This paper investigates an Internet of Things (IoT) system in which multiple devices are observing some object's physical parameters and then offloading their observations back to the BS in time with opportunistic channel access. Specifically, each device accesses the common channel through contention with a certain probability firstly and then the winner evaluates the instant channel condition and decides to accept the right of channel access or not. We analyze this system through the perspective of Age of Information (AoI), which describes the freshness of observed information. The target is to minimize average AoI by optimizing the probability of device participation in contention and the transmission rate threshold. The problem is hard to solve since the AoI expression in fractional form is complex. We first decompose the original problem into two single-variable optimization sub-problems through Dinkelbach method and Block Coordinate Descent (BCD) method. And then we transform them to Monotonic optimization problems by proving the monotonicity of the objective functions, whose global optimal solution is able to be found through Polyblock algorithm. Numerical results verify the validity of our proposed method.
翻译:本文调查了“ 物” 的互联网系统, 多设备在该系统中观察某些对象的物理参数, 然后用机会通道访问及时将其观测结果卸回 BS 。 具体地说, 每个设备先通过某种概率的争论进入共同频道, 然后获胜者先评估瞬时频道条件, 决定接受频道访问权。 我们从信息时代的角度分析这个系统, 描述观察到的信息的新鲜性。 目标是通过优化设备参与争议和传输率阈值的可能性, 最大限度地减少平均 AoI 。 问题很难解决, 因为 AoI 表达的分数形式很复杂。 我们首先通过 Dinkelbach 方法和 Block 坐标源( BCD) 方法将最初的问题分解成两个单一的优化子问题。 然后我们通过证明目标函数的单一性来将其转化为单调优化问题, 其全球最佳解决方案可以通过聚块算法找到。 数字结果可以验证我们提议的方法的有效性 。