分布式光伏发电机组无功功率的局部控制

K. Turitsyn, P. Šulc, S. Backhaus, M. Chertkov
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引用次数: 188

摘要

分布式光伏发电(PV)在配电线路上的高渗透水平可能会降低电力质量,这是由于云瞬态期间快速变化的PV发电引起的电压下降和膨胀,以及现有公用事业补偿和调节设备的缓慢响应。快速反应,具有var能力的PV逆变器可以提供必要的无功功率注入或消耗,以在困难的瞬态条件下维持电压调节。此外,对每个光伏逆变器无功功率注入的控制为配电公司提供了一种新的工具,以最大限度地减少电路中的热损耗。我们提出了一种局部控制方案,该方案根据本地瞬时测量的所消耗功率的真实分量和无功分量以及PV产生的实际功率,从每个PV逆变器调度无功功率。每个电路使用一个可调参数,我们平衡了对电能质量的要求和最小化热损耗的愿望。通过对实际农村线路在几种发电/消费场景下的数值模拟来评估所提出的控制方案的性能。在所有情况下,即使可再生能源发电超过电路自身负载,也可以观察到电能质量和损耗幅度的同时改善。
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Local Control of Reactive Power by Distributed Photovoltaic Generators
High penetration levels of distributed photovoltaic (PV) generation on an electrical distribution circuit may degrade power quality due to voltage sags and swells caused by rapidly varying PV generation during cloud transients coupled with the slow response of existing utility compensation and regulation equipment. Fast-reacting, VAR-capable PV inverters may provide the necessary reactive power injection or consumption to maintain voltage regulation under difficult transient conditions. As side benefit, the control of reactive power injection at each PV inverter provides a new tool for distribution utilities to minimize the thermal losses in circuit. We suggest a local control scheme that dispatches reactive power from each PV inverter based on local instantaneous measurements of the real and reactive components of the consumed power and the real power generated by the PVs. Using one adjustable parameter per circuit, we balance the requirements on power quality and desire to minimize thermal losses. The performance of the proposed control scheme is evaluated via numerical simulations of realistic rural lines in several generation/consumption scenarios. Simultaneous improvement of both the power quality and the magnitude of losses is observed for all the scenarios, even when the renewable generation in excess of the circuit own load.
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