研究目的
Investigating the general problem of a queue-aware radio resource management and scheduling design for wireless communications under quasi-static fading channel conditions.
研究成果
The proposed generalized queue-aware scheduling design enables finer resource management and scheduling within one quasi-static fading block consisting of multiple scheduling time slots. Improved resource utilization efficiency is thus achieved. The CDRS algorithm performs nearly the same as the optimal but much more complex DP approach in most cases, but has less complexity and better scalability.
研究不足
The state transition matrix of the queuing system determined by the queue-aware scheduler has a highly dynamic structure, making conventional matrix analysis and optimization tools not applicable. The problem is a discrete optimization problem, which makes it difficult to employ a continuous optimization algorithm.
1:Experimental Design and Method Selection:
The problem is formulated as a constrained nonlinear discrete programming problem based on an analysis of the source buffer queuing system. A direct search approach is considered by reformulating the problem into a nonlinear integer programming problem on an integer convex set. Two types of search algorithms, gradient based and gradient-free, are investigated.
2:Sample Selection and Data Sources:
A general single source buffered queueing system is considered for wireless communications with a finite buffer size of B packets. Packet arrival is modeled by a discrete time Poisson process with average arrival rate λ.
3:List of Experimental Equipment and Materials:
Not explicitly mentioned in the paper.
4:Experimental Procedures and Operational Workflow:
The state transition matrix P of the M/G/1/B queue is calculated using given equations. The steady state distribution π(X) is determined from P using numerical methods, and then the cost function g is evaluated.
5:Data Analysis Methods:
The performance of the proposed algorithms is compared with equal partitioning and random partitioning queue-aware scheduling strategies, and the dynamic programming (DP) solution given by the relative value iteration algorithm is used as a benchmark.
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