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Coordinated control of distributed generation system with improved generalised enhanced phase locked loop control algorithm

机译:改进广义广义锁相环控制算法的分布式发电系统协调控制

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摘要

Here, a distributed generation system (DGS) is proposed that allows the different distributed energy resources to operate in coordination with others to provide the electricity in rural areas. Two individual controls are used in the DGS: (i) solar maximum power point tracking (MPPT) and the battery protection control, and (ii) voltage source converter (VSC) control. The proposed VSC control algorithm is based on an improved generalised filter algorithm for power quality improvement of the DGS. This control strategy effectively regulates the active power flow and provides the harmonics mitigation, reactive power compensation, and load balancing in the DGS with low steady-state error and fast dynamic response under high impulsive noise with DC-offset component. The solar MPPT control is designed on the basis of battery state of charge (SOC). In this control, the solar PV array operates in limited power point tracking (LPPT) after the storage battery surpasses the maximum SOC limit. In LPPT control, the solar PV MPPT operates in the voltage source operating region of PV array characteristic, thereby, reducing the power generation and avoids the overcharging of the storage battery. The proposed DGS performance is validated through test results under dynamics and steady-state conditions.
机译:在此,提出了一种分布式发电系统(DGS),该系统允许不同的分布式能源与其他能源协同工作以向农村地区供电。 DGS中使用了两个单独的控件:(i)太阳最大功率点跟踪(MPPT)和电池保护控件,以及(ii)电压源转换器(VSC)控制。提出的VSC控制算法基于改进的广义滤波算法,用于改善DGS的电能质量。这种控制策略有效地调节了有功功率流,并在DGS中提供了谐波抑制,无功功率补偿和负载平衡功能,并具有低稳态误差和在具有直流偏移分量的高脉冲噪声下具有快速动态响应。太阳能MPPT控件是根据电池充电状态(SOC)设计的。在此控制中,在蓄电池超过最大SOC限制之后,太阳能PV阵列将在受限功率点跟踪(LPPT)中运行。在LPPT控制中,太阳能PV MPPT在PV阵列特性的电压源工作区域中工作,从而减少了发电并避免了蓄电池的过度充电。通过动态和稳态条件下的测试结果验证了建议的DGS性能。

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