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An Efficient Reconfigurable Cryptographic Model for Dynamic and Secure Unstructured Data Sharing in Multi-Cloud Storage Server 多云存储服务器中动态安全非结构化数据共享的高效可重构加密模型
Pub Date : 2022-10-30 DOI: 10.56578/jisc010107
Parashiva Murthy Basavanapura Muddumadappa, Sumithra Devi Kengeri Anjanappa, Mallikarjunaswamy Srikantaswamy
This study designs a reconfigurable multi-cloud storage server architecture for dynamic and secure data sharing has been designed, improves the security of unstructured data using cryptographic index-based data slicing (CIBDS), and reduces the malicious insider through data encryption using a third data encryption algorithm (3DEA). Focusing on multi-cloud storage server (MCSS) and data life cycle which includes three stages (i.e., data input, transition and utilization), the authors determined the efficiency of reconfigurable data file slicing, standard format, privacy and trustworthiness of the customers, in contrast to existing methods. Every part of a data file was encrypted using 3DEA, and Rivest Shamir Adleman (RSA) was employed to produce the private key to secure the unstructured data. The results show that the proposed framework effectively searches the data files in MCSS based on tags, such as input file names and private keys. The performance of the framework was measured by the security level, uploading/downloading latency time between our method and conventional methods, under different data sizes in (MB). Overall, our method reduces the malicious insider to 0.23% using 3DEA and RSA, during data encryption in the existing USDS-MC, shortens the uploading/downloading latency time (s) by 10% and 12%, compared to USDS-MC, and enhances the unstructured data security by 12% in comparison with that method. In this way, the authors managed to improve the self-protection of reconfigurable and secure unstructured data files in huge cloud infrastructure. This research optimizes the data security and privacy of encryption, decryption and cryptography technologies, and helps with the online process and its security maintenance during cloud storage.
本研究设计了一种可重构的多云存储服务器架构,用于动态、安全的数据共享,利用基于加密索引的数据切片(CIBDS)提高了非结构化数据的安全性,并利用第三种数据加密算法(3DEA)通过数据加密减少了恶意内部人。从多云存储服务器(MCSS)和数据生命周期三个阶段(即数据输入、转换和利用)出发,与现有方法相比,确定了可重构数据文件切片的效率、标准格式、隐私性和客户可信度。数据文件的每个部分都使用3DEA加密,并使用RSA (Rivest Shamir Adleman)生成私钥来保护非结构化数据。结果表明,该框架能够有效地根据输入文件名和私钥等标签对MCSS中的数据文件进行搜索。在不同的数据大小(MB)下,我们的方法与传统方法的安全级别、上传/下载延迟时间来衡量框架的性能。总的来说,我们的方法使用3DEA和RSA将恶意内部人员减少到0.23%,在现有的USDS-MC中进行数据加密,与USDS-MC相比,上传/下载延迟时间(s)缩短了10%和12%,与该方法相比,非结构化数据的安全性提高了12%。通过这种方式,作者设法提高了大型云基础设施中可重构和安全的非结构化数据文件的自我保护。本研究优化了加密、解密和加密技术的数据安全性和隐私性,有助于云存储的在线过程及其安全维护。
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引用次数: 2
Modeling and Control Strategy of Wind-Solar Hydrogen Storage Coupled Power Generation System 风能-太阳能储氢耦合发电系统建模与控制策略
Pub Date : 2022-10-30 DOI: 10.56578/jisc010103
Tianze Yuan, Hua Li, D. Jia
Hydrogen production by wind and solar hybrid power generation is an important means to solve the strong randomness and high volatility of wind and solar power generation. In this paper, the permanent magnet direct-drive wind turbine, photovoltaic power generation unit, battery pack, and electrolyzer are assembled in the AC bus, and the mathematical model of the wind-solar hydrogen storage coupled power generation system and the simulation model in PSCAD/EMTDC are established. An energy coordination control strategy is designed. After simulation, the proposed control strategy can effectively reduce the rate of curtailment of wind and solar power, and stabilize the fluctuation of wind and solar power generation. It verifies that the established model is correct and the control strategy is effective and feasible.
风能和太阳能混合发电制氢是解决风能和太阳能发电随机性强、波动性大的重要手段。本文将永磁直驱风力发电机组、光伏发电机组、电池组和电解槽组装在交流母线上,建立了风能-太阳能储氢耦合发电系统的数学模型和PSCAD/EMTDC中的仿真模型。设计了一种能量协调控制策略。仿真结果表明,所提出的控制策略能够有效降低风电和太阳能弃风率,稳定风电和太阳能发电的波动。验证了所建立的模型是正确的,控制策略是有效可行的。
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引用次数: 1
Optimization of Lateral Transfer Inventory of Auto Spare Parts Based on Neural Network Forecasting 基于神经网络预测的汽车零部件横向转运库存优化
Pub Date : 2022-10-30 DOI: 10.56578/jisc010102
Xinhao Shao, Daofang Chang, Meijia Li
Creating a fair replenishment strategy is one of the most significant instruments in the inventory management for automotive spare parts. It is also crucial to controlling the enterprise's inventory level. This study considers the significance of retailers' demand forecasting at the conclusion of the sales period to build a lateral transfer inventory optimization scheme with high scientific rigor, aiming to ensure the correctness and logic of the replenishment strategy. To provide a more scientific direction for the inventory management of an automotive spare parts company, this research constructs an upgraded particle swarm optimization (PSO)-backpropagation (BP) neural network prediction model, and a lateral transfer inventory optimization method based on demand forecasting. Finally, 26 retailers of Company B in Central China's Hunan Province were taken as examples to confirm the model's efficacy. The outcomes demonstrate an improvement in the lateral transfer's applicability in Company B.
制定合理的补货策略是汽车零部件库存管理中最重要的手段之一。对企业库存水平的控制也是至关重要的。本研究考虑零售商在销售期结束时需求预测的重要性,构建具有较高科学严谨性的横向转移库存优化方案,以保证补货策略的正确性和逻辑性。为了给某汽车零部件企业的库存管理提供更科学的指导,本研究构建了升级的粒子群优化(PSO)-反向传播(BP)神经网络预测模型,以及基于需求预测的横向转移库存优化方法。最后,以华中地区湖南省B公司的26家零售商为例,验证模型的有效性。结果表明,B公司的横向转移适用性有所提高。
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引用次数: 0
Hybrid Approach Control of Micro-Positioning Stage with a Piezoelectric Actuator 压电作动器微定位平台的混合逼近控制
Pub Date : 2022-10-30 DOI: 10.56578/jisc010104
Ounissi Amor, A. Kaddouri, R. Abdessemed
For a class of system with nonlinear hysteresis, this paper presents an adaptive hybrid controller based on the hybrid backstepping-sliding mode, and describes the controller analytically by the LuGre model. Both backstepping and the sliding mode techniques are based on the Lyapunov theory. Drawing on this common point, the authors developed a new controller combining the two control techniques with a recursive design. The design aims to achieve two effects: assuring the stability of the closed loop system, and improving the continuous performance of the tracking position trajectory. The performance of the proposed hybrid controller was verified by implementing the identified Piezo model. The results show that our controller can track the system output desirably with the reference trajectory.
针对一类具有非线性滞回的系统,提出了一种基于混合步进-滑模的自适应混合控制器,并用LuGre模型对该控制器进行了解析描述。退步和滑模技术都是基于李亚普诺夫理论。利用这一共同点,作者开发了一种将两种控制技术与递归设计相结合的新控制器。设计的目的是达到两种效果:保证闭环系统的稳定性,提高跟踪位置轨迹的连续性能。通过实现所识别的压电模型,验证了混合控制器的性能。实验结果表明,该控制器能较好地跟踪系统输出与参考轨迹。
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引用次数: 0
Active Disturbance Rejection Control Approach for Double Pendulum Cranes with Variable Rope Lengths 变绳长双摆起重机自抗扰控制方法
Pub Date : 2022-10-30 DOI: 10.56578/jisc010105
Xinya Yao, He Chen, Zhenyue Fan
The overhead crane is a typical underactuated system with complicated dynamics and strong couplings. It is widely employed to transport heavy cargoes in many industrial fields. Due to the complexity of working environments, however, cranes often encounter various unfavorable factors, which may degrade the transportation efficiency. To enhance control performance and anti-disturbance ability, this paper proposes an active disturbance rejection control approach based on differential flatness for double pendulum cranes with variable rope lengths. The proposed approach can position the trolley accurately, regulate rope length, and suppress the swing angles of the payload and the hook simultaneously. During the controller design, flat outputs were constructed based on differential flatness technique to deal with system couplings, and the results prove that double pendulum crane system is differentially flat. After that, model uncertainties and external disturbances were estimated by the designed extended state observer. On this basis, a controller was developed based on the feedback control technique. Finally, a series of simulations were carried out to show that the control scheme is effective and robust.
桥式起重机是典型的欠驱动系统,具有复杂的动力学特性和强耦合特性。它被广泛应用于许多工业领域的重型货物运输。然而,由于工作环境的复杂性,起重机经常会遇到各种不利因素,从而降低运输效率。为了提高双摆起重机的控制性能和抗干扰能力,提出了一种基于差分平面度的变绳长双摆起重机自抗扰控制方法。该方法可以实现小车的精确定位、钢丝绳长度的调节,同时抑制吊篮和吊钩的摆动角度。在控制器设计过程中,基于差分平坦度技术构建了平面输出来处理系统耦合,结果证明了双摆起重机系统是差分平坦的。然后利用所设计的扩展状态观测器对模型的不确定性和外部干扰进行估计。在此基础上,开发了一种基于反馈控制技术的控制器。最后,通过一系列的仿真验证了该控制方案的有效性和鲁棒性。
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引用次数: 0
Continuation Power Flow Analysis of Power System Voltage Stability with Unified Power Flow Controller 统一潮流控制器下电力系统电压稳定性的连续潮流分析
Pub Date : 2022-10-30 DOI: 10.56578/jisc010106
Y. D. Kobibi, Mohamed Abdeldjalil Djehaf, M. Khatir, Mohamed Ouadafraksou
The rising power demand has forced power systems all over the world to operate very close to their stability limits. When power systems are overloaded, faulty, or in lack of reactive power, voltage collapses would ensue. The capacity of a power system to keep the voltage of every bus constant under disturbances is called voltage stability. This dynamic phenomenon hinges on the load features. It is commonly known that flexible AC transmission systems (FACTS) can improve voltage stability. This paper puts forward a load flow model with the unified power flow controller (UPFC), and relies on the model to investigate the voltage stability of a power system through continuation power flow (CPF) method. The validity of the model was verified through a simulation, using the power system analysis toolbox (PSAT) in MATLAB/Simulink environment.
不断增长的电力需求迫使世界各地的电力系统非常接近其稳定极限。当电力系统过载、故障或无功功率不足时,电压崩溃就会随之而来。电力系统在各种干扰下保持各母线电压恒定的能力称为电压稳定性。这种动力现象取决于载荷特性。众所周知,柔性交流输电系统(FACTS)可以提高电压稳定性。本文提出了统一潮流控制器(UPFC)的负荷潮流模型,并利用该模型通过连续潮流(CPF)法对电力系统电压稳定性进行了研究。利用电力系统分析工具箱(PSAT)在MATLAB/Simulink环境下进行了仿真,验证了模型的有效性。
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引用次数: 1
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Journal of Intelligent Systems and Control
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