Research on electromagnetic vibration energy harvester for cloud-edge-end collaborative architecture in power grid

IF 3.7 3区 计算机科学 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS Journal of Cloud Computing-Advances Systems and Applications Pub Date : 2023-11-13 DOI:10.1186/s13677-023-00541-4
Minghao Zhang, Rui Song, Jun Zhang, Chenyuan Zhou, Guozheng Peng, Haoyang Tian, Tianyi Wu, Yunjia Li
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Abstract

Abstract With the deepening of the construction of the new type power system, the grid has become increasingly complex, and its safe and stable operation is facing more challenges. In order to improve the quality and efficiency of power grid management, State Grid Corporation continues to promote the digital transformation of the grid, proposing concepts such as cloud-edge-end collaborative architecture and power Internet of Things, for which comprehensive sensing of the grid is an important foundation. Power equipment is widely distributed and has a wide variety of types, and online monitoring of them involves the deployment and application of a large number of power sensors. However, there are various problems in implementing active power supplies for these sensors, which restrict their service life. In order to collect and utilize the vibration energy widely present in the grid to provide power for sensors, this paper proposes an electromagnetic vibration energy harvester and its design methodology based on a four-straight-beam structure, and carries out a trial production of prototype. The vibration pickup unit of the harvester is composed of polyimide cantilevers, a permanent magnet and a mass-adjusting spacer. The mass-adjusting spacer can control the vibration frequency of the vibration unit to match the target frequency. In this paper, a key novel method is proposed to increase the number of turns in a limited volume by stacking flexible coils, which can boost the output voltage of the energy harvester. A test system is built to conduct a performance test for the prototype harvester. According to the test results, the resonant frequency of the device is $$100\ Hz$$ 100 H z , the output peak-to-peak voltage at the resonant frequency is $$2.56\ V$$ 2.56 V at the acceleration of $$1\ g$$ 1 g , and the maximum output power is around $$151.7\ \mu W$$ 151.7 μ W . The proposed four-straight-beam electromagnetic vibration energy harvester in this paper has obvious advantages in output voltage and power compared with state-of-the-art harvesters. It can provide sufficient power for various sensors, support the construction of cloud-edge-end architecture and the deployment of a massive number of power sensors. In the last part of this article, a self-powered transformer vibration monitor is presented, demonstrating the practicality of the proposed vibration energy harvester.
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面向电网云-端协同架构的电磁振动能量采集器研究
随着新型电力系统建设的不断深入,电网日趋复杂,其安全稳定运行面临更多挑战。为提高电网管理质量和效率,国家电网公司持续推进电网数字化转型,提出了云端协同架构、电力物联网等概念,其中电网综合感知是重要基础。电力设备分布广泛,种类繁多,其在线监测涉及到大量电力传感器的部署和应用。然而,在为这些传感器实现有源电源时存在各种问题,这限制了它们的使用寿命。为了收集和利用电网中广泛存在的振动能量为传感器提供动力,本文提出了一种基于四直梁结构的电磁振动能量采集器及其设计方法,并进行了样机的试制。该收割机的吸振单元由聚酰亚胺悬臂梁、永磁体和质量调节垫片组成。调节质量间隔器可以控制振动单元的振动频率,使其与目标频率相匹配。本文提出了一种关键的新方法,通过堆叠柔性线圈来增加有限体积内的匝数,从而提高能量采集器的输出电压。建立了一个测试系统,对原型收割机进行性能测试。测试结果表明,该器件的谐振频率为$$100\ Hz$$ 100 hz,在加速度为$$1\ g$$ 1 g时,谐振频率处的输出峰峰电压为$$2.56\ V$$ 2.56 V,最大输出功率为$$151.7\ \mu W$$ 151.7 μ W左右。本文提出的四直束电磁振动能量采集器在输出电压和功率方面与现有采集器相比具有明显的优势。它可以为各种传感器提供足够的功率,支持云边缘架构的构建和大量功率传感器的部署。最后介绍了一种自供电变压器振动监测仪,验证了振动能量采集器的实用性。
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来源期刊
Journal of Cloud Computing-Advances Systems and Applications
Journal of Cloud Computing-Advances Systems and Applications Computer Science-Computer Networks and Communications
CiteScore
6.80
自引率
7.50%
发文量
76
审稿时长
75 days
期刊介绍: The Journal of Cloud Computing: Advances, Systems and Applications (JoCCASA) will publish research articles on all aspects of Cloud Computing. Principally, articles will address topics that are core to Cloud Computing, focusing on the Cloud applications, the Cloud systems, and the advances that will lead to the Clouds of the future. Comprehensive review and survey articles that offer up new insights, and lay the foundations for further exploratory and experimental work, are also relevant.
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