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Robust Droop Controller for Accurate Proportional Load Sharing Among Inverters Operated in Parallel

IEEE Transactions on Industrial Electronics · 2011 · Vol. 60(4) · pp. 1281–1290
Qing‐Chang Zhong

Abstract

In this paper, the inherent limitations of the conventional droop control scheme are revealed. It has been proven that parallel-operated inverters should have the same per-unit impedance in order for them to share the load accurately in proportion to their power ratings when the conventional droop control scheme is adopted. The droop controllers should also generate the same voltage set-point for the inverters. Both conditions are difficult to meet in practice, which results in errors in proportional load sharing. An improved droop controller is then proposed to achieve accurate proportional load sharing without meeting these two requirements and to reduce the load voltage drop due to the load effect and the droop effect. The load voltage can be maintained within the desired range around the rated value. The strategy is robust against numerical errors, disturbances, noises, feeder impedance, parameter drifts and component mismatches. The only sharing error, which is quantified in this paper, comes from the error in measuring the load voltage. When there are errors in the voltage measured, a fundamental tradeoff between the voltage drop and the sharing accuracy appears. It has also been explained that, in order to avoid errors in power sharing, the global settings of the rated voltage and frequency should be accurate. Experimental results are provided to verify the analysis and design.

Microgrid Control and OptimizationIslanding Detection in Power SystemsAdvanced DC-DC ConvertersVoltage droopControl theory (sociology)Voltage dropVoltageController (irrigation)Output impedanceElectrical impedanceComputer scienceVoltage referenceVoltage controller
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885
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References
Hierarchical Control of Droop-Controlled AC and DC Microgrids—A General Approach Toward Standardization
IEEE Transactions on Industrial Electronics · 2010 · 4,827 citations
Synchronverters: Inverters That Mimic Synchronous Generators
IEEE Transactions on Industrial Electronics · 2010 · 2,907 citations
A Voltage and Frequency Droop Control Method for Parallel Inverters
IEEE Transactions on Power Electronics · 2007 · 1,837 citations
Output Impedance Design of Parallel-Connected UPS Inverters With Wireless Load-Sharing Control
IEEE Transactions on Industrial Electronics · 2005 · 1,204 citations
Small-signal stability for parallel-connected inverters in stand-alone AC supply systems
IEEE Transactions on Industry Applications · 2002 · 658 citations
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