在有限资源约束下创建家用电器电源的方法

Q3 Computer Science Radioelectronic and Computer Systems Pub Date : 2023-05-25 DOI:10.32620/reks.2023.2.07
A. Perepelitsyn, A. Tetskyi
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引用次数: 0

摘要

本文的研究主题是电压范围、方法和工具的原型独立电源和人工照明的家用电器,只有广泛的组件重用。目标是提高家用电器独立电源的创造和使用效率。任务:分析家用电压标准的发展历史;分析现有的自主电源和电池类型;分析不同负载;根据基本值找到合理的电压范围;分析锂基电池的充电控制和平衡电路;提出了基于重复使用锂离子蓄电池的独立电源原型技术;提供研究成果的实际应用实例。根据任务,得到了以下结果:分析了供电网络电压标准的演变。讨论了自主电源的类型,包括纯正弦版本。对不同化学成分的自主电源电池进行了分析。建议使用电流和面积的水类比作为电池容量的类比,以直观地表示电过程。考虑了恒流消耗模型和恒功率消耗模型。提出了通过重复使用的锂离子蓄电池并联来降低电池组件内阻的方法。研究了锂离子电池顺序连接电压范围的对应性,以保证与现有器件的兼容性。找到了合理的电压范围参数,以确保锂离子蓄电池和酸蓄电池的兼容性,并能够直接从太阳能电池板充电而无需充电控制器。分析了充电控制器、电池管理系统(BMS)和电池平衡电路。提出了一套锂离子蓄电池再利用的步骤,以创建自主电源。结论。这项研究的主要贡献是提出了一种基于重复使用蓄能器的电源和室内照明的方法,而不需要额外的组件。发现并提出的神奇数字3,5,7,9,11和13用于锂离子电池的串联连接,可以获得相当于12 V, 19 V, 27 V, 36 V, 42 V和48 V的标准电压范围。所提出的调整无源平衡器电压的技术允许将电池组件的容量增加4.5%。所描述的解决方案允许建立完全可扩展的自主低压供电网络,能够直接从太阳能电池板充电,而无需昂贵的充电控制器。
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Method of creation of power sources for home appliances under constraints of limited resources
The subject of study in this article is the voltage ranges, methods, and tools for prototyping independent sources of power supply and artificial lighting for home appliances with reuse of only widespread components. The goal is to improve the efficiency of the creation and use of independent power supply sources for home appliances. Task: to analyze the history of the development of voltage standards for households; analyze existing autonomous power sources and types of batteries; analyze different loads; find rational voltage ranges based on fundamental values; analyze charge control and balancing circuits for lithium-based batteries; propose the technique of prototyping independent sources of power supply based on reused lithium-ion (Li-ion) accumulators; provide an example of the practical application of the results of research. According to the tasks, the following results were obtained. The evolution of voltage standards of electrical supply networks is analyzed. Types of autonomous power supplies, including pure sine versions, are discussed. The analysis of batteries for autonomous power sources of different chemical compositions is performed. It is proposed to use the water analogy of current and area as an analogy of battery capacity for visual representation of electrical processes. Models of constant current consumption and constant power consumption are considered. It is proposed to reduce the internal resistance of the battery assembly by parallel connection of the reused lithium-ion accumulators. Correspondence of voltage ranges of sequential connection of lithium-ion cells to ensure compatibility with existing devices is investigated. Rational parameters of voltage ranges to ensure compatibility of lithium-ion and acid accumulators with the ability to charge directly from solar panels without a charge controller are found. Charge controllers, battery management systems (BMS), and battery balancing circuits are analyzed. A set of steps for reuse of lithium-ion accumulators for the creation of autonomous power sources is proposed. Conclusions. The main contribution of this research is the proposed method of creation of power supply and interior lighting based on the reuse of accumulators without additional components. The discovered and proposed magic numbers of 3, 5, 7, 9, 11 and 13 for series connection of lithium-ion cells allows to obtain the equivalent of standard voltage ranges of 12 V, 19 V, 27 V, 36 V, 42 V and 48 V. The proposed technique of adjusting the voltage of the passive balancer allows adding 4.5 % to the capacity of the battery assembly. The described solutions allow to build the completely scalable autonomous low-voltage electrical supply network with the ability to charge directly from solar panels without expensive charge controllers.
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来源期刊
Radioelectronic and Computer Systems
Radioelectronic and Computer Systems Computer Science-Computer Graphics and Computer-Aided Design
CiteScore
3.60
自引率
0.00%
发文量
50
审稿时长
2 weeks
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