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作 者:韩猛 艾庆华 HAN Meng;AI Qinghua(Beijing Zhixin Semiconductor Technology Co.,Ltd.)
机构地区:[1]北京智芯半导体科技有限公司
出 处:《上海节能》2022年第12期1583-1588,共6页Shanghai Energy Saving
摘 要:对一款无信号区通信装置进行研发,此装置可与输电线路监测装置配合使用,实现对无信号区的输电线路状态的全面监控。依次从无信号区通信装置的硬件设计、无信号区高性能低功耗通信模块的通信算法优化、太阳能供电和低温电源技术设计、无信号区自组网方案设计四个方面对这个装置的关键技术进行分析。分别介绍了技术难点、关键点和实施方案。解决了项目中无信号区通信装置的硬件设计问题、无信号区通信装置的通信算法优化问题、太阳能供电和低温电源技术设计以及无信号区自组网方案设计的问题。得出依据此方案设计研制的装置可以满足项目的需求,实现无信号区通信的功能。Develops a no-signal area communication device that can be used in conjunction with transmission line monitoring devices to achieve comprehensive monitoring of transmission line status in the no-signal area.The key technologies of this device are analyzed from four aspects:the hardware design of the no-signal area communication device,the communication algorithm optimization of the high-performance and low-power communication module in the no-signal area,the technical design of solar power supply and low temperature power supply,and the design of the self-network scheme in the no-signal area.The technical difficulties,key points and implementation scheme are introduced respectively.The problems of hardware design,communication algorithm optimization,solar power and low temperature power technology design,and self-network design without signal area have been solved.It is concluded that the device designed and developed according to this scheme can meet the needs of the project and realize the function of no-signal area communication.
关 键 词:输电线路 无信号区 通信装置 MESH组网 低温电源
分 类 号:TM75[电气工程—电力系统及自动化]
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