Dynamic Stability Analysis of Ac/dc Power Systems Including Nonlinear Loads PDF Download

Are you looking for read ebook online? Search for your book and save it on your Kindle device, PC, phones or tablets. Download Dynamic Stability Analysis of Ac/dc Power Systems Including Nonlinear Loads PDF full book. Access full book title Dynamic Stability Analysis of Ac/dc Power Systems Including Nonlinear Loads by Khaled Awad Ellithy. Download full books in PDF and EPUB format.

Dynamic Stability Analysis of Ac/dc Power Systems Including Nonlinear Loads

Dynamic Stability Analysis of Ac/dc Power Systems Including Nonlinear Loads PDF Author: Khaled Awad Ellithy
Publisher:
ISBN:
Category : Electric power system stability
Languages : en
Pages : 326

Book Description


Dynamic Stability Analysis of Ac/dc Power Systems Including Nonlinear Loads

Dynamic Stability Analysis of Ac/dc Power Systems Including Nonlinear Loads PDF Author: Khaled Awad Ellithy
Publisher:
ISBN:
Category : Electric power system stability
Languages : en
Pages : 326

Book Description


Power System Dynamics and Stability

Power System Dynamics and Stability PDF Author: Peter W. Sauer
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 376

Book Description
For a one-semester senior or beginning graduate level course in power system dynamics. This text begins with the fundamental laws for basic devices and systems in a mathematical modeling context. It includes systematic derivations of standard synchronous machine models with their fundamental controls. These individual models are interconnected for system analysis and simulation. Singular perturbation is used to derive and explain reduced-order models.

Advanced Hierarchical Control and Stability Analysis of DC Microgrids

Advanced Hierarchical Control and Stability Analysis of DC Microgrids PDF Author: Andrei-Constantin Braitor
Publisher: Springer Nature
ISBN: 3030954153
Category : Technology & Engineering
Languages : en
Pages : 185

Book Description
This book introduces several novel contributions into the current literature. Firstly, given that microgrid topologies are paramount in theoretical analysis, the author has proposed a rigorous method of computing the network’s admittance matrix and developed to facilitate the stability analysis of DC microgrids supplying nonlinear loads. This unique approach enabled the factorisation of the admittance matrix in a particular way that facilitates a rigorous theoretical analysis for deriving the stability conditions. Secondly, author has proposed a unified control structure at the primary control layer that maintains the widely accepted droop-based approaches and additionally ensures crucial current- and voltage-limiting properties, thus offering an inherent protection to distributed energy resources. He has formalised the control design proofs using Lyapunov methods and nonlinear ultimate boundedness theory, for both parallel and meshed microgrid configurations. Moreover, he has developed a distributed secondary controller using a diffusive coupling communication network, on top of the primary control, to achieve voltage restoration and improve the power sharing. In this way, the author has formulated the complete hierarchical control scheme. In this high-order nonlinear setting, he has analytically proven closed-loop system stability of the overall system, for the first time, using two-time scale approaches and singular perturbation theory, by formulating rigorous theorems that introduce straightforward conditions that guide the system and control design and demonstrate system stability at the desired equilibrium point. In addition, the author has provided a straightforward algorithm for simple testing of system stability and explored from a graphical perspective by giving an interpretation to the effect of the nonlinear load onto the system performance and stability.

Power System Transient Stability Analysis Using the Transient Energy Function Method

Power System Transient Stability Analysis Using the Transient Energy Function Method PDF Author: Abdel-Azia Fouad
Publisher: Pearson Education
ISBN: 0132440512
Category : Technology & Engineering
Languages : en
Pages : 381

Book Description
This book details the state of the art in the development and application of the transient energy function (TEF) method as a tool for power system transient stability assessment. It provides both the analytical foundations of the TEF method and the practical issues involved in the application of the method to analyze power systems. Of primary interest to electric utility engineers who need to understand and apply the technique, as well as engineers in research organizations involved in research and development projects on power system dynamics, and utility engineers interested in the use of the TEF method as a tool for dynamic security assessment.

DYNAMIC MODELING, STABILITY ANALYSIS AND CONTROL OF AC/DC INTERCONNECTED MICROGRID USING DQ-TRANSFORMATION

DYNAMIC MODELING, STABILITY ANALYSIS AND CONTROL OF AC/DC INTERCONNECTED MICROGRID USING DQ-TRANSFORMATION PDF Author: Partha Sarathi Sarker
Publisher:
ISBN:
Category :
Languages : en
Pages : 126

Book Description
In recent years, there have been significant changes in power systems due to the integration of renewables, distributed generation, switched power loads, and energy storage systems, etc. Locally these AC/DC microgrids include both DC generation (such as solar PV) and AC generation (such as wind generation), various DC and AC loads, converters and inverters, and energy storage systems, such as storage batteries and supercapacitors. DC systems are often characterized as low inertia systems whereas AC generation and systems are usually high inertia and high time constant systems. As such, various components of the microgrid will have different temporal characteristics in case of disturbances, such as short circuit, load switchings, etc. which may lead to instability of the microgrid. This research develops the first principle model for coupling the AC and the DC subsystem of an integrated AC/DC microgrid utilizing the dq-framework. The developed model is highly nonlinear and captures the dynamic interaction between the AC and DC subsystems of the microgrid. Lyapunov stability is used to evaluate the stability of the complete system. Simulation results show that the AC and DC subsystems are tightly dynamically coupled so that any disturbance in one subsystem induces transients in the other subsystem. Induced transients due to pulse loads on the AC and DC subsystems clearly show that generator damper winding alone may not be enough to mitigate transients in the microgrid. Addition of prime mover and excitation system controllers for the generator improves the transients primarily on the AC subsystem. Thus, a battery storage with a charge/discharge controller was also added to the DC subsystem. Simulations of the AC/DC microgrid with all three controllers validate the smooth operation of the system for all types of disturbances. The proposed method can be extended in modeling microgrid with multiple generators and various types of loads.

AC-DC Power System Analysis

AC-DC Power System Analysis PDF Author: J. Arrillaga
Publisher: IET
ISBN: 9780852969342
Category : Technology & Engineering
Languages : en
Pages : 410

Book Description
A graduate-level textbook that can also serve as a reference for engineers and researchers working on problems in modern power systems. Emphasizes incorporating HVDC converters and systems into the analysis of power systems, but describes algorithms that can be extended to other industrial components such as drives and smelters and to the flexible AC transmission systems technology. Considers only system studies, influenced by steady-state or transient converter control; and not fast transients such as lightning. Annotation copyrighted by Book News, Inc., Portland, OR

Integration of High Voltage AC/DC Grids into Modern Power Systems

Integration of High Voltage AC/DC Grids into Modern Power Systems PDF Author: Fazel Mohammadi
Publisher: MDPI
ISBN: 3039365258
Category : Technology & Engineering
Languages : en
Pages : 140

Book Description
Electric power transmission relies on AC and DC grids. The extensive integration of conventional and nonconventional energy sources and power converters into power grids has resulted in a demand for high voltage (HV), extra-high voltage (EHV), and ultra-high voltage (UHV) AC/DC transmission grids in modern power systems. To ensure the security, adequacy, and reliable operation of power systems, the practical aspects of interconnecting HV, EHV, and UHV AC/DC grids into the electric power systems, along with their economic and environmental impacts, should be considered. The stability analysis for the planning and operation of HV, EHV, and UHV AC/DC grids in power systems is regarded as another key issue in modern power systems. Moreover, interactions between power converters and other power electronics devices (e.g., FACTS devices) installed on the network are other aspects of power systems that must be addressed. This Special Issue aims to investigate the integration of HV, EHV, and UHV AC/DC grids into modern power systems by analyzing their control, operation, protection, dynamics, planning, reliability, and security, along with considering power quality improvement, market operations, power conversion, cybersecurity, supervisory and monitoring, diagnostics, and prognostics systems.

Small-signal Dynamic Stability Enhancement Of A DC-segmented AC Power System

Small-signal Dynamic Stability Enhancement Of A DC-segmented AC Power System PDF Author: Sahar Pirooz Azad
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


1984 Midwest Power Symposium

1984 Midwest Power Symposium PDF Author:
Publisher:
ISBN:
Category : Electric power
Languages : en
Pages : 578

Book Description


Small-Signal Stability Analysis of Power Systems Integrated with Variable Speed Wind Generators

Small-Signal Stability Analysis of Power Systems Integrated with Variable Speed Wind Generators PDF Author: Wenjuan Du
Publisher: Springer
ISBN: 3319941682
Category : Technology & Engineering
Languages : en
Pages : 362

Book Description
This book reviews and examines how power system low-frequency power oscillations and sub-synchronous oscillations may be affected by grid connection of wind power generation. Grid connection of wind power generation affects the power system small-signal stability and has been one of the most actively pursued research subjects in power systems and power electronics engineering in the last ten years. This book is the first of its kind to cover the impact of wind power generation on power system low-frequency oscillations and sub-synchronous oscillations. It begins with a comprehensive overview of the subject and progresses to modeling of power systems and introduces the application of conventional methods, including damping torque analysis, modal analysis and frequency-domain analysis, presented with detailed examples, making it useful for researchers and engineers worldwide.