A novel vehicle power line communication method based on switching ripple modulation

IF 1.9 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC IET Power Electronics Pub Date : 2024-10-24 DOI:10.1049/pel2.12785
He Zhu, Zhiyuan Xie, Wangbin Cao, Zonglong Bai, Zhengwei Hu
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Abstract

Power converters can perform power conversion and data transmission simultaneously. With the aim of mitigating the hardware requirements of vehicle power line communication (VPLC), a novel VPLC scheme based on switching ripple modulation (SRM) is proposed to eliminate the need for coupling circuits and specialized communication chips. By embedding data modulation techniques into traditional pulse width modulation systems, power/data multiplexing transmission is achieved by demodulating the voltage ripple on the DC bus. First, the theoretical foundation of the SRM is introduced, and power/data single carrier modulation using 2FSK and data demodulation based on the sliding discrete Fourier transform are provided. Subsequently, comprehensive analyses of the mutual influence between power conversion and communication in the buck converter are conducted. The impact of power conversion on communication primarily depends on the control loop compensation and perturbation depth. Moreover, the designs of the ripple conditioning circuit and communication frame are presented. Finally, an experimental prototype is constructed with two buck converters in parallel. The experimental results demonstrate a data transmission rate of 12.5 kbps within 3 m under steady-state, transient input and output voltage, and transient load conditions, validating the correctness of the proposed methodology.

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基于开关纹波调制的新型车载电力线通信方法
功率转换器可同时进行功率转换和数据传输。为了降低车载电力线通信(VPLC)对硬件的要求,我们提出了一种基于开关纹波调制(SRM)的新型 VPLC 方案,以消除对耦合电路和专用通信芯片的需求。通过在传统脉宽调制系统中嵌入数据调制技术,解调直流母线上的电压纹波,实现功率/数据复用传输。首先,介绍了 SRM 的理论基础,并提供了使用 2FSK 的功率/数据单载波调制和基于滑动离散傅里叶变换的数据解调。随后,全面分析了降压转换器中功率转换和通信之间的相互影响。功率转换对通信的影响主要取决于控制回路补偿和扰动深度。此外,还介绍了纹波调节电路和通信框架的设计。最后,构建了两个并联降压转换器的实验原型。实验结果表明,在稳态、瞬态输入和输出电压以及瞬态负载条件下,3 米内的数据传输速率为 12.5 kbps,验证了所提方法的正确性。
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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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