Summarization: Practical large-scale nonlinear control systems (PLSNCS) require an intensive and time-consuming fine-tuning process in order to achieve a satisfactory - or, even, acceptable - performance. In the majority of PLSNCS the fine-tuning process is performed by experienced personnel based on field observations and by experimenting with different combinations of controller parameters, without the use of a systematic approach. Adaptive Optimization (AO) methods such as the SPSA or AFT1 provide probably the most promising approach for the development of a systematic methodology for automatic and efficient fine-tuning of PLSNCS. However, despite the success of AO methodologies in particular fine-tuning control applications, these metho...
Summarization: The design and deployment of the majority of Management and Control Systems (MCS) for...
Currently, a considerable amount of human effort and time is spent for initialization or calibration...
Summarization: Currently, a considerable amount of human effort and time is spent for initialization...
Practical large-scale nonlinear control systems (PLSNCS) require an intensive and time-consuming fin...
Summarization: Practical large-scale nonlinear control systems require an intensive and time-consumi...
The majority of practical Large-Scale Traffic Control Systems (LSTCSs) requires the optimization (fi...
The majority of practical Large-Scale Traffic Control Systems (LSTCSs) requires the optimization (fi...
Practical large-scale nonlinear control systems require an intensive and time-consuming effort for t...
Summarization: In this paper, we study the problem of optimizing (fine-tuning) the design parameters...
In this paper, we study the problem of optimizing (fine-tuning) the design parameters of large-scale...
In this paper, we study the problem of optimizing (fine-tuning) the design parameters of large-scale...
Summarization: Nonlinear optimal control may deliver optimal decisions under any scenario related to...
This dissertation investigates methods of real-time adaptive traffic signal control in the context o...
In this paper we present a control scheme for heterogeneous transportation networks which is based o...
Recent advances in technology and computer sci- ence play a key role towards the design of the next ...
Summarization: The design and deployment of the majority of Management and Control Systems (MCS) for...
Currently, a considerable amount of human effort and time is spent for initialization or calibration...
Summarization: Currently, a considerable amount of human effort and time is spent for initialization...
Practical large-scale nonlinear control systems (PLSNCS) require an intensive and time-consuming fin...
Summarization: Practical large-scale nonlinear control systems require an intensive and time-consumi...
The majority of practical Large-Scale Traffic Control Systems (LSTCSs) requires the optimization (fi...
The majority of practical Large-Scale Traffic Control Systems (LSTCSs) requires the optimization (fi...
Practical large-scale nonlinear control systems require an intensive and time-consuming effort for t...
Summarization: In this paper, we study the problem of optimizing (fine-tuning) the design parameters...
In this paper, we study the problem of optimizing (fine-tuning) the design parameters of large-scale...
In this paper, we study the problem of optimizing (fine-tuning) the design parameters of large-scale...
Summarization: Nonlinear optimal control may deliver optimal decisions under any scenario related to...
This dissertation investigates methods of real-time adaptive traffic signal control in the context o...
In this paper we present a control scheme for heterogeneous transportation networks which is based o...
Recent advances in technology and computer sci- ence play a key role towards the design of the next ...
Summarization: The design and deployment of the majority of Management and Control Systems (MCS) for...
Currently, a considerable amount of human effort and time is spent for initialization or calibration...
Summarization: Currently, a considerable amount of human effort and time is spent for initialization...