在开关模式电源中用于加密电源和数据同步传输的忆阻器源密钥

IF 1.7 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Chiemeka L. Maxwell, Zixiang Wang, Dongsheng Yu, Marek Pastor, Samson S. Yu, Mohammed Alkahtani
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引用次数: 0

摘要

在功率和数据同步传输(PDST)中,将附加信号调制到变换器的电压母线上是至关重要的。这降低了监测和控制电网的成本。因此,有必要确保传输的数据得到很好的保护。本研究设计了一种利用PDST公共联轴点的电子系统。然后引入Chua记忆电路作为熵源,用于在开关电源中生成加密PDST的随机位序列。加密的数据信号使用相移键调制进行调制。然后,对载波信号进行脉宽调制,以控制电源开关的开关操作。使用蔡氏记忆电路生成随机数并不新鲜;然而,很少有研究直接将其应用于PDST。这允许资源共享,因为多个信号源可以共享同一总线而没有干扰或安全风险。使用美国国家标准与技术研究所测试套件和自相关测试对生成的随机位进行随机性测试。MATLAB/Simulink和实验结果都证实了所提出的数据加密方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A memristor-sourced key for encrypted power and data synchronous transmission in switched mode power supplies

A memristor-sourced key for encrypted power and data synchronous transmission in switched mode power supplies

In power and data synchronous transmission (PDST), it is crucial to modulate additional signals onto the voltage bus of the converters. This reduces the cost of monitoring and control of the power grid. There is thus the need to ensure that the data transmitted is well secured. This study, designs an electronic system that uses the common coupling point for PDST. Then Chua's memristive circuit is introduced as an entropy source for generating a random bit sequence for encrypted PDST in a switched mode power supply. The encrypted data signal is modulated using phase shift key modulation. Thereafter, the carrier signal is pulse width modulation modulated to control the switching operation of the power switch. The use of Chua's memristive circuit for generating a random number is not new; however, there is little study directly adopting its use in PDST. This allows for resource sharing since multiple signal sources can share the same bus without interference or security risk. The generated random bits are tested for randomness using National Institute of Standards and Technology test suite and autocorrelation test. MATLAB/Simulink and experimental results both confirm the effectiveness of the proposed data encryption method.

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来源期刊
IET Power Electronics
IET Power Electronics ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
5.50
自引率
10.00%
发文量
195
审稿时长
5.1 months
期刊介绍: IET Power Electronics aims to attract original research papers, short communications, review articles and power electronics related educational studies. The scope covers applications and technologies in the field of power electronics with special focus on cost-effective, efficient, power dense, environmental friendly and robust solutions, which includes: Applications: Electric drives/generators, renewable energy, industrial and consumable applications (including lighting, welding, heating, sub-sea applications, drilling and others), medical and military apparatus, utility applications, transport and space application, energy harvesting, telecommunications, energy storage management systems, home appliances. Technologies: Circuits: all type of converter topologies for low and high power applications including but not limited to: inverter, rectifier, dc/dc converter, power supplies, UPS, ac/ac converter, resonant converter, high frequency converter, hybrid converter, multilevel converter, power factor correction circuits and other advanced topologies. Components and Materials: switching devices and their control, inductors, sensors, transformers, capacitors, resistors, thermal management, filters, fuses and protection elements and other novel low-cost efficient components/materials. Control: techniques for controlling, analysing, modelling and/or simulation of power electronics circuits and complete power electronics systems. Design/Manufacturing/Testing: new multi-domain modelling, assembling and packaging technologies, advanced testing techniques. Environmental Impact: Electromagnetic Interference (EMI) reduction techniques, Electromagnetic Compatibility (EMC), limiting acoustic noise and vibration, recycling techniques, use of non-rare material. Education: teaching methods, programme and course design, use of technology in power electronics teaching, virtual laboratory and e-learning and fields within the scope of interest. Special Issues. Current Call for papers: Harmonic Mitigation Techniques and Grid Robustness in Power Electronic-Based Power Systems - https://digital-library.theiet.org/files/IET_PEL_CFP_HMTGRPEPS.pdf
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