建筑电气监控L-N总线控制器设计与测试
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合肥工业大学微电子学院 合肥 230009

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TP273.5

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国家自然科学基金重大科研仪器研制项目(62027815)、安徽省重点研究与开发计划项目(JZ2015AKKG0225)资助


L-N bus controller design and test for building electrical monitoring
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School of Microelectronics,Hefei University of Technology,Hefei 230009,China

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    摘要:

    L-N总线具有抗干扰性强、应用成本低和自主化的特点,可广泛用于建筑电气智能监控系统。针对当前L-N总线通信协议的软件实现带来的CPU开销问题,设计了一种可配置L-N总线控制器,从而实现通信协议的硬化。通过对L-N总线通信协议的深度分析,确认协议硬化的是可行的,在此基础上建立了协议控制器的硬件架构,对控制器各构成模块及其关系进行划分,然后在行为层对各功能模块进行描述,对其逻辑功能进行仿真,并实施FPGA原型验证。最后结合物理层测试平台的搭建,模拟控制器的应用场景,对控制器功能进行实测,包括通信测试、可配置功能测试及其可靠性测试。结果表明,所设计的L-N总线控制器能够很好地实现协议规范,并表现出良好的可靠性,通过分析可为CPU带来46%的效率提升。

    Abstract:

    The L-N bus could be widely used in building electrical intelligent monitoring system as the characteristics of strong anti-interference, low application cost and autonomy. Aiming at the CPU overhead problem caused by the current software implementation of L-N bus communication protocol, a configurable L-N bus controller is designed to achieve the hardening of communication protocol. Through the in-depth analysis of L-N bus communication protocol, the feasibility of the protocol hardening is confirmed. On this basis, we established the hardware architecture, each component module and its relationship of the protocol controller. Then, we described function of each module in the behavior layer, simulated its logic function and implemented the prototype verification on the FPGA. Finally, we simulate the application scenario of the controller by the construction of the physical layer test platform and test its functions, including communication test, configurable function test and reliability test. The results show that the L-N bus controller could well implement the protocol specification, and shows good reliability. It can improve the CPU efficiency by 46% in the test environment.

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孙立法,易茂祥,刘正文,鲁迎春,梁华国.建筑电气监控L-N总线控制器设计与测试[J].电子测量技术,2023,46(21):100-106

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  • 在线发布日期: 2024-03-04
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