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Unit Power Control and Feeder Flow Control Strategies for a Grid-Connected Hybrid System

机译:单位电源控制和馈线电网连接混合系统的流量控制策略

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This paper presents the control strategies to operate a grid connected hybrid system. The hybrid system consists of a Photovoltaic (PV) array and a Proton Exchange Membrane Fuel cell (PEMFC). Due to the intermittent nature of the solar energy the PV array becomes uncontrollable in delivering maximum power to the load. In coordination with the PEMFC the hybrid system output power becomes controllable. The coordination of the two control modes Unit Power Control (UPC) mode and feeder-flow control (FFC) mode can be applied to the system. In UPC mode the DGs regulate the voltage magnitude at the connection point where source power is injected. In this mode if a load increases anywhere in the micro-grid the extra power comes from the grid, since the hybrid source regulates power output to a constant. In FFC mode the DGs regulate the voltage magnitude at the connection point and the power flowing in the feeder. In FFC mode extra load demands are picked up by the DGs which maintain a constant load from utility point of view. The proposed control strategies always operate the PV array at the maximum output power and the PEMFC at its high efficiency band improving the performance of the system operation with reduced number of mode changes.
机译:本文介绍了操作网格连接混合系统的控制策略。混合系统由光伏(PV)阵列和质子交换膜燃料电池(PEMFC)组成。由于太阳能的间歇性质,PV阵列在为负载提供最大功率时变得无法控制。在与PEMFC的协调中,混合系统输出功率可控。两个控制模式单元电源控制(UPC)模式和馈线流量控制(FFC)模式的协调可以应用于系统。在UPC模式下,DGS在注入源功率的连接点处调节电压幅度。在此模式下,如果负载在微网格中的任何位置增加,额外的电源来自网格,因为混合源调节了电源输出到常数。在FFC模式下,DGS在连接点处调节电压幅度和在馈线中流动的电力。在FFC模式下,DGS拾取了额外的负载需求,该DG将从实用性的角度维持恒定的负载。所提出的控制策略始终在最大输出功率和PEMFC下在其高效频段上以减少的模式变化提高系统操作的性能,从而在最大输出功率和PEMFC下操作PV阵列。

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