Reliable Approach to Address Broadcast Storm & Hidden Terminal Problem in Multihop Wireless Sensor Network for Image Dissemination

V. Gulhane, L. Malik
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Abstract

The performance of CSMA MAC degrades significantly due to hidden terminal problem as carrier sensing cannot avoid collision, this problem is faced by many CSMA MAC based systems hence it is one of the important issue which needs tobe solved in wireless communications. Idle listening of sensor nodes is a major source of energy waste during reprogramming and must be minimized. Although CSMA MAC is in the TinyOS release & the majority reprogramming systems use CSMA, the proposed work replaces existing CSMA with more efficient MAC i.e. a T-MAC. It uses TMAC unlike CSMA MAC in Deluge & most of the dissemination protocols to make the protocol more energy efficient, proper coordination & time synchronization between the node, proper bandwidth utilization & to carry appropriate MAC layer management functions like periodic wake up and sleep, neighbor's knowledge etc. TMAC uses the simple policy with fixed frames with variable active period & time-out interval which add many benefits like decreasing idle listening by duty cycle, collisions etc. hence improving the performance of designed protocol, making it better than the other protocols as it is more capable & adaptive as T-MAC prevents the packet collisions & ultimately solves the hidden terminal problem.
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可靠解决多跳无线传感器网络中广播风暴和隐藏终端问题的方法
由于载波感知无法避免碰撞所带来的终端隐藏问题,导致CSMA MAC的性能显著下降,这是许多基于CSMA MAC的系统所面临的问题,是无线通信中需要解决的重要问题之一。传感器节点的空闲监听是重编程过程中能源浪费的主要来源,必须最小化。尽管CSMA MAC在TinyOS版本中并且大多数重编程系统使用CSMA,但提议的工作用更有效的MAC(即T-MAC)取代现有的CSMA。它使用TMAC(不像在Deluge和大多数传播协议中的CSMA MAC),使协议更节能,节点之间适当的协调和时间同步,适当的带宽利用率,并携带适当的MAC层管理功能,如周期性唤醒和睡眠,邻居的知识等。TMAC使用固定帧的简单策略,可变活动周期和超时间隔,增加了许多好处,如通过占空比减少空闲侦听,冲突等,从而提高了设计协议的性能,使其优于其他协议,因为它更有能力和自适应,因为T-MAC防止了数据包冲突,最终解决了隐藏终端问题。
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