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A probabilistic threshold-based bandwidth sharing policy for wireless multirate loss networks

机译:基于概率阈值的无线多速率丢失网络带宽共享策略

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摘要

We propose a probabilistic bandwidth sharing policy, based on the threshold (TH) policy, for a single cell of fixed capacity in a homogeneous wireless cellular network. The cell accommodates random input-traffic originated from K service-classes. We distinguish call requests to new and handover, and therefore, the cell supports 2K types of arrivals. If the number of in-service calls (new or handover) of a service-class exceeds a threshold (different for new and handover calls of a service-class), a new or handover arriving call of the same service-class is not always blocked, as it happens in the TH policy, but it is accepted in the system with a predefined state-dependent probability. The cell is analyzed as a multirate loss system, via a reversible continuous-time Markov chain, which leads to a product form solution (PFS) for the steady state distribution. Thanks to the PFS, the calculation of performance measures is accurate, but complex. To reduce the computational complexity, we determine performance measures via a convolution algorithm.
机译:我们提出基于阈值(TH)策略的概率带宽共享策略,用于同构无线蜂窝网络中固定容量的单个小区。该单元可容纳源自K个服务类别的随机输入流量。我们区分对新呼叫和越区切换的呼叫请求,因此,该小区支持2K类型的到达。如果服务级别的服务内呼叫(新呼叫或越区切换)数量超过阈值(对于服务级别的新呼叫和越区切换呼叫而言有所不同),则并非总是相同服务类别的新呼叫或越区切换到达呼叫阻止,如TH策略中发生的那样,但是系统以预定义的状态相关概率接受了它。通过可逆的连续时间马尔可夫链,将电池作为多速率损失系统进行分析,从而得出用于稳态分布的乘积形式解决方案(PFS)。由于有了PFS,绩效指标的计算是准确的,但很复杂。为了降低计算复杂度,我们通过卷积算法确定性能指标。

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