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A Nonlinear Regression Method for Composite Protection Modeling of Induction Motor Loads

机译:异步电动机负荷复合保护建模的非线性回归方法

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Protection equipment is used to prevent damage to induction motor loads by isolating them from power systems in the event of severe faults. Modeling the response of induction motor loads and their protection is vital for power system planning and operation, especially in understanding system's dynamic performance and stability after a fault occurs. Induction motors are usually equipped with several types of protection with different operation mechanisms, making it challenging to develop adequate yet not overly complex protection models and determine their parameters for aggregate induction motor models. This paper proposes an optimization-based nonlinear regression framework to determine protection model parameters for aggregate induction motor loads in commercial buildings. Using a mathematical abstraction, the task of determining a suitable set of parameters for the protection model in composite load models is formulated as a nonlinear regression problem. Numerical examples are provided to illustrate the application of the framework. Sensitivity studies are presented to demonstrate the impact of lack of available motor load information on the accuracy of the protection models.
机译:保护设备用于在发生严重故障时通过将感应电动机负载与电源系统隔离来防止损坏感应电动机负载。对感应电动机负载的响应及其保护进行建模对于电力系统的规划和运行至关重要,尤其是在了解发生故障后系统的动态性能和稳定性时。感应电动机通常配备有几种具有不同操作机制的保护类型,这使得开发适当但又不太复杂的保护模型并确定其参数以集成感应电动机模型具有挑战性。本文提出了一种基于优化的非线性回归框架,用于确定商业建筑中感应电动机总负荷的保护模型参数。使用数学抽象,为复合负载模型中的保护模型确定一组合适的参数的任务被表述为非线性回归问题。提供了数值示例来说明该框架的应用。进行了敏感性研究,以证明缺乏可用的电动机负载信息对保护模型的准确性的影响。

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