In this paper, a cooperative communication network based on energy-harvesting (EH) decode-and-forward (DF) relays that harvest energy from the ambience using buffers with harvest-store-use (HSU) architecture is considered. An opportunistic routing (OR) protocol, which selects the transmission path of packet based on the node transmission priority, is proposed to improve data delivery in this network. Additionally, an algorithm based on state transition matrix (STM) is proposed to obtain the probability distribution of the candidate broadcast node set. Based on the probability distribution, the existence conditions and the theoretical expressions for the limiting distribution of energy in energy buffers using discrete-time continuous-state space Markov chain (DCSMC) model are derived. Furthermore, the closed-form expressions for network outage probability and throughput are obtained with the help of the limiting distributions of energy stored in buffers. Numerous experiments have been performed to validate the derived theoretical expressions.
翻译:在本文中,基于能源收获(EH)解码和前向(DF)中继器的合作通信网络将考虑使用收获-储存-使用(HSU)结构的缓冲器从宽度中获取能源;根据节点传输重点选择包传输路径的机会性路由(OR)协议将改进网络中的数据传输;此外,根据州过渡矩阵(STM)提出一种算法,以获得候选广播节点的概率分布。根据概率分布、现有条件和理论表达方式,使用离散-时间连续状态空间马尔科夫(DCSMC)模型在能源缓冲中限制能源分配;此外,在限制缓冲中储存的能源分布的同时,获取网络流出概率和吞出量的封闭式表达方式。还进行了许多实验,以验证衍生的理论表达方式。