Developing a Robust Emergency Information System for Natural Disasters

K. Papatheodosiou, C. Angeli
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Abstract

: A lot of Emergency Information Systems have been developed to inform people about impending emergencies. Most of them are part of an integrated system, collaborating with a respective warning system. No matter which technology is employed in the development process, an Emergency Information System aspires to deliver emergency content accurately and rapidly. Most of Emergency Information Systems transmit the emergency content in a predetermined geographical area. In parallel, a typical DRM Emergency Information System doesn’t vouch for transmission accuracy in the case of a possible communication loss or a power outage. This paper presents a DRM-based Emergency Information System that works well in remote areas with rough geographical terrain, offsetting a possible communication loss or a possible power outage. An efficient broadcast selection algorithm has been developed to answer this purpose. The paper also indicates the maximum coverage of the underlying system, in a mountainous area (Vigla), taking advantage of a standard methodology called " LEGBAC”. Specific software was used to come up with the wide area coverage map. The results proved that our system achieved maximum coverage in any antenna calibration (99% approximately) and the value of the respective signal strength was not significantly altered by the increase in the number of kilometers away from the transmission center, indicating the robustness of our system and the competency of the broadcast selection algorithm.
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建立健全的自然灾害应急信息系统
当前位置已经开发了许多紧急信息系统来通知人们即将发生的紧急情况。它们大多是一个综合系统的一部分,与各自的预警系统协作。无论在开发过程中采用何种技术,应急信息系统都力求准确、快速地传递应急信息。大多数应急信息系统在预定的地理区域内传输应急信息。与此同时,典型的DRM紧急信息系统不能保证在可能发生通信丢失或停电的情况下传输的准确性。本文提出了一种基于drm的应急信息系统,该系统在地理地形粗糙的偏远地区工作良好,可以弥补可能的通信丢失或停电。为了解决这一问题,开发了一种高效的广播选择算法。该文件还指出了利用称为“LEGBAC”的标准方法在山区(Vigla)的基础系统的最大覆盖范围。使用特定的软件来绘制广域覆盖图。结果表明,该系统在任何天线校准中都实现了最大的覆盖范围(约99%),并且随着距离传输中心公里数的增加,各自的信号强度值没有显著改变,表明了系统的鲁棒性和广播选择算法的能力。
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