Intelligent computing control system
Through the intelligent operation and control system, USB signal extension modules and fiber optic switch modules are used to optimize the data transmission path, solving the problem of low USB signal transmission speed in the cloud desktop solution, and realizing long-distance, high-speed, and large-flow data transmission, which is suitable for real-time monitoring and data collection in the industrial field.
Patent Information
- Application Number
- CN202422180903.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-09-05
AI Technical Summary
Existing cloud desktop solutions have problems with low data transmission speed and insufficient transmission bandwidth in USB signal transmission, which makes it difficult to meet the high-speed and large-flow data transmission needs in the industrial field.
It adopts an intelligent computing control system, including a computing hub module, a near-end data conversion module and a terminal computing module. It realizes long-distance, high-speed and large-flow data transmission through a USB signal extension module and a fiber optic switch module, optimizes the data transmission path and reduces signal attenuation and delay.
It realizes long-distance, high-speed, and high-flow bidirectional data transmission between the computing center module and the terminal module, improves data transmission efficiency and stability, and is suitable for real-time monitoring and data acquisition applications in the industrial field.
Smart Images

Figure CN223377730U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of computers, in particular to an intelligent computing control system. Background Art
[0002] With the development of cloud computing technology, cloud desktops (virtual desktops) have emerged. A cloud desktop solution is a virtualization solution based on cloud computing technology. It moves the operating system and applications of a personal computer from the local device to the cloud, allowing users to access and control the remote computer desktop via the Internet.
[0003] Current cloud desktop solutions primarily rely on USB redirection technology integrated with the SPICE protocol for USB signal transmission. This technology allows the host computer to identify the remote USB device, enabling data transfer between the computer and the remote USB device. However, this method suffers from low data transfer speeds and insufficient bandwidth, making it suitable only for general office use cases and difficult to meet the demands of industrial applications requiring high-speed, high-throughput data transfer via USB ports. Utility Model Content
[0004] The purpose of the utility model is to provide an intelligent computing control system that can realize long-distance, high-speed, and large-volume data transmission.
[0005] To achieve the above-mentioned purpose, the solution of the present invention is: an intelligent operation and control system, characterized in that: it includes an operation center module, a proximal data conversion module and a terminal operation module; the operation center module is provided with several first USB interfaces, the proximal data conversion module is provided with several second USB interfaces, several first USB signal extension modules and a first switch module, the first USB interface and the second USB interface are connected in cooperation, and the second USB interface is connected to the first switch module through the first USB signal extension module; the terminal operation module is provided with a switch interface, a second USB signal extension module and a third USB interface, the switch interface is respectively connected to the first switch module and the second USB signal extension module, and the third USB interface is connected to the second USB signal extension module for connecting peripherals; the operation center module transmits control information to the proximal data conversion module through the first USB interface and the second USB interface, the proximal data conversion module remotely transmits the control information to the switch interface of the terminal operation module through the first USB signal extension module in cooperation with the first switch module, and the terminal operation module transmits the control information to the peripherals connected to the terminal operation module through the second USB signal extension module in cooperation with the third USB interface, thereby realizing two-way data transmission between the operation center module and the peripherals on the terminal module.
[0006] In a preferred solution, both the first USB signal extension module and the second USB signal extension module adopt a USB 2.0 extender control chip.
[0007] Preferably, the first switch module adopts a fiber optic switch.
[0008] Preferably, the switch interface is a fiber optic interface.
[0009] In a preferred solution, the third USB interface adopts a USB extender module, and the USB extender module is provided with multiple USB interfaces.
[0010] In a preferred embodiment, the operation center module is also provided with a first network interface, and the proximal data conversion module is also provided with a second switch module, a data exchange module and several second network interfaces; the first network interface is connected to the second switch module, the second switch module is connected to the data exchange module, and several second network interfaces are connected to the data exchange module.
[0011] In a preferred solution, there are multiple terminal operation modules, each of which is provided with a third network interface, which is cooperatively connected with the second network interface.
[0012] Preferably, the third network interface adopts an RJ45 interface module, and the RJ45 interface module is provided with multiple RJ45 interfaces.
[0013] Preferably, the first network interface and the second network interface are both RJ45 interfaces.
[0014] Preferably, the second switch module adopts an RJ45 network switch.
[0015] After adopting the above scheme, the beneficial effect of the present invention is that the first USB signal extension module of the proximal data conversion module of the present invention cooperates with the first switch module to remotely transmit the control information of the computing center module to the peripherals on the terminal computing module, thereby realizing long-distance, high-speed, and large-flow bidirectional data transmission between the computing center module and the peripherals on the terminal module. It has a simple structure and is easy to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a system block diagram of the utility model;
[0017] Figure 2 It is a system block diagram of a specific embodiment of the utility model.
[0018] Description of labels:
[0019] 1. Operation center module; 11. First USB interface; 12. First network interface; 2. Proximal data conversion module; 21. Second USB interface; 22. First USB signal extension module; 23. First switch module; 24. Second switch module; 25. Data exchange module; 26. Second network interface; 3. Terminal operation module; 31. Switch interface; 32. Second USB signal extension module; 33. Third USB interface; 34. Third network interface; 4. USB2.0 extender control chip; 5. Fiber optic switch; 6. Fiber optic interface; 7. USB extender module; 8. RJ45 network switch; 9. RJ45 interface; 10. RJ45 interface module. DETAILED DESCRIPTION
[0020] The present invention will now be further described with reference to the accompanying drawings and specific implementation methods.
[0021] The utility model provides an intelligent computing control system, such as Figure 1 As shown, it includes a computing hub module 1, a proximal data conversion module 2 and a terminal computing module 3; the computing hub module 1 is provided with a plurality of first USB interfaces 11, the proximal data conversion module 2 is provided with a plurality of second USB interfaces 21, a plurality of first USB signal extension modules 22 and a first switch module 23, the first USB interface 11 and the second USB interface 21 are connected in coordination, and the second USB interface 21 is connected to the first switch module 23 through the first USB signal extension module 22; the terminal computing module 3 is provided with a switch interface 31, a second USB signal extension module 32 and a third USB interface 33, the switch interface 31 is respectively connected to the first switch module 23 and the second USB signal extension module The long module 32 is connected, and the third USB interface 33 is connected to the second USB signal extension module 32 for connecting peripherals; the operation center module 1 transmits the control information to the proximal data conversion module 2 through the first USB interface 11 and the second USB interface 21, and the proximal data conversion module 2 transmits the control information remotely to the switch interface 31 of the terminal operation module 3 through the first USB signal extension module 22 in cooperation with the first switch module 23, and the terminal operation module 3 transmits the control information to the peripherals connected to the terminal operation module 3 through the second USB signal extension module 32 in cooperation with the third USB interface 33, thereby realizing two-way data transmission between the operation center module 1 and the peripherals on the terminal module.
[0022] The first USB signal extension module 22 of the near-end data conversion module 2, in conjunction with the first switch module 23, enables long-distance data transmission between the computing hub module 1 and the terminal conversion module. Furthermore, the first USB signal extension module 22 and the first switch module 23 optimize the data transmission path, reduce signal attenuation and delay, improve data transmission efficiency and stability, and achieve high-speed, high-volume data transmission.
[0023] The bidirectional data transmission between the computing center module 1 of the utility model and the peripherals on the terminal module can not only realize the sending of control information, but also realize the real-time uploading of peripheral data, which is crucial for application scenarios such as real-time monitoring, data collection and analysis in the industrial field.
[0024] Specifically, if Figure 2 As shown, the first USB signal extension module 22 and the second USB signal extension module 32 of this embodiment both utilize a USB 2.0 extender control chip 4. The USB 2.0 extender control chip 4 is capable of converting USB signals into optical fiber signals or optimized electrical signals, thereby reducing signal attenuation and interference during transmission. Furthermore, the USB 2.0 standard extends transmission distance while maintaining a high transmission speed, enabling the signal from the computing hub module 1 to maintain high stability during long-distance transmission. Because the first switch module 23 of this embodiment utilizes an optical fiber switch 5, the USB 2.0 extender control chip 4 is capable of converting USB signals into optical fiber signals.
[0025] The USB 2.0 extender control chip 4 of this embodiment has the function of automatically identifying and configuring USB host mode and USB device mode. In the near-end data transfer module, the second USB interface 21 automatically identifies as USB host mode, and in the terminal operation module 3, the third USB interface 33 automatically identifies as USB device mode, which is convenient to use.
[0026] like Figure 2 As shown, the first switch module 23 of this embodiment uses a fiber optic switch 5. Fiber optic switch 5 is based on fiber optic technology and can provide high data transmission rates and low latency. It is not affected by electromagnetic interference and has good stability. In addition, fiber optic switch 5 can transmit data over longer distances, enabling long-distance, high-speed, and high-volume data transmission between the computing hub module 1 and the terminal conversion module.
[0027] like Figure 2 As shown, since the first switch module 23 of the proximal data conversion module 2 adopts a fiber optic switch 5, the switch interface 31 of this embodiment is a fiber optic interface 6. In other embodiments, the type of the switch interface 31 of the terminal operation module 3 can also be adjusted according to the type of the first switch.
[0028] like Figure 2 As shown, the third USB interface 33 of this embodiment adopts a USB extender module 7. The USB extender module 7 is provided with multiple USB interfaces, thereby increasing the number of connectable USB peripherals, such as USB printers, scanners, cameras, USB flash drives, keyboards, mice, instruments, industrial controllers, sensors, etc., and being flexible in use.
[0029] like Figure 2 As shown, the computing center module 1 of the present invention is also provided with a first network interface 12, and the proximal data conversion module 2 is also provided with a second switch module 24, a data exchange module 25 and several second network interfaces 26; the first network interface 12 is connected to the second switch module 24, the second switch module 24 is connected to the data exchange module 25, and several second network interfaces 26 are connected to the data exchange module 25.
[0030] The utility model sets a first network interface 12 in conjunction with a second network interface 26 for remotely transmitting cloud desktop data, which does not occupy the data transmission of the USB interface and can further improve the efficiency of data transmission between the computing center module 1 and the terminal conversion module through USB signals.
[0031] Furthermore, the terminal operation module 3 is provided with a plurality of them, each of which is provided with a third network interface 34, which is connected to the second network interface 26. Other peripherals that do not require high transmission speeds, such as a display, can be connected through the third network interface 34, thereby separating the connection of peripherals that require long-distance, high-speed, and high-volume data transmission from those that only require general transmission efficiency, thereby meeting different usage requirements.
[0032] Specifically, if Figure 2 As shown, the third network interface 34 of this embodiment adopts an RJ45 interface module 10, and the RJ45 interface module 10 is provided with multiple RJ45 interfaces 9. The RJ45 interface 9 is highly standardized and universal. Multiple RJ45 interfaces 9 can connect to multiple peripherals or support multiple network applications at the same time, thereby improving the flexibility and scalability of the system.
[0033] like Figure 2 As shown, the first network interface 12 and the second network interface 26 of this embodiment are both RJ45 interfaces 9, which are convenient for maintenance and deployment. In other embodiments, other types of network interfaces may be used according to actual needs.
[0034] like Figure 2 As shown, the second switch module 24 of this embodiment adopts an RJ45 network switch 8, which meets the general daily office scenarios that do not require a high transmission speed while also having a low cost.
[0035] The use process of this utility model is as follows:
[0036] For peripherals that do not require large-scale data transmission, such as office peripherals and displays, a communication connection is established through the third network interface 34 of the terminal operation module 3 and the second network interface 26 of the proximal data conversion module 2, and the second switch module 24 cooperates with the first network interface 12 to achieve long-distance two-way data transmission with the operation center module 1.
[0037] For peripherals that require high-speed, long-distance, and high-volume data transmission, such as peripherals in the industrial field, the USB signal is extended through the third USB interface 33 of the terminal operation module 3 in conjunction with the second USB signal extension module 32, and the first switch module 23 is used in conjunction with the first USB signal extension module 22 to achieve long-distance, high-speed, and high-volume bidirectional data transmission with the budget hub module.
[0038] The above description is only a preferred embodiment of the present invention and is not intended to limit the design of this case. Any equivalent changes made based on the key design of this case shall fall within the scope of protection of this case.
Claims
1. An intelligent computing control system, characterized in that: It includes a computing hub module, a proximal data conversion module and a terminal computing module; The computing hub module is provided with a plurality of first USB interfaces, the proximal data conversion module is provided with a plurality of second USB interfaces, a plurality of first USB signal extension modules and a first switch module, the first USB interfaces and the second USB interfaces are cooperatively connected, and the second USB interfaces are connected to the first switch module via the first USB signal extension modules; The terminal operation module is provided with a switch interface, a second USB signal extension module and a third USB interface. The switch interface is connected to the first switch module and the second USB signal extension module respectively, and the third USB interface is connected to the second USB signal extension module for connecting peripherals. The operation center module transmits the control information to the proximal data conversion module through the first USB interface and the second USB interface. The proximal data conversion module transmits the control information remotely to the switch interface of the terminal operation module through the first USB signal extension module and the first switch module. The terminal operation module transmits the control information to the peripherals connected to the terminal operation module through the second USB signal extension module and the third USB interface, thereby realizing two-way data transmission between the operation center module and the peripherals on the terminal module.
2. The intelligent computing control system according to claim 1, characterized in that: The first USB signal extension module and the second USB signal extension module both use a USB 2.0 extender control chip.
3. The intelligent computing control system according to claim 1, wherein: The first switch module adopts a fiber optic switch.
4. The intelligent computing control system according to claim 3, wherein: The switch interface is a fiber optic interface.
5. The intelligent computing control system according to claim 1, characterized in that: The third USB interface adopts a USB extender module, and the USB extender module is provided with multiple USB interfaces.
6. The intelligent computing control system according to claim 1, wherein: The computing center module is also provided with a first network interface, and the proximal data conversion module is also provided with a second switch module, a data exchange module and several second network interfaces; the first network interface is connected to the second switch module, the second switch module is connected to the data exchange module, and several second network interfaces are connected to the data exchange module.
7. The intelligent computing control system according to claim 6, characterized in that: There are multiple terminal operation modules, and a third network interface is provided on the terminal operation module, and the third network interface is cooperatively connected with the second network interface.
8. The intelligent computing control system according to claim 7, characterized in that: The third network interface adopts an RJ45 interface module, and the RJ45 interface module is provided with multiple RJ45 interfaces.
9. The intelligent computing control system according to claim 6, characterized in that: The first network interface and the second network interface are both RJ45 interfaces.
10. The intelligent computing control system according to claim 6, characterized in that: The second switch module adopts an RJ45 network switch.