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文章摘要
基于1.8GHz TD-LTE无线专网的负荷控制终端接入技术
Communication method of precision load control system based on 1.8GHz TD-LTE wireless private network
Received:August 20, 2018  Revised:August 20, 2018
DOI:10.19753/j.issn1001-1390.2019.024.021
中文关键词: 负荷控制系统  1.8GHz TD-LTE  无线专网  无线通信
英文关键词: load control system, 1.8GHz TD-LTE, wireless network, wireless communication
基金项目:
Author NameAffiliationE-mail
Li Yongliang* XJ Electric Co.,Ltd. xjtc_liyongliang@126.com 
Feng Jiebo State Grid Suzhou Power Supply Company Xinfeng Integrated Energy Services Ltd. 13862025725@163.com 
Zheng Xiaoqing XJ Electric Co.,Ltd. xjtc_liyongliang@126.com 
Xu Tao XJ Electric Co.,Ltd. xjtc_liyongliang@126.com 
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中文摘要:
      传统的基于SDH和专用光纤网络的负荷控制终端有线接入技术使用光电和协议转换装置多、施工周期长、施工困难、成本高,并且存在施工许可问题,而现有的基于GPRS和230MHz的无线接入技术的通信延时比较高。为此,提出了一种基于1.8GHz TD-LTE无线专网的负荷控制终端接入方法。首先,扩展负荷控制终端和子站通信功能,使其支持UDP协议;然后,把负荷控制终端和子站接入1.8GHz TD-LTE无线专网,把负荷控制终端和子站间的UDP数据通信转换成1.8GHz TD-LTE无线通信;最后,实现负荷信息的上送和负荷的控制。经实验验证,新通信方法满足工程要求。新方法具有网络结构简单、组网灵活、施工周期短、成本低、不存在施工许可问题、通信延时低等优点。
英文摘要:
      The traditional wired access technology based on SDH and dedicated optical fiber network for load control terminal uses too many photoelectric and protocol converters, it’s construction period is long, and the construction is difficult and costs high, and it also has construction permission problem. In addition, the delay of existing wireless access technology based on GPRS and 230MHz is high. To solve these problems, an access technology based on 1.8GHz TD-LTE wireless network for the load control terminal is proposed. Firstly,extend the functions of load control terminal and substation; Secondly, connect the load control terminal and substation to 1.8GHz TD-LTE wireless network, and transmit UDP communication between load control terminal and substation to 1.8GHz TD-LTE wireless communication; Finally, realize the information transmission between load control terminal and substation. The test results show that the new communication method satisfies the engineering requirements. The new method has the advantages of simple network structure, flexible network, short construction period, low cost, no construction license issue, low communication delay, etc.
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