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Novel coexistence scheme between wireless sensor network and wireless LAN for HEMS

机译:无线传感器网络与无线局域网的新的共存方案

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The problem of coexistence between IEEE 802.11g based wireless LANs (WLANs) and IEEE 802.15.4 based wireless sensor networks (WSNs) in the 2.4GHz band is an important issue for the operation of a home energy management system (HEMS) for smart grids. This paper proposes a novel coexistence scheme which is called a distributed active channel reservation for coexistence (DACROS) scheme to solve this problem. This scheme employs a hybrid-station (H-STA) that possesses two types of network device functions. The scheme improves the data transmission quality of the WSN devices which transmit energy management information such as power consumption. The proposed DACROS scheme uses the request-to-send (RTS) and clear-to-send (CTS) frames. These WLAN control frames are used exclusively to assign WSN system traffic resources. Theoretical analysis and computer simulation results show that the DACROS scheme decreases the beacon loss rate of the WSN to less than 1% when the WLAN system consists of ten stations (STAs) under saturated traffic conditions.
机译:2.4GHz频段中基于IEEE 802.11g基于无线局域网(WLAN)和IEEE 802.15.4的无线传感器网络(WSNS)之间的共存问题是智能电网的家用能管理系统(HEMS)的操作的重要问题。本文提出了一种新的共存方案,称为分布式主动通道预留,用于共存(DACROS)方案来解决这个问题。该方案采用具有两种类型的网络设备功能的混合站(H-STA)。该方案改善了发送诸如功耗的能量管理信息的WSN设备的数据传输质量。所提出的DACROS方案使用请求发送(RTS)和清除发送(CTS)帧。这些WLAN控制帧专门用于分配WSN系统流量资源。理论分析和计算机仿真结果表明,当WLAN系统在饱和交通条件下包括十个站(STAS)组成时,DACROS方案将WSN的信标损耗率降低至小于1%。

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