Multi-port Debugging System, Method, Terminal Device and Medium
Through the broadband carrier debugging host computers and equipment of the multi-port debugging system, effective monitoring and maintenance of the broadband carrier communication network is achieved, the problems of communication interruption and instability are solved, and communication quality and on-site work efficiency are improved.
Patent Information
- Application Number
- CN202210878836.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-07-25
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2042-07-25
AI Technical Summary
The prior art cannot effectively monitor and maintain the broadband carrier communication network, resulting in communication interruption, instability and incomplete network networking, and cannot debug and optimize the broadband carrier network.
It provides a multi-port debugging system, including broadband carrier debugging host computers and broadband carrier debugging equipment, obtains carrier communication network data by issuing debugging instructions, and performs data interaction to achieve network tuning. The system supports graphical interface and command line debugging mode, and has data acquisition and noise monitoring functions.
It improves the quality of broadband carrier communication, improves the work efficiency of on-site staff, shortens the project debugging cycle, and is characterized by simplicity, wide applicability, powerful functions and high security.
Smart Images

Figure CN115333572B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of communication technologies, and particularly to a multi-port debugging system, method, terminal device, and computer-readable storage medium. Background Art
[0002] Broadband power line carrier (HPLC) communication devices are widely used. However, due to the technical characteristics of HPLC carrier communication devices, some problems will occur during actual installation. For example, carrier communication interruption of some devices, unstable carrier communication of some devices, incomplete statistics of the number of nodes in the entire carrier network, and acquisition of noise interference in the on-site power grid environment.
[0003] In addition, in related technologies, relevant instructions are usually sent to the broadband carrier module of the concentrator, and the broadband carrier module of the concentrator reads data from the single-phase broadband carrier module and three-phase broadband carrier module nodes below it, and it is impossible to specifically debug and optimize the broadband carrier network.
[0004] Generally speaking, related technologies cannot effectively monitor and maintain faults in the carrier communication process. Summary of the Invention
[0005] The main purpose of the present invention is to provide a multi-port debugging system, method, terminal device, and computer-readable storage medium, aiming to effectively monitor and maintain broadband carrier communication and improve the communication quality of broadband carrier communication.
[0006] To achieve the above object, the present invention provides a multi-port debugging system, and the multi-port debugging system includes:
[0007] A broadband carrier debugging host computer, which is used to send debugging instructions to the concentrator carrier module in the carrier communication network;
[0008] A broadband carrier debugging device, which is connected to the broadband carrier debugging host computer. The broadband carrier debugging device is used to obtain carrier communication network data based on the debugging instructions according to the concentrator carrier module, and perform data interaction with the broadband carrier debugging host computer, so as to optimize the carrier communication network through the broadband carrier debugging host computer based on the carrier communication network data.
[0009] Optionally, the working mode of the broadband carrier debugging host computer includes: a graphical interface debugging mode;
[0010] In the graphical interface debugging mode, the broadband carrier debugging host computer includes:
[0011] Broadband carrier debugging device connection module, which is used to connect the broadband carrier debugging host computer and the broadband carrier debugging device through the WIFI module or the RS232 module;
[0012] Broadband carrier network analysis module, which is used to display broadband carrier network information in graphical form.
[0013] Optionally, in the graphical interface debugging mode, the broadband carrier debugging host computer further includes:
[0014] Relay module, which is used to record the signal strength values of two adjacent broadband carrier network nodes;
[0015] Data communication module, which is used for data transceiver and data parsing;
[0016] Data acquisition and monitoring module, which is used to periodically acquire noise power line environment data and monitor data frames on devices with preset addresses.
[0017] Optionally, the working modes of the broadband carrier debugging host computer include: command line debugging mode. In the command line debugging mode, the broadband carrier debugging host computer is used to perform data transceiver through the command line debugging interface based on a preset communication protocol.
[0018] Optionally, the broadband carrier debugging device includes:
[0019] Main control module, which is connected to the broadband carrier debugging host computer through the WIFI module or the RS232 module and is connected to the concentrator carrier module through the broadband carrier communication module. The main control module is used to control the data interaction with the broadband carrier debugging host computer and the concentrator carrier module, and respectively parse the data sent by the broadband carrier debugging host computer and the concentrator carrier module. Among them, the broadband carrier communication module is used to transmit the interaction data between the main control module and the concentrator carrier module through the broadband carrier channel;
[0020] Storage module, which is connected to the main control module and is used to store the operating firmware and data of the main control module;
[0021] Display module, which is used to display the status of the broadband carrier debugging device in the form of indicator lights;
[0022] A DC-DC module, which is connected to the main control module. The DC-DC module is used to convert the voltage sent by the AC-DC module and supply power to the main control module, the storage module, the broadband carrier communication module, the RS232 module, and the WIFI module with the converted voltage. Among them, the AC-DC module is connected to the DC-DC module, and the AC-DC module is used to convert the commercial power and send the converted commercial power to the DC-DC module.
[0023] To achieve the above object, the present invention also provides a multi-port debugging method, which is applied to the multi-port debugging system. The multi-port debugging method includes:
[0024] Issuing a debugging instruction to the concentrator carrier module in the carrier communication network by the broadband carrier debugging host computer;
[0025] Based on the debugging instruction, obtaining carrier communication network data according to the concentrator carrier module, and performing data interaction between the broadband carrier debugging device and the broadband carrier debugging host computer, so as to optimize the carrier communication network through the broadband carrier debugging host computer based on the carrier communication network data.
[0026] Optionally, before issuing the debugging instruction to the concentrator carrier module in the carrier communication network by the broadband carrier debugging host computer, it further includes:
[0027] Connecting the broadband carrier debugging host computer and the broadband carrier debugging device through the WIFI module or the RS232 module, and connecting the broadband carrier debugging host computer and the concentrator carrier module in the carrier communication network based on the broadband carrier communication block in the broadband carrier debugging device.
[0028] After the step of performing data interaction between the broadband carrier debugging device and the broadband carrier debugging host computer to optimize the carrier communication network through the broadband carrier debugging host computer based on the carrier communication network data, it further includes:
[0029] Recording the signal strength values of two adjacent broadband carrier network nodes by the relay module of the broadband carrier debugging host computer, performing data transceiver and data parsing on the data sent by the broadband carrier debugging device through the data communication module of the broadband carrier debugging host computer, and periodically collecting noise power line environment data and listening to data frames on a device with a preset address through the data acquisition and monitoring module of the broadband carrier debugging host computer.
[0030] To achieve the above object, the present invention further provides a terminal device, which includes: a memory, a processor, and a multi-port debugging program stored on the memory and operable on the processor. When the multi-port debugging program is executed by the processor, the steps of the multi-port debugging method described above are implemented.
[0031] In addition, to achieve the above object, the present invention further provides a computer-readable storage medium, on which a multi-port debugging program is stored. When the multi-port debugging program is executed by a processor, the steps of the multi-port debugging method described above are implemented.
[0032] In addition, to achieve the above object, the present invention further provides a computer program product, which includes a computer program. When the computer program is executed by a processor, the steps of the multi-port debugging method described above are implemented.
[0033] The present invention provides a multi-port debugging system, method, terminal device, computer-readable storage medium, and computer program product. The multi-port debugging system includes: a broadband carrier debugging host computer, which is used to issue debugging instructions to a concentrator carrier module in a carrier communication network; a broadband carrier debugging device, which is connected to the broadband carrier debugging host computer. The broadband carrier debugging device is used to obtain carrier communication network data based on the debugging instructions according to the concentrator carrier module, and perform data interaction with the broadband carrier debugging host computer, so as to optimize the carrier communication network through the broadband carrier debugging host computer based on the carrier communication network data.
[0034] Compared with the low-quality broadband carrier communication in the prior art, in the present invention, based on the concentrator carrier module in the carrier communication network, through a multi-port broadband carrier communication debugging system including a broadband carrier debugging host computer and a broadband carrier debugging device, the electrical energy data of the carrier communication network is collected, stored, and transmitted, realizing convenient debugging and intelligent optimization of the on-site broadband carrier network, greatly improving the work efficiency of on-site staff, and shortening the debugging cycle of on-site projects. On this basis, the present invention has the characteristics of being simple and convenient, wide applicability, powerful functions, and high security. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] Figure 1 It is a schematic diagram of the functional modules of an embodiment of the multi-port debugging system of the present invention;
[0036] Figure 2 It is a schematic diagram of the broadband carrier debugging device module involved in an embodiment of the multi-port debugging system of the present invention;
[0037] Figure 3Schematic diagram of a process of an embodiment of the multi-port debugging method of the present invention;
[0038] Figure 4 Schematic diagram of the structure of the hardware operating environment involved in the solution of the embodiment of the present invention.
[0039] The implementation, functional features and advantages of the object of the present invention will be further described with reference to the embodiments and the accompanying drawings. Detailed implementation manners
[0040] It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0041] In this embodiment, a multi-port debugging system is proposed. The multi-port debugging system aims to improve the quality of HPLC (broadband power line carrier) carrier communication, improve the installation efficiency of on-site staff, solve the faults of on-site carrier communication, ensure the smoothness of carrier communication, and can also be used as a test tool for laboratory testing and production testing. This embodiment is based on the Hisilicon HI3911 solution and is currently applicable to three standard frequency bands within the State Grid, namely 0.7 - 3 MHz, 2.5 - 5.7 MHz, and 2 - 12 MHz. It is also applicable to the debugging of PLC_IOT Internet of Things devices. In this embodiment, solutions from other chip manufacturers can also be used to achieve similar functions.
[0042] As Figure 1 Shown is a schematic diagram of the functional modules of an embodiment of the multi-port debugging system of the present invention. In an embodiment of the multi-port debugging system of the present invention, the multi-port debugging system of the present invention includes:
[0043] A broadband carrier debugging host computer, which is used to send debugging instructions to the concentrator carrier module in the carrier communication network;
[0044] A broadband carrier debugging device, which is connected to the broadband carrier debugging host computer. The broadband carrier debugging device is used to obtain carrier communication network data based on the debugging instructions according to the concentrator carrier module, and perform data interaction with the broadband carrier debugging host computer, so as to optimize the carrier communication network through the broadband carrier debugging host computer based on the carrier communication network data.
[0045] It should be noted that, in this embodiment, the multi-port debugging system includes a broadband carrier debugging host computer and a broadband carrier debugging device. Among them, the broadband carrier debugging host computer can specifically be a computer, a server, etc. including broadband carrier debugging host computer software, enabling technicians to perform corresponding debugging and optimization on the broadband carrier network through the broadband carrier debugging host computer.
[0046] Specifically, for example, asFigure 1 As shown in Figure 1 , the upper computer for broadband carrier debugging triggers a debugging instruction through a corresponding software program, and sends the debugging instruction to the concentrator carrier module in the carrier communication network through the power line via the broadband carrier debugging device, so as to implement the debugging and optimization of the carrier network based on the concentrator carrier module. At the same time, the broadband carrier debugging device will, based on the debugging instruction, obtain relevant carrier communication network data according to the concentrator carrier module, and send the carrier communication network data to the upper computer for broadband carrier debugging. The upper computer for broadband carrier debugging will debug and optimize the carrier communication network according to the carrier communication network data. Among them, the upper computer for broadband carrier debugging and the broadband carrier debugging device perform data interaction in a serial port manner through the WIFI module or the RS232 module. For example, the WiFi network unit of the broadband carrier debugging device adopts the mode of a WiFi hotspot, and the name of the WiFi hotspot can be displayed by the MAC address of the broadband carrier debugging device. The upper computer for broadband carrier debugging, such as a portable computer, can be connected to the broadband carrier debugging device through WiFi, or the RS232 serial port unit of the broadband carrier debugging device is connected to the portable computer through an RS232 to USB serial cable, realizing the data interaction between the upper computer for broadband carrier debugging and the broadband carrier debugging device.
[0047] In a feasible embodiment, the upper computer for broadband carrier debugging includes:
[0048] A broadband carrier debugging device connection module, which is used to connect the upper computer for broadband carrier debugging and the broadband carrier debugging device through the WIFI module or the RS232 module;
[0049] A broadband carrier network analysis module, which is used to display broadband carrier network information in a graphical manner.
[0050] It should be noted that in this embodiment, the software of the upper computer for broadband carrier debugging has two working modes, namely: graphical interface debugging mode and command line debugging mode. Among them, the graphical interface debugging mode is the default in this embodiment, and the operator can change it according to actual usage requirements. Among them, in the graphical interface debugging mode, the upper computer for broadband carrier debugging may include: a broadband carrier debugging device connection module and a broadband carrier network display module.
[0051] Specifically, for example, the broadband carrier debugging device connection module connects the broadband carrier debugging host computer and the broadband carrier debugging device through the WIFI module or the RS232 module, realizes the data interaction between the broadband carrier debugging host computer and the broadband carrier debugging device, and transmits the data collected by the concentrator carrier module to the broadband carrier debugging host computer after conversion, enabling the operator to adjust and optimize the carrier communication network through the broadband carrier debugging host computer. In addition, the broadband carrier network analysis module can display the network topology status (phase relationship, etc.) in the form of a graph, including data such as (automatic) refreshing, topology locking, legend, folding and unfolding of parent nodes, arrangement, rotation, searching for stations, and multi-path. In this embodiment, in the graphical interface debugging mode, the debugging and optimization process is simple and convenient, and non-professionals can also debug and optimize the carrier communication network, greatly improving the work efficiency of on-site staff and shortening the debugging cycle of on-site projects.
[0052] Further, in a feasible embodiment, in the graphical interface debugging mode, the broadband carrier debugging host computer further includes:
[0053] A relay module, which is used to record the signal strength values of two adjacent broadband carrier network nodes;
[0054] A data communication module, which is used for data transceiver and data parsing;
[0055] A data acquisition and monitoring module, which is used for periodically acquiring noise power line environment data and monitoring data frames on devices with preset addresses.
[0056] In the graphical interface debugging mode of the broadband carrier debugging host computer software, the broadband carrier debugging host computer software further includes a data communication module, a data acquisition and monitoring module, and a relay module.
[0057] It should be noted that in this embodiment, due to the technical characteristics of the broadband carrier itself in the broadband carrier network, there will be some situations where certain carrier modules cannot communicate or the communication is unstable. Usually, the method of adding relay devices is adopted to make the communication of carrier communication modules with interrupted or unstable communication more stable. In this embodiment, by connecting the broadband carrier debugging device to the on-site broadband carrier network at different positions and setting the broadband carrier debugging device to the relay state, the best position of the relay device is determined by comparing the signal strengths of two adjacent broadband carrier network nodes, improving the stability of the carrier communication network.
[0058] In addition, the data communication module can be used for data transmission and reception and data parsing, while the data acquisition and monitoring module can be used for periodically acquiring noise power line environment data and monitoring data frames on devices with preset addresses, and displaying them on the broadband carrier debugging host computer for operators to monitor the carrier communication network status at any time and perform timely maintenance.
[0059] Furthermore, in a feasible embodiment, the working modes of the broadband carrier debugging host computer include: a command line debugging mode. In the command line debugging mode, the broadband carrier debugging host computer is used to perform data transmission and reception through a command line debugging interface based on a preset communication protocol.
[0060] When the broadband carrier debugging host computer software is in the command line debugging mode, that is, the meter reading controller mode, the basic process is as follows: (1) Connect to the broadband carrier debugging device through the WIFI module or the RS232 module; (2) Select the command line debugging mode; (3) Send and receive relevant format data through the command line debugging interface. At this time, the data transmission and reception adopt the transparent transmission mode.
[0061] It should be noted that in the command line debugging mode, communication is completed by sending and receiving data frames. This working mode will not affect the existing network, but only communicates with a single carrier network module. This working mode has relatively high operation requirements for the broadband carrier debugging device, requiring familiarity with the corresponding specifications and protocols, and relatively high professional requirements.
[0062] Furthermore, in a feasible embodiment, the broadband carrier debugging device includes:
[0063] A main control module, which is connected to the broadband carrier debugging device through the WIFI module or the RS232 module, and is connected to the concentrator carrier module through a broadband carrier communication module. The main control module is used to control the data interaction with the broadband carrier debugging host computer and the concentrator carrier module respectively, and parse the data sent by the broadband carrier debugging host computer and the concentrator carrier module. Among them, the broadband carrier communication module is used to transmit the interaction data between the main control module and the concentrator carrier module through a broadband carrier channel;
[0064] A storage module, which is connected to the main control module. The storage module is used to store the operating firmware and data of the main control module.
[0065] A display module, which is used to display the status of the broadband carrier debugging device in the form of indicator lights;
[0066] DC-DC module, the DC-DC module is connected to the main control module, and the DC-DC module is used to convert the voltage sent by the AC-DC module and supply power to the main control module, the storage module, the broadband carrier communication module, the RS232 module and the WIFI module with the converted voltage. Among them, the AC-DC module is connected to the DC-DC module, and the AC-DC module is used to convert the commercial power and send the converted commercial power to the DC-DC module.
[0067] In this embodiment, as Figure 2 shown, the broadband carrier debugging device may include: a main control module, a WIFI module, an RS232 module, a broadband carrier communication module, a storage module, a display module, a DC-DC module and an AC-DC module. Among them, the main control module is connected to the broadband carrier communication module in a serial port manner, and the main control module is also connected to the WIFI module and the RS232 module in a serial port manner.
[0068] Specifically, for example, the main control module is used to control the data interaction with the broadband carrier debugging host computer and the concentrator carrier module, and parse the data sent by the broadband carrier debugging host computer and the concentrator carrier module. Among them, the broadband carrier communication module is used to transmit the interaction data between the main control module and the concentrator carrier module through the broadband carrier channel; while the storage module is used to store the operating firmware and data of the main control module; the display module is used to display the state of the broadband carrier debugging device in the form of indicator lights, and the display method is not specifically limited in this embodiment; the AC-DC module can be used to convert 220V commercial power into 12V, and the DC-DC module can convert the 12V voltage into 3.3V voltage and supply power to the main control module, the storage module, the broadband carrier communication module, the RS232 module and the WIFI module with the 3.3V voltage.
[0069] In this embodiment, the multi-port debugging system includes a broadband carrier debugging host computer and a broadband carrier debugging device. The broadband carrier debugging host computer triggers a debugging instruction through a corresponding software program, and sends the debugging instruction to the concentrator carrier module in the carrier communication network through the power line via the broadband carrier debugging device, so as to implement the debugging and optimization of the carrier network based on the concentrator carrier module. Meanwhile, the broadband carrier debugging device will, based on the debugging instruction, obtain relevant carrier communication network data according to the concentrator carrier module, and send the carrier communication network data to the broadband carrier debugging host computer, and the broadband carrier debugging host computer will debug and optimize the carrier communication network according to the carrier communication network data. Among them, the broadband carrier debugging host computer and the broadband carrier debugging device perform data interaction in a serial port manner through a WIFI module or an RS232 module. The broadband carrier debugging host computer software has two working modes, namely: a graphical interface debugging mode and a command line debugging mode. Among them, in the graphical interface debugging mode, the broadband carrier debugging host computer may include: a broadband carrier debugging device connection module, a broadband carrier network display module, a relay module, a data communication module, and a data acquisition and monitoring module. The broadband carrier debugging device includes: a main control module, a WIFI module, an RS232 module, a broadband carrier communication module, a storage module, a display module, a DC-DC module, and an AC-DC module. Among them, the main control module is connected to the broadband carrier communication module in a serial port manner, and the main control module is also connected to the WIFI module and the RS232 module in a serial port manner.
[0070] Compared with the low-quality broadband carrier communication in the prior art, in the present invention, based on the concentrator carrier module in the carrier communication network, through a multi-port broadband carrier communication debugging system including a broadband carrier debugging host computer and a broadband carrier debugging device, the electrical energy data of the carrier communication network is collected, stored, and transmitted, so as to realize the portable debugging and intelligent optimization of the on-site broadband carrier network, greatly improving the work efficiency of on-site workers and shortening the debugging cycle of on-site projects. On this basis, the present invention has the characteristics of being simple and convenient, wide applicability, powerful functions, and high security.
[0071] Further, based on the above embodiments of the multi-port debugging system, embodiments of the multi-port debugging method of the present invention are proposed. The multi-port debugging method of the present invention is applied to the multi-port debugging system as described above.
[0072] Please refer to Figure 3 , Figure 3 which is a schematic flowchart of the first embodiment of the multi-port debugging method of the present invention.
[0073] In this embodiment, an embodiment of a multi-port debugging method is provided. It should be noted that although the logical order is shown in the flowchart, in some cases, the steps shown or described may be executed in a different order than here.
[0074] Step S10, the broadband carrier debugging host computer issues a debugging instruction to the concentrator carrier module in the carrier communication network through the broadband carrier debugging device;
[0075] Step S20, based on the debugging instruction, obtain carrier communication network data according to the concentrator carrier module, and perform data interaction between the broadband carrier debugging device and the broadband carrier debugging host computer, so as to optimize the carrier communication network through the broadband carrier debugging host computer based on the carrier communication network data.
[0076] The broadband carrier debugging host computer triggers a debugging instruction through the broadband carrier debugging host computer software program, and sends the debugging instruction to the concentrator carrier module in the carrier communication network in a power line manner through the broadband carrier debugging device, so as to collect and transmit data in the broadband carrier communication network based on the concentrator carrier module, and realize the debugging and optimization of the current broadband carrier network. At the same time, the broadband carrier debugging device will obtain relevant carrier communication network data according to the concentrator carrier module based on the debugging instruction, and send the carrier communication network data to the broadband carrier debugging host computer after parsing and conversion. The broadband carrier debugging host computer will debug and optimize the carrier communication network according to the carrier communication network data, so that the operator can adjust and optimize the current broadband carrier communication network through the broadband carrier debugging host computer to ensure smooth network communication.
[0077] Further, before the above step S10, "the broadband carrier debugging host computer issues a debugging instruction to the concentrator carrier module in the carrier communication network", it further includes:
[0078] Step S30, connect the broadband carrier debugging host computer and the broadband carrier debugging device through a WIFI module or an RS232 module, and connect the broadband carrier debugging host computer and the concentrator carrier module in the carrier communication network based on the broadband carrier communication module in the broadband carrier debugging device.
[0079] Before the operator debugs and optimizes the broadband carrier communication network, it is necessary to connect the RS232 serial port unit of the broadband carrier debugging device to the broadband carrier debugging host computer, that is, a portable computer, with an RS232 to USB serial cable, or the broadband carrier debugging host computer directly connects to the hotspot of the broadband carrier debugging device. Among them, the WiFi network unit of the broadband carrier debugging device adopts the WiFi hotspot mode, and the name of the WiFi hotspot is displayed with the MAC address of the broadband carrier debugging device.
[0080] Further, after the step S20, "performing data interaction between the broadband carrier debugging device and the broadband carrier debugging host computer, and optimizing the carrier communication network by the broadband carrier debugging host computer based on the carrier communication network data", the method further includes:
[0081] Step S40, recording the signal strength values of two adjacent broadband carrier network nodes through the relay module of the broadband carrier debugging host computer, performing data transceiver and data parsing on the data sent by the broadband carrier debugging device through the data communication module of the broadband carrier debugging host computer, and periodically collecting the noise power line environment data and monitoring the data frames on the devices with preset addresses through the data acquisition and monitoring module of the broadband carrier debugging host computer.
[0082] It should be noted that in this embodiment, in order to avoid the situation that some carrier modules have communication interruptions or unstable communications due to the technical characteristics of the broadband carriers in the broadband carrier network, a method of adding relay devices is usually adopted to make the carrier communication modules with poor or unstable communications more stable. In this embodiment, the broadband carrier debugging device can be connected to the on-site broadband carrier network at different positions, and the broadband carrier debugging device is set to the relay state. Then, the optimal position of the relay device is determined by comparing the signal strengths with two adjacent broadband carrier network nodes, which improves the stability of the carrier communication network.
[0083] In addition, the data transceiver and data parsing are performed on the data sent by the broadband carrier debugging device through the data communication module, the noise power line environment data is periodically collected and the data frames on the devices with preset addresses are monitored through the data acquisition and monitoring module, and they are displayed on the broadband carrier debugging host computer for the operator to monitor the carrier communication network status at any time and perform timely maintenance.
[0084] In this embodiment, based on the concentrator carrier module in the carrier communication network, through a multi-port broadband carrier communication debugging system including a broadband carrier debugging host computer and a broadband carrier debugging device, the electrical energy data of the carrier communication network is collected, stored and transmitted, realizing the portable debugging and intelligent optimization of the on-site broadband carrier network, greatly improving the work efficiency of on-site staff and shortening the debugging cycle of on-site projects. On this basis, the present invention has the characteristics of being simple and convenient, having wide applicability, powerful functions and high security.
[0085] Further, as Figure 4 shown, Figure 4 is a schematic diagram of the device structure of the hardware operating environment involved in the embodiment solution of the present invention.
[0086] It should be noted that the terminal device in the embodiments of the present invention can be a terminal device for improving the communication quality of broadband carrier communication, and the terminal device can specifically be a smart phone, a personal computer, a server, etc.
[0087] As Figure 4 shown, the device may include: a processor 1001, such as a CPU, a network interface 1004, a user interface 1003, a memory 1005, and a communication bus 1002. Among them, the communication bus 1002 is used to realize the connection and communication between these components. The user interface 1003 may include a display screen (Display) and an input unit such as a keyboard (Keyboard). Optionally, the user interface 1003 may further include a standard wired interface and a wireless interface. The network interface 1004 may optionally include a standard wired interface and a wireless interface (such as a WI-FI interface). The memory 1005 may be a high-speed RAM memory or a stable memory (non-volatile memory), such as a disk memory. Optionally, the memory 1005 may also be a storage device independent of the foregoing processor 1001.
[0088] Those skilled in the art can understand that Figure 4 the device structure shown in
[0089] does not constitute a limitation on the device, and the device may include more or fewer components than shown in the figure, or combine some components, or have different component arrangements. Figure 4 As Figure 1 shown, the memory 1005, as a computer storage medium, may include an operating system, a network communication module, a user interface module, and a multi-port debugging program. The operating system is a program for managing and controlling the hardware and software resources of the device, and supports the operation of the multi-port debugging program and other software or programs. In the
[0090] device shown, the user interface 1003 is mainly used for data communication with the client; the network interface 1004 is mainly used for establishing a communication connection with the server; and the processor 1001 may be used to call the multi-port debugging program stored in the memory 1005 and perform the following operations:
[0091] Sending a debugging instruction to the concentrator carrier module in the carrier communication network through a broadband carrier debugging host computer;
[0092] Further, before the upper computer for broadband carrier debugging issues a debugging instruction to the concentrator carrier module in the carrier communication network, the following steps are also included:
[0093] Connect the upper computer for broadband carrier debugging to the broadband carrier debugging device through a WIFI module or an RS232 module, and connect the upper computer for broadband carrier debugging to the concentrator carrier module in the carrier communication network based on the broadband carrier communication block in the broadband carrier debugging device.
[0094] Further, after the step of performing data interaction between the broadband carrier debugging device and the upper computer for broadband carrier debugging to optimize the carrier communication network through the upper computer for broadband carrier debugging based on the carrier communication network data, the following steps are also included:
[0095] Record the signal strength values of two adjacent broadband carrier network nodes through the relay module of the upper computer for broadband carrier debugging, perform data transceiver and data parsing on the data sent by the broadband carrier debugging device through the data communication module of the upper computer for broadband carrier debugging, and periodically collect noise power line environment data and monitor data frames on a device at a preset address through the data acquisition and monitoring module of the upper computer for broadband carrier debugging.
[0096] In addition, an embodiment of the present invention also provides a computer-readable storage medium, on which a multi-port debugging program is stored. When the multi-port debugging program is executed by a processor, the steps of the multi-port debugging method described above are implemented.
[0097] For each embodiment of the computer-readable storage medium of the present invention, reference can be made to each embodiment of the multi-port debugging method of the present invention, and details are not described herein again.
[0098] In addition, an embodiment of the present invention also provides a computer program product, which includes a computer program. When the computer program is executed by a processor, the steps of the multi-port debugging method described in any one of the above multi-port debugging method embodiments are implemented.
[0099] The specific embodiments of the computer program product of the present invention are basically the same as those of the above multi-port debugging method embodiments, and details are not described herein.
[0100] It should be noted that, in this document, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, such that a process, method, article or system comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or system. Without further limitation, an element defined by the statement "comprising one..." does not exclude the presence of additional identical elements in the process, method, article or system comprising such element.
[0101] The serial numbers of the above embodiments of the present invention are only for description and do not represent the superiority or inferiority of the embodiments.
[0102] Through the description of the above embodiments, those skilled in the art can clearly understand that the methods of the above embodiments can be implemented by means of software plus a necessary general hardware platform. Of course, it can also be implemented by hardware, but in many cases the former is a better implementation. Based on such an understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art can be embodied in the form of a software product. The computer software product is stored in a storage medium (such as ROM / RAM, magnetic disk, optical disc) and includes several instructions for causing a terminal device (which may be a mobile phone, computer, server, or network device, etc.) to execute the methods described in the various embodiments of the present invention.
[0103] The above are only the preferred embodiments of the present invention, and do not limit the patent scope of the present invention accordingly. Any equivalent structure or equivalent process transformation made by using the specification and drawings of the present invention, or directly or indirectly applied in other related technical fields, shall be equally included in the patent protection scope of the present invention.
Claims
1. A multi-port debugging system, characterized in that, The multi-port debugging system includes: A broadband carrier debugging host computer, which is used to issue debugging instructions to the concentrator carrier module in the carrier communication network; A broadband carrier debugging device, which is connected to the broadband carrier debugging host computer. The broadband carrier debugging device is used to obtain carrier communication network data based on the debugging instructions according to the concentrator carrier module, and perform data interaction with the broadband carrier debugging host computer, so as to optimize the carrier communication network through the broadband carrier debugging host computer based on the carrier communication network data; The working modes of the broadband carrier debugging host computer include: a graphical interface debugging mode; In the graphical interface debugging mode, the broadband carrier debugging host computer includes: A broadband carrier debugging device connection module, which is used to connect the broadband carrier debugging host computer and the broadband carrier debugging device through a WIFI module. The WiFi network unit of the broadband carrier debugging device adopts the mode of a WiFi hotspot, and the name of the WiFi hotspot is displayed by the MAC address of the broadband carrier debugging device; A broadband carrier network analysis module, which is used to display the broadband carrier network information sent by the broadband carrier debugging device in a graphical manner. The graphical display content includes refresh, topology locking, legend, parent node folding and unfolding, arrangement, rotation, site search, and multi-path data; In the graphical interface debugging mode, the broadband carrier debugging host computer further includes: A relay module, which is used to record the signal strength values of two adjacent broadband carrier network nodes; A data communication module, which is used to perform data transceiver and data parsing on the data sent by the broadband carrier debugging device; A data acquisition and monitoring module, which is used to periodically acquire noise power line environment data and monitor data frames on a device with a preset address; Among them, the broadband carrier debugging device is connected to the on-site broadband carrier network at different positions, and the broadband carrier debugging device is set to the relay state. The best position of the relay module is determined by comparing the signal strengths of two adjacent broadband carrier network nodes.
2. The multi-port debugging system according to claim 1, wherein The working modes of the broadband carrier debugging host computer include: a command-line debugging mode. In the command-line debugging mode, the broadband carrier debugging host computer is used to perform data transceiver through the command-line debugging interface of the broadband carrier debugging host computer based on a preset communication protocol.
3. The multi-port debugging system according to claim 1, wherein The broadband carrier debugging device includes: The main control module, which is connected to the broadband carrier debugging host computer through the WIFI module and to the concentrator carrier module through the broadband carrier communication module. The main control module is used to control the data interaction processes with the broadband carrier debugging host computer and the concentrator carrier module respectively, and parse the data sent by the broadband carrier debugging host computer and the concentrator carrier module. Among them, the broadband carrier communication module is used to transmit the interaction data between the main control module and the concentrator carrier module through the broadband carrier channel; The storage module, which is connected to the main control module and is used to store the operating firmware and operating data of the main control module; The display module, which is used to display the status of the broadband carrier debugging device in the form of indicator lights; The DC-DC module, which is connected to the main control module and is used to convert the voltage sent by the AC-DC module and supply power to the main control module, the storage module, the broadband carrier communication module and the WIFI module with the converted voltage. Among them, the AC-DC module is connected to the DC-DC module and is used to convert the commercial power and send the converted commercial power to the DC-DC module.
4. A multi-port debugging method, characterized in that, The multi-port debugging method is applied to a multi-port debugging system, and the multi-port debugging method includes: Issuing a debugging instruction to the concentrator carrier module in the carrier communication network through the broadband carrier debugging host computer; Based on the debugging instruction, obtaining carrier communication network data according to the concentrator carrier module, and performing data interaction between the broadband carrier debugging device and the broadband carrier debugging host computer, so as to optimize the carrier communication network through the broadband carrier debugging host computer based on the carrier communication network data; The working modes of the broadband carrier debugging host computer include: the graphical interface debugging mode; In the graphical interface debugging mode, the broadband carrier debugging host computer includes: The broadband carrier debugging device connection module, which is used to connect the broadband carrier debugging host computer and the broadband carrier debugging device through the WIFI module. The WiFi network unit of the broadband carrier debugging device adopts the WiFi hotspot mode, and the name of the WiFi hotspot is displayed with the MAC address of the broadband carrier debugging device; The broadband carrier network analysis module, which is used to display the broadband carrier network information sent by the broadband carrier debugging device in a graphical way. The graphical display content includes refresh, topology locking, legend, parent node folding and unfolding, arrangement, rotation, site search and multi-path data; In the graphical interface debugging mode, the broadband carrier debugging host computer further includes: The relay module, which is used to record the signal strength values of two adjacent broadband carrier network nodes; A data communication module, which is used to perform data transceiver and data parsing on the data sent by the broadband carrier debugging device; A data acquisition and monitoring module, which is used to periodically acquire noise power line environment data and monitor data frames on devices at preset addresses; Among them, the broadband carrier debugging device is connected to the on-site broadband carrier network at different positions, and the broadband carrier debugging device is set to the relay state, and the optimal position of the relay module is determined by comparing the signal strengths with two adjacent broadband carrier network nodes.
5. The multi-port debugging method according to claim 4, wherein Before the broadband carrier debugging host computer issues a debugging instruction to the concentrator carrier module in the carrier communication network, it further includes: Connect the broadband carrier debugging host computer to the broadband carrier debugging device through the WIFI module, and connect the broadband carrier debugging host computer to the concentrator carrier module in the carrier communication network based on the broadband carrier communication block in the broadband carrier debugging device.
6. The multi-port debugging method according to claim 4 or 5, characterized in that After the step of performing data interaction between the broadband carrier debugging device and the broadband carrier debugging host computer to optimize the carrier communication network based on the carrier communication network data through the broadband carrier debugging host computer, it further includes: Recording the signal strength values of two adjacent broadband carrier network nodes through the relay module of the broadband carrier debugging host computer, performing data transceiver and data parsing on the data sent by the broadband carrier debugging device through the data communication module of the broadband carrier debugging host computer, and periodically acquiring noise power line environment data and monitoring data frames on devices at preset addresses through the data acquisition and monitoring module of the broadband carrier debugging host computer.
7. A terminal device, characterized in that, The terminal device includes a memory, a processor, and a multi-port debugging program stored on the memory and executable on the processor. When the multi-port debugging program is executed by the processor, the steps of the multi-port debugging method according to any one of claims 4 to 6 are implemented.
8. A computer-readable storage medium, characterized in that, A multi-port debugging program is stored on the computer-readable storage medium. When the multi-port debugging program is executed by the processor, the steps of the multi-port debugging method according to any one of claims 4 to 6 are implemented.
Citation Information
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