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Effect of dynamic load models on WAC operation and demand-side control under real-time conditions

机译:动态负荷模型对实时条件下WAC操作和需求侧控制的影响

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摘要

The vast majority of the proposed Wide Area Control (WAC) methodologies is tested and evaluated under the assumption that the system consists only of constant power loads. However, in practice power systems are dominated by non-linear loads, which can potentially affect the smooth operation of the wide area controller and deteriorate the system's stability. This paper is firstly focused on examining the impact of various and commonly used non-linear load models (static and dynamic), such as the exponential, exponential dynamic, ZIP and ZIPInduction Motor (ZIP-IM) load models on the WAC performance. Real-time simulations on the IEEE 39-bus dynamic test system indicate that the load recovery dynamics of the exponential dynamic load model have a severe impact on the WAC operation, leading the system to instability. Furthermore, it is illustrated that, loads with constant power/current/impedance characteristics have limited effect on the WAC damping capability, even with dynamics included. To address the impact of the exponential dynamic loads on the WAC performance, a novel wide area controller is proposed for coordinating simultaneously all the synchronous generators and controllable loads of the system. Finally, the effect of the size and flexibility of the controllable demand on the performance of the proposed scheme is also investigated, while the robustness of the proposed scheme is evaluated under measurement errors and erroneous generator parameters.
机译:在假设系统中仅由恒定功率负载组成,测试和评估了绝大多数提出的广域控制(WAC)方法。然而,在实践中,电力系统由非线性载荷支配,这可能会影响宽区域控制器的平滑操作并使系统的稳定性劣化。本文首先专注于检查各种和常用的非线性负载模型(静态和动态)的影响,例如指数,指数动态,ZIP和ZIPINGUCTOM电机(ZIP-IM)负载模型在WAC性能上。 IEEE 39总线动态测试系统的实时模拟表明指数动态负载模型的负载恢复动态对WAC操作产生严重影响,导致系统不稳定。此外,示出了,即使包括包括动态的动态,具有恒定功率/电流/阻抗特性的负载对WAC阻尼能力的影响有限。为了解决指数动态负载对WAC性能的影响,提出了一种新的宽区域控制器,用于同时协调所有同步发电机和系统的可控负载。最后,还研究了对所提出的方案性能的可控需求的尺寸和灵活性的影响,而在测量误差和错误的发电机参数下评估所提出的方案的稳健性。

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