一种新的改进的能量和吞吐量高效的忠诚联合国监督无线传感器网络浸出方法

Nirmala G, C D Guruprakash
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引用次数: 1

摘要

数据传感设备(DSD)在边境控制、车辆跟踪等各种用例中获得了很大的关注。数据传感设备网络(DSDN)是通过在一个随机区域内组合大量的数据传感设备网络而形成的。就像这样,形成了多个群体。在每个组中都选出一个特定的DSD,负责两个独立组之间的通信。每个组头都有多个属性,第一个属性基于距离,第二个属性基于剩余能量。这些属性将被输入到基于机器学习的组头选择中,组内的整个DSD分为HIGH, MEDIUM和LOW。第一优先级将给予高,其次是其他主要小组负责人的选择。LEACH是DSDN网络中用于将数据块传输到控制中心的一种经典方法。LEACH算法采用随机概率选择机制,利用每组DSD的随机选择来进行头部DSD的选择。在数据块传递过程中,扫描过程将从启动DSD到头部DSD,并从那里与基站(BS)建立链接,然后基站将扫描每个组,直到到达目的地DSD。通过LEACH选择头部DSD会在DSDN中造成更多的漏洞,因为不执行的DSD有可能成为头部DSD。其次,对于数据块的传输,在BS和普通DSD之间存在大量的来回传播,这大大降低了DSD的电池电量。基于能量的LEACH是在LEACH的基础上改进的,通过测量dsd的能量,然后选择组头,但需要维护多个组头以及更多的链路。所提出的方法将通过减少端到端通信所使用的链路来改善这一点。在该系统中,通信将基于发起者DSD,不同组中的主DSD,然后是目标DSD进行,与现有的E-LEACH和LEACH方法相比,避免了开销。从时间、链路数、能量消耗、剩余能量度量、寿命和开销等方面与LEACH和E-LEACH进行了比较。
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A Novel Modified Energy and Throughput Efficient LOYAL UN-Supervised LEACH Method for Wireless Sensor Networks
Data Sensing Devices (DSD’s) have gained lot of traction for various use cases like border control, vehicle tracking. Data Sensing device network (DSDN) is shaped with the aid of combining lot of DSD’s across a random area. Like this multiple groups are formed. In each of the group the specific DSD is elected which is responsible for communication between two independent groups. Each of the group head has multiple attributes with first attribute based on distance, the second attribute based on remaining energy. These attributes will be input for the group head selection based on machine learning, The entire DSD’s inside a group are classified into HIGH, MEDIUM and LOW. The first priority will be given to HIGH followed by others for the primary group head selection. LEACH is a classical method used for transmission of chunks to the control center in a DSDN network. The selection of head DSD by LEACH will happen by making use of the random selection of DSD in each group using random probability selection mechanism. During the data chunk deliver the scanning process will happen from the initiator DSD to head DSD and from there the link is established with the base station (BS), the BS will then scan each group until the destination DSD is reached. The selection of head DSD by LEACH causes more holes in the DSDN because there are chances that the non-performer DSD can become a head DSD. Secondly for the transmission of chunks there is lot of back-and-forth propagation between the BS and the normal DSDs which reduces the battery level of the DSD by a large amount. The Energy based LEACH is modified on top of LEACH by measuring the energy of the DSDs and then selecting the group heads but suffers from multiple group head maintenance as well as more number of links. The proposed method will improve this by reducing the links used for end-to-end communication. In the proposed system the communication will happen based on initiator DSD, primary DSDs in different groups and then destination DSD which will avoid overhead compared to existing methods namely E-LEACH and LEACH. The proposed method is compared with LEACH and E-LEACH with respect to time taken, link count, energy consumption, residual energy measure, lifetime and overhead.
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