data.
  • Step 101 Send a data packet to the access device, so that the access device can modify the index identifier in the packet header to the header information carrying the address of the MTC server according to the index information, and send the modified information according to the header information carrying the address of the MTC server. data.
  • the MTC device sends the data packet to be sent to the access device, so that the access device receives the data packet, and then combines with the access device.
  • the pre-stored index information modifies the index identifier in the packet header in the received data packet to include header information of the target MTC server address corresponding to the MTC device.
  • the modified data packet is then sent according to the header information carrying the address of the MTC server. Specifically, the modified data packet is sent to the MTC server corresponding to the MTC server address according to the MTC server address carried in the header information.
  • the data packet processing method of the embodiment sends the data packet of the MTC device to the access device by using the packet header of the data packet as the index identifier corresponding to the MTC server identifier of the target to be sent, so that the access device is configured according to the storage device.
  • the index information modifies the index identifier in the packet header to the header information carrying the address of the MTC server to send the data packet to the corresponding target MTC server.
  • the packet header of the data packet is set as an index identifier, which can be compared with the prior art.
  • the efficiency of transmitting the packet header of the data packet sent to the MTC server by the MTC device to the access device is effectively reduced, and the air interface transmission efficiency of the MTC device to the access device is improved; thereby ensuring the transmission efficiency of the data packet reported by the MTC device.
  • the method may further include the following steps: receiving index information sent by the access device.
  • the index information pre-stored in the MTC device of the embodiment is sent by the access device to the MTC device in advance, so that the MTC device sets the packet header of the data packet to be sent according to the index information.
  • FIG. 2 is a flowchart of a data packet processing method according to Embodiment 2 of the present invention.
  • the executor of this embodiment is an access device, and may be, for example, a base station.
  • the data packet processing method in this embodiment may specifically include the following steps:
  • Step 200 Receive a data packet sent by the MTC device according to the index information.
  • the packet header of the data packet includes an index identifier corresponding to the corresponding MTC server identifier.
  • the index information includes a mapping relationship between the index identifier, the MTC server identifier, and the header information carrying the address of the MTC server.
  • the access device receives the data packet sent by the MTC device.
  • the data packet is set by the MTC device according to the foregoing index information pre-stored in the MTC device, and the packet header of the data packet is set to an index identifier corresponding to the MTC server identifier corresponding to the MTC device.
  • Step 201 Obtain, in the index information, header information that carries an address of the MTC server corresponding to the index identifier.
  • the index information including the index identifier, the MTC server identifier, and the correspondence between the header information carrying the MTC server address is also pre-stored in the access device.
  • the access device obtains, from the pre-stored index information, header information of the address of the MTC server corresponding to the index identifier carried by the packet header of the received data packet.
  • the header information herein may include the lifetime of the IP data packet (Time of Life; hereinafter referred to as TTL), and may also include the version number of the IP data packet supported by the MTC server, and the like. Wait for all related to the MTC server Header information common to MTC devices.
  • the header information includes common header information of each MTC device and information specific to each MTC device.
  • the header information in this embodiment refers to common header information.
  • the MTC server address in the header information is preferably an IP address of the MTC server.
  • the header information may also be referred to as IP header information.
  • Step 202 Modify the index identifier in the packet header to a header carrying the address of the MTC server.
  • the index information in the packet header of the data packet received in step 200 is modified according to the header information of the MTC server address received in step 201, and the header information of the MTC server address obtained in step 201 is modified.
  • Step 203 Send the modified data packet according to the header information carrying the address of the MTC server. Specifically, the modified data packet is sent to the MTC server corresponding to the MTC server address according to the MTC server address carried in the header information.
  • the data packet of the MTC device is sent to the access device by setting the packet header of the data packet to the index identifier corresponding to the MTC server identifier of the target to be sent, so that the access device is pre-stored according to the pre-storage.
  • the index information is modified to change the index identifier in the header of the received data packet to the header information carrying the address of the MTC server.
  • the step 203 sends the modified data packet according to the header information that carries the address of the MTC server, and specifically includes: passing the address of the MTC server carried in the header information carrying the address of the MTC server.
  • the core network sends the modified data packet to the MTC server corresponding to the MTC server address.
  • FIG. 3 is a flowchart of a data packet processing method according to Embodiment 3 of the present invention.
  • the data packet processing method of this embodiment may further include the following steps before the step 200, based on the technical solution of the foregoing embodiment shown in FIG. 2: Step 300: Obtain header information that carries an address of the MTC server.
  • Step 301 Create index information.
  • the index information including the index identifier, the MTC server identifier, and the header information carrying the MTC server address described in the foregoing embodiment is established and stored.
  • Step 302 Send index information to the MTC device, so that the MTC device can set the packet header of the data packet to an index identifier corresponding to the MTC server identifier according to the index information.
  • the MTC server corresponding to the MTC device is a fixed device of an industry.
  • the access device can obtain the header information including the address of the MTC server from the MTC server, where the MTC server address is preferably the IP address of the MTC server.
  • the header information may also include TTL, a version number supporting the MTC server, and the like, all header information common to the MTC device associated with the MTC server.
  • an index is established according to the MTC server identifier and the obtained header information, and the corresponding index identifier is obtained.
  • the access device can obtain an index corresponding to multiple MTC servers, and establish corresponding index information corresponding to multiple MTC servers. For example, Table 1 below.
  • Table 1 uses MTC server 1, MTC server 2, and MTC server 3 as examples.
  • the MTC server After the MTC server establishes the index information, it stores the index information. For example, it can be stored in the cellular parameter library as a new information element (Information Element; hereinafter referred to as IE).
  • Information Element hereinafter referred to as IE.
  • the index information is sent to the MTC device, so that the MTC device can set the packet header of the data packet sent to the MTC server to the index identifier in the corresponding index information according to the received index information, and send the index identifier to the access device.
  • the packet is sent to the MTC device, so that the MTC device can set the packet header of the data packet sent to the MTC server to the index identifier in the corresponding index information according to the received index information, and send the index identifier to the access device.
  • the access device sends the index information to the MTC device, which may be as follows:
  • the Radio Resource Control (hereinafter referred to as RRC) message may be carried through the dedicated channel, such as a radio bearer (Radio Bearer; hereinafter referred to as RB) setup information, and RB reconfiguration information.
  • RRC Radio Resource Control
  • RB Radio Bearer
  • TrCH Transport Channel
  • MBMS Multimedia Broadcast and Multicast Services
  • each field in the header information is set to one bit.
  • the bit can be set to 1 to indicate that the corresponding information is public information, and the bit can be set to 0 to indicate that the corresponding information is non-public information.
  • the first bit corresponds to the IP address
  • the second bit corresponds to the TTL
  • the third bit corresponds to the version number
  • the fourth bit corresponds to the header length. If the header information can be expressed as "1010"; then it can be known that the IP address represented by the first bit is public information, and the TTL of the second bit is non-public. Information
  • the third bit indicates that the version number is public information
  • the fourth bit indicates that the header length is non-public information.
  • the index can also be configured to all relevant MTC devices by pre-configuration.
  • the base station can update only the maintained list without notifying the MTC device.
  • the access device may also carry common information such as IP information of multiple MTC servers, so that the MTC device saves the index and the IP information correspondence table of multiple MTC servers, and then At the same time, the data is reported in the manner of the foregoing embodiment by using multiple MTC servers.
  • the data packet processing method in this embodiment establishes an index information corresponding to the header information of the MTC server by the MTC server, and sends the index information to the MTC device, so that the MTC device sets the data sent to the MTC server according to the index information.
  • the header of the packet; the index information is also stored for later modification of the header of the data packet sent by the received MTC device according to the index information.
  • the technical solution of the embodiment can effectively reduce the overhead of transmitting the packet header of the data packet sent by the MTC device to the MTC server to the access device, and improve the air interface transmission efficiency of the MTC device to the access device; thereby ensuring the reporting by the MTC device. The transmission efficiency of the data packet.
  • FIG. 4 is a flowchart of a data packet processing method according to Embodiment 4 of the present invention.
  • the executive body of this embodiment is an MTC device.
  • the data packet processing method in this embodiment may specifically include the following steps:
  • Step 400 Obtain an allocation relationship table.
  • the allocation relationship table includes a correspondence between the radio bearer resource information and the MTC server identifier.
  • the radio bearer resource information is allocated by the access device to the MTC device that sends the data packet to the MTC server, so that the MTC device sends the data packet sent to the MTC server to the access device according to the radio bearer resource information. That is, the distribution relationship table includes The correspondence between the MTC server identifier and the radio bearer resource information allocated by the radio access device to the MTC device that sends the data packet to the MTC server.
  • the MTC device obtains a pre-storage allocation relationship table, where the allocation relationship table includes a correspondence between the radio bearer resource information and the MTC server identifier.
  • the radio bearer resource information herein may be a time domain and/or a frequency domain; for example, in which frequency band the access device is set to receive a data packet sent by the MTC device to the MTC server; or in which time slot the access device is set to receive the MTC device The packet sent to the MTC server.
  • Step 401 Send a data packet that does not include a packet header to the access device by using the radio bearer resource corresponding to the radio bearer resource information, so that the access device can determine the radio bearer by using the radio bearer resource information in the relationship table.
  • the resource receives the data packet, and adds a header including the header information carrying the address of the MTC server to the data packet according to the mapping relationship between the allocation relationship table and the header information of the MTC server identifier and the address of the MTC server, and sends the header to the MTC server. Packet header.
  • the MTC device performs, according to the correspondence between the radio bearer resource information and the MTC server identifier in the obtained allocation relationship table, the radio bearer resource corresponding to the radio bearer information allocated by the access device for the data packet sent to the MTC server.
  • the MTC device transmits to the access device a data packet to be sent to the MTC server that does not include the packet header.
  • the AP can know the radio bearer resource corresponding to the radio bearer resource information by analyzing the allocation relationship table.
  • the data packet is a data packet sent to the MTC server, which is the target MTC server. And then obtaining, from the pre-stored correspondence between the MTC server identifier and the header information of the MTC server address, the header information of the MTC server address corresponding to the MTC server identifier, and adding the carrying MTC server to the data packet. The header of the address header information. Finally, the access device sends a packet with the header added to the MTC server.
  • the MTC device sends a data packet not including the packet header to the access device according to the allocation relationship table including the correspondence between the radio bearer resource information and the MTC server identifier, so that the access device allocates according to the packet.
  • the relationship table and the correspondence between the MTC server identifier and the header information carrying the address of the MTC server add a header to the data packet to accurately transmit the data packet to the MTC server.
  • step 401 in the foregoing embodiment may include the following steps:
  • the method further includes: receiving an allocation relationship table sent by the access device. Specifically, the allocation relationship table is allocated by the access device to the MTC server, and then the access device sends the allocation relationship table to the MTC device, so that the MTC device sends the information to the access device according to the allocation relationship table. Packet header.
  • FIG. 5 is a flowchart of a data packet processing method according to Embodiment 5 of the present invention.
  • the execution body of the data packet processing method in this embodiment is an access device.
  • the data packet processing method in this embodiment may specifically include the following steps:
  • Step 500 Receive, by using a radio bearer resource determined by the radio bearer resource information in the relationship table, a data packet that is not included in the packet header sent by the MTC device according to the allocation relationship table.
  • the allocation relationship table includes a correspondence between the radio bearer resource information and the MTC server identifier.
  • the radio bearer resource information is allocated by the access device to the MTC device that sends the data packet to the MTC server, where the MTC device passes the radio bearer resource information.
  • Corresponding radio bearer resources sending data packets sent to the MTC server to the access device.
  • the access device receives the data packet that does not include the packet header sent by the MTC device according to the same allocation relationship table according to the radio bearer resource determined by the radio bearer resource information in the allocation relationship table.
  • Step 501 Add a header including the header information carrying the address of the MTC server to the data packet according to the mapping relationship between the allocation relationship table and the header information of the MTC server identifier and the address of the MTC server.
  • the access device After receiving, by the access device, the data packet that does not include the packet header sent by the MTC device according to the allocation relationship table, according to the pre-stored allocation relationship table and receiving the radio bearer resource corresponding to the data packet, such as a time domain and/or a frequency domain,
  • the data packet to which the MTC server is sent is analyzed, and the identifier of the destination MTC server sent by the data packet is obtained from the distribution relationship table.
  • the MTC server identifier the correspondence between the MTC server identifier pre-stored in the access device and the header information of the MTC server address is obtained, and the correspondence between the header information of the MTC server and the address of the MTC server is obtained. Relationship;
  • a header including the header information carrying the address of the MTC server is added.
  • Step 502 Send a data packet that adds the header to the MTC server.
  • the access device receives the data packet that is not included in the packet header sent by the MTC device according to the allocation relationship table, and then corresponds to the header information of the MTC server identifier and the MTC server identifier according to the allocation relationship table and the MTC server identifier.
  • the relationship adds a header containing the header information carrying the address of the MTC server to the data packet to accurately transmit the data packet to the MTC server.
  • the MTC server is sent to the MTC server in step 502.
  • Sending a data packet that adds the packet header includes: the access device sends a data packet that adds the packet header to the MTC server through the core network.
  • FIG. 6 is a flowchart of a data packet processing method according to Embodiment 6 of the present invention. As shown in FIG. 6, the data packet processing method of this embodiment further includes the following steps before the step 500, based on the technical solution of the foregoing fifth embodiment:
  • Step 600 Obtain a header information carrying an address of the MTC server.
  • the header information carrying the address of the MTC server can be obtained from the MTC server.
  • Step 601 Establish a relationship between the identifier of the MTC server and the header information of the address carrying the MTC server.
  • Step 602 Allocate radio bearer resource information for the MTC device, and establish an allocation relationship table that includes a correspondence between the wireless bearer resource information and the MTC server identifier.
  • Step 603 Send the allocation relationship table to the MTC device, so that the MTC device can send the data packet that does not include the packet header according to the allocation relationship table.
  • the MTC server corresponding to the MTC device is a fixed device in an industry.
  • the access device may obtain header information including an MTC server address from the MTC server, where the MTC server address is preferably an IP address of the MTC server.
  • the header information may also include TTL, a version number supporting the MTC server, and the like, all header information common to the MTC device associated with the MTC server.
  • the access device After obtaining the header information, the access device establishes a corresponding relationship between the MTC server identifier and the acquired header information, and stores the correspondence.
  • the access device then allocates radio bearer resource information for the MTC device and establishes the allocation relationship table.
  • the allocation relationship table includes a correspondence between the radio bearer resource information and the MTC server identifier.
  • the radio bearer resource information may be a time domain and/or a frequency domain allocated by the access device to the MTC device, for the MTC device to send the data packet sent to the MTC server in the time domain and/or the frequency domain.
  • the wireless access device then stores the allocation relationship table and sends the allocation relationship table to the MTC device, so that the MTC device sends the data packet sent to the MTC server according to the allocation relationship table under the radio bearer resource information. Due to the radio bearer
  • the data packet is sent by the radio bearer resource corresponding to the resource information, and the data packet has a certain target MTC server. Therefore, the data packet sent by the MTC device does not include the packet header.
  • the access device establishes an allocation relationship table, and a correspondence between the MTC server identifier and the header information of the MTC server address, so as to receive the packet header sent by the MTC device.
  • the access device establishes an allocation relationship table, and a correspondence between the MTC server identifier and the header information of the MTC server address, so as to receive the packet header sent by the MTC device.
  • FIG. 7 is a schematic structural diagram of an MTC device according to Embodiment 7 of the present invention.
  • the MTC device 1 of this embodiment may specifically include: a processing module 10 and a sending module 11.
  • the processing module 10 in the MTC device 1 of the embodiment is configured to set, according to the index information, a packet header of the data packet to be sent as an index identifier corresponding to the MTC server identifier; the index information includes an index identifier, an MTC server identifier, and an MTC server.
  • the sending module 11 is connected to the processing module 10, and the sending module 11 is configured to send the data packet processed by the processing module 10 to the access device, so that the access device can modify the index identifier in the packet header to carry the MTC server according to the pre-stored index information.
  • the header information of the address; and the modified data packet is sent according to the header information carrying the address of the MTC server.
  • the processing manner of the data packet is implemented in the same manner as the implementation mechanism of the first embodiment of the foregoing method.
  • the related information in the foregoing method embodiment it will not be repeated here.
  • the MTC device 1 of the embodiment is configured to set the packet header of the data packet to the index identifier corresponding to the MTC server identifier of the target to be sent, and send the data packet of the MTC device 1 to the access device for accessing the device. Modifying the index identifier in the packet header to the header information including the MTC server address according to the stored index information, to send the data packet to the corresponding target MTC server.
  • the overhead of transmitting the packet header of the data packet sent by the MTC device 1 to the MTC server to the access device is effectively reduced, and the air interface transmission efficiency of the MTC device 1 to the access device is improved; thereby ensuring the MTC device 1 The transmission efficiency of the reported data packet.
  • the MTC device 1 of this embodiment may further include a receiving module 12 on the basis of the foregoing technical solutions.
  • the receiving module 12 is configured to receive index information sent by the access device. After receiving the index information, the receiving module 12 may store the index information.
  • the processing module 10 is configured to be connected to the receiving module 12, and the processing module 10 is configured to set, according to the index information received by the receiving module 12, a packet header of the data packet to be sent as an index identifier corresponding to the MTC server identifier.
  • FIG. 8 is a schematic structural diagram of an access device according to Embodiment 8 of the present invention.
  • the access device 2 of this embodiment may specifically include: a receiving module 20, a first acquiring module 21, a first processing module 22, and a first sending module 23.
  • the receiving module 20 in the access device 2 of the embodiment is configured to receive a data packet that is sent by the MTC device according to the index information, and the packet header of the data packet includes an index identifier corresponding to the corresponding MTC server identifier.
  • the index information includes a mapping relationship between the index identifier, the MTC server identifier, and the header information carrying the MTC server address.
  • the first obtaining module 21 is connected to the receiving module 20, and the first obtaining module 21 is configured to obtain, in the index information, header information of the MTC server address corresponding to the index identifier included in the data packet received by the receiving module 20.
  • the first processing module 22 is connected to the receiving module 20 and the first acquiring module 21, respectively.
  • the first processing module 22 is configured to modify the index identifier in the packet header of the data packet received by the receiving module 20 to the header information of the MTC server address corresponding to the index identifier acquired by the first acquiring module 21.
  • First sending module 23 is connected to the first acquisition module 21 and the first processing module 22, respectively.
  • the first sending module 23 is configured to send, according to the header information of the MTC server address obtained by the first acquiring module 21, the data packet after the modified packet header processed by the first processing module 22. Specifically, according to the MTC server address in the header information obtained by the first obtaining module 21, the data packet after the modified header is processed by the first processing module 22 is sent to the MTC server corresponding to the MTC server address.
  • the processing method of the data packet is implemented in the same manner as the implementation of the second embodiment of the foregoing method.
  • the processing method of the data packet is implemented in the same manner as the implementation of the second embodiment of the foregoing method.
  • the access device 2 of the embodiment sends the packet header of the data packet to the index identifier corresponding to the MTC server identifier of the target to be sent, and sends the data packet of the MTC device to the access device 2 for access.
  • the device 2 modifies the index identifier in the header of the received data packet to the header information carrying the address of the MTC server according to the pre-stored index information.
  • the technical solution of the embodiment can effectively reduce the overhead of transmitting the packet header of the data packet sent by the MTC device to the access device 2 to the MTC server, and improve the air interface transmission efficiency of the MTC device to the access device 2; thereby ensuring the MTC device. The transmission efficiency of the reported data packet.
  • the first sending module 23 in the foregoing embodiment is specifically configured to send, according to the header information of the MTC server address obtained by the first acquiring module 21, the data packet after the modified header is processed by the first processing module 22 through the core network.
  • FIG. 9 is a schematic structural diagram of an access device according to Embodiment 9 of the present invention.
  • the access device 3 of this embodiment may further include the following modules: the second acquiring module 24, the second processing module 25, and the second sending module, based on the technical solution of the foregoing eighth embodiment. 26.
  • the second obtaining module 24 of the access device 3 of the present embodiment is configured to obtain the header information of the MTC server that carries the MTC server address.
  • the header information of the MTC server that carries the MTC server address may be obtained from the MTC server.
  • the header information here is public header information, that is, the common header in the header information for each MTC device corresponding to the MTC server. Interest section.
  • the header information here is preferably IP header information.
  • the second processing module 25 is connected to the second obtaining module 24, and the second processing module 25 is configured to establish index information including a mapping identifier, an MTC server identifier, and a correspondence relationship between the header information acquired by the second obtaining module 24.
  • the second sending module 26 is connected to the second processing module 25, and the second sending module 26 is configured to send the index information that is established and stored by the second processing module 25 to the MTC device, so that the MTC device sends the packet header of the data packet according to the index information.
  • the index information that is established and stored by the second processing module 25 to the MTC device, so that the MTC device sends the packet header of the data packet according to the index information.
  • the second processing module 25 is also connected to the first obtaining module 21.
  • the first obtaining module 21 may obtain, from the index information stored by the second processing module 25, header information of the MTC server address corresponding to the index identifier included in the data packet received by the receiving module 20.
  • the method for processing the data packet by using the module is the same as the implementation mechanism of the third embodiment of the foregoing method.
  • the method for processing the data packet by using the module is the same as the implementation mechanism of the third embodiment of the foregoing method.
  • the access device 3 of the embodiment establishes, by each module, index information corresponding to the MTC server identifier and the header information of the MTC server, and sends the index information to the MTC device, so that the MTC device sends the identifier to the MTC server according to the index information.
  • the header of the data packet; the index information is also stored for subsequent modification of the header of the data packet sent by the received MTC device according to the index information.
  • FIG. 10 is a schematic structural diagram of an MTC device according to Embodiment 10 of the present invention.
  • the MTC device 4 of this embodiment may specifically include: an obtaining module 30 and a sending module 31.
  • the obtaining module 30 in the MTC device 4 of the embodiment is configured to obtain an allocation relationship table, where the mapping relationship between the radio bearer resource information and the MTC server identifier is included in the allocation relationship table.
  • the sending module 31 is connected to the acquiring module 30.
  • the sending module 31 is configured to use the radio bearer resource corresponding to the radio bearer resource information to access the access according to the allocation relationship table obtained by the obtaining module 30. Transmitting a data packet that does not include a packet header, so that the access device can receive the data packet by using the radio bearer resource determined by the radio bearer resource information in the allocation relation table; and according to the allocation relationship table, and
  • the correspondence between the MTC server identifier and the header information carrying the address of the MTC server adds a header containing the header information carrying the address of the MTC server to the data packet, and sends a packet for adding the header to the MTC server.
  • the processing manner of the data packet is implemented in the same manner as the implementation method in the fourth embodiment of the foregoing method.
  • the processing manner of the data packet is implemented in the same manner as the implementation method in the fourth embodiment of the foregoing method.
  • the processing manner of the data packet is implemented in the same manner as the implementation method in the fourth embodiment of the foregoing method.
  • the MTC device 4 of the present embodiment implements, by each module, the MTC device 4, according to the allocation and allocation relationship table including the correspondence between the radio bearer resource information and the MTC server identifier, and sends a data packet not including the packet header to the access device for connection.
  • the ingress device adds a packet header to the data packet according to the mapping relationship between the allocation relationship table and the header information of the MTC server identifier and the MTC server address to accurately transmit the data packet to the MTC server.
  • the MTC device 4 of this embodiment may further include a receiving module 32.
  • the receiving module 32 is configured to receive an allocation relationship table sent by the access device. After receiving the allocation relationship table, the receiving module 32 may store the allocation relationship table for the subsequent obtaining module 30 to acquire the allocation relationship table.
  • the obtaining module 30 can be connected to the receiving module 32, and the obtaining module 30 is configured to obtain the allocation relation table received by the receiving module 32.
  • FIG. 11 is a schematic structural diagram of an access device according to Embodiment 11 of the present invention.
  • the access device 5 of this embodiment may specifically include: a receiving module 40, a first processing module 41, and a first sending module 42.
  • the receiving module 40 in the access device 5 of this embodiment is used to allocate wireless in the relationship table.
  • the radio bearer resource determined by the bearer resource information receives a data packet that is not included in the packet header sent by the MTC device according to the allocation relationship table.
  • the allocation relationship table includes a correspondence between the radio bearer resource information and the MTC server identifier.
  • the radio bearer resource information is allocated by the access device 5 to the MTC device that sends the data packet to the MTC server, and is sent to the access device 5 by the MTC device according to the radio bearer resource determined by the radio bearer resource information.
  • the first processing module 41 is connected to the receiving module 40.
  • the first processing module 41 is configured to add, according to the mapping relationship between the allocation relationship table in the access device 5 and the header information of the MTC server identifier and the MTC server address, the data packet received by the receiving module 40 to include the MTC server address.
  • the first sending module 42 is connected to the first processing module 41.
  • the first sending module 42 is configured to send, to the MTC server, the data packet with the added header obtained after being processed by the first processing module 41.
  • the access device 5 of the embodiment is the same as the implementation mechanism of the foregoing method embodiment. The detailed description of the method is not described here.
  • the access device 5 of the embodiment implements, by each module, a data packet that is not included in the packet header sent by the MTC device according to the allocation relationship table, and then corresponds to the header information of the MTC server identifier and the MTC server address according to the allocation relationship table and the MTC server identifier.
  • the relationship adds a header containing the header information carrying the address of the MTC server to the data packet to accurately transmit the data packet to the MTC server.
  • FIG. 12 is a schematic structural diagram of an access device according to Embodiment 12 of the present invention.
  • the access device 6 of the present embodiment in addition to the technical solution of the foregoing eleventh embodiment, the first processing module 41 may specifically include a first obtaining unit 411, a second obtaining unit 412, and processing. Unit 413.
  • the first obtaining unit 411 is configured to obtain an MTC server identifier corresponding to the radio bearer resource information in the allocation relationship table.
  • the second obtaining unit 412 is connected to the first obtaining unit 411, and the second obtaining unit 412 is configured to use the MTC server identifier obtained by the first acquiring unit 411, and the correspondence between the MTC server identifier and the header information carrying the MTC server address.
  • the processing unit 413 is configured to be connected to the receiving module 40 and the second obtaining unit 412.
  • the processing unit 413 is configured to add, to the data packet received by the receiving module 40, the carrying header that the second acquiring unit 412 obtains the header information of the MTC server address.
  • the first sending module 42 is connected to the processing unit 413, and the first sending module 42 is configured to send, to the MTC server, the data packet with the added header obtained after being processed by the processing unit 413.
  • the access device of the present embodiment is the same as that of the foregoing method embodiment.
  • the details of the method for implementing the data packet are as follows. For details, refer to the related description of the foregoing method embodiment, and details are not described herein.
  • the access device 6 in this embodiment implements, by each module and the unit, a data packet that is not included in the packet header sent by the MTC device according to the allocation relationship table, and then according to the allocation relationship table and the header information of the MTC server identifier and the address carrying the MTC server. Corresponding relationship, adding a header containing the header information carrying the address of the MTC server to the data packet to accurately transmit the data packet to the MTC server.
  • FIG. 13 is a schematic structural diagram of an access device according to Embodiment 13 of the present invention.
  • the access device 7 of the present embodiment may further include the following modules: the acquiring module 43, the second processing module 44, and the third processing module 45, on the basis of the technical solution of the foregoing eleventh embodiment. And a second transmitting module 46.
  • the obtaining module 43 of the access device 7 of the embodiment is configured to acquire the address of the carrying MTC server.
  • the header information specifically, the MTC server address header information required for processing by the first processing module 41 is obtained from the MTC server.
  • the second processing module 44 is connected to the obtaining module 43.
  • the second processing module 44 is configured to establish a correspondence between the MTC server identifier and the MTC server address header information acquired by the acquiring module 43 for subsequent processing by the first processing module 41.
  • the third processing module 45 is configured to allocate radio bearer resource information for the MTC device, and establish an allocation relationship table.
  • the mapping relationship between the MTC server identifier and the radio bearer resource information allocated by the MTC device that the wireless access device 7 sends to the MTC server is obtained by the subsequent first processing module 41.
  • the radio bearer resource information is used by the MTC device to send a data packet addressed to the MTC server to the access device 7 according to the radio bearer resource information.
  • the second sending module 46 is connected to the third processing module 45, and the second sending module 46 is configured to send, to the MTC device, an allocation relationship table that is established and stored by the third processing module 45, so that the MTC device sends the unpacked header according to the allocation relationship table. Packet.
  • the first processing module 41 can be connected to the second processing module 44 and the third processing module 45, respectively.
  • the first processing module 41 is configured to: according to the allocation relationship table stored by the second processing module 44 in the access device 7, and the correspondence between the MTC server identifier established and stored by the third processing module 45 and the header information carrying the MTC server address. Adding a header containing the header information carrying the address of the MTC server to the data packet received by the receiving module 40.
  • the first sending module 42 is specifically configured to send, by using the core network, the data packet with the added header processed by the first processing module 41 to the MTC server.
  • the access device 7 of the present embodiment is the same as the implementation mechanism of the foregoing method embodiment. The detailed description of the method is not described here.
  • the access device 7 in this embodiment implements a mapping relationship between the MTC server identifier and the header information including the MTC server address through each module, so as to prepare for the subsequent relationship.
  • Receiving the data packet sent by the MTC device adds a packet header to accurately transmit the data packet to the MTC server.
  • the overhead of transmitting the packet header of the data packet sent by the MTC device to the access device 7 to the MTC server is effectively reduced, and the air interface transmission efficiency of the MTC device to the access device 7 is improved; thereby ensuring the MTC.
  • FIG. 14 is a schematic structural diagram of a data packet processing system according to Embodiment 14 of the present invention.
  • the packet processing system 8 of this embodiment may specifically include: an MTC device 50, an access device 51, and an MTC server device 52.
  • the MTC device 50 in the data packet processing system 8 of the embodiment is configured to set the packet header of the data packet to be sent according to the index information to the index identifier corresponding to the identifier of the MTC server device 52.
  • the index information includes an index identifier, an identifier of the MTC server device 52, and a header information carrying the address of the MTC server device 52; and the packet is sent to the access device 51.
  • the access device 51 in the packet processing system 8 of the present embodiment is connected to the MTC device 50 and the MTC server device 52, respectively.
  • the access device 51 is configured to receive a data packet transmitted by the MTC device 50.
  • the access device 51 then obtains the header information of the address of the MTC server device 52 corresponding to the index identifier in the index information stored in the access device 51, and modifies the index identifier in the packet header of the data packet to the acquired carrying MTC server.
  • the header information of the address of the device 52; and the modified data packet is sent according to the header information carrying the address of the MTC server device 52.
  • the modified data packet is sent to the MTC server device 52 corresponding to the address of the MTC server device 52 according to the address of the MTC server device 52 in the header information.
  • the MTC device 50 in the packet processing system 8 of the present embodiment can employ the MTC device in the seventh embodiment.
  • the access device 51 can employ the access device described in the above embodiment eight or nine.
  • the packet processing system 8 of the present embodiment is the same as the implementation mechanism of the first, second, or third embodiment of the foregoing method. For details, refer to the description of the related embodiments, and details are not described herein again.
  • the data packet processing system 8 of this embodiment can effectively reduce the MTC device to the access device.
  • the overhead of the packet header of the data packet sent to the MTC server is increased, and the air interface transmission efficiency of the MTC device to the access device is improved; thereby ensuring the transmission efficiency of the data packet reported by the MTC device.
  • FIG. 15 is a schematic structural diagram of a data packet processing system according to Embodiment 15 of the present invention.
  • the packet processing system 9 of this embodiment may specifically include: an MTC device 60, an access device 61, and an MTC server device 62.
  • the MTC device 60 in the packet processing system 9 of the present embodiment is used to acquire an allocation relation table stored in the MTC device 60.
  • the allocation relationship table includes a correspondence between the radio bearer resource information allocated by the MTC device 60 that the access device sends the data packet to the MTC server device 62 and the identifier of the MTC server device 62; and according to the allocation relationship table, The data packet not including the packet header is transmitted to the access device 61 by the radio bearer resource corresponding to the radio bearer resource information.
  • the access device 61 in the packet processing system 9 of the present embodiment is connected to the MTC device 60 and the MTC server device 62, respectively.
  • the access device 61 is configured to receive, by the radio bearer resource determined by the radio bearer resource information in the allocation relation table, the data packet that is not included in the packet header sent by the MTC device 60 according to the allocation relationship table.
  • the access device 61 then adds the address including the carrying MTC server device 62 to the data packet according to the mapping relationship stored in the access device 61 and the correspondence between the MTC server device 62 and the header information carrying the address of the MTC server device 62.
  • the header of the header information; and the packet of the header is added to the MTC server device 62.
  • the MTC device 60 in the packet processing system 9 of this embodiment can employ the MTC device of the above tenth embodiment.
  • the access device 61 can employ the access device described in the eleventh, twelfth or thirteenth embodiment.
  • the packet processing system 9 of the present embodiment is the same as the implementation mechanism of the fourth, fifth, or sixth embodiment of the foregoing method. For details, refer to the description of the related embodiments, and details are not described herein again.
  • the packet processing system 9 of the embodiment can effectively reduce the overhead of transmitting the packet header of the data packet sent by the MTC device to the MTC server to the access device, and improve the air interface transmission efficiency of the MTC device to the access device; thereby ensuring the MTC device.
  • the transmission efficiency of the reported data packet can effectively reduce the overhead of transmitting the packet header of the data packet sent by the MTC device to the MTC server to the access device, and improve the air interface transmission efficiency of the MTC device to the access device; thereby ensuring the MTC device.
  • the transmission efficiency of the reported data packet can effectively reduce the overhead of transmitting the packet header of the data packet sent by the MTC device to the MTC server to the access device, and improve the air interface transmission efficiency of the MTC device to the access device; thereby ensuring the MTC device.
  • An access device involved in the foregoing embodiment of the present invention may be, for example, an evolved universal shift.
  • An access device in a non-3GPP network may refer to: an entity having a logical function of an Evolved Packet Data Gateway (ePDG) access network in a Wireless Local Area Network (WLAN), and global access of the access wave access ( Worldwide Interoperability for
  • WiMAX Microwave Access
  • ASN BS Access Service Network Base Station
  • CDMA Wideband Code Division Multiple Access
  • HRPD AN High Rate Packet Data Access Network
  • HRPD AN High Rate Packet Data Access Network

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Description

数据包处理方法、 设备及系统
技术领域
本发明实施例涉及数据传输技术领域, 尤其涉及一种数据包处理方 法、 设备及系统。 背景技术
随着机器到机器 ( Machine-to-Machine ; 以下简称 M2M )技术的应 用发展, 利用蜂窝网实现 M2M应用是目前的一项研究热点。
在现有的 M2M应用 中, 大量的机器类型通信 ( Machine Type Communications; 以下简称 MTC )设备会周期性或者随机地通过蜂窝网中 的接入设备如基站向 MTC服务器上报数据。例如这里的 MTC设备可以为水 表、 电表、 自动售货机、 电子收款机(Point of Sells; 以下简称 POS机) 。 现有的 M2M之间的交互利用蜂窝网传输系统来实现。 MTC设备上报数据 的过程参考现有蜂窝网传输系统中终端向接入设备上报数据的过程。 在现 有的蜂窝网传输系统中, 数据包的设计主要是针对于语音通话业务来实现 的。 由于语音通话业务所产生的数据流的信息量多且长度较长, 为了有效 地对数据流进行传输, 通常采用对数据流分成多个数据包进行传输。 其中 数据包的网络之间互联的协议 ( Internet Protocol; 以下简称 IP ) 包头压缩 机制采用基于 ROCH(Robust Header Compression, 健壮报头压缩)算法的分 组数据汇聚协议 ( Packet Data Convergence Protocol; 以下简称 PDCP )压 缩技术, 该压缩技术中在数据包中的第一个数据包即 IP包头中不执行压 缩, 而是通过 IP包头的信息建立上下文关系后, 对数据流中的后续数据包 进行压缩; 从而有效地提高数据传输效率。
在实现本发明过程中, 发明人发现现有技术中至少存在如下问题: 由 于现有的 MTC设备业务种类单一、 上传应用层数据量比较小, 通常仅包 括一个上传的数据包, 造成 IP 包头压缩机制无法很好的发挥其作用。 而 且在数据包传输过程中, IP包头通常包括 40个字节, 可能会超过 MTC设 备一次上报的应用层数据量; 使用这种包头数据量与应用层数据量相当或 者包头数据量甚至大于应用数据的数据量来传输应用层数据,会造成 MTC 设备上报的数据传输效率较低。 发明内容
本发明实施例提供一种数据包处理方法、 设备及系统, 用以解决现有 技术中 MTC设备上传的数据传输效率较低的问题,提高 MTC上传的数据 包的传输效率。
本发明实施例提供一种数据包处理方法, 包括:
根据索引信息将待发送的数据包的包头设为机器类型通信服务器标 识对应的索引标识; 所述索引信息中包括所述索引标识、 所述机器类型通 信服务器标识、 携带所述机器类型通信服务器地址的头信息之间的对应关 系;
向所述接入设备发送所述数据包, 以使所述接入设备能够根据所述索 引信息将所述包头中的所述索引标识修改为所述携带所述机器类型通信 服务器地址的头信息; 并根据所述携带所述机器类型通信服务器地址的头 信息发送修改后的所述数据包。
本发明实施例还提供一种数据包处理方法, 包括:
接收机器类型通信设备根据索引信息发送的数据包, 所述数据包的包 头包括对应的机器类型通信服务器标识对应的索引标识; 所述索引信息中 包括所述索引标识、 所述机器类型通信服务器标识、 携带所述机器类型通 信服务器地址的头信息之间的对应关系;
在所述索引信息中, 获取所述索引标识对应的所述携带所述机器类型 通信服务器地址的头信息; 将所述包头中的所述索引标识修改为所述携带所述机器类型通信服 务器地址的头信息;
并根据所述携带所述机器类型通信服务器地址的头信息发送修改后 的所述数据包。
本发明实施例还提供一种数据包处理方法, 包括:
获取分配关系表, 所述分配关系表中包括无线承载资源信息与所述机 器类型通信服务器标识之间的对应关系;
根据所述分配关系表, 通过所述无线承载资源信息对应的无线承载资 源向接入设备发送未包含包头的数据包, 以使所述接入设备能够通过所述 分配关系表中所述无线承载资源信息确定的无线承载资源接收所述数据 包, 并根据所述分配关系表、 以及所述机器类型通信服务器标识与携带所 述机器类型通信服务器地址的头信息之间的对应关系, 为所述数据包增加 包含所述携带所述机器类型通信服务器地址的所述头信息的包头; 并向所 述机器类型通信服务器发送所述增加包头的数据包。
本发明实施例还提供一种数据包处理方法, 包括:
通过分配关系表中无线承载资源信息确定的无线承载资源接收机器 类型通信设备根据所述分配关系表发送的未包含包头的数据包; 所述分配 关系表中包括所述无线承载资源信息与机器类型通信服务器标识之间的 对应关系;
根据所述分配关系表、 以及所述机器类型通信服务器标识与携带所述 机器类型通信服务器地址的头信息之间的对应关系, 为所述数据包增加包 含所述携带所述机器类型通信服务器地址的头信息的包头;
向所述机器类型通信服务器发送所述增加包头的数据包。
本发明实施例提供一种机器类型通信设备, 包括:
处理模块, 用于根据索引信息将待发送的数据包的包头设为机器类型 通信服务器标识对应的索引标识; 所述索引信息中包括所述索引标识、 所 述机器类型通信服务器标识、 携带所述机器类型通信服务器地址的头信息 之间的 3†应关系;
发送模块, 用于向所述接入设备发送所述数据包, 以使所述接入设备 能够根据所述索引信息将所述包头中的所述索引标识修改为所述携带所 述机器类型通信服务器地址的头信息, 并根据所述携带所述机器类型通信 服务器地址的头信息发送修改后的所述数据包。
本发明实施例提供一种接入设备, 包括:
接收模块, 用于接收机器类型通信设备根据索引信息发送的数据包, 所述数据包的包头包括对应的机器类型通信服务器标识对应的索引标识; 所述索引信息中包括所述索引标识、 所述机器类型通信服务器标识、 携带 所述机器类型通信服务器地址的头信息之间的对应关系;
第一获取模块, 用于在所述索引信息中, 获取所述索引标识对应的所 述携带所述机器类型通信服务器地址的头信息;
第一处理模块, 用于将所述包头中的所述索引标识修改为所述携带所 述机器类型通信服务器地址的头信息;
第一发送模块, 用于根据所述携带所述机器类型通信服务器地址的头 信息发送修改后的所述数据包。
本发明实施例还提供一种机器类型通信设备, 包括:
获取模块, 用于获取分配关系表, 所述分配关系表中包括无线承载资 源信息与所述机器类型通信服务器标识之间的对应关系;
发送模块, 用于根据所述分配关系表, 通过所述无线承载资源信息对 应的无线承载资源向接入设备发送未包含包头的数据包, 以使所述接入设 备能够通过所述分配关系表中所述无线承载资源信息确定的无线承载资 源接收所述数据包; 并根据所述分配关系表、 以及所述机器类型通信服务 器标识与携带所述机器类型通信服务器地址的头信息之间的对应关系, 为 所述数据包增加包含所述携带所述机器类型通信服务器地址的头信息的 包头; 并向所述机器类型通信服务器发送所述增加包头的数据包。
本发明实施例还提供一种接入设备, 包括:
接收模块, 用于通过分配关系表中无线承载资源信息确定的无线承载 资源接收机器类型通信设备根据所述分配关系表发送的未包含包头的数 据包; 所述分配关系表中包括所述无线承载资源信息与机器类型通信服务 器标识之间的对应关系;
第一处理模块, 用于根据所述分配关系表、 以及所述机器类型通信服 务器标识与携带所述机器类型通信服务器地址的头信息之间的对应关系, 为所述数据包增加包含所述携带所述机器类型通信服务器地址的头信息 的包头;
第一发送模块, 用于向所述机器类型通信服务器发送所述增加包头的 数据包。
本发明实施例提供一种数据包处理系统, 包括: 机器类型通信设备、 接入设备和机器类型通信服务器设备;
所述机器类型通信设备, 用于根据索引信息将待发送的数据包的包头 设为机器类型通信服务器设备标识对应的索引标识; 所述索引信息中包括 所述索引标识、 所述机器类型通信服务器设备标识、 携带所述机器类型通 信服务器设备地址的头信息之间的对应关系; 并向所述接入设备发送所述 数据包;
所述接入设备, 用于接收所述机器类型通信设备发送的所述数据包; 在所述索引信息中, 获取所述索引标识对应的所述携带所述机器类型通信 服务器地址的头信息; 并将所述包头中的所述索引标识修改为所述携带所 述机器类型通信服务器地址的头信息; 并根据所述携带所述机器类型通信 服务器地址的头信息发送修改后的所述数据包。
本发明实施例还提供一种数据包处理系统, 包括:机器类型通信设备、 接入设备和机器类型通信服务器设备; 所述机器类型通信设备, 用于获取分配关系表, 所述分配关系表中包 括所述无线承载资源信息与所述机器类型通信服务器设备标识之间的对 应关系; 并根据所述分配关系表, 通过所述无线承载资源信息对应的承载 资源向所述接入设备发送未包含包头的数据包;
所述接入设备, 用于通过分配关系表中无线承载资源信息确定的无线 承载资源接收所述机器类型通信设备根据所述分配关系表发送的未包含 包头的数据包; 根据所述分配关系表、 以及所述机器类型通信服务器设备 标识与携带所述机器类型通信服务器设备地址的头信息之间的对应关系, 为所述数据包增加包含所述携带所述机器类型通信服务器地址的头信息 的包头; 并向所述机器类型通信服务器设备发送所述增加包头的数据包。
本发明实施例的数据包处理方法、 设备及系统, 机器类型通信设备通 过向接入设备发送包头设为对应的索引标识的数据包; 或者机器类型通信 设备按照包括无线承载资源信息与 MTC服务器标识之间对应关系的分配 分配关系表, 向接入设备发送未包含包头的数据包。 并由接入设备根据对 应的情况为接收到的数据包修改包头或者增加包头, 并将修改包头或者增 加包头后的数据包准确地发送给机器类型通信设备。 通过本发明实施例的 技术方案, 能够有效地减少机器类型通信设备向接入设备发送发向机器类 型通信服务器的数据包的包头的开销, 提高机器类型通信设备至接入设备 的空口传输效率; 从而保证了机器类型通信设备上报的数据包的传输效 率。 附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案, 下面将对实 施例或现有技术描述中所需要使用的附图作一简单地介绍, 显而易见地, 下 面描述中的附图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为本发明实施例一提供的数据包处理方法的流程图; 图 2为本发明实施例二提供的数据包处理方法的流程图;
图 3为本发明实施例三提供的数据包处理方法的流程图;
图 4为本发明实施例四提供的数据包处理方法的流程图;
图 5为本发明实施例五提供的数据包处理方法的流程图;
图 6为本发明实施例六提供的数据包处理方法的流程图
图 7为本发明实施例七提供的 MTC设备的结构示意图;
图 8为本发明实施例八提供的接入设备的结构示意图;
图 9为本发明实施例九提供的接入设备的结构示意图;
图 10为本发明实施例十提供的 MTC设备的结构示意图;
图 1 1为本发明实施例十一提供的接入设备的结构示意图;
图 12为本发明实施例十二提供的接入设备的结构示意图;
图 13为本发明实施例十三提供的接入设备的结构示意图;
图 14为本发明实施例十四提供的数据包处理系统的结构示意图; 图 15为本发明实施例十五提供的数据包处理系统的结构示意图。 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。
图 1为本发明实施例一提供的数据包处理方法的流程图。如图 1所示, 本实施例的执行主体为 MTC设备; 例如可以为水表、 电表、 自动售货机 或者 POS机等等。 如图 1所示, 本实施例的数据包处理方法, 具体可以包 括如下步骤: 步骤 100、 根据索引信息将待发送的数据包的包头设为 MTC服务器 标识对应的索引标识;
其中索引信息中包括索引标识、 MTC服务器标识、 携带 MTC服务器 地址的头信息之间的对应关系;
具体地, 本实施例中, MTC设备中预先存储有索引信息, 该索引信 息中包括有索引标识即索引号、 MTC服务器标识、 携带 MTC服务器地址 的头信息之间的对应关系。 这里的 MTC服务器是与本实施例的执行主题 MTC设备对应的目标 MTC服务器。 MTC设备根据该索引信息, 将要发 送给 MTC服务器的待发送数据包的包头设为 MTC服务器标识对应的索引 标识。 因为索引标识的数据量比较小, 与现有技术中占用较大数据量的包 头相比, 能够有效地节省数据包包头的开销。
步骤 101、 向接入设备发送数据包, 以使接入设备能够根据索引信息, 将包头中的索引标识修改为携带 MTC服务器地址的头信息; 并根据携带 MTC服务器地址的头信息发送修改后的数据。
具体地, MTC设备经上述步骤 100设置为待发送的数据包的包头之 后, 将待发送的数据包发送至接入设备, 以供接入设备接收到该数据包之 后, 再结合接入设备中预先存储的索引信息, 将接收到的数据包中的包头 中的索引标识修改为包括该 MTC设备对应的目标 MTC服务器地址的头信 息。 然后根据携带 MTC服务器地址的头信息发送修改后的数据包。 具体 地, 也就是根据头信息中携带的 MTC服务器地址, 向该 MTC服务器地址 对应的 MTC服务器发送该修改后的数据包。
本实施例的数据包处理方法, 通过将数据包的包头设为要发送的目标 的 MTC服务器标识对应的索引标识,将 MTC设备的数据包发送给接入设 备, 以供接入设备根据存储的索引信息将包头中的索引标识修改为携带 MTC服务器地址的头信息, 以将数据包发送给对应的目标 MTC服务器。 本发明实施例将数据包的包头设置为索引标识, 与现有技术相比, 能够有 效地减少 MTC设备向接入设备发送发向 MTC服务器的数据包的包头的开 销,提高 MTC设备至接入设备的空口传输效率; 从而保证了 MTC设备上 报的数据包的传输效率。
需要说明的是, 在上述实施例的基础上, 在步骤 100之前, 还可以包 括如下步骤: 接收接入设备发送的索引信息。 具体地, 也就是说, 本实施 例的 MTC设备中预先存储的索引信息是接入设备事先发送给 MTC设备 的, 以供 MTC设备根据该索引信息设置待发送数据包的包头。
图 2为本发明实施例二提供的数据包处理方法的流程图。如图 2所示, 本实施例的执行主体为接入设备, 例如可以为基站。 本实施例的数据包处 理方法, 具体可以包括如下步骤:
步骤 200、 接收 MTC设备根据索引信息发送的数据包; 该数据包的 包头包括对应的 MTC服务器标识对应的索引标识;
其中; 索引信息中包括索引标识、 MTC服务器标识、 携带 MTC服务 器地址的头信息之间的对应关系。
具体地, 接入设备接收到 MTC设备发送的数据包。 其中该数据包经 MTC设备根据 MTC设备中预先存储的上述索引信息, 将该数据包的包头 设置为该 MTC设备对应的 MTC服务器标识对应的索引标识。
步骤 201、 在索引信息中, 获取索引标识对应的携带 MTC服务器地 址的头信息;
具体地, 在接入设备中也预存储有包括索引标识、 MTC服务器标识、 携带 MTC服务器地址的头信息之间的对应关系的索引信息。 接入设备从 预存储的索引信息中获取接收到的数据包的包头所携带的索引标识对应 的携带 MTC服务器地址的头信息。
需要说明的是, 这里的头信息除了包括 MTC服务器地址之外, 还可 以包括 IP数据包的生存期 ( Time of Life; 以下简称 TTL ) , 还可以包括 MTC服务器支持的 IP数据包的版本号等等所有与该 MTC服务器相关的 MTC设备所公共的头信息。 头信息中包括有各 MTC设备的公共的头信息 和每个 MTC设备特有的信息,本实施例中的头信息指的是公共的头信息。 头信息中的 MTC服务器地址优选地为 MTC服务器的 IP地址, 对应地, 头信息也可以称之为 IP头信息。
步骤 202、 将包头中的索引标识修改为携带 MTC服务器地址的头信 自 ·
具体地, 根据步骤 201获取的索引标识对应的携带 MTC服务器地址 的头信息, 将步骤 200中接收到的数据包的包头中的索引标识修改为步骤 201获取的携带 MTC服务器地址的头信息。
步骤 203、 根据携带 MTC服务器地址的头信息发送修改后的数据包。 具体地,根据头信息中携带的 MTC服务器地址, 向该 MTC服务器地 址对应的 MTC服务器发送修改后的数据包。
本实施例的数据包处理方法, 通过将数据包的包头设置为要发送的目 标的 MTC服务器标识对应的索引标识,将 MTC设备的数据包发送给接入 设备, 以供接入设备根据预存储的索引信息, 将接收到的数据包的包头中 索引标识修改为携带 MTC服务器地址的头信息。 采用本实施例的技术方 案,能够有效地减少 MTC设备向接入设备发送发向 MTC服务器的数据包 的包头的开销, 提高 MTC设备至接入设备的空口传输效率; 从而保证了 MTC设备上报的数据包的传输效率。
需要说明的是, 在上述实施例的基础上, 步骤 203中根据携带 MTC 服务器地址的头信息发送修改后的数据包, 具体包括: 根据携带 MTC服 务器地址的头信息中携带的 MTC服务器地址,通过核心网向该 MTC服务 器地址对应的 MTC服务器发送修改后的数据包。
图 3为本发明实施例三提供的数据包处理方法的流程图。如图 3所示, 本实施例的数据包处理方法, 在包含上述图 2所示实施例的技术方案基础 上, 在步骤 200之前, 还可以包括如下步骤: 步骤 300、 获取携带 MTC服务器地址的头信息;
具体地可以从 MTC服务器处获取携带 MTC服务器地址的头信息。 步骤 301、 建立索引信息;
具体地, 也就是建立并存储上述实施例所述的包括索引标识、 MTC 服务器标识、携带 MTC服务器地址的头信息之间的对应关系的索引信息。
步骤 302、 向 MTC设备发送索引信息, 以使 MTC设备能够根据索引 信息, 将数据包的包头设为 MTC服务器标识对应的索引标识。
具体地, 由于 M2M交互中, MTC设备对应的 MTC服务器是一某行 业固定的设备。接入设备可以从 MTC服务器处获取包括 MTC服务器地址 的头信息, 这里的 MTC服务器地址优选为 MTC服务器的 IP 地址。 该头 信息中还可以包括 TTL、 以及支持 MTC服务器的版本号等等所有与该 MTC服务器相关的 MTC设备所公共的头信息。接入设备获取到这些头信 息之后, 根据 MTC服务器标识与获取的头信息建立一条索引, 并得到对 应的索引标识。 同理, 接入设备可以获取到多个 MTC服务器对应的索引, 并建立对应的多个 MTC服务器对应的索引信息。 例如下表 1。 表 1中以 MTC server 1、 MTC server 2和 MTC server 3为例。 MTC服务器建立索引 信息之后, 存储索引信息。 例如可以存储在蜂窝网参数库中作为新的信息 要素 ( Information Element;以下简称 IE ) 。 同时并向 MTC设备发送该索 引信息, 以使 MTC设备能够根据接收到的索引信息, 将发送给该 MTC服 务器的数据包的包头设置为对应的索引信息中的索引标识, 并向接入设备 发送该数据包。
表 1
Figure imgf000013_0001
需要说明的是, 这里接入设备向 MTC设备发送索引信息, 具体可以 采用如下方式:
( 1 ) 可以通过专用信道下的无线资源控制 ( Radio Resource Control; 以下简称 RRC ) 消息携带相关信息, 比如无线承载 (Radio Bearer; 以下 简称 RB ) 建立 (setup )信息, RB 重新配置 (reconfiguration )信息、 传 输信道( Transport Channel; 以下简称 TrCH ) 重新配置 ( reconfiguration ) 信息等。
( 2 ) 也可以采用特殊的寻呼 (paging ) 、 类似公共告警系统 (Public Warning System-like; 以下简称 PWS-like ) 的系统广播、 多媒体广播和组 播月良务( Multimedia Broadcast and Multicast Services; 以下简称 MBMS ) 等将相关信息发送给相关 MTC设备。
上述两种方式都需要在接入设备中的蜂窝网参数库中引入新的 IE,增 加新 IE信息如下表 2所示。
表 2
Figure imgf000014_0001
上述表 2中的描述中表示的是: 将头信息中每一个域对应设置为一个 比特。 可以设置比特为 1表示对应的信息为公共信息, 可以设置比特为 0 表示对应的信息为非公共信息。 例如: 第一个比特对应表示 IP 地址, 第 二个比特对应表示 TTL, 第三个比特对应表示版本号, 第四个比特对应表 示包头长度托等。 若所述头信息可以表示为 " 1010...... "; 那么可以得知 第一个比特表示的 IP地址是公共信息, 第二个比特表示的 TTL为非公共 信息, 第三个比特表示的版本号为公共信息, 第四个比特表示的包头长度 为非公共信息。
( 3 ) 还可以用专用的信令发送给相关 MTC 设备。
( 4 ) 也可以通过预先配置方式将 index配置给所有相关 MTC设备。 当某个 MTC服务器地址或其他 IP包头信息更改的时候, 基站可以只 更新维护的列表而不用再通知 MTC设备。
需要说明的是, 这里接入设备除了发送 index给 MTC设备之外, 也可 以携带多个 MTC服务器的公共信息如 IP信息, 这样 MTC设备保存 index和 多个 MTC服务器的 IP信息对应表,就可以同时支持同多个 MTC服务器采用 上述实施例方式上报数据。
本实施例的数据包处理方法,通过建立 MTC服务器标识与 MTC服务 器的头信息对应的索引信息, 并发送该索引信息给 MTC设备, 以供 MTC 设备根据该索引信息, 设置发送给 MTC服务器的数据包的包头; 同时还 存储该索引信息, 以供后续根据该索引信息修改接收到的 MTC设备发送 的数据包的包头。 采用本实施例的技术方案, 能够有效地减少 MTC设备 向接入设备发送发向 MTC服务器的数据包的包头的开销,提高 MTC设备 至接入设备的空口传输效率; 从而保证了 MTC设备上报的数据包的传输 效率。
图 4为本发明实施例四提供的数据包处理方法的流程图。 本实施例的 执行主体为 MTC设备。 如图 4所示, 本实施例的数据包处理方法, 具体 可以包括如下步骤:
步骤 400、 获取分配关系表;
其中分配关系表中包括无线承载资源信息与 MTC服务器标识之间的 对应关系。 这里的无线承载资源信息是接入设备为向 MTC服务器的发送 数据包的 MTC设备分配的, 以供该 MTC设备根据该无线承载资源信息, 向接入设备发送发向该 MTC服务器的数据包。 亦即该分配关系表中包括 MTC服务器标识与无线接入设备为向该 MTC服务器发送数据包的 MTC 设备分配的无线承载资源信息之间的对应关系。
具体地, MTC设备获取预存储分配关系表, 该分配关系表包括无线 承载资源信息与 MTC服务器标识之间的对应关系。 这里的无线承载资源 信息可以是时域和 /或者频域; 例如接入设备设置在哪个频段上接收 MTC 设备发送给该 MTC服务器的数据包; 或者接入设备设置在哪个时隙上接 收 MTC设备发送给该 MTC服务器的数据包。
步骤 401、 根据分配关系表, 通过无线承载资源信息对应的无线承载 资源向接入设备发送未包含包头的数据包, 以使接入设备能够通过分配关 系表中的无线承载资源信息确定的无线承载资源接收数据包, 并根据分配 关系表、以及 MTC服务器标识与携带 MTC服务器地址的头信息之间的对 应关系, 为数据包增加包含携带 MTC服务器地址的头信息的包头, 并向 MTC服务器发送增加包头的数据包。
具体地, MTC设备根据获取到的分配关系表中无线承载资源信息与 MTC服务器标识之间的对应关系, 在接入设备为发送给该 MTC服务器的 数据包分配的无线承载信息对应的无线承载资源的范围内, 如在为发送给 MTC服务器的数据包分配的时域和 /或者频域上, MTC设备向接入设备发 送要发送给 MTC服务器的未包含包头的数据包。 接入设备根据预存储的 分配关系表中的无线承载资源信息接收到该未包含包头的数据包之后, 通 过对分配关系表的分析, 可以知道该无线承载资源信息对应的无线承载资 源下, 该数据包是发送至该 MTC服务器的数据包, 该 MTC服务器即为目 标 MTC服务器。 然后再从预存储的该 MTC服务器标识与携带 MTC服务 器地址的头信息之间的对应关系, 获取该 MTC服务器标识对应的携带 MTC服务器地址的头信息; 并为该数据包增加包含该携带 MTC服务器地 址的头信息的包头。 最后接入设备向 MTC服务器发送增加了包头的数据 包。 本实施例的数据包处理方法, MTC设备通过按照包括无线承载资源 信息与 MTC服务器标识之间对应关系的分配关系表, 向接入设备发送未 包含包头的数据包, 以供接入设备根据分配关系表以及该 MTC服务器标 识与携带 MTC服务器地址的头信息之间的对应关系, 为该数据包增加包 头, 以将数据包准确地发送给该 MTC服务器。 通过采用本实施例的技术 方案,能够有效地减少 MTC设备向接入设备发送发向 MTC服务器的数据 包的包头的开销, 提高 MTC设备至接入设备的空口传输效率; 从而保证 了 MTC设备上报的数据包的传输效率。
需要说明的是, 上述实施例中的步骤 401可以包括如下步骤:
( 1 ) 、 在预存储的分配关系表中获取无线承载资源信息对应的 MTC 服务器标识;
( 2 ) 、 在 MTC服务器标识与携带 MTC服务器地址的头信息之间的 对应关系中,获取 MTC服务器标识对应的携带 MTC服务器地址的头信息;
( 3 ) 、 为数据包增加包含该携带 MTC服务器地址的头信息的包头。 需要说明的是, 在上述实施例的步骤 400之前, 还包括: 接收接入设 备发送的分配关系表。 具体也就是说该分配关系表是接入设备为 MTC服 务器分配的,然后由接入设备将该分配关系表发送给 MTC设备,以供 MTC 设备根据该分配关系表, 向接入设备发送未包含包头的数据包。
图 5为本发明实施例五提供的数据包处理方法的流程图。如图 5所示, 本实施例的数据包处理方法的执行主体为接入设备。 本实施例的数据包处 理方法, 具体可以包括如下步骤:
步骤 500、 通过分配关系表中无线承载资源信息确定的无线承载资源 接收 MTC设备根据分配关系表发送的未包含包头的数据包;
其中该分配关系表中包括无线承载资源信息与 MTC服务器标识之间 的对应关系。 这里的无线承载资源信息是接入设备为向 MTC服务器的发 送数据包的 MTC设备分配的,以供该 MTC设备通过该无线承载资源信息 对应的无线承载资源, 向接入设备发送发向该 MTC服务器的数据包。 具体地, 接入设备根据分配关系表中无线承载资源信息确定的无线承 载资源, 接收 MTC设备根据相同的分配关系表发送的未包含包头的数据 包。
步骤 501、 根据分配关系表、 以及 MTC服务器标识与携带 MTC服务 器地址的头信息之间的对应关系, 为数据包增加包含该携带 MTC服务器 地址的头信息的包头;
具体地, 接入设备接收到 MTC设备根据分配关系表发送的未包含包 头的数据包之后, 根据预存储的分配关系表以及接收该数据包对应的无线 承载资源如时域和 /或频域, 分析该数据包是发送哪个 MTC服务器的数据 包, 从该分配关系表中获取该数据包发送的目的 MTC服务器的标识。 然 后根据该 MTC服务器标识,从接入设备中预存储的 MTC服务器标识与携 带 MTC服务器地址的头信息之间的对应关系 ,获取该 MTC服务器对应的 携带该 MTC服务器地址的头信息之间的对应关系; 然后再为步骤 500接 收到的 MTC设备发送的数据包增加包含该携带该 MTC服务器地址的头信 息的包头。
步骤 502、 向 MTC服务器发送增加该包头的数据包。
本实施例的数据包处理方法, 接入设备通过接收 MTC设备根据分配 关系表发送的未包含包头的数据包, 然后根据分配关系表和 MTC服务器 标识与携带 MTC服务器地址的头信息之间的对应关系, 为数据包增加包 含该携带 MTC服务器地址的头信息的包头, 以将数据包准确地发送至该 MTC服务器。 通过采用本实施例的技术方案, 能够有效地减少 MTC设备 向接入设备发送发向 MTC服务器的数据包的包头的开销,提高 MTC设备 至接入设备的空口传输效率; 从而保证了 MTC设备上报的数据包的传输 效率。
需要说明的是, 在上述实施例的基础上, 步骤 502中向 MTC服务器 发送增加该包头的数据包, 具体包括, 接入设备通过核心网向 MTC服务 器发送增加该包头的数据包。
图 6为本发明实施例六提供的数据包处理方法的流程图。如图 6所示, 本实施例的数据包处理方法, 在包含上述实施例五的技术方案的基础上, 在步骤 500之前, 还包括如下步骤:
步骤 600、 获取携带 MTC服务器地址的头信息;
具体地可以从 MTC服务器处获取携带 MTC服务器地址的头信息。 步骤 601、 建立 MTC服务器标识与该携带 MTC服务器地址的头信息 之间的 3†应关系;
步骤 602、 为 MTC设备分配无线承载资源信息, 并建立包含无线承 载资源信息与 MTC服务器标识之间对应关系的分配关系表;
步骤 603、 向 MTC设备发送该分配关系表, 以使该 MTC设备能够根 据该分配关系表发送未包含包头的数据包。
具体地, 由于 M2M交互中, MTC设备对应的 MTC服务器是一某行 业固定的设备。接入设备可以从 MTC服务器处获取包括 MTC服务器地址 的头信息, 这里的 MTC服务器地址优选为 MTC服务器的 IP 地址。 该头 信息中还可以包括 TTL、 以及支持 MTC服务器的版本号等等所有与该 MTC服务器相关的 MTC设备所公共的头信息。接入设备获取到这些头信 息之后, 为 MTC服务器标识与获取的头信息之间建立——对应关系; 并 存储该对应关系。 然后接入设备为 MTC设备分配无线承载资源信息, 并 建立该分配关系表。 该分配关系表中包括无线承载资源信息与 MTC服务 器标识之间对应关系。 该无线承载资源信息可以是接入设备分配给 MTC 设备的时域和 /或者频域,以供 MTC设备在该时域和 /或者频域上发送发向 MTC服务器的数据包。然后无线接入设备存储将该分配关系表,并向 MTC 设备发送该分配关系表, 以供 MTC设备根据该分配关系表将发送给该 MTC服务器的数据包在该无线承载资源信息下发送。 由于在该无线承载 资源信息对应的无线承载资源下发送, 该数据包有确定的目标 MTC服务 器, 因此 MTC设备这里发送的数据包未包含包头, 详见上述实施例四的 相关记载, 在此不再赘述。
本实施例的数据包处理方法, 接入设备通过建立分配关系表, 以及 MTC服务器标识与携带 MTC服务器地址的头信息之间的对应关系, 以备 后续接收到 MTC设备发送的该数据包增加包头, 以将数据包准确地发送 给该 MTC服务器。 通过采用本实施例的技术方案, 能够有效地减少 MTC 设备向接入设备发送发向 MTC服务器的数据包的包头的开销, 提高 MTC 设备至接入设备的空口传输效率; 从而保证了 MTC设备上报的数据包的 传输效率。
本领域普通技术人员可以理解: 实现上述方法实施例的全部或部分步 骤可以通过程序指令相关的硬件来完成, 前述的程序可以存储于一计算机 可读取存储介质中, 该程序在执行时, 执行包括上述方法实施例的步骤; 而前述的存储介质包括: ROM、 RAM, 磁碟或者光盘等各种可以存储程 序代码的介质。
图 7为本发明实施例七提供的 MTC设备的结构示意图。如图 7所示, 本实施例的 MTC设备 1 , 具体可以包括: 处理模块 10和发送模块 11。
本实施例的 MTC设备 1中的处理模块 10用于根据索引信息将待发送 的数据包的包头设为 MTC服务器标识对应的索引标识; 该索引信息中包 括索引标识、 MTC服务器标识、 携带 MTC服务器地址的头信息之间的对 应关系。 发送模块 11与处理模块 10连接, 发送模块 11用于向接入设备 发送处理模块 10处理所得数据包, 以供接入设备根据预存储的索引信息, 将包头中的索引标识修改为携带 MTC服务器地址的头信息; 并根据携带 MTC服务器地址的头信息发送修改后的数据包。
本实施例的 MTC设备 1 , 采用各模块实现对数据包的处理方式与上 述方法实施例一的实现机制相同, 详细可参考上述方法实施例的相关记 载, 在此不再赘述。
本实施例的 MTC设备 1 , 通过各模块实现将数据包的包头设置为要 发送的目标的 MTC服务器标识对应的索引标识,将 MTC设备 1的数据包 发送给接入设备, 以供接入设备根据存储的索引信息将包头中的索引标识 修改为包括 MTC服务器地址的头信息, 以将数据包发送给对应的目标 MTC服务器。 与现有技术相比, 能够有效地减少 MTC设备 1向接入设备 发送发向 MTC服务器的数据包的包头的开销,提高 MTC设备 1至接入设 备的空口传输效率; 从而保证了 MTC设备 1上报的数据包的传输效率。
需要说明的是, 如图 7所示, 在上述技术方案的基础上, 本实施例的 MTC设备 1中还可以包括接收模块 12。接收模块 12用于接收接入设备发 送的索引信息。 接收模块 12接收到该索引信息之后, 可以将该索引信息 进行存储。 其中处理模块 10可以与接收模块 12连接, 处理模块 10用于 根据接收模块 12接收的索引信息, 将待发送的数据包的包头设置为 MTC 服务器标识对应的索引标识。
图 8为本发明实施例八提供的接入设备的结构示意图。 如图 8所示, 本实施例的接入设备 2, 具体可以包括: 接收模块 20、 第一获取模块 21、 第一处理模块 22和第一发送模块 23。
本实施例的接入设备 2中的接收模块 20用于接收 MTC设备根据索引 信息发送的数据包, 该数据包的包头包括对应的 MTC服务器标识对应的 索引标识。 其中索引信息中包括索引标识、 MTC服务器标识、 携带 MTC 服务器地址的头信息之间的对应关系。 第一获取模块 21与接收模块 20连 接, 第一获取模块 21用于在索引信息中, 获取接收模块 20接收的数据包 中所包括的索引标识对应的携带 MTC服务器地址的头信息。 第一处理模 块 22分别与接收模块 20和第一获取模块 21连接。 第一处理模块 22用于 将接收模块 20接收的数据包的包头中的索引标识修改为第一获取模块 21 获取的该索引标识对应的携带 MTC服务器地址的头信息。 第一发送模块 23分别与第一获取模块 21和第一处理模块 22连接。 第一发送模块 23用 于根据第一获取模块 21获取得到的携带 MTC服务器地址的头信息,发送 第一处理模块 22处理得到的修改包头后的数据包。 具体地根据第一获取 模块 21获取得到的头信息中的 MTC服务器地址, 向该 MTC服务器地址 对应的 MTC服务器发送第一处理模块 22处理得到的修改包头后的数据 包。
本实施例的接入设备 2 , 采用各模块实现对数据包的处理方式与上述 方法实施例二的实现机制相同, 详细可参考上述方法实施例的相关记载, 在此不再赘述。
本实施例的接入设备 2 , 通过各模块实现将数据包的包头设置为要发 送的目标的 MTC服务器标识对应的索引标识,将 MTC设备的数据包发送 给接入设备 2, 以供接入设备 2根据预存储的索引信息, 将接收到的数据 包的包头中索引标识修改为携带 MTC服务器地址的头信息。 采用本实施 例的技术方案,能够有效地减少 MTC设备向接入设备 2发送发向 MTC服 务器的数据包的包头的开销, 提高 MTC设备至接入设备 2的空口传输效 率; 从而保证了 MTC设备上报的数据包的传输效率。
上述实施例中第一发送模块 23具体用于根据第一获取模块 21获取得 到的携带 MTC服务器地址的头信息,通过核心网发送第一处理模块 22处 理得到的修改包头后的数据包。
图 9为本发明实施例九提供的接入设备的结构示意图。 如图 9所示, 本实施例的接入设备 3 , 在包括上述实施例八的技术方案的基础上, 还可 以包括如下模块:第二获取模块 24、第二处理模块 25和第二发送模块 26。
本实施例的接入设备 3中的第二获取模块 24用于获取该 MTC服务器 的携带 MTC服务器地址的头信息; 具体地可以从 MTC服务器处获取该 MTC服务器的携带 MTC服务器地址的头信息。 这里的头信息为公共的头 信息, 即对该 MTC服务器对应地各 MTC设备而言, 头信息中公共的头信 息部分。 这里的头信息优选地为 IP头信息。 第二处理模块 25与第二获取 模块 24连接, 第二处理模块 25用于建立包括索引标识、 MTC服务器标 识、 以及第二获取模块 24获取的头信息之间对应关系的索引信息。 第二 发送模块 26与第二处理模块 25连接,第二发送模块 26用于向 MTC设备 发送第二处理模块 25建立并存储的索引信息,以使 MTC设备根据该索引 信息, 将数据包的包头设为 MTC服务器标识对应的索引标识。
其中第二处理模块 25还与第一获取模块 21连接。 第一获取模块 21 可以从第二处理模块 25存储的索引信息中, 获取接收模块 20接收的数据 包中所包括的索引标识对应的携带 MTC服务器地址的头信息。
本实施例的接入设备 3 , 采用各模块实现对数据包的处理方式与上述 方法实施例三的实现机制相同, 详细可参考上述方法实施例的相关记载, 在此不再赘述。
本实施例的接入设备 3 , 通过各模块建立 MTC服务器标识与 MTC服 务器的头信息对应的索引信息,并发送该索引信息给 MTC设备,以供 MTC 设备根据该索引信息, 设置发送给 MTC服务器的数据包的包头; 同时还 存储该索引信息, 以供后续根据该索引信息修改接收到的 MTC设备发送 的数据包的包头。 采用本实施例的技术方案, 能够有效地减少 MTC设备 向接入设备 3发送发向 MTC服务器的数据包的包头的开销,提高 MTC设 备至接入设备 3的空口传输效率; 从而保证了 MTC设备上报的数据包的 传输效率。
图 10为本发明实施例十提供的 MTC设备的结构示意图。 如图 10所 示,本实施例的 MTC设备 4,具体可以包括: 获取模块 30和发送模块 31。
本实施例的 MTC设备 4中的获取模块 30用于获取分配关系表,其中 分配关系表中包括无线承载资源信息与 MTC服务器标识之间的对应关 系。 发送模块 31与获取模块 30连接。 发送模块 31用于根据获取模块 30 获取的分配关系表, 通过无线承载资源信息对应的无线承载资源向接入设 备发送未包含包头的数据包, 以使接入设备能够通过分配关系表中无线承 载资源信息确定的无线承载资源接收数据包; 并根据分配关系表、 以及
MTC服务器标识与携带 MTC服务器地址的头信息之间的对应关系, 为数 据包增加包含携带 MTC服务器地址的头信息的包头;向 MTC服务器发送 增加包头的数据包。
本实施例的 MTC设备 4, 采用各模块实现对数据包的处理方式与上 述方法实施例四的实现机制相同, 详细可参考上述方法实施例的相关记 载, 在此不再赘述。
本实施例的 MTC设备 4, 通过各模块实现 MTC设备 4按照包括无线 承载资源信息与 MTC服务器标识之间对应关系的分配分配关系表, 向接 入设备发送未包含包头的数据包, 以供接入设备根据分配关系表以及该 MTC服务器标识与携带 MTC服务器地址的头信息之间的对应关系, 为该 数据包增加包头, 以将数据包准确地发送给该 MTC服务器。 通过采用本 实施例的技术方案, 能够有效地减少 MTC设备 4向接入设备发送发向 MTC服务器的数据包的包头的开销, 提高 MTC设备 4至接入设备的空口 传输效率; 从而保证了 MTC设备 4上报的数据包的传输效率。
需要说明的是, 如图 10所示, 在上述技术方案的基础上, 本实施例 的 MTC设备 4中还可以包括接收模块 32。 接收模块 32用于接收接入设 备发送的分配关系表。 接收模块 32接收到分配关系表之后可以将该分配 关系表存储, 以供后续获取模块 30获取该分配关系表。 其中获取模块 30 可以与接收模块 32连接, 获取模块 30用于获取接收模块 32接收的分配 关系表。
图 11为本发明实施例十一提供的接入设备的结构示意图。 如图 11所 示, 本实施例的接入设备 5 , 具体可以包括: 接收模块 40、 第一处理模块 41和第一发送模块 42。
本实施例的接入设备 5中的接收模块 40用于通过分配关系表中无线 承载资源信息确定的无线承载资源接收 MTC设备根据分配关系表发送的 未包含包头的数据包。其中该分配关系表中包括无线承载资源信息与 MTC 服务器标识之间的对应关系。该无线承载资源信息是接入设备 5为向 MTC 服务器的发送数据包的 MTC设备分配的,以供该 MTC设备根据该无线承 载资源信息确定的无线承载资源, 向接入设备 5发送发向该 MTC服务器 的数据包。 第一处理模块 41与接收模块 40连接。 第一处理模块 41用于 根据接入设备 5中的分配关系表、以及 MTC服务器标识与携带 MTC服务 器地址的头信息之间的对应关系, 为接收模块 40接收的数据包增加包含 携带 MTC服务器地址的头信息的包头。第一发送模块 42与第一处理模块 41连接, 第一发送模块 42用于向 MTC服务器发送经过第一处理模块 41 处理后得到的增加了包头的数据包。
本实施例的接入设备 5 , 采用各模块实现对数据包的处理方式与上述 方法实施例五的实现机制相同, 详细可参考上述方法实施例的相关记载, 在此不再赘述。
本实施例的接入设备 5 , 通过各模块实现接收 MTC设备根据分配关 系表发送的未包含包头的数据包, 然后根据分配关系表和 MTC服务器标 识与携带 MTC服务器地址的头信息之间的对应关系, 为数据包增加包含 该携带 MTC服务器地址的头信息的包头, 以将数据包准确地发送至该 MTC服务器。 通过采用本实施例的技术方案, 能够有效地减少 MTC设备 向接入设备 5发送发向 MTC服务器的数据包的包头的开销,提高 MTC设 备至接入设备 5的空口传输效率; 从而保证了 MTC设备上报的数据包的 传输效率。
图 12为本发明实施例十二提供的接入设备的结构示意图。 如图 12所 示, 本实施例的接入设备 6, 在包括上述实施例十一的技术方案的基础上, 第一处理模块 41具体可以包括第一获取单元 411、第二获取单元 412和处 理单元 413。 其中第一获取单元 411用于在分配关系表中获取无线承载资源信息对 应的 MTC服务器标识。 第二获取单元 412与第一获取单元 411连接, 第 二获取单元 412用于根据第一获取单元 411获取的 MTC服务器标识, 从 MTC服务器标识与携带 MTC服务器地址的头信息之间的对应关系中, 获 取 MTC服务器标识对应的携带 MTC服务器地址的头信息。 处理单元 413 分别与接收模块 40和第二获取单元 412连接, 处理单元 413用于为接收 模块 40接收的数据包增加携带第二获取单元 412获取携带 MTC服务器地 址的头信息的包头。 此时对应地, 第一发送模块 42与处理单元 413连接, 第一发送模块 42用于向 MTC服务器发送经过处理单元 413处理后得到的 增加了包头的数据包。
本实施例的接入设备 6, 采用各单元实现对数据包的处理方式与上述 相关方法实施例的实现机制相同, 详细可参考上述方法实施例的相关记 载, 在此不再赘述。
本实施例的接入设备 6, 通过各模块及单元实现接收 MTC设备根据 分配关系表发送的未包含包头的数据包, 然后根据分配关系表和 MTC服 务器标识与携带 MTC服务器地址的头信息之间的对应关系, 为数据包增 加包含该携带 MTC服务器地址的头信息的包头, 以将数据包准确地发送 至该 MTC服务器。 通过采用本实施例的技术方案, 能够有效地减少 MTC 设备向接入设备 6发送发向 MTC服务器的数据包的包头的开销, 提高 MTC设备至接入设备 6的空口传输效率; 从而保证了 MTC设备上报的数 据包的传输效率。
图 13为本发明实施例十三提供的接入设备的结构示意图。 如图 13所 示, 本实施例的接入设备 7, 在包括上述实施例十一的技术方案的基础上, 还可以包括如下模块: 获取模块 43、 第二处理模块 44、 第三处理模块 45 和第二发送模块 46。
本实施例的接入设备 7的获取模块 43用于获取携带 MTC服务器地址 头信息,具体地从 MTC服务器处获取第一处理模块 41进行处理所需要的 携带 MTC服务器地址头信息。 第二处理模块 44与获取模块 43连接, 第 二处理模块 44用于建立 MTC服务器标识与获取模块 43获取的携带 MTC 服务器地址头信息之间的对应关系, 以供后续第一处理模块 41获取。 第 三处理模块 45用于为 MTC设备分配无线承载资源信息,并建立分配关系 表。 其中该分配关系表中包括 MTC服务器标识与无线接入设备 7为向该 MTC服务器发送数据包的 MTC设备分配的无线承载资源信息之间的对应 关系; 以供后续第一处理模块 41获取。 无线承载资源信息是供该 MTC设 备根据该无线承载资源信息, 向接入设备 7发送发向该 MTC服务器的数 据包。 第二发送模块 46与第三处理模块 45连接, 第二发送模块 46用于 向 MTC设备发送第三处理模块 45建立并存储的分配关系表, 以使 MTC 设备根据该分配关系表发送未包含包头的数据包。
本实施例的接入设备 7中, 第一处理模块 41可以分别与第二处理模 块 44和第三处理模块 45连接。 第一处理模块 41用于根据接入设备 7中 第二处理模块 44存储的分配关系表, 及第三处理模块 45建立并存储的 MTC服务器标识与携带 MTC服务器地址的头信息之间的对应关系, 为接 收模块 40接收的数据包增加包含携带 MTC服务器地址的头信息的包头。
本实施例的接入设备 7中, 第一发送模块 42具体用于通过核心网向 MTC服务器发送第一处理模块 41处理得到的增加了包头的数据包。
需要说明的是, 也可以在上述实施例十二的基础上, 增加本实施例的 附加技术方案, 详细可参考上述相关实施例, 在此不再赘述。
本实施例的接入设备 7 , 采用各模块实现对数据包的处理方式与上述 方法实施例六的实现机制相同, 详细可参考上述方法实施例的相关记载, 在此不再赘述。
本实施例的接入设备 7, 通过各模块实现建立分配关系表, 以及 MTC 服务器标识与包括 MTC服务器地址的头信息之间的对应关系, 以备后续 接收到 MTC设备发送的该数据包增加包头, 以将数据包准确地发送给该 MTC服务器。 通过采用本实施例的技术方案, 能够有效地减少 MTC设备 向接入设备 7发送发向 MTC服务器的数据包的包头的开销,提高 MTC设 备至接入设备 7的空口传输效率; 从而保证了 MTC设备上报的数据包的 传输效率。
图 14为本发明实施例十四提供的数据包处理系统的结构示意图。 如 图 14所示, 本实施例的数据包处理系统 8, 具体可以包括: MTC设备 50、 接入设备 51和 MTC服务器设备 52。
本实施例的数据包处理系统 8中 MTC设备 50, 用于根据索引信息将 待发送的数据包的包头设为 MTC服务器设备 52标识对应的索引标识。其 中索引信息中包括索引标识、 MTC服务器设备 52标识、 携带 MTC服务 器设备 52地址的头信息之间的对应关系;并向接入设备 51发送该数据包。
本实施例的数据包处理系统 8中接入设备 51分别与 MTC设备 50 和 MTC服务器设备 52连接。 接入设备 51用于接收 MTC设备 50发送的数 据包。 接入设备 51然后在接入设备 51中存储的索引信息中, 获取索引标 识对应的携带 MTC服务器设备 52地址的头信息;并将数据包的包头中的 索引标识修改为获取到的携带 MTC服务器设备 52地址的头信息;并根据 携带 MTC服务器设备 52地址的头信息发送修改后的数据包。 具体地, 根 据头信息中的 MTC服务器设备 52地址,向该 MTC服务器设备 52地址对 应的该 MTC服务器设备 52发送修改后的数据包。
本实施例的数据包处理系统 8中的 MTC设备 50可以采用上述实施例 七中的 MTC设备。接入设备 51可以采用上述实施例八或九所述的接入设 备。 本实施例的数据包处理系统 8对数据包的处理方式与上述方法实施例 一、 二、 或者三的实现机制相同, 详细可参考上述相关实施例的记载, 在 此不再赘述。
本实施例的数据包处理系统 8 , 能够有效地减少 MTC设备向接入设 备发送发向 MTC服务器的数据包的包头的开销,提高 MTC设备至接入设 备的空口传输效率; 从而保证了 MTC设备上报的数据包的传输效率。
图 15为本发明实施例十五提供的数据包处理系统的结构示意图。 如 图 15所示, 本实施例的数据包处理系统 9, 具体可以包括: MTC设备 60、 接入设备 61和 MTC服务器设备 62。
本实施例的数据包处理系统 9中的 MTC设备 60用于获取 MTC设备 60中存储的分配关系表。 其中分配关系表中包括接入设备为向 MTC服务 器设备 62发送数据包的 MTC设备 60分配的无线承载资源信息与 MTC月良 务器设备 62标识之间的对应关系; 并根据述分配关系表, 通过无线承载 资源信息对应的无线承载资源向接入设备 61发送未包含包头的数据包。
本实施例的数据包处理系统 9中的接入设备 61分别与 MTC设备 60 和 MTC服务器设备 62连接。 接入设备 61用于通过分配关系表中无线承 载资源信息确定的无线承载资源接收 MTC设备 60根据分配关系表发送的 未包含包头的数据包。 然后接入设备 61根据接入设备 61中存储的分配关 系表、以及 MTC服务器设备 62标识与携带 MTC服务器设备 62地址的头 信息之间的对应关系,为数据包增加包含携带 MTC服务器设备 62地址的 头信息的包头; 并向 MTC服务器设备 62发送增加包头的数据包。
本实施例的数据包处理系统 9中的 MTC设备 60可以采用上述实施例 十中的 MTC设备。 接入设备 61可以采用上述实施例十一、 十二或十三所 述的接入设备。 本实施例的数据包处理系统 9对数据包的处理方式与上述 方法实施例四、 五、 或者六的实现机制相同, 详细可参考上述相关实施例 的记载, 在此不再赘述。
本实施例的数据包处理系统 9 , 能够有效地减少 MTC设备向接入设 备发送发向 MTC服务器的数据包的包头的开销,提高 MTC设备至接入设 备的空口传输效率; 从而保证了 MTC设备上报的数据包的传输效率。
本发明的上述实施例中所涉及到的接入设备例如可以指: 演进通用移 动通信系统 ( Universal Mobile Telecommunications System ; 简称 UMTS ) 陆地无线接入网 ( Evolved UMTS Territorial Radio Access Network; 简称 E-UTRAN ) 中的演进基站(eNodeB ) 、 家庭基站(HeNB )或其它类型的 基站; 或者 UMTS陆地无线接入网 ( UMTS Territorial Radio Access Network ; 简称 UTRAN ) I GSM EDGE无线接入网 ( GSM EDGE Radio Access Network ; 简称 GERAN ) 中的基站控制器、 或者无线网络控制器 ( Radio Network Controller ; 简称 RNC )等。 非 3GPP网络中接入设备可 指: 无线局域网 ( Wireless Local Area Network ; 简称 WLAN ) 中具有演 进分组数据网关 ( Evolved Packet Data Gateway ; 简称 ePDG )接入网逻 辑功能的实体、 啟波存取全球互通 ( Worldwide Interoperability for
Microwave Access ; 简称 WiMAX ) 网络中的接入服务网络基站 ( Access Service Network Base Station ; 简称 ASN BS ) 、 或宽带码分多址 ( Code Division Multiple Access; 简称 CDMA ) 网络中具有高速率分组数据接入 网 ( High Rate Packet Data Access Network ; 简称 HRPD AN )接入网逻辑 功能的实体; 或其它网络中实现接入网逻辑功能的实体。

Claims

权 利 要 求
1、 一种数据包处理方法, 其特征在于, 包括:
根据索引信息将待发送的数据包的包头设为机器类型通信服务器标 识对应的索引标识; 所述索引信息中包括所述索引标识、 所述机器类型通 信服务器标识、 携带所述机器类型通信服务器地址的头信息之间的对应关 系;
向所述接入设备发送所述数据包, 以使所述接入设备能够根据所述索 引信息将所述包头中的所述索引标识修改为所述携带所述机器类型通信 服务器地址的头信息; 并根据所述携带所述机器类型通信服务器地址的头 信息发送修改后的所述数据包。
2、 根据权利要求 1所述的数据包处理方法, 其特征在于, 还包括: 接收所述接入设备发送的所述索引信息。
3、 一种数据包处理方法, 其特征在于, 包括:
接收机器类型通信设备根据索引信息发送的数据包, 所述数据包的包 头包括对应的机器类型通信服务器标识对应的索引标识; 所述索引信息中 包括所述索引标识、 所述机器类型通信服务器标识、 携带所述机器类型通 信服务器地址的头信息之间的对应关系;
在所述索引信息中, 获取所述索引标识对应的所述携带所述机器类型 通信服务器地址的头信息;
将所述包头中的所述索引标识修改为所述携带所述机器类型通信服 务器地址的头信息;
并根据所述携带所述机器类型通信服务器地址的头信息发送修改后 的所述数据包。
4、 根据权利要求 3的数据包处理方法, 其特征在于, 还包括: 获取所述携带所述机器类型通信服务器地址的头信息;
建立所述索引信息; 向所述机器类型通信设备发送所述索引信息, 以使所述机器类型通信 设备能够根据所述索引信息, 将所述数据包的包头设为所述机器类型通信 服务器标识对应的所述索引标识。
5、 根据权利要求 3或 4所述的数据包处理方法, 其特征在于, 并根 据所述携带所述机器类型通信服务器地址的头信息发送修改后的所述数 据包, 包括:
根据所述携带所述机器类型通信服务器地址的头信息通过核心网发 送修改后的所述数据包。
6、 一种数据包处理方法, 其特征在于, 包括:
获取分配关系表, 所述分配关系表中包括无线承载资源信息与所述机 器类型通信服务器标识之间的对应关系;
根据所述分配关系表, 通过所述无线承载资源信息对应的无线承载资 源向接入设备发送未包含包头的数据包, 以使所述接入设备能够通过所述 分配关系表中所述无线承载资源信息确定的无线承载资源接收所述数据 包, 并根据所述分配关系表、 以及所述机器类型通信服务器标识与携带所 述机器类型通信服务器地址的头信息之间的对应关系, 为所述数据包增加 包含所述携带所述机器类型通信服务器地址的所述头信息的包头; 并向所 述机器类型通信服务器发送所述增加包头的数据包。
7、 根据权利要求 6所述的数据包处理方法, 其特征在于, 还包括: 接收所述接入设备发送的所述分配关系表。
8、 一种数据包处理方法, 其特征在于, 包括:
通过分配关系表中无线承载资源信息确定的无线承载资源接收机器 类型通信设备根据所述分配关系表发送的未包含包头的数据包; 所述分配 关系表中包括所述无线承载资源信息与机器类型通信服务器标识之间的 对应关系;
根据所述分配关系表、 以及所述机器类型通信服务器标识与携带所述 机器类型通信服务器地址的头信息之间的对应关系, 为所述数据包增加包 含所述携带所述机器类型通信服务器地址的头信息的包头;
向所述机器类型通信服务器发送所述增加包头的数据包。
9、 根据权利要求 8所述的数据包处理方法, 其特征在于, 根据所述 分配关系表、 以及所述机器类型通信服务器标识与携带所述机器类型通信 服务器地址的头信息之间的对应关系, 为所述数据包增加包含所述携带所 述机器类型通信服务器地址的头信息的包头, 包括:
在所述分配关系表中获取所述无线承载资源信息对应的所述机器类 型通信服务器标识;
在所述机器类型通信服务器标识与携带所述机器类型通信服务器地 址的头信息之间的对应关系中, 获取所述机器类型通信服务器标识对应的 携带所述机器类型通信服务器地址的所述头信息;
为所述数据包增加包含所述携带所述机器类型通信服务器地址的头 信息的包头。
10、 根据权利要求 8或 9所述的数据包处理方法, 其特征在于, 还包 括:
获取所述携带所述机器类型通信服务器地址的头信息;
建立所述机器类型通信服务器标识与所述携带所述机器类型通信服 务器地址的头信息之间的对应关系;
为所述机器类型通信设备分配所述无线承载资源信息; 建立包括所述 无线承载资源信息与所述机器类型通信服务器标识之间对应关系的所述 分配关系表;
向所述机器类型通信设备发送所述分配关系表, 以使所述机器类型通 信设备根据所述分配关系表发送未包含包头的所述数据包。
11、 根据权利要求 8或 9所述的数据包处理方法, 其特征在于, 向所 述机器类型通信服务器发送所述增加包头的数据包, 具体包括: 通过核心网向所述机器类型通信服务器发送所述增加包头的数据包。
12、 一种机器类型通信设备, 其特征在于, 包括:
处理模块, 用于根据索引信息将待发送的数据包的包头设为机器类型 通信服务器标识对应的索引标识; 所述索引信息中包括所述索引标识、 所 述机器类型通信服务器标识、 携带所述机器类型通信服务器地址的头信息 之间的 3†应关系;
发送模块, 用于向所述接入设备发送所述数据包, 以使所述接入设备 能够根据所述索引信息将所述包头中的所述索引标识修改为所述携带所 述机器类型通信服务器地址的头信息, 并根据所述携带所述机器类型通信 服务器地址的头信息发送修改后的所述数据包。
13、 根据权利要求 12所述的机器类型通信设备, 其特征在于, 还包 括:
接收模块, 用于接收所述接入设备发送的所述索引信息。
14、 一种接入设备, 其特征在于, 包括:
接收模块, 用于接收机器类型通信设备根据索引信息发送的数据包, 所述数据包的包头包括对应的机器类型通信服务器标识对应的索引标识; 所述索引信息中包括所述索引标识、 所述机器类型通信服务器标识、 携带 所述机器类型通信服务器地址的头信息之间的对应关系;
第一获取模块, 用于在所述索引信息中, 获取所述索引标识对应的所 述携带所述机器类型通信服务器地址的头信息;
第一处理模块, 用于将所述包头中的所述索引标识修改为所述携带所 述机器类型通信服务器地址的头信息;
第一发送模块, 用于根据所述携带所述机器类型通信服务器地址的头 信息发送修改后的所述数据包。
15、 根据权利要求 14的接入设备, 其特征在于, 还包括:
第二获取模块, 用于获取所述携带所述机器类型通信服务器地址的头 信息;
第二处理模块, 用于建立所述索引信息;
第二发送模块, 用于向所述机器类型通信设备发送所述索引信息, 以 使所述机器类型通信设备能够根据所述索引信息, 将所述数据包的包头设 为机器类型通信服务器标识对应的索引标识。
16、 根据权利要求 14或 15所述的接入设备, 其特征在于, 所述第一 发送模块, 用于根据所述携带所述机器类型通信服务器地址的头信息通过 核心网发送修改后的所述数据包。
17、 一种机器类型通信设备, 其特征在于, 包括:
获取模块, 用于获取分配关系表, 所述分配关系表中包括无线承载资 源信息与所述机器类型通信服务器标识之间的对应关系;
发送模块, 用于根据所述分配关系表, 通过所述无线承载资源信息对 应的无线承载资源向接入设备发送未包含包头的数据包, 以使所述接入设 备能够通过所述分配关系表中所述无线承载资源信息确定的无线承载资 源接收所述数据包; 并根据所述分配关系表、 以及所述机器类型通信服务 器标识与携带所述机器类型通信服务器地址的头信息之间的对应关系, 为 所述数据包增加包含所述携带所述机器类型通信服务器地址的头信息的 包头; 并向所述机器类型通信服务器发送所述增加包头的数据包。
18、 根据权利要求 17所述的机器类型通信设备, 其特征在于, 还包 括:
接收模块, 用于接收所述接入设备发送的所述分配关系表。
19、 一种接入设备, 其特征在于, 包括:
接收模块, 用于通过分配关系表中无线承载资源信息确定的无线承载 资源接收机器类型通信设备根据所述分配关系表发送的未包含包头的数 据包; 所述分配关系表中包括所述无线承载资源信息与机器类型通信服务 器标识之间的对应关系; 第一处理模块, 用于根据所述分配关系表、 以及所述机器类型通信服 务器标识与携带所述机器类型通信服务器地址的头信息之间的对应关系, 为所述数据包增加包含所述携带所述机器类型通信服务器地址的头信息 的包头;
第一发送模块, 用于向所述机器类型通信服务器发送所述增加包头的 数据包。
20、 根据权利要求 19所述的接入设备, 其特征在于, 所述第一处理 模块, 包括:
第一获取单元, 用于在所述分配关系表中获取所述无线承载资源信息 对应的所述机器类型通信服务器标识;
第二获取单元, 用于在所述机器类型通信服务器标识与携带所述机器 类型通信服务器地址的头信息之间的对应关系中, 获取所述机器类型通信 服务器标识对应的携带所述机器类型通信服务器地址的所述头信息;
处理单元, 用于为所述数据包增加包含所述携带所述机器类型通信服 务器地址的头信息的包头。
21、 根据权利要求 19或 20所述的接入设备, 其特征在于, 还包括: 获取模块, 用于获取携带所述机器类型通信服务器地址的所述头信 息;
第二处理模块, 用于建立所述机器类型通信服务器标识与所述携带所 述机器类型通信服务器地址的头信息之间的对应关系;
第三处理模块, 用于为所述机器类型通信设备分配所述无线承载资源 信息, 并建立包括所述无线承载资源信息与所述机器类型通信服务器标识 之间对应关系的所述分配关系表;
第二发送模块, 用于向所述机器类型通信设备发送所述分配关系表, 以使所述机器类型通信设备根据所述分配关系表发送未包含包头的所述 数据包。
22、 根据权利要求 19或 20所述的接入设备, 其特征在于, 所述第一发送 模块,用于通过核心网向所述机器类型通信服务器发送所述增加包头的凄 t据包。
23、 一种数据包处理系统, 其特征在于, 包括: 机器类型通信设备、 接入设备和机器类型通信服务器设备;
所述机器类型通信设备, 用于根据索引信息将待发送的数据包的包头 设为机器类型通信服务器设备标识对应的索引标识; 所述索引信息中包括 所述索引标识、 所述机器类型通信服务器设备标识、 携带所述机器类型通 信服务器设备地址的头信息之间的对应关系; 并向所述接入设备发送所述 数据包;
所述接入设备, 用于接收所述机器类型通信设备发送的所述数据包; 在所述索引信息中, 获取所述索引标识对应的所述携带所述机器类型通信 服务器地址的头信息; 并将所述包头中的所述索引标识修改为所述携带所 述机器类型通信服务器地址的头信息; 并根据所述携带所述机器类型通信 服务器地址的头信息发送修改后的所述数据包。
24、 一种数据包处理系统, 其特征在于, 包括: 机器类型通信设备、 接入设备和机器类型通信服务器设备;
所述机器类型通信设备, 用于获取分配关系表, 所述分配关系表中包 括所述无线承载资源信息与所述机器类型通信服务器设备标识之间的对 应关系; 并根据所述分配关系表, 通过所述无线承载资源信息对应的承载 资源向所述接入设备发送未包含包头的数据包;
所述接入设备, 用于通过分配关系表中无线承载资源信息确定的无线 承载资源接收所述机器类型通信设备根据所述分配关系表发送的未包含 包头的数据包; 根据所述分配关系表、 以及所述机器类型通信服务器设备 标识与携带所述机器类型通信服务器设备地址的头信息之间的对应关系, 为所述数据包增加包含所述携带所述机器类型通信服务器地址的头信息 的包头; 并向所述机器类型通信服务器设备发送所述增加包头的数据包。
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