Novel visual sensor deployment algorithm in PTZ wireless visual sensor networks

Hong-Hsu Yen
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引用次数: 10

Abstract

In this paper, we consider the visual sensor deployment algorithm in Pan-Tilt-Zoom (PTZ) Wireless Visual Sensor Networks (WVSN). With the capability of panning, tilting and zooming, the sensor visual coverage can be enlarged and fewer visual sensors are needed as compared to the traditional WVSN. We divide the Field of View (FoV) of the PTZ sensor into two regions, Direct Coverage Region (DCR) and PTZ Coverage Region (PTZCR). In the PTZCR, the visual sensor need to pan-tilt-zoom the camera angle to cover the object. Because pan-tilt-zoom is a slow mechanic operation, visual sensor might not be able to adjust the angle in time to capture the visual data. One possible way to alleviate this problem is to make sure the PTZCR are covered by M sensors. With large M, there is a high probability of adjusting the camera in time to capture the visual data at the PTZCR by at least one camera. We tackle this visual sensor deployment problem in PTZ WVSN to make sure that each area is either covered in the DCR of a single visual sensor or in the PTZCR of M sensors. Then novel heuristic, PTZA algorithm, is proposed to solve the problem. In the computational experiments, we find out that PTZ capable camera sensor could significantly reduce the number of deployed sensors especially in smaller sensing range and smaller camera span angle.
PTZ无线视觉传感器网络中新的视觉传感器部署算法
本文研究了Pan-Tilt-Zoom (PTZ)无线视觉传感器网络(WVSN)中视觉传感器的部署算法。与传统的WVSN相比,该网络具有平移、倾斜和缩放的能力,可以扩大传感器的视觉覆盖范围,并且所需的视觉传感器数量更少。我们将PTZ传感器的视场(FoV)划分为直接覆盖区(DCR)和PTZCR两个区域。在PTZCR中,视觉传感器需要平移倾斜变焦相机角度以覆盖目标。由于平移-倾斜变焦是一个缓慢的机械操作,视觉传感器可能无法及时调整角度来捕捉视觉数据。缓解这个问题的一种可能的方法是确保PTZCR被M个传感器覆盖。如果M较大,则至少有一台相机可以及时调整相机以捕获PTZCR处的视觉数据。我们在PTZ WVSN中解决了这个视觉传感器部署问题,以确保每个区域要么覆盖在单个视觉传感器的DCR中,要么覆盖在M个传感器的PTZCR中。然后提出了一种新的启发式算法——PTZA算法来解决这一问题。在计算实验中,我们发现具有PTZ功能的相机传感器可以显著减少传感器的部署数量,特别是在较小的传感范围和较小的相机跨度角度下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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