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Energy-Saving Design of Civil Engineering Buildings Based on FPGA and Embedded System
Microprocessors and Microsystems ( IF 2.6 ) Pub Date : 2021-01-12 , DOI: 10.1016/j.micpro.2021.103970
Xianbo Zhang

Civil engineers design, construct, operate, and manage public roads, buildings, airports, tunnels, dams, bridges, water supply and sewage treatment systems engineering construction, and maintenance, including the private sectors. The energy civil engineering building design is one of the most catalysts for wealth creation, economic growth, and social change in all countries. Buildings have a significant share of the total energy consumption worldwide; therefore, they profoundly impact the environment (Selects the construction area of these stages, architectural design, architecture and material selection, Construction, maintenance, disassembly, reuse, recycling, and waste disposal). The power building's life cycle has been used at all stages based on Field Programmable Gate Array (FPGA) and Embedded system. Embedded system is a civil design engineering that is often optimal for maximum compute output, no timelines, or business drivers. Energy consumption in buildings can be significantly reduced at every stage of the building lifecycle. The energy-saving method of construction lifecycle. Information about the building's life cycle, energy-saving, and explains the guiding principles in civil engineering buildings' life cycle design.



中文翻译:

基于FPGA和嵌入式系统的土木建筑节能设计

土木工程师设计,建造,运营和管理公共道路,建筑物,机场,隧道,水坝,桥梁,供水和污水处理系统的工程建设和维护,包括私营部门。能源土木工程建筑设计是所有国家创造财富,经济增长和社会变革的最重要催化剂之一。建筑物在全球总能耗中占有很大份额;因此,它们对环境产生了深远的影响(选择这些阶段的建筑区域,建筑设计,建筑和材料选择,施工,维护,拆卸,再利用,回收和废物处置)。基于现场可编程门阵列(FPGA)和嵌入式系统的所有阶段都使用了电力建筑物的生命周期。嵌入式系统是一种土木工程设计,通常对于获得最大的计算输出,没有时间表或业务驱动力是最佳的。在建筑物生命周期的每个阶段,建筑物的能耗都可以大大降低。建筑生命周期的节能方法。有关建筑物生命周期,节能的信息,并解释了土木工程建筑物生命周期设计的指导原则。

更新日期:2021-01-18
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