Abstract — We propose an optimal control framework for persistent monitoring problems where the objective is to control the movement of mobile agents to minimize an uncertainty metric in a given mission space. For a single agent in a one-dimensional space, we show that the optimal solution is obtained in terms of a sequence of switching locations, thus reducing it to a parametric optimization problem. Using Infinitesimal Perturbation Analysis (IPA) we obtain a complete solution through a gradient-based algorithm. We also discuss a receding horizon controller which is capable of obtaining a near-optimal solution on-the-fly. We illustrate our approach with numerical examples. I
The general problem of multi-agent persistent monitoring finds applications in a variety of domains ...
We study the problem of persistent monitoring of a finite number of inter-connected geographical nod...
In a wide range of domains, such as pipeline inspection, surveillance in smart cities and tracking o...
We propose an optimal control framework for persistent monitoring problems where the objective is to...
Thesis (Ph. D.)--Boston UniversityPersistent monitoring tasks arise when agents must monitor a dynam...
This work shows the existence of optimal control laws for persistent monitoring of mobile targets in...
We approach the problem of persistent monitoring of a finite set of fixed targets located in a one-d...
We address the problem of persistent monitoring, where a finite set of mobile agents has to persiste...
We investigate the problem of persistently monitoring a finite set of targets with internal states t...
We investigate the problem of persistently monitoring a finite set of targets with internal states t...
This paper investigates the problem of persistent monitoring, where a finite set of mobile agents pe...
In persistent monitoring tasks, cooperating mobile agents are used to monitor a dynamically changing...
We investigate the problem of persistent monitoring, where a mobile agent has to survey multiple tar...
We investigate the problem of optimally observing a finite set of targets using a mobile agent over ...
We study the problem of persistent monitoring of a finite number of inter-connected geographical nod...
The general problem of multi-agent persistent monitoring finds applications in a variety of domains ...
We study the problem of persistent monitoring of a finite number of inter-connected geographical nod...
In a wide range of domains, such as pipeline inspection, surveillance in smart cities and tracking o...
We propose an optimal control framework for persistent monitoring problems where the objective is to...
Thesis (Ph. D.)--Boston UniversityPersistent monitoring tasks arise when agents must monitor a dynam...
This work shows the existence of optimal control laws for persistent monitoring of mobile targets in...
We approach the problem of persistent monitoring of a finite set of fixed targets located in a one-d...
We address the problem of persistent monitoring, where a finite set of mobile agents has to persiste...
We investigate the problem of persistently monitoring a finite set of targets with internal states t...
We investigate the problem of persistently monitoring a finite set of targets with internal states t...
This paper investigates the problem of persistent monitoring, where a finite set of mobile agents pe...
In persistent monitoring tasks, cooperating mobile agents are used to monitor a dynamically changing...
We investigate the problem of persistent monitoring, where a mobile agent has to survey multiple tar...
We investigate the problem of optimally observing a finite set of targets using a mobile agent over ...
We study the problem of persistent monitoring of a finite number of inter-connected geographical nod...
The general problem of multi-agent persistent monitoring finds applications in a variety of domains ...
We study the problem of persistent monitoring of a finite number of inter-connected geographical nod...
In a wide range of domains, such as pipeline inspection, surveillance in smart cities and tracking o...