|
基于功能依赖的无线通信系统设计
|
Abstract:
近些年,随着电子信息技术的快速发展,无线通信产品的使用变得越来越广泛。然而,现实中无线通信产品的安装调试却非常困难,由于通信双方的数据传输存在着盲盒效应,使得产品安装调试很不便。为此提出了基于功能依赖的无线通信系统设计,通过设计关键的通信数据控制模块,保障通信过程的可靠性。研究依据功能依赖原理把通信系统进行划分、并设计出相应的通信功能模块。依据通信的物理性依赖,设计了嵌入式WIFI通信硬件的监控和管理功能模块;针对通信双方设备连接的状态,开发了通信的服务端和访问端(终端)的连接操控模块;为了保证连接双方通信的有效性,研发了通信数据收发测试模块。最后,研究对设计的功能模块进行了测试验证,结果表明研究方法是有效的可行的。
In recent years, with the rapid development of electronic information technology, the use of wireless communication products has become increasingly widespread. However, in reality, the installation and debugging of wireless communication products are very difficult, as there is a blind box effect in the data transmission between the communication parties, which makes product installation and debugging very inconvenient. A wireless communication system design based on functional dependencies has been proposed to ensure the reliability of the communication process by designing key communication data control modules. Research divides communication systems based on the principle of functional dependency and designs corresponding communication functional modules. Based on the physical dependence of communication, a monitoring and management module for embedded WIFI communication hardware has been designed; We have developed a connection control module for the communication server and access terminal (terminal) based on the connection status of devices between the two parties; In order to ensure the effectiveness of communication between the two parties, a communication data transmission and reception testing module has been developed. Finally, the research conducted testing and verification on the designed functional modules, and the results showed that the research method is effective and feasible.
[1] | 虞文武, 聂晓凯, 蔡豫晋, 等. 智能超表面辅助的无线通信网络性能优化综述[J]. 中国科学: 信息科学, 2024, 54(11): 2503-2517. |
[2] | 张永薪. 基于嵌入式4G/WIFI远程移动监控系统设计[D]: [硕士学位论文]. 西安: 西安电子科技大学, 2021. |
[3] | 夏晨阳. 无线通信网络中的干扰管理与优化策略[J]. 产品可靠性报告, 2024(12): 64-65. |
[4] | 曹晓宇, 胡小生, 高杰. 基于区域无线通信的线路数据传输研究[J]. 铁路通信信号工程技术, 2024, 21(12): 48-56. |
[5] | 邓欣莹, 江水明. 基于无线通信技术在远程用电检查系统设计与实现[J]. 电子技术, 2024, 53(12): 370-371. |
[6] | 张澄安, 李保国, 杜志毅, 等. 基于软件无线电的雷达嵌入式通信验证系统[J]. 信号处理, 2021, 37(11): 2041-2053. |
[7] | Zhang, H., Wentzloff, D.D. and Kim, H.S. (2016) Software-Defined, WiFi and BLE Compliant Back-Channel for Ultra-Low Power Wireless Communication. 2016 IEEE Global Communications Conference (GLOBECOM), Washington DC, 4-8 December 2016, 1-6. https://doi.org/10.1109/GLOCOM.2016.7842275 |
[8] | 李小孟. Android和WIFI通信在智能家居系统设计中的应用[J]. 电视技术, 2018, 42(5): 107-111. |
[9] | 张一鸣, 肖晓萍. 基于ARM和WIFI通信的智能开关控制器设计[J]. 计算机测量与控制, 2018, 26(8): 83-87, 137. |
[10] | 王雪. 基于MicroPython的WIFI通信在嵌入式系统中的应用[J]. 电子测试, 2021(16): 61-63. |
[11] | 王春鸣. 嵌入式通信系统优化设计[J]. 电子测试, 2018(13): 136-137. |
[12] | 刘新宇, 周恒, 葛锡云, 等. 水下无线通信装备发展研究[J]. 中国工程科学, 2024, 26(2): 38-49. |
[13] | Kim, H.S. and Wentzloff, D.D. (2016) Back-Channel Wireless Communication Embedded in WiFi-Compliant OFDM Packets. IEEE Journal on Selected Areas in Communications, 34, 3181-3194. https://doi.org/10.1109/JSAC.2016.2612078 |
[14] | 王学文, 程思齐, 武世勇, 等. 基于功能依赖网的评估指标体系构建[J]. 火力与指挥控制, 2024, 49(7): 97-103. |
[15] | 浣顺启, 方哲梅, 王剑波. 基于功能依赖网的体系效能评估方法[J]. 系统工程与电子技术, 2022, 44(7): 2191-2200. |
[16] | 王哲, 李建华, 刘子杨, 等. 基于功能依赖的网络信息体系建模及重心分析[J]. 系统工程与电子技术, 2021, 43(10): 2876-2883. |