FPGA cloud laboratory platform and implementation method

A laboratory and experimental technology, applied in the field of teaching experiment system based on cloud computing, can solve the problems of delaying students to do experiments, unable to conduct normal experiments, unable to manage systems, etc., to achieve convenient and quick statistical query and search, occupy less resources, and reduce costs Effect

Pending Publication Date: 2020-07-24
重庆海云捷迅科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] After the experiment, the return of the development board requires an inventory, which is time-consuming and laborious;
[0009] The SoC system of the development board has problems during use, which leads to the failure of normal experiments. If it is not known in advance, it will delay the students' normal experiments, and it is impossible to locate in time when and who is using it;
[0010] The instruction manuals for students to do experiments are produced and managed by teachers themselves, and need to be distributed to students offline, which cannot be managed systematically;
[0011] The experimental reports of the students' experiments are all offline paper or electronic versions, which cannot be managed by the system

Method used

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  • FPGA cloud laboratory platform and implementation method

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Embodiment 1

[0039] refer to figure 1 with figure 2 As shown, the present invention discloses a FPGA cloud laboratory platform, and the cloud laboratory platform is connected to the FPGA cloud server via a network. Among them, the FPGA cloud server is equipped with several FPGA development boards, which are used to provide development and testing resources for experimenters.

[0040] Preferably, the FPGA cloud laboratory platform includes: a user management module, a course management module, an experiment management module, a report management module, a container management module and an FPGA management module.

[0041] Preferably, the user management module is configured to manage user rights. Different permissions have different ranges of operating functions. Further, the users include administrator roles, teacher roles and student roles.

[0042] Preferably, the course management module is configured to manage the experiment guide documents needed to complete the experiment. At t...

Embodiment 2

[0054] refer to figure 1 with figure 2 Shown, on the basis of embodiment 1, the present invention also discloses a kind of realization method of FPGA cloud laboratory platform, described cloud laboratory platform links to each other with FPGA cloud server through network, is provided with several in described FPGA cloud server FPGA development board.

[0055] Wherein, the cloud laboratory platform includes: user management module, course management module, experiment management module, report management module, container management module and FPGA management module;

[0056] When creating a new cloud laboratory, the teacher role user created by the user management module initiates an instruction to start the experimental environment to the experiment management module; the experiment management module transfers the courses required for the experiment to the course management module based on the received instruction document resources, and initiate an FPGA development board ...

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Abstract

The invention discloses an FPGA cloud laboratory platform which is connected with an FPGA cloud server through a network, and a plurality of FPGA development boards are arranged in the FPGA cloud server. The cloud laboratory platform comprises a user management module, a course management module, an experiment management module, a report management module, a container management module and an FPGAmanagement module. Through the FPGA cloud laboratory platform disclosed by the invention, teachers can be helped to better manage curriculums, experiments, homework and other resources, and statistical query search can be conveniently and quickly carried out. FPGA experiment hardware resources are planned and constructed in a unified mode, the phenomenon that equipment is stacked everywhere and is lost and damaged is avoided, and the experiment cost is reduced. The FPGA experiment environment can be distributed according to needs, the software environment required by the experiment can be ensured to be correct and errorless through repeated utilization, and the experiment process is prevented from being influenced by environmental problems.

Description

technical field [0001] The invention belongs to the field of teaching experiment systems based on cloud computing, and in particular relates to an FPGA cloud laboratory platform and an implementation method. Background technique [0002] At present, most colleges and universities’ course experiments on FPGA development board programming are to configure an FPGA development board and a PC computer for each student in the laboratory. The PC computer needs to be pre-installed with the EDA software environment required for FPGA development, and the FPGA development board It needs to be placed next to the students for debugging, and the students return the FPGA development board after the experiment. [0003] This model has the following drawbacks: [0004] The cost of configuring a PC and development board for each student is relatively high; [0005] When students use the development board, it is easy to damage the development board, and the value of each development board is...

Claims

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Application Information

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IPC IPC(8): G06Q50/20G09B7/02
CPCG06Q50/205G09B7/02
Inventor 杨振宇李华田亮万毅
Owner 重庆海云捷迅科技有限公司
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