Maximum Load Consumption Capacity Maintenance of Distributed Storage Devices Based on Time-Varying Neurodynamic Algorithm

Author:

Li Ziqiang1ORCID,Qu Youran2ORCID,Yan Meng3,Pan Bo3ORCID,Mao Qin45ORCID,Ji Cheng6ORCID,Tao Wanmin7ORCID,Zhou Mingliang8ORCID

Affiliation:

1. XJ Electric Co., Ltd, Xuchang, P. R. China

2. College of Electronic and Information Engineering, Southwest University, Chongqing, P. R. China

3. Inner Mongolia Xilin Xilinhe Coal-Chemical Co., Ltd, XilinHot, P. R. China

4. School of Computer and Information Technology, Qiannan Normal University for Nationalities, Duyun 558000, P. R. China

5. Key Laboratory of Complex Systems, and Intelligent Optimization of Guizhou Province, Duyun 558000, P. R. China

6. School of Computer Science and Engineering, Nanjing University of Science and Technology, Nanjing 210094, P. R. China

7. Suzhou Shenma Wuxin Intelligent, Technology Co., Ltd, P. R. China

8. School of Computer Science, Chongqing University, Shapingba, Chongqing 400044, P. R. China

Abstract

A charge and discharge management scheme is proposed. The stored electric energy in distributed storage devices will converge to the consistent. The consistency of the stored electric energy of the devices helps to maintain the maximum load capacity and maximum consumption capacity of distributed storage devices. The charging and discharging process is constructed as a time-varying optimization problem, and the proposed algorithm can respond to the time-varying parameters of the distributed storage devices in real time. The time-varying neurodynamic algorithms can obtain time-varying optimal solution trajectories to give the optimal charging and discharging strategy in real time. In addition, the proposed approach in this paper focuses on the privacy protection of device data. Each device can calculate the power of discharging or charging by communicating with the partially connected nodes. Numerical simulations of the proposed scheme in the paper are given to verify the effectiveness of the scheme. Numerical simulations show that our scheme can make the electric energy stored in each storage device converge and maintain the maximum load capacity or maximum consumption capacity of the whole distributed storage device.

Funder

NSFC

Publisher

World Scientific Pub Co Pte Ltd

Subject

Electrical and Electronic Engineering,Hardware and Architecture,Electrical and Electronic Engineering,Hardware and Architecture

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