论文标题
概率电压灵敏度分析(PVSA),以量化高光伏穿透对不平衡分配系统的影响
Probabilistic Voltage Sensitivity Analysis (PVSA) to Quantify Impact of High PV Penetration on Unbalanced Distribution System
论文作者
论文摘要
从操作和计划的角度来看,量化光伏渗透对分配系统的渗透的影响很重要。大多数现有的影响评估研究是基于方案的,而得出的结果是特定方案而不是可推广的。此外,空间分布的PV的时间行为的随机性需要大量的情况,这些方案随着网络的大小和穿透水平而增加。因此,我们提出了一个新的计算有效的电压灵敏度分析的分析框架,该框架允许由于PV生成的随机变化而对电压变化进行随机分析。由于不平衡分布网络中其他节点的功率变化,我们首先得出网络任何节点上电压变化的分析近似。这种近似值的质量通过近似误差的边界加强。然后,由于网络多个位置的功率注射/消耗的随机变化,我们在某个节点处得出了电压变化的概率分布。使用IEEE 37总线测试系统的修改版本说明了所提出的PVSA的准确性。提出的PVSA可以作为主动监控/控制的强大工具,并减轻与基于扰动的网络安全机制相关的计算负担。
From an operational and planning perspective, it is important to quantify the impact of increasing penetration of photovoltaics on the distribution system. Most existing impact assessment studies are scenario-based where derived results are scenario specific and not generalizable. Moreover, stochasticity in the temporal behavior of spatially distributed PVs requires a large number of scenarios that increase with the size of the network and the level of penetration. Therefore, we propose a new computationally efficient analytical framework of voltage sensitivity analysis that allows for stochastic analysis of voltage change due to random changes in PV generation. We first derive an analytical approximation for voltage change at any node of the network due to change in power at other nodes in an unbalanced distribution network. The quality of this approximation is reinforced via bounds on the approximation error. Then, we derive the probability distribution of voltage change at a certain node due to random changes in power injections/consumptions at multiple locations of the network. The accuracy of the proposed PVSA is illustrated using a modified version of the IEEE 37 bus test system. The proposed PVSA can serve as a powerful tool for proactive monitoring/control and ease the computational burden associated with perturbation based cybersecurity mechanisms.