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Journal ArticleDOI

The IEEE Reliability Test System-1996. A report prepared by the Reliability Test System Task Force of the Application of Probability Methods Subcommittee

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TLDR
In this article, an enhanced test system (RTS-96) is described for use in bulk power system reliability evaluation studies, which will permit comparative and benchmark studies to be performed on new and existing reliability evaluation techniques.
Abstract
This report describes an enhanced test system (RTS-96) for use in bulk power system reliability evaluation studies. The value of the test system is that it will permit comparative and benchmark studies to be performed on new and existing reliability evaluation techniques. The test system was developed by modifying and updating the original IEEE RTS (referred to as RTS-79 hereafter) to reflect changes in evaluation methodologies and to overcome perceived deficiencies.

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Citations
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Journal ArticleDOI

The Subgradient Simplex Cutting Plane Method for Extended Locational Marginal Prices

TL;DR: A subgradient simplex cutting plane method is developed to obtain ELMPs and results show that the optimal multiplier is efficiently obtained.
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Leveraging Network Topology Optimization to Strengthen Power Grid Resilience Against Cyber-Physical Attacks

TL;DR: The results of the case studies show that the proposed NTO based mitigation strategy can effectively reduce the load loss of the power system under the coordinated cyber-physical attacks.
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Investing in Generation Capacity: A Multi-Stage Linear-Decision-Rule Approach

TL;DR: This paper proposes a multi-stage generation investment model where the demand growth and the investment costs of generating units are uncertain, and uses a linear decision rule (LDR) approach, which allows for several decision stages while achieving appropriate computing times.
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Expansion Planning Studies of Independent-Locally Operated Battery Energy Storage Systems (BESSs): A CVaR-Based Study

TL;DR: A new bi-level framework for expansion studies of ESSs is proposed, where the long-term total cost of bulk power systems and the scheduling of independent-locally operated E SSs are modeled in the upper level (UL) and lower-level (LL) problems, respectively.
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Optimal planning of HVDC-based bundled wind–thermal generation and transmission system

TL;DR: In this article, a comprehensive optimization planning model is formulated by taking the unit generation cost as the objective function and using the compensating capacity of thermal generating units and the rated capacity of converter station as the constraints.
References
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Journal ArticleDOI

IEEE Reliability Test System

TL;DR: In this article, a load model, generation system, and transmission network which can be used to test or compare methods for reliability analysis of power systems is described. But the authors focus on the reliability of the power system and do not consider the transmission system.
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The IEEE Reliability Test System - Extensions to and Evaluation of the Generating System

TL;DR: The RTS is extended by including more factors and system conditions which may be included in the reliability evaluation of generating systems to create a wider set of consistent data.
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Effect of Station Originated Outages in a Composite System Adequacy Evaluation of the IEEE Reliability Test System

TL;DR: In this article, the effects of terminal stations in composite system reliability evaluation by using the IEEE Reliability Test System (RTS) are discussed. But the authors do not consider the impact of station originated outages on the composite system adequacy indices.
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A comprehensive approach for adequacy and security evaluation of bulk power systems

TL;DR: In this paper, a new approach is described for assessing the adequacy and security of bulk power systems, which takes into account generation and transmission failures, load variation, generation economic dispatch, security limits, maintenance schedules, the control actions implemented in emergencies.
Journal ArticleDOI

Incorporation of a DC-link in a composite system adequacy assessment-composite system analysis

TL;DR: In this paper, the IEEE Reliability Test System (RTS) is augmented by adding a direct current (DC) link and is used as the test system for adequacy evaluation of a composite generation and transmission system.