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Analysis and optimisation of 8 × 1 double 'U' slotted patch array for future 5G communications 面向未来5G通信的8 × 1双“U”槽贴片阵列分析与优化
Q4 Engineering Pub Date : 2020-01-01 DOI: 10.1504/ijscc.2020.10031276
A. Badri, A. Ballouk, A. Zaidi, A. Baghdad, W. A. Awan, Souhir Faleh
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引用次数: 6
A review of hardware platforms for wireless ad hoc mobile/sensor networks 无线自组织移动/传感器网络硬件平台综述
Q4 Engineering Pub Date : 2020-01-01 DOI: 10.1504/ijscc.2020.10031265
M. Vanjale, S. Gaikwad, J. Chitode
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引用次数: 1
PERFORMANCE COMPARISON OF DIFFERENT FRACTAL SHAPE ANTENNAS FOR ULTRA WIDE BAND APPLICATIONS 超宽带应用中不同分形天线的性能比较
Q4 Engineering Pub Date : 2020-01-01 DOI: 10.1504/ijscc.2020.10029761
D. Bhatnagar, V. Saxena, Arun Kumar, Vinita Mathur, Manisha Gupta
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引用次数: 0
Design of bio-influenced printed monopole antenna with enhanced bandwidth for wireless sensor network 无线传感器网络中增强带宽的生物影响印刷单极天线设计
Q4 Engineering Pub Date : 2020-01-01 DOI: 10.1504/ijscc.2020.10032272
S. Akojwar, H. Rajurkar
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引用次数: 0
Receding horizon control based on the variational iteration method 基于变分迭代法的后退地平线控制
Q4 Engineering Pub Date : 2020-01-01 DOI: 10.1504/ijscc.2020.10031263
M. Aidène, S. Guermah, A. Maidi, Rima Terkmani
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引用次数: 0
Proposed simple low cost system for road traffic counting 提出了一种简单的低成本道路交通统计系统
Q4 Engineering Pub Date : 2020-01-01 DOI: 10.1504/ijscc.2020.10031954
Ahmad A. A. Alkhatib
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引用次数: 3
A new design of adaptive model following control system for lateral motion of aircraft 飞机横向运动自适应模型跟踪控制系统的新设计
Q4 Engineering Pub Date : 2020-01-01 DOI: 10.1504/ijscc.2020.10031952
A. Maddi, A. Guessoum, D. Berkani
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引用次数: 1
Lightweight security mechanism for soft handoff in internet of things 物联网软切换的轻量级安全机制
Q4 Engineering Pub Date : 2020-01-01 DOI: 10.1504/ijscc.2020.10031953
Pooja Sharma, Rakesh Kumar
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引用次数: 0
A conceptual framework for securing industrial control systems: smart grid environment 保护工业控制系统的概念框架:智能电网环境
Q4 Engineering Pub Date : 2019-06-17 DOI: 10.1504/IJSCC.2019.10021994
Saqib Ali, M. Abri
Cyber physical systems (CPSs) utilised in many of the critical infrastructures including the smart grid. The operational activities of smart grid's CPS use different industrial solution such as industrial control systems (ICS) for monitoring and controlling the physical architecture of smart grid. Therefore, it is quite essential to keep these industrial control systems secure and safe from potential hazards and cyber world as it may be harmful for human safety, strategic infrastructure of a country and also for the economy. The study gathered the scattered guidelines, best practices and policies available from various organisations such as National Institute of Standards and Technology (NIST), ISO, and North American Electric Reliability Corporation (NERC) for the purpose of developing safe and secure ICS security systems and also the knowledge about the issues involved in ICS security and protection. A conceptual framework is proposed and developed to address the shortcomings in-order to protect the ICS systems in a smart grid environment. The proposed framework was developed by reviewing related studies, standards and utilising IT security working experience. This framework will not only expand the horizon of knowledge but also provides pathway for the development of existing activities of CPS applications such as smart grid.
包括智能电网在内的许多关键基础设施中使用的网络物理系统(cps)。智能电网CPS的运行活动使用不同的工业解决方案,如工业控制系统(ICS)来监测和控制智能电网的物理架构。因此,保持这些工业控制系统的安全性和免受潜在危险和网络世界的侵害是非常重要的,因为它可能对人类安全,国家的战略基础设施以及经济有害。该研究收集了来自不同组织的零散指南、最佳实践和政策,如国家标准与技术研究所(NIST)、ISO和北美电力可靠性公司(NERC),目的是开发安全可靠的ICS安全系统,以及有关ICS安全和保护相关问题的知识。为了在智能电网环境下保护ICS系统,提出并发展了一个概念框架来解决这些不足。建议的架构是在检讨相关研究、标准及利用资讯科技保安工作经验后制订的。该框架不仅扩展了知识的视野,而且为智能电网等CPS应用的现有活动的发展提供了途径。
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引用次数: 1
Design of an automatic voltage regulator based on symmetric root locus technique 基于对称根轨迹技术的自动电压调节器设计
Q4 Engineering Pub Date : 2019-06-17 DOI: 10.1504/IJSCC.2019.10022001
Rittu Angu, R. Mehta
An automatic voltage regulator (AVR) design based on symmetric root locus (SRL) technique for a synchronous machine infinite bus (SMIB) power system is presented. The SRL technique is used to minimise the amplifier saturation by placing the closed-loop poles (CLPs) of the system at desired locations. The desired CLPs are decided by considering the dominant pole locations that provide maximum damping on the SRL plot. The design incorporates an extended estimator to deal with uncertainties introduced due to variations of parameters or operating conditions. They reconstruct the state information including the state of disturbance dynamics simultaneous to implement full state feedback and using the reconstructed disturbance estimate to compensate the effect of external disturbance or parameter uncertainties. The performance of the system is analysed through simulating at different operating conditions. The control method improves the tracking response and provides zero estimation error in the steady-state. Illustrative examples have been provided to demonstrate the effectiveness of the developed methodology.
提出了一种基于对称根轨迹(SRL)技术的同步电机无限母线(SMIB)电力系统自动调压器(AVR)设计。SRL技术用于通过将系统的闭环极点(clp)放置在所需位置来最小化放大器饱和。期望的clp是通过考虑在SRL图上提供最大阻尼的主要极点位置来决定的。该设计包含一个扩展估计器,以处理由于参数或操作条件的变化而引入的不确定性。他们同时重构包括扰动动态状态在内的状态信息,实现全状态反馈,并利用重构的扰动估计来补偿外部扰动或参数不确定性的影响。通过仿真分析了系统在不同工况下的性能。该控制方法改善了系统的跟踪响应,使系统在稳态状态下的估计误差为零。已提供了说明性实例来证明所开发方法的有效性。
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引用次数: 0
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International Journal of Systems, Control and Communications
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