In order to increase the productivity of construction industry, emerging technologies have been constantly introduced and applied in this traditional industry by pilot researchers. This paper provides an integrated mo...In order to increase the productivity of construction industry, emerging technologies have been constantly introduced and applied in this traditional industry by pilot researchers. This paper provides an integrated model of radio-frequency identification (RFID) and four-dimensional Computer-Aided Design (4D CAD) in construction management. RFID involves the use of tags that collect data and transmit data. RFID can collect data by radio waves instead of light waves. RFID technology is surpassing barcode technology where light waves are easily blocked and barcode labels are easy to fall off or become unreadable due to dust, dirt, or other contaminants. 4D CAD which involves 3D construction models and construction schedules presents visualized construction process. Integration of RFID and 4D CAD in this paper built a dynamic construction management and control system which would reduce the time of capturing data on site and control quality of construction materials efficiently. Pilot test result shows that a construction manager can easily understand how and what a complicated construction project will be accomplished. Although further analysis is necessary, RFID and 4D CAD show promises of being a beneficial technology in construction management.展开更多
针对温度感知RFID(radio frequency identification)标签应用于冷链物流温度监测中缺乏有效数据验证的问题,该研究通过将42个温度感知RFID标签部署于冷链模拟平台中,划分了7个横截面、3个纵截面和两个层,设置了机械降温-冷链维持-自然回...针对温度感知RFID(radio frequency identification)标签应用于冷链物流温度监测中缺乏有效数据验证的问题,该研究通过将42个温度感知RFID标签部署于冷链模拟平台中,划分了7个横截面、3个纵截面和两个层,设置了机械降温-冷链维持-自然回温3个不同阶段,同时在42个监测位点中选择7个位点同步部署了便携式温度记录仪,获取了不同条件下的温度监测数据,并与便携式温度记录仪数据和CFD(computational fluid dynamics)模拟数据进行了比较。7个温度感知RFID标签与便携式温度记录仪同步监测位点的数据表明,两种监测方法温差分布于±0.5℃范围内的数据点最多,占43.6%,温差分布于-1.0^-0.5℃区间的数据占了24.6%,考虑到2种设备自身的温度采集精度,温差在±0.8℃范围内可接的,其比例占71.3%,因此利用温度感知RFID标签进行冷链温度监测是可行的。对42个位点在3个不同阶段的温度监测数据表明,机械降温阶段各位点用时在1 h以内、冷链维持阶段大部分位点表现出温度在在0~4℃之间振荡的特征、自然回温阶段用时约49 h。深入分析机械降温阶段及冷链维持阶段不同截面的温度监测数据,结果表明3种截面均表现为降温初始阶段温度差值不稳定、稳定后具有明显的分布特征且离出风口较近降温较快的特点。以横截面2和横截面6平均温度为例,将温度感知RFID标签数据采集数据与CFD模拟数据进行比较,去除测量精度的干扰,截面2的均方根误差为0.73℃、平均相对误差为13.58%、截面6的均方根误差为0.56℃、平均相对误差为10.94%,具有较好的空间一致性。研究结果可为实现冷链物流中低成本、连续的温度监测奠定基础。展开更多
为在寻优过程中有效地保持算法的种群多样性,提出了一种改进的PSO(Particle Swarm Optimization)算法——PSOPC(Particle Swarm Optimizer based on Predator-prey Coevolution)。PSOPC算法将生态系统中捕食者和猎物的竞争协同进化机制...为在寻优过程中有效地保持算法的种群多样性,提出了一种改进的PSO(Particle Swarm Optimization)算法——PSOPC(Particle Swarm Optimizer based on Predator-prey Coevolution)。PSOPC算法将生态系统中捕食者和猎物的竞争协同进化机制嵌入到PSO算法中。基于PSOPC进行RFID(Radio Frequency IDentification)读写器网络调度模型的求解,根据读写器冲突关系的变化在线进行读写器的时隙分配求解与控制,在不影响读写器工作效率的同时,有效消除密集读写器环境下的读写器冲突问题,并优化整个读写器网络的工作效率。展开更多
文摘In order to increase the productivity of construction industry, emerging technologies have been constantly introduced and applied in this traditional industry by pilot researchers. This paper provides an integrated model of radio-frequency identification (RFID) and four-dimensional Computer-Aided Design (4D CAD) in construction management. RFID involves the use of tags that collect data and transmit data. RFID can collect data by radio waves instead of light waves. RFID technology is surpassing barcode technology where light waves are easily blocked and barcode labels are easy to fall off or become unreadable due to dust, dirt, or other contaminants. 4D CAD which involves 3D construction models and construction schedules presents visualized construction process. Integration of RFID and 4D CAD in this paper built a dynamic construction management and control system which would reduce the time of capturing data on site and control quality of construction materials efficiently. Pilot test result shows that a construction manager can easily understand how and what a complicated construction project will be accomplished. Although further analysis is necessary, RFID and 4D CAD show promises of being a beneficial technology in construction management.
文摘为在寻优过程中有效地保持算法的种群多样性,提出了一种改进的PSO(Particle Swarm Optimization)算法——PSOPC(Particle Swarm Optimizer based on Predator-prey Coevolution)。PSOPC算法将生态系统中捕食者和猎物的竞争协同进化机制嵌入到PSO算法中。基于PSOPC进行RFID(Radio Frequency IDentification)读写器网络调度模型的求解,根据读写器冲突关系的变化在线进行读写器的时隙分配求解与控制,在不影响读写器工作效率的同时,有效消除密集读写器环境下的读写器冲突问题,并优化整个读写器网络的工作效率。