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Cross-layer design of a LOADPOWER control protocol - PWmin and PWmax transmission power assignment algorithm in wireless ad hoc networks

机译:无线自组网中LOADPOWER控制协议的跨层设计-PW min 和PW max 传输功率分配算法

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In Wireless era, Cross-layer designing of transmission power assignment and power control is the critical issues in emerging wireless technology. Intelligent transmission power selection algorithm depends on the notion of Transmission Power (TXPOWER), energy, Received Signal Strength Indication (RSSI) and the distance. The decentralized network without load balancing leads to network partitioning, route reliability, link failure and retransmission occurs. This power control Cross-layer design used for communicating information among the intermediate layers. LOADPOWR CONTROL Transmission power assignment algorithm in wireless networks leads to the network more efficient by using PW and PW power control technique. Euclidean distance calculates appropriate distance between sender and receiver in the network. Path loss model used to calculate difference between transmission power and received power for the amount of mobile nodes present in the LOADPOWER network. The key concept is to improve the network throughput, delay, distance, saves energy by sending all the packets with optimal transmit power according to the network load. Simulation was done in NS-2 simulator.
机译:在无线时代,传输功率分配和功率控制的跨层设计是新兴无线技术中的关键问题。智能传输功率选择算法取决于传输功率(TXPOWER),能量,接收信号强度指示(RSSI)和距离的概念。没有负载平衡的分散网络会导致网络分区,路由可靠性,链路故障和重新传输。此功率控制跨层设计用于在中间层之间传递信息。 LOADPOWR CONTROL无线网络中的传输功率分配算法通过使用PW和PW功率控制技术使网络更高效。欧几里得距离计算出网络中发送方和接收方之间的适当距离。路径损耗模型,用于计算LOADPOWER网络中存在的移动节点数量的传输功率和接收功率之间的差异。关键概念是通过根据网络负载发送具有最佳发射功率的所有数据包来提高网络吞吐量,延迟,距离并节省能源。仿真是在NS-2仿真器中完成的。

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