Journal of Jilin University(Engineering and Technology Edition) ›› 2020, Vol. 50 ›› Issue (5): 1886-1893.doi: 10.13229/j.cnki.jdxbgxb20190750

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Design of remote switching control algorithm for multi-band signal source in distributed communication network

Hai-yan CHEN1,2()   

  1. 1.School of Information Engineering, Wuhan University of Technology, Wuhan 430070, China
    2.School of Telecommunication Engineering, Beijing Vocational College of Electronic Science and Technology, Beijing 102600, China
  • Received:2019-07-25 Online:2020-09-01 Published:2020-09-16

Abstract:

The traditional multi-band signal source switching control algorithm can not achieve stable signal source switching in distributed communication network. To solve this problem, a remote switching control algorithm of multi-band signal source is proposed. The real-time signal is sampled by communication network monitoring equipment and the frequency band is calculated. Based on the transmission path of communication signal, the location of multi-frequency signal source is realized. The remote control equipment is installed and the trigger condition of switching control is set in it. Finally, the remote switching control of multi-frequency signal source is realized by switching the sequence of access points and the conversion control between voltage and current. In order to verify the feasibility of the designed remote handoff control algorithm, the anti-blocking performance and stability performance of the control were tested. The results show that the anti-blocking performance of the designed remote handoff control algorithm is 2.2% higher than that of the traditional handoff control algorithm, and the handoff control stability is higher.

Key words: distributed network, communication network, multi-band signal source, the remote control, switch control, switching the trigger condition

CLC Number: 

  • TP273

Fig.1

Working schematic diagram of signal source node monitoring equipment"

Fig.2

Schematic diagram of transmission signal frequency band"

Fig.3

Schematic diagram of switching trigger conditions"

Fig.4

Switch control algorithm implementation flow chart"

Fig.5

Schematic diagram of current and voltage control"

Fig.6

Experimental environment"

Table 1

Test results for switching control stability"

初始通信信号基于C#编程语言的切换控制算法分布式通信网络多频段信号源远程切换控制算法
信号接收功率/dBm信噪比/dB信号接收功率/dBm信噪比/dB
切换前5 s-89.689.14-89.687.08
切换前3 s-90.668.76-90.666.18
切换前1 s-92.258.08-92.254.59
切换后1 s-63.4416.37-86.3311.80
切换后3 s-25.681.25-86.1710.76
切换后5 s-83.4713.94-85.9210.63
丢包数据量/Mbit10.7412.493.282.75
1 邢鹏康, 杨文铂. 物联网通信传输设备多频段信号源远程切换控制技术[J]. 计算机测量与控制, 2018, 26(12): 101-104.
Xing Peng-kang, Yang Wen-bo. Remote switching control technology of multi-band signal source in internet of things communication transmission equipment[J]. Computer Measurement and Control, 2018, 26(12): 101-104.
2 伍文平. C#编程实现的网络化多输入信号频谱监测设备[J]. 软件导刊, 2018, 17(8): 208-211.
Wu Wen-ping. The networking device to monitor the multi-input signals' spectrum based on C#[J]. Software Guide, 2018, 17(8): 208-211.
3 程玉娟, 俞辉. 多智能体切换网络自适应组一致性[J]. 计算机工程与应用, 2017, 53(11): 50-55, 84.
Cheng Yu-juan, Yu Hui. Adaptive group consensus of multi-agent in switching networks[J]. Computer Engineering and Application, 2017, 53(11): 50-55, 84.
4 杜奕航, 王可人, 焦传海. 联合包调度频谱切换和功率分配的跨层设计方案[J]. 探测与控制学报, 2017, 39(1): 116-121.
Du Yi-hang, Wang Ke-ren, Jiao Chuan-hai. Joint packet scheduling spectrum handoff and power allocationfor cross-layer design scheme[J]. Journal of Detection and Control, 2017, 39(1): 116-121.
5 孙龙, 冉泳屹, 杨博文, 等. 软件定义Fat-Tree数据中心网络的多组播树动态切换机制[J]. 小型微型计算机系统, 2017, 38(4): 761-765.
Sun Long, Ran Yong-yi, Yang Bo-wen, et al. Dynamic switching mechanism for multi-tree multicast in SDN-based Fat-Tree data center network[J]. Journal of Chinese Computer Systems, 2017, 38(4): 761-765.
6 钟漍标, 徐连英. 基于S7-1200与SmartLink远程IO的ProfiNet通信控制的实现[J]. 电脑与电信, 2017, 29(6): 25-28.
Zhong Guo-biao, Xu Lian-ying. ProfiNet communication control realization based on the S7-1200 and SmartLink remote IO[J]. Computer and Telecommunication, 2017, 29(6) : 25-28.
7 贺清碧, 唐朝君, 黄大荣, 等. 有向切换网络拓扑下非线性多智能体系统的包含控制[J]. 科学技术与工程, 2017, 17(16): 254-258.
He Qing-bi, Tang Chao-jun, Huang Da-rong, et al. Containmentcontrol of nonlinear multi-agent systems with directedswitching topologies[J]. Science Technology and Engineering, 2017, 17(16): 254-258.
8 吕燚, 邓春健, 邹昆. 遵循AISG2.0协议的多频段电调天线控制单元设计[J]. 太原理工大学学报, 2017, 48(2): 194-199.
Lv Yan, Deng Chun-jian, Zou Kun. Design of control unit of multi-band remote electronic tilting antenna conforming to AISG2.0[J]. Journal of Taiyuan University of Technology, 2017, 48(2): 194-199.
9 贾国庆, 陈善继, 陈超, 等. 一种面向宽带无线通信的远程分布式MIMO信道仿真系统设计[J]. 实验室研究与探索, 2017, 36(3): 94-99.
Jia Guo-qing, Chen Shan-ji, Chen Chao, et al. Design of remote distributed MIMO channel simulation system for broadband wireless communication[J]. Research and Exploration in Laboratory, 2017, 36(3): 94-99.
10 王宏伟, 连捷, 夏浩. 通讯资源受限网络系统的非均匀采样切换控制[J]. 电子学报, 2018, 46(11): 2597-2603.
Wang Hong-wei, Lian Jie, Xia Hao. Non-uniformly sampled switched control for communication resource constrained network systems[J]. Acta Electronica Sinica, 2018, 46(11): 2597-2603.
11 赵婵, 吕帅帅, 盛锴. 一种多通道输出信号切换控制技术[J]. 科技创新与应用, 2018, 11(27): 139-140.
Zhao Chan, Lv Shuai-shuai, Sheng Kai. A multi-channel output signal switching control technology[J]. Science and Technology Innovation and Application, 2018, 11(27): 139-140.
12 韩靖海, 宋晓波, 刘超. 东芝3700发射机“1+1”远程手动同轴切换控制系统的设计[J]. 电视工程, 2017, 46(1): 38-40.
Han Jing-hai, Song Xiao-bo, Liu Chao. Design of "1+1" remote manual coaxial switching control system for Toshiba 3700 transmitter [J]. TV Engineering, 2017, 46(1): 38-40.
13 李洪力, 刘冰, 张婷. 卫星导航系统出入站信号与信息切换控制设计[J]. 电子世界, 2018, 23: 135-136.
Li Hong-li, Liu Bing, Zhang Ting. Design of signal and information switching control for access station of satellite navigation system[J]. Electronic World, 2018, 23: 135-136.
14 陈赫, 杨智君, 吴昭春, 等. 标准失真模拟分量视频信号源及其校准方法[J]. 吉林大学学报: 工学版, 2017, 47(4): 1159-1164.
Chen He, Yang Zhi-jun, Wu Zhao-chun, et al. Standard generator and its calibration method for analog component video signal with distortion[J]. Journal of Jilin University(Engineering and Technology Edition), 2017, 47(4): 1159-1164.
15 李宾, 周旭, 梅芳, 等. 基于K-means和矩阵分解的位置推荐算法[J]. 吉林大学学报: 工学版, 2019, 49(5): 1653-1660.
Li Bin, Zhou Xu, Mei Fang, et al. Location recommendation algorithm based on K-means and matrix factorization[J]. Journal of Jilin University(Engineering and Technology Edition), 2019, 49(5): 1653-1660.
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