Intelligent throughput test system and method
The intelligent throughput testing system automates the configuration and parsing of test parameters, solving the problems of low efficiency and error-proneness in test parameter configuration in existing technologies, and achieving efficient throughput testing.
Patent Information
- Application Number
- CN202411030675.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2044-07-30
AI Technical Summary
Existing throughput testing methods require professionals to configure and verify test parameters, resulting in low efficiency, high error rates, and high labor costs.
An intelligent throughput testing system is adopted, including an optical network terminal, an optical route terminal, and a remote throughput information management module. Through a mode configuration module, a throughput information parsing module, and a test result collection and display module, test parameters are configured and parsed automatically, reducing the need for manual operation.
It improves testing efficiency, reduces the need for manual operation, and achieves highly efficient automated throughput testing.
Smart Images

Figure CN119094404B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of network equipment testing, and in particular to an intelligent throughput test system and method. BACKGROUND
[0002] The core steps of throughput testing are as follows:
[0003] 1. Test environment preparation: hardware configuration ensures that the Ixia test equipment and the ONT device under test are correctly connected. Generally, the Ixia device is connected to the Ethernet interface of the ONT, while the ONT is connected to the OLT, forming a GPON network through an optical fiber splitter. The software installs the test software such as IxNetwork or IxLoad of Ixia on the control PC, ensures that the software version is compatible and matches the test equipment.
[0004] 2. Test parameter configuration: set the test parameters in IxNetwork or IxLoad to configure the test parameters, including the flow type (TCP / UDP), the packet size (such as 64 bytes, 512 bytes, 1518 bytes, etc.), the sending rate (such as line speed or specific rate), and the test duration (such as 10 minutes, 1 hour, etc.). The bandwidth and QoS of the ONT and OLT are configured, including the T-CONT type, the GEM port configuration, the DBA (Dynamic Bandwidth Allocation) strategy, etc., to ensure that the test conditions are consistent with the actual network environment.
[0005] 3. Flow generation and injection: generate flow using the Ixia device to generate test flow. Multiple flows can be configured to simulate a multi-user environment, ensuring the comprehensiveness of the test. Flow injection then injects the generated flow into the ONT, which is transmitted to the OLT through the ONT, and then back to the Ixia device for analysis. Ensure that the flow can pass through the ONT completely, and test the performance of the ONT in actual use.
[0006] 4. Data collection and analysis: real-time monitoring During the test process, real-time monitoring of key performance indicators such as throughput, packet loss rate, latency, and jitter is performed. The software interface of Ixia provides intuitive charts and statistical data for real-time observation. Data collection records test data, especially abnormal conditions found during testing, such as sudden packet loss or increased latency. These data are crucial for subsequent analysis and device tuning.
[0007] 5. Test report generation: generate report After the test is completed, use Ixia software to generate a detailed test report. The report should include statistical data and charts of indicators such as throughput, packet loss rate, latency, and jitter, as well as analysis and interpretation of test results.
[0008] The problem encountered at present is that the configuration of test parameters needs to involve OLT service parameter configuration and parameter configuration of throughput software. These parameters need to be configured and confirmed by professional personnel in the process of traffic test, which leads to low efficiency of configuration parameters, easy errors, high labor cost and other problems. The present application relates to an intelligent system to solve the existing problems. SUMMARY
[0009] The main purpose of the present application is to provide an intelligent throughput test system and method, which aims to solve the technical problems of low efficiency of configuration parameters, easy errors and high labor cost caused by the need for professional personnel to configure and confirm the test parameters involved in the existing intelligent throughput test method.
[0010] To achieve the above purpose, the present application provides an intelligent throughput test system, which comprises an optical network terminal, an optical line terminal and a remote throughput information management module.
[0011] The optical network terminal is connected with the optical line terminal, and the optical network terminal is also connected with the remote throughput information management module.
[0012] The optical line terminal is configured to broadcast test data traffic to the optical network terminal.
[0013] The optical network terminal is configured to perform throughput analysis based on the test data traffic and send the obtained throughput test data to the remote throughput information management module.
[0014] The remote throughput information management module is configured to determine the throughput of the throughput test data through a throughput test tool.
[0015] In an embodiment, a mode configuration module is arranged on the optical line terminal.
[0016] The mode configuration module is configured to determine whether the optical line terminal has a throughput test mode.
[0017] The mode configuration module is further configured to determine the highest throughput in the throughput test mode through a traffic descriptor configuration file when the optical line terminal has a throughput test mode.
[0018] In an embodiment, a throughput information analysis module is arranged on the optical network terminal.
[0019] The throughput information analysis module is configured to obtain the traffic descriptor configuration file sent by the optical line terminal.
[0020] The throughput information analysis module is configured to obtain the target field in the traffic descriptor configuration file.
[0021] The throughput information analysis module is configured for determining, based on the target field, whether the optical line terminal allows the optical network terminal to automatically modify a traffic descriptor configuration file and a maximum traffic descriptor configuration file identification number of the optical line terminal.
[0022] In an embodiment, the optical network terminal is further provided with a throughput test setting module.
[0023] The throughput test setting module is configured for, if the optical line terminal allows the optical network terminal to automatically modify a traffic descriptor configuration file and a maximum traffic descriptor configuration file identification number of the optical line terminal, and a first maximum throughput of the throughput test setting module is greater than a second maximum throughput corresponding to the maximum traffic descriptor configuration file identification number, applying to modify the traffic descriptor configuration file and the maximum traffic descriptor configuration file identification number.
[0024] In an embodiment, the optical network terminal is further provided with a test result collection and display module.
[0025] The test result collection and display module is configured for collecting the throughput obtained by the remote throughput information management module and displaying the throughput.
[0026] In addition, to achieve the above object, the present application further provides an intelligent throughput test method, which is applied to an intelligent throughput test system, and the method comprises the following steps:
[0027] The optical line terminal broadcasts test data traffic to the optical network terminal.
[0028] The optical network terminal performs throughput analysis based on the test data traffic and sends the obtained throughput test data to the remote throughput information management module.
[0029] The remote throughput information management module determines the throughput of the throughput test data by using a throughput test tool.
[0030] In an embodiment, the method further comprises the following steps:
[0031] The mode configuration module determines whether the optical line terminal has a throughput test mode.
[0032] The mode configuration module determines, when the optical line terminal has the throughput test mode, the highest throughput in the throughput test mode by using a traffic descriptor configuration file.
[0033] In an embodiment, the method further comprises the following steps:
[0034] The throughput information analysis module obtains the traffic descriptor configuration file sent by the optical route terminal;
[0035] The throughput information analysis module obtains a target field in the traffic descriptor configuration file.
[0036] The throughput information analysis module determines whether the optical route terminal allows the optical network terminal to automatically modify the traffic descriptor configuration file and a maximum traffic descriptor configuration file identification number of the optical route terminal based on the target field.
[0037] In an embodiment, the method further comprises:
[0038] The throughput test setting module applies to modify the traffic descriptor configuration file and the maximum traffic descriptor configuration file identification number if the optical route terminal allows the optical network terminal to automatically modify the traffic descriptor configuration file and the maximum traffic descriptor configuration file identification number of the optical route terminal, and a first maximum throughput of the throughput test setting module is greater than a second maximum throughput corresponding to the maximum traffic descriptor configuration file identification number.
[0039] In an embodiment, the method further comprises:
[0040] The test result collection and display module collects the throughput obtained by the remote throughput information management module test, and displays the throughput.
[0041] The one or more technical solutions provided in the present application have at least the following technical effects:
[0042] The intelligent throughput test system in the present application comprises an optical network terminal, an optical route terminal, and a remote throughput information management module; wherein the optical network terminal is connected with the optical route terminal, and the optical network terminal is also connected with the remote throughput information management module; the optical route terminal broadcasts test data traffic to the optical network terminal; the optical network terminal performs throughput analysis based on the test data traffic, and sends the obtained throughput test data to the remote throughput information management module; the remote throughput information management module determines the throughput of the throughput test data through a throughput test tool. Since the intelligent throughput test is realized through the optical route terminal, the optical network terminal, and the remote throughput information management module, the efficiency and the intelligent degree of the test are improved, and the demand for manual operation is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0043] The accompanying drawings, which are incorporated herein and form part of the specification, illustrate embodiments consistent with the present application and, together with the description, further serve to explain the principles of the application.
[0044] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the accompanying drawings needed to be used in the embodiments or prior art description will be briefly introduced as follows. Obviously, for those of ordinary skill in the art, the other drawings can also be obtained based on these drawings without any creative work.
[0045] Figure 1 The figure is a functional structure block diagram of the first embodiment of the intelligent throughput test system of the present application.
[0046] Figure 2 The figure is a functional structure block diagram of the optical network terminal in the second embodiment of the intelligent throughput test system of the present application.
[0047] Figure 3 The figure is a flowchart provided by the first embodiment of the intelligent throughput test method of the present application.
[0048] The purpose implementation, functional features and advantages of the present application will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION
[0049] It should be understood that the specific embodiments described herein are only used to explain the technical solutions of the present application, and are not used to limit the present application.
[0050] In order to better understand the technical solutions of the present application, the following will be described in detail with reference to the drawings and specific embodiments in the specification.
[0051] The ONT throughput test in the embodiments of the present application is crucial to ensure the performance and reliability of fiber access networks (such as GPON, EPON, etc.). Throughput test is mainly used to verify the data transmission rate and stability of ONT in actual use, to ensure that it can meet the bandwidth demand of users and provide high-quality services. In modern networks with high bandwidth demand, users expect fast and stable Internet connection, and any bottleneck or poor performance will directly affect the user experience.
[0052] The embodiments of the present application provide an intelligent throughput test system, which refers to Figure 1 , Figure 1 The figure is a functional module diagram of the intelligent throughput test method of the present application.
[0053] Referring to Figure 1 , the intelligent throughput test system of the present application includes an optical network terminal (ONT), an optical line terminal (OLT) and a remote throughput information management module.
[0054] The optical network terminal is connected with the optical line terminal, and is also connected with the remote throughput information management module.
[0055] The optical line terminal is configured to broadcast test data flow to the optical network terminal.
[0056] The optical network terminal is configured to perform throughput analysis based on the test data flow, and send obtained throughput test data to the remote throughput information management module.
[0057] The remote throughput information management module is configured to determine the throughput of the throughput test data by a throughput test tool.
[0058] It can be understood that the optical line terminal is a core component in the construction of a passive optical network (PON) architecture, which can be used to connect multiple optical network terminals and communicate with these optical network terminals.
[0059] It should be understood that the optical network terminal is a network device that modulates and demodulates optical signals into other protocol signals through optical fiber medium. The optical network terminal can receive test data flow from the optical line terminal and analyze it so that user equipment can understand and use the data.
[0060] It should be noted that in a gigabit passive optical network (GPON), management and control protocols between the OLT and the ONT can usually be carried out through an optical network unit management and control interface (OMCI). The OMCI protocol realizes remote configuration, monitoring and fault management functions by transmitting messages on the OMCI channel, ensuring efficient operation and unified management of network equipment. Transmission container (T-CONT) is a basic unit for bandwidth allocation and management in GPON networks. Each T-CONT contains multiple GEM (GPON Encapsulation Method) ports for transmitting different types of traffic. By configuring T-CONT, dynamic allocation and optimization of bandwidth can be achieved, improving network resource utilization. At the same time, the bandwidth parameters of T-CONT are defined by the traffic descriptor profile, including fixed bandwidth, guaranteed bandwidth and maximum burst bandwidth, etc. By setting the Traffic Descriptor Profile, the bandwidth allocation strategy of T-CONT can be finely controlled to ensure that the QoS (Quality of Service) requirements of different services are met. The association configuration of Traffic Descriptor Profile and T-CONT is carried out on the OLT, and the ONT is notified to perform specific configuration through OMCI messages.
[0061] It can be understood that by analyzing the throughput of the test data traffic sent by the optical line terminal, the throughput test data can be determined.
[0062] In the embodiments of the present application, a mode configuration module can be added on the OLT, which can be used to determine whether the current throughput test OLT has a throughput test mode and the highest throughput set in the throughput test mode. Specifically, the throughput test mode can be extended through the reserved field in the traffic descriptor profile. That is, the optical line terminal is provided with a mode configuration module;
[0063] The mode configuration module is configured to determine whether the optical line terminal has a throughput test mode.
[0064] The mode configuration module is further configured to determine the highest throughput in the throughput test mode through the traffic descriptor profile when the optical line terminal has a throughput test mode.
[0065] In an implementation form of the embodiment of the application, the fields included in the traffic descriptor configuration file of the application and their meanings can be shown in the following table:
[0066]
[0067]
[0068] Wherein, the identification of the two bytes in the Reserved field can be defined as shown in the following table:
[0069]
[0070] In the embodiment of the application, a throughput information parsing module is further added on the ONT, which can acquire the traffic descriptor configuration file sent by the optical line terminal, and determine the maximum throughput configuration issued by the OLT to the ONT and whether the OLT allows the current ONT to apply for modifying the maximum throughput configuration according to the target field (i.e. the Reserved field) in the traffic descriptor configuration file. That is, the optical network terminal is provided with a throughput information parsing module; the throughput information parsing module is configured to acquire the traffic descriptor configuration file sent by the optical line terminal; the throughput information parsing module is configured to acquire the target field in the traffic descriptor configuration file; and the throughput information parsing module is configured to determine whether the optical line terminal allows the optical network terminal to automatically modify the traffic descriptor configuration file and the maximum traffic descriptor configuration file identification number of the optical line terminal based on the target field.
[0071] Further, if the first maximum throughput of the throughput test setting module is greater than the second maximum throughput corresponding to the maximum traffic descriptor configuration file identification number corresponding to the current ONT, the throughput test setting module can apply for modifying the maximum throughput configuration to the OLT. That is, the optical network terminal is further provided with a throughput test setting module.
[0072] The throughput test setting module is configured to, if the optical line terminal allows the optical network terminal to automatically modify the traffic descriptor configuration file and the maximum traffic descriptor configuration file identification number of the optical line terminal, and the first maximum throughput of the throughput test setting module is greater than the second maximum throughput corresponding to the maximum traffic descriptor configuration file identification number, apply for modifying the traffic descriptor configuration file and the maximum traffic descriptor configuration file identification number.
[0073] In an implementation form of the embodiment of the application, the throughput test setting module can also be provided with other throughput test information, which can be shown in the following table:
[0074] Name Function Protocol Type Define the network protocol of the generated traffic TCP, UDP, etc. Source Address Define the source IP address of the traffic Destination Address Define the destination IP address of the traffic Packet Size Define the size of the generated packets: arbitrary size within a fixed range Transmission Rate Define the rate of traffic generation: e.g. bandwidth provided by step two maximum bandwidth VLAN-ID Define the VLAN-ID that the traffic belongs to Transmission Mode Define the transmission mode of the traffic: continuous or timed Priority Define the priority of the traffic: e.g. 802.1P priority marking
[0075] It should be noted that in the embodiments of the present application, the throughput test information set by the throughput test setting module can be sent to the remote throughput information management module, and the throughput test data is fed back to the throughput test tool through the remote throughput information management module. The throughput test tool can configure data based on the throughput test information, so that manual configuration of the throughput test tool is not required, and remote operation can be achieved. At the same time, after the throughput test is completed, the test result can be fed back to the remote throughput information management module by the throughput test tool, so as to realize remote viewing of the test result and judging whether the test is successful, thereby greatly improving the efficiency.
[0076] The intelligent throughput test system in the embodiments of the present application includes an optical network terminal, an optical line terminal, and a remote throughput information management module. The optical network terminal is connected with the optical line terminal, and the optical network terminal is also connected with the remote throughput information management module. The optical line terminal broadcasts test data traffic to the optical network terminal. The optical network terminal performs throughput analysis based on the test data traffic, and sends the obtained throughput test data to the remote throughput information management module. The remote throughput information management module determines the throughput of the throughput test data through a throughput test tool. Since the intelligent throughput test is realized through the optical line terminal, the optical network terminal, and the remote throughput information management module, the efficiency and the intelligent degree of the test are improved, and the demand for manual operation is reduced.
[0077] Based on the first embodiment of the present application, in the second embodiment of the present application, the same or similar contents as the above-mentioned first embodiment can be referred to the above description, and will not be described in detail. On this basis, please refer to Figure 2 A test result collection and display module is further arranged on the optical network terminal.
[0078] The test result collection and display module is configured to collect the throughput obtained by the remote throughput information management module, and display the throughput.
[0079] In the embodiments of the present application, a test result collection and display module can be arranged on the ONT. Through the test result collection and display module, the test result (i.e. the throughput) obtained by the remote throughput information management module can be collected, and the test result can be displayed on the menu of the ONT, so that the ONT can analyze the result and adjust the test strategy in time. Moreover, the test result collection and display module can be associated with the throughput test setting module, so as to realize automatic adjustment of the maximum throughput threshold test multiple times, so as to test the maximum throughput and the best performance, thereby greatly saving the labor cost and improving the test efficiency.
[0080] In an implementation form of the embodiment of the present application, the parameter configuration in the traffic descriptor configuration file 0x01 can be as shown in the following table:
[0081] Field Length Parameter class_id 1 0x01 Fixed Maximum Sustained Traffic Rate 4 1000000 (1 Gbps) Maximum Traffic Burst Size 4 8000 Minimum Reserved Traffic Rate 4 500000 (500 Mbps) Assured Data Rate 4 800000 (800 Mbps) Traffic Priority 1 0x01
[0082] The parameter configuration in the two bytes of the reserved field (target field) can be as shown in the following table:
[0083]
[0084] In another implementation form of the embodiment of the present application, the parameter configuration in another traffic descriptor configuration file 0x02 can be as shown in the following table:
[0085] class_id 1 0x02 Fixed Maximum Sustained Traffic Rate 4 3000000 (3 Gbps) Maximum Traffic Burst Size 4 8000 Minimum Reserved Traffic Rate 4 500000 (500 Mbps) Assured Data Rate 4 800000 (800 Mbps) Traffic Priority 1 0x01
[0086] The parameter configuration in the two bytes of the reserved field (target field) can be as shown in the following table:
[0087]
[0088] In an implementation form of the embodiment of the present application, the maximum throughput of the traffic descriptor configuration file issued by the current OLT to the current ONT is 1 Gps and the current ONT is allowed to apply for other traffic descriptor configuration files. When the maximum throughput of the current OLT corresponds to the traffic configuration file 0x02, it can be known that the current maximum throughput is 3 Gps.
[0089] Further, it can be known from the above that the maximum throughput corresponding to the traffic descriptor configuration file issued by the current OLT to the ONT is 1 Gps, while the maximum throughput corresponding to the traffic descriptor in the OLT is 3 Gps. At this time, the throughput test on the ONT can have two ways, one is to test the throughput of 1 Gps and below, and the current traffic descriptor configuration file is used in the throughput test setting module, and the other is that the throughput test setting module applies to test the throughput of 3 Gps, at this time the ONT will apply to the OLT to issue the 0x02 traffic descriptor configuration file, when the ONT obtains the traffic descriptor configuration file, the throughput bandwidth of 3 Gps can be configured, and the throughput test setting module can also continue to set other parameters, for example, as shown below:
[0090] Protocol Type TCP Source Address 10.10.254.1 Destination Address 10.10.254.1 Packet Size 1518 Transmission Rate 3 Gbps VLAN-ID 362 Transmission Mode Continuous Priority 0x01
[0091] It can be understood that the throughput test data and the traffic descriptor configuration file and the parameters configured by the throughput test setting module are sent to the remote throughput information management module, and the throughput test data is fed back to the throughput test tool. The throughput test tool configures data using the traffic descriptor configuration file and the parameters configured by the throughput test setting module, so that manual configuration of the throughput test tool is not required, remote operation can be realized, and test efficiency is greatly improved. Corresponding to the above example, the test results shown in the following table can be obtained:
[0092] Total Throughput 1.98 Gbps Frame Transmission Rate 350000 frames / second Frame Loss Rate 15.5% Latency 3 ms Bandwidth Utilization 76%
[0093] In the embodiment of the application, a test result collection and display module is further arranged on the optical network terminal. The test result collection and display module collects the throughput obtained by the remote throughput information management module and displays the throughput. Since the throughput test results are visually displayed, test strategy adjustment can be made in a timely manner based on the throughput test results. When the test results are not satisfactory, the test strategy can be changed in a timely manner, and test efficiency is improved.
[0094] The application further provides an intelligent throughput test method. Please refer to Figure 3 , the method is applied to an intelligent throughput test system, and the method comprises the following steps:
[0095] In step S10, the optical route terminal broadcasts test data traffic to the optical network terminal.
[0096] In step S20, the optical network terminal performs throughput analysis based on the test data traffic and sends the obtained throughput test data to the remote throughput information management module.
[0097] In step S30, the remote throughput information management module determines the throughput of the throughput test data by using a throughput test tool.
[0098] In an implementation manner of the embodiment of the application, the method further comprises the following steps:
[0099] The mode configuration module determines whether the optical route terminal has a throughput test mode.
[0100] When the optical route terminal has the throughput test mode, the mode configuration module determines the highest throughput in the throughput test mode by using a traffic descriptor configuration file.
[0101] In an implementation manner of the embodiment of the application, the method further comprises the following steps:
[0102] The throughput information analysis module acquires the traffic descriptor configuration file sent by the optical route terminal.
[0103] The throughput information analysis module acquires a target field in the traffic descriptor configuration file;
[0104] The throughput information analysis module determines whether the optical route terminal allows the optical network terminal to automatically modify the traffic descriptor configuration file and a maximum traffic descriptor configuration file identification number of the optical route terminal based on the target field.
[0105] In an implementation form of the embodiment of the application, the method further comprises:
[0106] If the optical route terminal allows the optical network terminal to automatically modify the traffic descriptor configuration file and the maximum traffic descriptor configuration file identification number of the optical route terminal, and the first maximum throughput of the throughput test setting module is greater than the second maximum throughput corresponding to the maximum traffic descriptor configuration file identification number, the traffic descriptor configuration file and the maximum traffic descriptor configuration file identification number are applied to be modified.
[0107] In an implementation form of the embodiment of the application, the method further comprises:
[0108] The test result collection and display module collects the throughput obtained by the remote throughput information management module test, and displays the throughput.
[0109] The intelligent throughput test method provided by the application adopts the intelligent throughput test system in the above embodiment, and can solve the technical problem that the configuration parameters of the existing throughput test system need to be configured and confirmed by professional personnel, which leads to low configuration parameter efficiency, easy errors, and high labor cost. Compared with the prior art, the intelligent throughput test method provided by the application has the same beneficial effects as the intelligent throughput test system provided by the above embodiment, and other technical features in the intelligent throughput test method are the same as the features disclosed in the above embodiment system, which will not be repeated here.
[0110] The above only describes some embodiments of the application, and does not limit the patent scope of the application. Any equivalent structural transformation made by using the content of the specification and drawings, or direct / indirect application in other related technical fields is included in the patent protection scope of the application.
Claims
1. An intelligent throughput testing system, characterized by, The system comprises an optical network terminal, an optical line terminal and a remote throughput information management module; The optical network terminal is connected with the optical line terminal, and the optical network terminal is also connected with the remote throughput information management module; The optical line terminal is configured to broadcast test data traffic to the optical network terminal; The optical network terminal is configured to perform throughput analysis based on the test data traffic, and send obtained throughput test data to the remote throughput information management module; The remote throughput information management module is configured to determine the throughput of the throughput test data by a throughput test tool; The optical line terminal is provided with a mode configuration module; The mode configuration module is configured to determine whether the optical line terminal has a throughput test mode; The mode configuration module is also configured to determine the highest throughput in the throughput test mode by a traffic descriptor configuration file when the optical line terminal has the throughput test mode; The optical network terminal is provided with a throughput information analysis module; The throughput information analysis module is configured to obtain the traffic descriptor configuration file sent by the optical line terminal; The throughput information analysis module is configured to obtain a target field in the traffic descriptor configuration file; The throughput information analysis module is configured to determine whether the optical line terminal allows the optical network terminal to automatically modify the traffic descriptor configuration file and the maximum traffic descriptor configuration file identification number of the optical line terminal based on the target field; The optical network terminal is also provided with a throughput test setting module; The throughput test setting module is configured to apply to modify the traffic descriptor configuration file and the maximum traffic descriptor configuration file identification number if the optical line terminal allows the optical network terminal to automatically modify the traffic descriptor configuration file and the maximum traffic descriptor configuration file identification number of the optical line terminal, and the first maximum throughput of the throughput test setting module is greater than the second maximum throughput corresponding to the maximum traffic descriptor configuration file identification number.
2. The intelligent throughput test system of claim 1, wherein, The optical network terminal is also provided with a test result collection and display module; The test result collection and display module is configured to collect the throughput tested and obtained by the remote throughput information management module, and display the throughput.
3. A smart throughput testing method, characterized by, The method is applied to the intelligent throughput test system of claim 1, and the method comprises: The optical line terminal broadcasts test data traffic to the optical network terminal; The optical network terminal performs throughput analysis based on the test data traffic, and sends obtained throughput test data to the remote throughput information management module; The remote throughput information management module determines the throughput of the throughput test data by a throughput test tool; The optical line terminal is provided with a mode configuration module; the method further comprises: The mode configuration module determines whether the optical line terminal has a throughput test mode; The mode configuration module determines the highest throughput in the throughput test mode by a traffic descriptor configuration file when the optical line terminal has the throughput test mode; The optical network terminal is provided with a throughput information analysis module; the method further comprises: The throughput information analysis module acquires the traffic descriptor configuration file sent by the optical route terminal; The throughput information analysis module acquires the target field in the traffic descriptor configuration file; The throughput information analysis module determines whether the optical route terminal allows the optical network terminal to automatically modify the traffic descriptor configuration file and the maximum traffic descriptor configuration file identification number of the optical route terminal based on the target field; The optical network terminal is further provided with a throughput test setting module; the method further comprises: If the optical route terminal allows the optical network terminal to automatically modify the traffic descriptor configuration file and the maximum traffic descriptor configuration file identification number of the optical route terminal, and the first maximum throughput of the throughput test setting module is greater than the second maximum throughput corresponding to the maximum traffic descriptor configuration file identification number, the traffic descriptor configuration file and the maximum traffic descriptor configuration file identification number are applied to be modified.
4. The throughput test method of claim 3, wherein, The optical network terminal is further provided with a test result collection and display module; the method further comprises: The test result collection and display module collects the throughput obtained by the remote throughput information management module test, and displays the throughput.
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