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Uniform Voltage Distribution Control for Paralleled-Input, Series-Output Connected Converters

机译:平行输入的均匀电压分布控制,串联输出连接转换器

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This paper extends the application of current-mode, shared-bus converters to power system architectures configured as Parallel-Input, Series-Output (PISO). By employing a PISO interconnect method, current-mode commercial-off-the-shelf (COTS) dc-dc converters can deliver higher output voltages, provide flexible options for power system expansion, and preserve system efficiencies equal to that obtained from standalone converters. However, without proper control, non-uniformly distributed voltages occur due to converter component mismatch. System reliability suffers as a result of thermal overstress to the converters that contribute a greater portion of the output power. Conversely, robust system stability and uniform output voltage distribution among series-connected converters is realized through output voltage distribution control. Through both computer simulation and experimental prototype, the uniform voltage distribution power converter architecture is validated and successfully applied during power converter bum-in testing whereby converter load energy is recycled to the power system input, resulting in 49percent to 80percent conservation of energy.
机译:本文扩展了电流模式的应用,共享总线转换器到电源系统架构配置为并联输入,串联输出(PISO)。通过采用PISO互连方法,电流模式商业卸载货架(COTS)DC-DC转换器可以提供更高的输出电压,为电力系统扩展提供灵活的选项,并保留等于从独立转换器获得的系统效率。然而,如果没有适当的控制,由于转换器分量不匹配导致非均匀分布的电压。系统可靠性由于热插拔导向器而导致的转换器,其贡献更大的输出功率。相反,通过输出电压分布控制实现串联转换器之间的强大系统稳定性和均匀的输出电压分布。通过计算机仿真和实验原型,均匀电压分配功率转换器架构验证并在电源转换器Bum-in测试期间成功应用,从而转换器负载能量被再循环到电力系统输入,导致49%到80cent守恒的能量。

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