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An Object Oriented Perspective for AC/MTDC System Simulation

机译:AC / MTDC系统仿真的面向对象视角

摘要

Object oriented methodology (OOM) has added a new dimension for the representation, modelling and simulation of various day-to-day applications. The basic paradigm of OOM reflects the closeness to which the methodology relates to the real world entities. Over a period of time, the requirement of detailed and exact representation with no approximation of real world objects that reflects its behavioural pattern is on the rise. This has resulted in the terminology of `complex objects' in system simulation. An AC-MTDC (multi-terminal DC) system has several interrelated/interconnected components and poses a complex picture. Objectifying such a system will lead to an easier rendering of the system design/analysis/identification/performance evaluation and control, and help in better understanding of the system in its entirety. In this paper, a full representation of the various DC system sub components are used for developing classes of components. Detailed representation along with the various attributes and methodologies associated with each of these components are represented. The case study undertaken in this paper is a four terminal AC/MTDC system with all its terminal components. The paper highlights the various advantages the OOM technique offers for power system modelling. This notation is of immense help especially during the system design stage wherein the tuning of various system components can be achieved without undergoing the rigor of the conventional methods.
机译:面向对象方法(OOM)为各种日常应用程序的表示,建模和仿真增加了新的维度。 OOM的基本范例反映了该方法与现实世界实体之间的紧密联系。在一段时间内,越来越需要对详细,准确的表示方式进行逼近,而不需要逼真的真实世界对象的近似值。这导致了系统仿真中“复杂对象”的术语。 AC-MTDC(多端子DC)系统具有多个相互关联/互连的组件,并且构成了复杂的画面。使这样的系统客观化将使系统设计/分析/识别/性能评估和控制更容易呈现,并有助于更好地理解整个系统。在本文中,各种DC系统子组件的完整表示用于开发组件类。表示了详细的表示以及与这些组件中的每个组件关联的各种属性和方法。本文进行的案例研究是一个四端子AC / MTDC系统,其中包含所有端子组件。本文着重介绍了OOM技术为电力系统建模提供的各种优势。该表示法尤其在系统设计阶段提供了极大帮助,在该系统设计阶段中,无需经历常规方法的严格操作即可实现各种系统组件的调整。

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