Investigations of cross-layer designs for mobile ad hoc networks

Xiaoyu Hu, Yu-dong Yao, C. Graff, T. Cook
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引用次数: 2

Abstract

This paper explores the attributes, layering models and objective functions in cross layer designs for mobile ad hoc wireless networks by taking all the statistical characteristics and constraints from the physical (PHY) layer, media access control (MAC) layer and network (NET) layer into consideration. This paper reviews the entire network optimization across all the PHY/MAC/NET layers. At the PHY layer, the adaptive modulation, adaptive channel allocation and adaptive power control are employed according to the channel conditions and different quality of service (QoS) requirements of different services. The PHY layer constraint is specified in terms of target signal to noise and interference ratio (SINR) or target bit-error-ratio (BER). At the MAC layer, a feasible scheduling policy that maximizes the overall system performance for given fairness/QoS requirements is explored through the utility functions that build a bridge between the PHY layer and MAC layer to balance the efficiency and fairness. At the NET layer, the QoS requirements include call blocking probabilities, call connection delays, packet congestion probabilities and packet loss rates. By interacting with PHY layer and MAC layer constraints, a long-term network performance is investigated at the NET layer subject to both call-level and packet-level QoS requirements.
移动自组织网络跨层设计研究
本文在考虑物理层(PHY)、媒体访问控制层(MAC)和网络层(NET)的所有统计特性和约束的基础上,探讨了移动自组织无线网络跨层设计的属性、分层模型和目标函数。本文回顾了整个网络在所有PHY/MAC/NET层的优化。在物理层,根据不同业务的信道条件和不同的QoS要求,采用自适应调制、自适应信道分配和自适应功率控制。物理层约束用目标信噪比(SINR)或目标误码率(BER)来指定。在MAC层,通过在物理层和MAC层之间建立桥梁以平衡效率和公平性的效用函数,探索在给定公平性/QoS要求下使系统整体性能最大化的可行调度策略。在。NET层,QoS要求包括呼叫阻塞概率、呼叫连接延迟、分组拥塞概率和分组丢包率。通过与物理层和MAC层约束的交互,在受呼叫级和包级QoS要求约束的NET层研究长期网络性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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