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Optimal Camera Planning Under Versatile User Constraints in Multi-Camera Image Processing Systems
DOI:10.1109/TIP.2013.2287606.png)
摘要
En 中文
The selection of optimal camera configurations (camera locations, orientations, etc.) for multi-camera networks remains an unsolved problem. Previous approaches largely focus on proposing various objective functions to achieve different tasks. Most of them, however, do not generalize well to large scale networks. To tackle this, we propose a statistical framework of the problem as well as propose a trans-dimensional simulated annealing algorithm to effectively deal with it. We compare our approach with a state-of-the-art method based on binary integer programming (BIP) and show that our approach offers similar performance on small scale problems. However, we also demonstrate the capability of our approach in dealing with large scale problems and show that our approach produces better results than two alternative heuristics designed to deal with the scalability issue of BIP. Last, we show the versatility of our approach using a number of specific scenarios.
Keyword:
Binary integer programming
camera placement
camera planning
multi-camera networks
optimization methods
reversible jump Markov chain Monte Carlo
sensor planning
trans-dimensional simulate annealing
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期刊
IF:
13.7
论文数:
1.0W
被引数:
8.4W
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