
公路机电操作系统的探索与实践
Exploration and Practice of Highway Electromechanical Operating System
公路机电操作系统作为重要的数字公路基础软件,为公路数字化转型提供了重要支撑。公路机电操作系统凭借其分布式技术、细颗粒度自由裁剪与弹性部署能力,以及多维度安全保障技术,能实现数据与业务的协同、软件的高适配与低成本开发,以及系统的全面安全防护。以开源鸿蒙生态内的公路机电操作系统为例,阐述其关键技术创新与应用情况,结合典型应用案例,评价其实际应用效果。结果表明,该技术及产品不仅能显著提升典型场景下机电系统的运行效率与功能丰富度,还可有效降低系统开发成本与维护难度。
As an important digital highway basic software, the highway electromechanical operating system provides important support for the digital transformation of highways. With its distributed technology, fine-grained free cutting and flexible deployment capabilities, and multi-dimensional security assurance technology, the highway electromechanical operating system can realize the collaboration of data and business, high adaptation and low-cost development of software, and comprehensive security protection of the system. Taking the highway electromechanical operating system in the open source HarmonyOS ecosystem as an example, this paper expounded its key technological innovations and applications. And combined with typical application cases, the paper evaluated the practical application effect. The results show that this technology and products can not only significantly improve the operation efficiency and functional richness of electromechanical systems in typical scenarios, but also effectively reduce the cost of system development and maintenance difficulty.
数字公路 / 操作系统 / 分布式技术 / 自由裁剪 / 弹性部署
digital highway / operating system / distributed technology / free cutting / elastic deployment
[1] |
冯雪婧. 高速公路机电系统信息化平台建设与大数据融合研究[J]. 信息记录材料, 2024, 25(10):171-173.
|
[2] |
曹影峰, 刘洪洲, 王勇, 等. 沉管隧道土建结构数字化设计系统研发与应用[J]. 隧道建设(中英文), 2024, 44(S2):416-423.
|
[3] |
丁尧, 林国进, 田志宇, 等. 隧道全自动结构计算软件中“护盾式TBM与盾构隧道”计算模块的研发与工程应用[J]. 数字技术与应用, 2024, 42(8):197-200.
|
[4] |
贾惠敏. 高速公路机电系统设备管理问题及优化[J]. 运输经理世界, 2024(17):141-143.
|
[5] |
吴海花. 高速公路机电系统智能化运维管理体系探究[J]. 中国交通信息化, 2024(2):127-129.
|
[6] |
侯科佳. 公路机电系统维护信息化管理研究[J]. 交通建设与管理, 2023(6):106-108.
|
[7] |
苏中伟. 高速公路机电系统的优化设计和新技术应用分析[J]. 运输经理世界, 2023(29):149-151.
|
[8] |
曹烨玲. 基于云计算技术的高速公路机电系统的设计[J]. 无线互联科技, 2023, 20(3):77-80.
|
[9] |
|
[10] |
|
[11] |
潘杰. 基于NFC的高速公路机电设备日常管养系统设计与开发[D]. 西安: 长安大学, 2023.
|
[12] |
马进华. 南京二桥机电综合管理信息系统设计与开发[D]. 南京: 东南大学, 2020.
|
[13] |
王跃山. 基于STAMP的高速公路隧道机电系统安全评估研究[D]. 西安: 长安大学, 2019.
|
[14] |
许正鹏. 高速公路机电工程自动化辅助设计软件的研究与应用分析[J]. 工程建设与设计, 2022(4):66-68.
|
/
〈 |
|
〉 |