CN113542260B - Voice transmission method for warehouse based on distribution mode - Google Patents

Voice transmission method for warehouse based on distribution mode Download PDF

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Publication number
CN113542260B
CN113542260B CN202110786185.3A CN202110786185A CN113542260B CN 113542260 B CN113542260 B CN 113542260B CN 202110786185 A CN202110786185 A CN 202110786185A CN 113542260 B CN113542260 B CN 113542260B
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China
Prior art keywords
platform
voice transmission
voice
transmission
distribution service
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CN113542260A (en
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陈旭
施甘图
庭治宏
徐韬
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Lahuobao Network Technology Co ltd
Hongtu Intelligent Logistics Co ltd
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Lahuobao Network Technology Co ltd
Hongtu Intelligent Logistics Co ltd
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/08Network architectures or network communication protocols for network security for authentication of entities
    • H04L63/0876Network architectures or network communication protocols for network security for authentication of entities based on the identity of the terminal or configuration, e.g. MAC address, hardware or software configuration or device fingerprint
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/04Network architectures or network communication protocols for network security for providing a confidential data exchange among entities communicating through data packet networks
    • H04L63/0407Network architectures or network communication protocols for network security for providing a confidential data exchange among entities communicating through data packet networks wherein the identity of one or more communicating identities is hidden
    • H04L63/0414Network architectures or network communication protocols for network security for providing a confidential data exchange among entities communicating through data packet networks wherein the identity of one or more communicating identities is hidden during transmission, i.e. party's identity is protected against eavesdropping, e.g. by using temporary identifiers, but is known to the other party or parties involved in the communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/12Applying verification of the received information
    • H04L63/126Applying verification of the received information the source of the received data

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  • Engineering & Computer Science (AREA)
  • Computer Security & Cryptography (AREA)
  • Computer Hardware Design (AREA)
  • Computing Systems (AREA)
  • General Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Power Engineering (AREA)
  • Telephonic Communication Services (AREA)
  • Data Exchanges In Wide-Area Networks (AREA)

Abstract

The invention discloses a voice transmission method for a warehouse based on a distribution mode, which comprises the following steps: the first platform sends a voice transmission request to a distribution service; the distribution service generates IDs of the first platform and the second platform; the first platform and the second platform respectively feed back the state label and/or the state data to the distributing service completion registration ID; the distribution service sends a transmission starting point to the first platform; the first platform packs voice data and generates Tag; the second platform generates new state data; the distribution service compares whether the physical hardware information in the front and back state data is consistent, and if so, breakpoint information is sent to the second platform; the second platform analyzes the voice data to finish transmission; the invention only processes, distributes and forwards the ID through the distribution service, thereby reducing the calculation amount of the middle layer; meanwhile, the ID has timeliness, and the reliability of single link transmission is ensured; the starting point and the breakpoint are used as the starting point and the ending point of one-time transmission, and the monitoring of the transmission quantity and the time consumption can be effectively completed in the later period.

Description

Voice transmission method for warehouse based on distribution mode
Technical Field
The invention relates to the field of information transmission, in particular to a voice transmission method for a warehouse based on a distribution mode.
Background
With the vigorous development of the logistics industry, the interaction and operation of voice in the warehouse becomes one of the indispensable modes.
In the prior art, larger resources are occupied in the voice transmission process, meanwhile, the safety of information cannot be well protected, and effective transmission quantity monitoring, time-consuming monitoring and the like cannot be performed.
Disclosure of Invention
The invention aims at: aiming at the problems, a voice transmission method for a warehouse based on a distribution mode is provided; the invention solves the problem that the warehouse voice transmission occupies larger resources, and solves the problem that effective monitoring cannot be carried out in the voice transmission process.
The technical scheme adopted by the invention is as follows:
a voice transmission method for warehouse based on distribution mode includes: the first platform sends a voice transmission request to a distribution service; the distribution service generates IDs of the first platform and the second platform and sends the IDs to the first platform and the second platform respectively; the first platform and the second platform respectively feed back the state label and the state data to the distributing service completion registration ID; after the distribution service finishes the registration of the ID of the second platform, a transmission starting point is sent to the first platform; the first platform packs the voice data, generates Tag and sends the Tag to the second platform; the second platform generates new state data; the distribution service compares whether the physical hardware information of the second platform in the front and back state data is consistent, if so, breakpoint information is sent to the second platform, if not, abnormality is fed back to the second platform, and the flow is terminated; after receiving the breakpoint message, the second platform analyzes the voice data of the first platform to complete transmission.
Further, the voice transmission request includes a request address, a requested address, and a voice transmission tag.
Further, after receiving the request from the first platform, the distribution service knows that the first platform and the second platform will perform voice transmission according to the voice transmission tag, and then the distribution service will generate the platform IDs of the two parties.
Further, the ID of the first platform is composed of a first platform address and four-bit random characters, and the ID of the second platform is composed of a second platform address and four-bit random characters.
Further, the first platform and the second platform respectively feed back the state label and the state data, which comprises performing basic verification on the ID and verifying character digit and address correctness.
Further, the transmission start point is a notification message that allows the first platform to perform the current transmission, and the notification message includes an ID of the second platform.
Further, the Tag contains a request ID, i.e. the ID of the first platform, and a requested ID, i.e. the ID of the second platform.
Further, the new state data includes an ID of the first platform and physical hardware information of the second platform in the Tag.
In summary, due to the adoption of the technical scheme, the beneficial effects of the invention are as follows:
1. the invention only processes, distributes and forwards the ID through the distribution service, reduces the calculation amount of the middle layer, occupies small resources of the distribution service, and is more suitable for medium and small environments.
2. The distributed service ID has timeliness, and a pair of IDs can be invalid after the breakpoint message is completed, so that the reliability of single-link transmission is ensured.
3. The invention uses the starting point and the breakpoint as the start and the end of one-time transmission, and can effectively complete the transmission quantity monitoring and time-consuming monitoring in the later period.
Drawings
The invention will now be described by way of example and with reference to the accompanying drawings in which:
fig. 1 is a flow chart of a voice transmission method.
Fig. 2 is a graph of platform send request traffic trend.
Detailed Description
All of the features disclosed in this specification, or all of the steps in a method or process disclosed, may be combined in any combination, except for mutually exclusive features and/or steps.
Any feature disclosed in this specification (including any accompanying claims, abstract) may be replaced by alternative features serving the same, equivalent or similar purpose, unless expressly stated otherwise. That is, each feature is one example only of a generic series of equivalent or similar features, unless expressly stated otherwise.
Example 1
A voice transmission method for a warehouse based on a distribution mode, as shown in fig. 1 and 2, includes:
s1: the first platform sends a voice transmission request to the distribution service.
In the above step, the request sent by the first platform includes a request address, a requested address, and a voice transmission tag.
S2: the distribution service generates IDs of the first platform and the second platform and sends the IDs to the first platform and the second platform, respectively.
After receiving the request from the first platform, the distribution service knows that the first platform and the second platform (the requested party) will generate voice transmission according to the voice transmission label, and then the distribution service will generate the platform IDs of the two parties; the voice tag function is to determine that voice transmission is about to occur for the two platforms.
The distribution service will prepare respective IDs of a first platform, which is composed of the request address (first platform address) and four-bit random characters, and a second platform, which is composed of the requested address (second platform address) and four-bit random characters; in this embodiment, the ID is a credential of the first and second platforms, which is time-efficient, and only the distribution service can be matched and identified.
S3: the first platform and the second platform respectively feed back the status tag and the status data to the distribution service completion registration ID.
The first platform feeds back the status label after receiving the ID from the distributing service, the distributing service completes the ID registration of the first platform after receiving the status label, the first platform performs basic verification on the ID and verifies the number of character bits and the correctness of the address, the ID is fed back to the distributing service normally after passing the verification, the ID is fed back abnormally after not passing the verification, and the distributing service produces a new ID again;
the second platform feeds back the status data after receiving the ID from the distribution service, the distribution service completes the ID registration of the second platform after receiving the status data, the second platform can perform basic verification on the ID and verify the number of character bits and the correctness of addresses, if the verification is passed, the status data containing the label of the positive production is fed back to the distribution service, if the verification is not passed, the status data containing the abnormal label is fed back, the distribution service again produces a new ID, and the status data contains the status label and the physical hardware information (CPU core number, memory size and disk size) of the second platform.
In this embodiment, after receiving the status data of the second platform, the distribution service will generate a pair of new IDs to be used for the next transmission of voice data between the first platform and the second platform.
S4: after the distribution service completes the registration of the second platform ID, the transmission start point is sent to the first platform.
In the above step, the transmission start point is a notification message that allows the first platform to perform the current transmission, and the notification message includes the ID of the second platform.
S5: the first platform packages the voice data and generates a Tag, which is then sent to the second platform.
In the above steps, after receiving the notification message of the transmission start point, the first platform packages the voice data and generates a Tag, and then sends the Tag to the distribution service, and the distribution server receives the voice data of the first platform and then transmits the voice data to the second platform; the Tag contains the request ID (ID of the first platform) and the requested ID (ID of the second platform).
S6: the second platform generates new state data.
In the above step, the new state data includes the ID of the first platform and the physical hardware information of the second platform in the Tag.
S7: comparing whether the physical hardware information of the second platform in the front and back state data is consistent or not by the distribution service, and executing S8 if the physical hardware information of the second platform is consistent; if not, then execute S9
In the above steps, the front and back status data are the status data information of the second platform when registering the ID and the status data information of the second platform after transmission, and whether the information is consistent can determine whether the voice information has errors or not in the transmission process.
S8: and sending the breakpoint message to the second platform.
In the above step, the breakpoint message is used to inform the second platform that the transmission of the information is completed, and when the breakpoint message is received, the second platform pauses to receive the voice information sent by the first platform and starts to process the received voice information in the next step.
S9: and feeding back the exception to the second platform and terminating the flow.
In the above step, when the voice transmission is abnormal, the second platform stops receiving the voice message and terminates the receiving program without further analyzing the received voice message.
S10: after receiving the breakpoint message, the second platform analyzes the voice data of the first platform to complete transmission.
In the above steps, when the received voice information is not abnormal, the second platform analyzes and restores the received voice information, so that the voice information can be intuitively displayed.
The invention only processes, distributes and forwards the ID through the distribution service, reduces the calculation amount of the middle layer, occupies small resources of the distribution service, and is more suitable for medium and small environments; meanwhile, the distributed service IDs have timeliness, and a pair of IDs can fail after the breakpoint message is completed, so that the reliability of single link transmission is ensured; the distribution service of the invention can generate the ID pair of the secondary transmission in the idle process of the primary transmission, the ID pair of the secondary transmission is effective in a certain time, and the computing resource is reasonably utilized in the process of multiple transmission; the starting point and the breakpoint are used as the starting point and the ending point of one-time transmission, and the monitoring of the transmission quantity and the time consumption can be effectively completed in the later period.
The invention is not limited to the specific embodiments described above. The invention extends to any novel one, or any novel combination, of the features disclosed in this specification, as well as to any novel one, or any novel combination, of the steps of the method or process disclosed.

Claims (8)

1. The voice transmission method for the warehouse based on the distribution mode is characterized by comprising the following steps of: the first platform sends a voice transmission request to a distribution service; the distribution service generates IDs of the first platform and the second platform and sends the IDs to the first platform and the second platform respectively; the first platform and the second platform respectively feed back the state label and the state data to the distributing service completion registration ID; after the distribution service finishes the registration of the ID of the second platform, a transmission starting point is sent to the first platform; the first platform packs the voice data, generates Tag and sends the Tag to the second platform; the second platform generates new state data; the distribution service compares whether the physical hardware information of the second platform in the front and back state data is consistent, if so, breakpoint information is sent to the second platform, if not, abnormality is fed back to the second platform, and the flow is terminated; after receiving the breakpoint message, the second platform analyzes the voice data of the first platform to complete transmission.
2. The voice transmission method for a warehouse based on the distribution mode as claimed in claim 1, wherein the voice transmission request includes a request address, a requested address, and a voice transmission tag.
3. The voice transmission method for a warehouse based on the distribution mode as claimed in claim 1, wherein after the distribution service receives the request from the first platform, it knows that voice transmission will occur between the first platform and the second platform according to the voice transmission tag, and then the distribution service will generate the platform IDs of both sides.
4. A voice transmission method for a warehouse based on a distribution mode as claimed in claim 3, wherein the ID of the first platform is composed of a first platform address and four-bit random characters, and the ID of the second platform is composed of a second platform address and four-bit random characters.
5. The voice transmission method for warehouse based on the distribution mode as claimed in claim 1, wherein the first platform and the second platform respectively feed back the status tag and the status data, including performing basic verification on the ID and verifying the number of character bits and the address correctness.
6. The voice transmission method for a warehouse based on the distribution mode as claimed in claim 1, wherein the transmission start point is a notification message allowing the first platform to perform the transmission, wherein the notification message includes the ID of the second platform.
7. The voice transmission method for a warehouse based on the distribution method as claimed in claim 1, wherein the Tag contains a request ID, i.e., an ID of the first platform, and a requested ID, i.e., an ID of the second platform.
8. The voice transmission method for a warehouse based on the distribution mode as claimed in claim 1, wherein the new status data includes an ID of the first platform and physical hardware information of the second platform in the Tag.
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CN114598679B (en) * 2022-02-17 2024-02-06 宏图智能物流股份有限公司 Single-bin in-platform voice transmission method

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