A Unified-Index Based Distributed Specification for Heterogeneous Components Management

Author(s):  
Ming Zhong ◽  
Yaoxue Zhang ◽  
Pengwei Tian ◽  
Cunhao Fang ◽  
Yuezhi Zhou
Keyword(s):  
Mathematics ◽  
2020 ◽  
Vol 8 (9) ◽  
pp. 1434 ◽  
Author(s):  
Wonhee Kim ◽  
Sangmin Suh

For several decades, disturbance observers (DOs) have been widely utilized to enhance tracking performance by reducing external disturbances in different industrial applications. However, although a DO is a verified control structure, a conventional DO does not guarantee stability. This paper proposes a stability-guaranteed design method, while maintaining the DO structure. The proposed design method uses a linear matrix inequality (LMI)-based H∞ control because the LMI-based control guarantees the stability of closed loop systems. However, applying the DO design to the LMI framework is not trivial because there are two control targets, whereas the standard LMI stabilizes a single control target. In this study, the problem is first resolved by building a single fictitious model because the two models are serial and can be considered as a single model from the Q-filter point of view. Using the proposed design framework, all-stabilizing Q filters are calculated. In addition, for the stability and robustness of the DO, two metrics are proposed to quantify the stability and robustness and combined into a single unified index to satisfy both metrics. Based on an application example, it is verified that the proposed method is effective, with a performance improvement of 10.8%.


2012 ◽  
pp. 929-943
Author(s):  
Seema Verma ◽  
Rakhee Kulshrestha ◽  
Savita Kumari

The data broadcast policies have been developed for single channel and multi channel with various scheduling and indexing techniques. For the data management policies which consider the different broadcast cycles for different broadcast operators, it can be said that traditional types of data management policies are known previously, and the policies of Central Server (CS) and Unified Index Hub (UIH), which consider single broadcast cycle for all operators, are recent. This chapter presents both strategies very simply for better understanding, discusses the work done in the past and present on data broadcast management, along with suggestions for the future possibilities to explore the field.


2014 ◽  
Vol 41 (2) ◽  
pp. 575-581 ◽  
Author(s):  
Dang-Quang Nguyen ◽  
James Renwick ◽  
James McGregor

2021 ◽  
Vol 126 (4) ◽  
pp. 3209-3226
Author(s):  
Siying Li ◽  
Huawei Shen ◽  
Peng Bao ◽  
Xueqi Cheng
Keyword(s):  

Author(s):  
Seema Verma ◽  
Rakhee Kulshrestha ◽  
Savita Kumari

The data broadcast policies have been developed for single channel and multi channel with various scheduling and indexing techniques. For the data management policies which consider the different broadcast cycles for different broadcast operators, it can be said that traditional types of data management policies are known previously, and the policies of Central Server (CS) and Unified Index Hub (UIH), which consider single broadcast cycle for all operators, are recent. This chapter presents both strategies very simply for better understanding, discusses the work done in the past and present on data broadcast management, along with suggestions for the future possibilities to explore the field.


2018 ◽  
Vol 100 (9-12) ◽  
pp. 2435-2454 ◽  
Author(s):  
Minakshi Kumari ◽  
Makarand S. Kulkarni

2016 ◽  
Vol 18 (6) ◽  
pp. 990-1006 ◽  
Author(s):  
M. Karamouz ◽  
E. Rasoulnia ◽  
Z. Zahmatkesh ◽  
M. A. Olyaei ◽  
A. Baghvand

Wastewater treatment plants (WWTPs) have a significant role in urban systems’ serviceability. These infrastructures, especially in coastal regions, are vulnerable to flooding. To minimize vulnerability, a better understanding of flood risk must be realized. To quantify the extent of efforts for flood risk management, a unified index is needed for evaluating resiliency as a key concept in understanding vulnerability. Here, a framework is developed to evaluate the resiliency of WWTPs in coastal areas of New York City. An analysis of the current understanding of vulnerability is performed and a new perspective utilizing different components including resourcefulness, robustness, rapidity, and redundancy is presented to quantify resiliency using a multi-criteria decision-making (MCDM) technique. To investigate the effect of certain factors of WWTPs on resiliency, uncertainty analysis is also incorporated in developing the framework. As a result, rather than a single value, a range of variation for each WWTP's resiliency is obtained. Finally, improvement of WWTPs’ performance is investigated by allocating financial resources. The results show the significant value of quantifying and improving resiliency that could be used in development of investment strategies. Consideration of uncertainty in the analysis is of great worth to estimate the potential room for improvement of resiliency of individual WWTPs.


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