Taking the requirements of emergency response as research background, an emergency response algorithm based on autonomic configuration was presented, which solved the choice of emergency response time and the reconfiguration of emergency resources in the process of autonomic emergency. 以应急响应需求为背景,提出了一种基于自主配置的生存应急响应算法,解决了自主应急过程中的应急响应时间(ERT)点的选择和应急资源重配的问题。
The second stage is the building of the distribution model of emergency supplies with three-layer node networks existing in the practice of emergency management. The model aims at minimizing the system losses and meets the constraints of emergency response time and fairness constraint. 综合考虑我国应急管理实践、应急响应时间(ERT)限制,以及应急物资分配中的公平要求,在三级应急物资运输网络的基础上,建立了以系统损失最小为目标的应急物资分配决策模型。
The results show that the nearest server dispatching can reduce emergency response time greatly, the model server dispatching improved response significantly, confirming the effectiveness of the proposed model. 结果表明:最近服务方式能显著缩短事件响应时间,在此基础上提出的模型服务方式,进一步改善了事件响应效率。
Design of Emergency Rescue Network with Response Time Randomness 考虑反应时间随机性的突发事件救援网络设计
A detection algorithm is brought forward which can find abnormity in the forepart of worm eruption by detection on variable rate of network flux, and then network administrators and emergency response teams can gain more time to take measures before worm blocks the network. 提出了一种蠕虫爆发检测算法,通过对网络流量变化率的监测,可以在蠕虫爆发的前期发现网络异常,从而使网络管理员和应急响应组织获得更多的反应时间,在蠕虫阻塞网络之前采取措施。