Improving the Reliability of DC-DC Power Supply by Reserving Feedback Signals

Q3 Energy
V. Shpenst, E. A. Orel
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引用次数: 2

Abstract

The paper deals with the problem of improving the reliability of DC-DC power supplies with pulse-width modulation. The topicality of the work is related to the importance of power supply issues in modern electronics, since the quality of operation of consumer electrical appliances, including critical ones, directly depends on the serviceability of sources. The object of the study is feedback circuits aimed at stabilization of the parameters of power supply of consumers. Failures of the mentioned feedback circuits most often occurs due to the electronic components degradation under harsh operating conditions as well as under severe mechanical overloads. Such failures are dangerous for uncontrolled increase of power supply output voltage and output current. To avoid this, a new method of reserving voltage feedback signals is presented in the paper which is implemented on the basis of flyback supply topology. Feedback signals are formed from the optocoupler located on the load side and from the auxiliary winding of the power transformer, together forming two independent output voltage control circuits. Only one circuit performs stabilization at any given moment of time. If one of these circuits fails, the second one can simply replace it in its operation. The proposed method does not require any digital signal processing algorithms or microprocessor control modules and can be implemented on the basis of cheap, widely available analog chips that perform pulse-width control of the output voltage. As a result, the problem of sudden feedback loop failure is solved and the reliability of electrical equipment is increased. The validity of the proposed method is confirmed by the results of computer simulation with the use of MatLab-Simulink environment. The obtained results can be used in design of fault-tolerant secondary power supplies that operate in harsh operating conditions.
通过保留反馈信号提高直流供电的可靠性
本文研究了采用脉宽调制技术提高直流-直流电源可靠性的问题。这项工作的主题性与现代电子产品中电源问题的重要性有关,因为消费电器的运行质量,包括关键电器,直接取决于电源的可维修性。本文的研究对象是旨在稳定用户供电参数的反馈电路。上述反馈电路的故障通常是由于电子元件在恶劣的工作条件下退化以及在严重的机械过载下发生的。这类故障会导致电源输出电压和输出电流不受控制地增大,造成危险。为了避免这种情况,本文提出了一种基于反激电源拓扑的电压反馈信号保留方法。反馈信号由位于负载侧的光耦合器和电力变压器的辅助绕组形成,共同形成两个独立的输出电压控制电路。在任何给定时刻,只有一个电路执行稳定。如果其中一个电路出现故障,第二个电路可以简单地替换它。所提出的方法不需要任何数字信号处理算法或微处理器控制模块,并且可以在执行输出电压脉宽控制的廉价,广泛可用的模拟芯片的基础上实现。解决了反馈回路突然失效的问题,提高了电气设备的可靠性。利用MatLab-Simulink环境进行计算机仿真,验证了所提方法的有效性。所得结果可用于恶劣工作条件下容错二次电源的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.60
自引率
0.00%
发文量
32
审稿时长
8 weeks
期刊介绍: The most important objectives of the journal are the generalization of scientific and practical achievements in the field of power engineering, increase scientific and practical skills as researchers and industry representatives. Scientific concept publications include the publication of a modern national and international research and achievements in areas such as general energetic, electricity, thermal energy, construction, environmental issues energy, energy economy, etc. The journal publishes the results of basic research and the advanced achievements of practices aimed at improving the efficiency of the functioning of the energy sector, reduction of losses in electricity and heat networks, improving the reliability of electrical protection systems, the stability of the energetic complex, literature reviews on a wide range of energy issues.
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