首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Restoring desired voltage security margin based on demand response using load-to-source impedance ratio index and PSO
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Restoring desired voltage security margin based on demand response using load-to-source impedance ratio index and PSO

机译:使用负载对源阻抗比指数和PSO根据需求响应恢复所需的电压安全裕度

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摘要

Demand Response (DR) is an active role of end-users in responding to signals coming from the market or to emergency signals coming from system operators, asking for a load reduction to help facing criticalities and reduce blackout risks. Load reduction is one of the typical DR participation methods for large and small consumers which is generally considered as a final defence strategy against system instability when voltage collapse is anticipated and may potentially result in blackout. in this paper, an algorithm concerning load reduction based DR is proposed. Indeed, a two-state algorithm based on fording optimal load reduction pattern and estimating threshold voltage of initiating DR is presented to prevent power system from voltage collapse. In this regard, load-to-source impedance ratio (Z(L)/X-Th) is adopted as an index for evaluating voltage security margin (VSM) and is utilized in an optimization algorithm aimed at obtaining minimum load to be cut down. The proposed approach has been implemented in IEEE 39-bus network demonstrating its effectiveness and applicability.
机译:需求响应(DR)是最终用户在响应来自市场的信号或来自系统操作员的紧急信号时所扮演的积极角色,要求减轻负载以帮助应对紧急情况并减少停电风险。减少负载是针对大大小小的消费者的典型的DR参与方法之一,通常在预期电压崩溃时可以将其视为针对系统不稳定的最终防御策略,并可能导致停电。本文提出了一种基于减载的DR算法。实际上,提出了一种基于强制最优负载减少模式和估计启动DR的阈值电压的二态算法,以防止电力系统崩溃。在这方面,负载-源阻抗比(Z(L)/ X-Th)被用作评估电压安全裕度(VSM)的指标,并被用于旨在获得要减少的最小负载的优化算法中。所提出的方法已在IEEE 39总线网络中实现,证明了其有效性和适用性。

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