首页> 外文期刊>International journal of parallel programming >Quadrant Based Neighbor to Sink and Neighbor to Source Routing Protocol and Alternate Node Deployment Strategies for WSN
【24h】

Quadrant Based Neighbor to Sink and Neighbor to Source Routing Protocol and Alternate Node Deployment Strategies for WSN

机译:基于象限的邻居接收到源路由协议和WSN的备用节点部署策略

获取原文
获取原文并翻译 | 示例
       

摘要

Multiple sensor nodes are required to gather the information and exchange the information in the direction of the sink node which makes a network. The static common node (NC) deployment has been work towards the coverage of deterministic territory. At that point, the coordinates of each regular node have been determined with the assistance of geometry of coverage locale. Among those basic nodes, on the off chance that one of the nodes gets fail, at that point, the coverage hole is made. To solve this issue, a viable alternate node (NA) deployment method has been presented for supplanting the damaged node. And furthermore developed quadrant based neighbor to sink and neighbor to source (Q-(NS)~2) routing protocol for lessening the superfluous flooding of 'RREQ' message to the majority of its neighbor while route discovery. A viable comparison has been done between this other node deployment procedure and references. The performance comparison has been done between Quadrant based Direct routing protocol (Q-DIR), Angle routing protocol (ARP) and Q-(NS)~2 routing protocol. Therefore, Q-(NS)~2 routing protocol decreases the pointless flooding of 'RREQ' to the greater part of its neighbor which implies it devours less energy for data packet delivery and no redundant node in N_A deployment.
机译:需要多个传感器节点来收集信息并在制作网络的汇聚节点的方向上交换信息。静态公共节点(NC)部署一直朝着确定性领域的覆盖范围工作。此时,通过覆盖区域设置的几何形状来确定每个常规节点的坐标。在那些基本节点中,在关闭一个节点失败的off机会上,在该点,覆盖孔是制造的。为了解决这个问题,已经提出了一种可行的备用节点(NA)部署方法,用于提出损坏的节点。此外,在路线发现的同时,开发了基于象限的邻居,以将源(Q-(ns)〜2)路由协议减少到大多数邻居的“RREQ”消息的多余洪水。在此其他节点部署过程和引用之间已经完成了可行的比较。基于象限的直接路由协议(Q-DIR),角度路由协议(ARP)和Q-(NS)〜2路由协议,已经在象限之间进行了性能比较。因此,Q-(NS)〜2路由协议将“RREQ”到其邻居的大部分百分比泛滥,这意味着它缺少Data Packet传送的能量较少,并且在N_A部署中没有冗余节点。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号