Decentralized control of a vehicular microgrid with constant power loads

M. Srinivasan, A. Kwasinski
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引用次数: 16

Abstract

Constant power loads may form a major proportion of the system loads in automotive power systems. Without proper control the presence of constant power loads in a multi-converter environment can cause system instability. In this paper, the concept of autonomous control of a dc microgrid is extended to automotive power systems. An autonomous control law is derived for an automotive power system which consists of system of parallel connected boost converters supplying a constant power load. The control law derived using the passivity based approach consists of two stages. The first, primary stage involves a non-linear droop of the microgrid voltage with respect to the current supplied by each of the converters thereby enabling current sharing. The primary controller also damps the oscillations in the dc microgrid caused by the presence of the constant power load. The secondary controller adjusts for the voltage deviations due to the primary controller without affecting the current sharing. The conditions to ensure the asymptotic stability of the equilibrium points are derived. Experimental results are presented to verify the proposed control law.
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恒负荷车载微电网的分散控制
在汽车动力系统中,恒功率负荷可能占系统负荷的很大比例。如果没有适当的控制,在多变流器环境中恒定功率负载的存在会导致系统不稳定。本文将直流微电网的自主控制概念推广到汽车电力系统中。推导了由并联升压变换器组成的恒载汽车电力系统的自主控制律。采用基于无源性的方法推导出的控制律分为两个阶段。第一,初级阶段涉及微电网电压相对于每个变流器提供的电流的非线性下降,从而实现电流共享。主控制器还阻尼了直流微电网中由于恒定功率负载的存在而引起的振荡。次级控制器在不影响电流共享的情况下,对主控制器产生的电压偏差进行调整。给出了保证平衡点渐近稳定的条件。实验结果验证了所提出的控制律。
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