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基于BLE Mesh组网应用系统设计 被引量:12
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作者 曾胡涛 黄晁 白玉军 《传感器与微系统》 CSCD 2017年第12期64-67,共4页
针对传统智能产品组网方式复杂、耗电量大、同步控制以及需要独立系统网关等问题,设计了基于低功耗蓝牙(BLE)Mesh技术的室内发光二极管(LED)灯及温湿度监控系统。测试表明:系统低功耗的性能优于目前主流的无线芯片ZigBee,WiFi,同时提出... 针对传统智能产品组网方式复杂、耗电量大、同步控制以及需要独立系统网关等问题,设计了基于低功耗蓝牙(BLE)Mesh技术的室内发光二极管(LED)灯及温湿度监控系统。测试表明:系统低功耗的性能优于目前主流的无线芯片ZigBee,WiFi,同时提出了一种以解决Mesh网络中功耗问题的新网络拓扑结构,从而优化了BLE Mesh的网络功耗,且系统能够准确无误控制室内的设备以及监测各个设备的状态参数。该应用会在未来智能物联网家居产品领域具有较好的市场前景。 展开更多
关键词 BLE mesh组网 低功耗 网络拓扑 物联网
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蓝牙5.0 mesh组网技术及其在光伏电站中的应用 被引量:10
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作者 唐孝舟 翟剑华 +1 位作者 王建锋 杨毅 《电力工程技术》 2019年第6期31-36,共6页
传统光伏电站光伏阵列内一般采用RS485总线通信方式组网,存在施工量大、组网困难、不易维护等弊端。Wifi、Zigbee、4G这3种无线通信技术较为成熟,已经在光伏发电领域取得了应用,但分别存在技术复杂、通信速率低、成本过高的问题。为了... 传统光伏电站光伏阵列内一般采用RS485总线通信方式组网,存在施工量大、组网困难、不易维护等弊端。Wifi、Zigbee、4G这3种无线通信技术较为成熟,已经在光伏发电领域取得了应用,但分别存在技术复杂、通信速率低、成本过高的问题。为了解决上述问题,文中引进了全新的蓝牙5.0技术,该技术具有实现简单、通信速率高、经济性好的特点。在分析了现有蓝牙组网技术的基础上,提出了一种光伏电站蓝牙网格网(mesh)组网方案,给出了具体的组网过程和简单可行的路由算法,通过分析计算论证了该方案具有较小的通信延时、良好的抗干扰性和较高的安全性,为光伏电站组网提供了新思路。 展开更多
关键词 蓝牙5.0 mesh组网 无线网络 光伏电站 光伏阵列
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基于LabVIEW和蓝牙Mesh组网的无线测温系统 被引量:6
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作者 陈鸿海 赵鹤鸣 邵雷 《电子测量技术》 北大核心 2021年第6期135-142,共8页
在传统的多点分布式测温系统中,存在布线复杂、成本增加和数据处理实时性要求等问题,因此设计了一种采用蓝牙Mesh组网技术实现多点无线测温的系统。该系统以ARM为核心开发板,PT100作为测温传感头,采用16位高精度的模数转换器ADS1110将PT... 在传统的多点分布式测温系统中,存在布线复杂、成本增加和数据处理实时性要求等问题,因此设计了一种采用蓝牙Mesh组网技术实现多点无线测温的系统。该系统以ARM为核心开发板,PT100作为测温传感头,采用16位高精度的模数转换器ADS1110将PT100温度传感器输出的温度信号进行采集,通过蓝牙螺旋天线实现温度信号的无线传输,利用LabVIEW界面实时显示温度变化的曲线,同时可以进行温度报警和温度数据的保存。将一种最小二乘法和数字滤波相结合的方法应用于温度数据的标定,以消除系统误差和干扰信号的影响,得到高精度的温度值。实验测试结果表明,本测温系统具有低成本、低功耗、高精度、操作方便等优点,同时测温精度可达±0.1℃,可广泛应用于温度信号的实时采集与处理,在生产生活中具备一定的实用价值。 展开更多
关键词 多点无线测温 LABVIEW 蓝牙mesh组网 PT100
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BLE Mesh: A Practical Mesh Networking Development Framework for Public Safety Communications 被引量:1
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作者 Bo Zhang Yufeng Wang +2 位作者 Li Wei Qun Jin Athanasios V.Vasilakos 《Tsinghua Science and Technology》 SCIE EI CAS CSCD 2018年第3期333-346,共14页
Owing to advanced storage and communication capabilities today, smart devices have become the basic interface between individuals and their surrounding environment. In particular, massive devices connect to one other ... Owing to advanced storage and communication capabilities today, smart devices have become the basic interface between individuals and their surrounding environment. In particular, massive devices connect to one other directly in a proximity area, thereby enabling abundant Proximity Services(Pro Se), which can be classified into two categories: public safety communication and social discovery. However, two challenges impede the quick development and deployment of Pro Se applications. From the viewpoint of networking, no multi-hop connectivity functionality component can be directly operated on commercially off-the-shelf devices, and from the programming viewpoint, an easily reusable development framework is lacking for developers with minimal knowledge of the underlying communication technologies and connectivity. Considering these two issues, this paper makes a twofold contribution. First, a multi-hop mesh networking based on Bluetooth Low Energy(BLE) is implemented,in which a proactive routing mechanism with link-quality(i.e., received signal strength indication) assistance is designed. Second, a Pro Se development framework called BLE Mesh is designed and implemented, which can provide significant benefits for application developers, framework maintenance professionals, and end users. Rich application programming interfaces can help developers to build Pro Se apps easily and quickly. Dependency inversion principle and template method pattern allow modules in BLE Mesh to be loosely coupled and easy to maintain and update. Callback mechanism enables modules to work smoothly together and automation processes such as registration, node discovery, and messaging are employed to offer nearly zero-configuration for end users.Finally, based on the designed Pro Se development kit, a public safety communications app called Quote Send App is built to distribute emergency information in close area without Internet access. The process illustrates the easy usability of BLE Mesh to develop Pro Se apps. 展开更多
关键词 public safety communications device to device bluetooth low energy mesh networking development framework
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