A simple control technique for single-SEPIC converter based multiple output SMPS with fully regulated and isolated outputs

Reddy, J. B. V. ; Nagaraju, S. ; Bhuvaneswari, G. ; Singh, B. (2007) A simple control technique for single-SEPIC converter based multiple output SMPS with fully regulated and isolated outputs International Journal of Electronics, 94 (11). pp. 1005-1014. ISSN 0020-7217

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Official URL: http://www.tandfonline.com/doi/abs/10.1080/0020721...

Related URL: http://dx.doi.org/10.1080/00207210701763522

Abstract

Switched mode power supplies (SMPS) with multiple outputs are commonly used for powering up personal computers and many other consumer electronic appliances. Multiple output SMPS circuits normally employ several DC/DC converters for regulating the voltage in each of the outputs. In this paper, a single single ended primary inductance converter (SEPIC) is used to obtain multiple isolated and regulated DC outputs from a single unregulated DC input, so that the reliability and cost effectiveness of the system can be enhanced. Considering that a large number of SMPS are being used in various applications, it is essential to maintain good power quality at the AC mains side of the SMPS circuit adhering to the international standards. Average current control mode has been used in this paper to achieve unity power factor and sinusoidal current at the input side. A novel weighted error approach has been proposed to achieve excellent voltage regulation at all the outputs of the SMPS irrespective of the load variations and input supply fluctuations. The proposed system has been designed and simulated in a PSIM environment and implemented in hardware. The results obtained show an enhanced performance of the power supply in terms of its output voltage regulation and input power quality.

Item Type:Article
Source:Copyright of this article belongs to Taylor and Francis Group.
Keywords:Switched Mode Power Supply (SMPS); Input Power Quality; Output Voltage Regulation; Multiple-Output SMPS; SEPIC Converter
ID Code:106807
Deposited On:30 Jun 2017 04:50
Last Modified:30 Jun 2017 04:50

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