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A computability strategy for optimization of multiresolution broadcast systems: a layered energy distribution approach

机译:用于优化多分辨率广播系统的可计算性策略:分层能量分配方法

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This paper investigates the possible system gain for a multiresolution broadcast system using multilayer transmission of multiresolution data by utilizing nonuniform layer transmission energies. It shows how to find the energy distribution that maximizes the system performance, measured in the form of a sum of a weighted layer values /spl times/ population product (representing possible revenue for service providers). Through the introduction of the relative population coverage function P(a/sub i/) it is shown for a N layer system that in many cases when P(a/sub i/) is a concave function (equivalent to -P(a/sub i/) being convex) it is possible to reduce what seems to be an N-dimensional problem to N line searches. The paper also shows how the relative population coverage function can be constructed in two ways. The first uses analytic models for signal strength and population coverage (Uniform and Rayleigh). The second uses numerical signal strength and population estimates in grid format. The paper also includes examples to illustrate how the method works and the performance gain it provides. One of the examples uses actual grid estimates for an example transmitter located in Lulea, Sweden.
机译:本文研究了利用非均匀层传输能量通过多分辨率数据的多层传输实现多分辨率广播系统的可能系统增益。它显示了如何找到以权重层值/ spl次/总体乘积之和(代表服务提供商可能的收入)的形式衡量的,使系统性能最大化的能量分布。通过引入相对人口覆盖率函数P(a / sub i /),可以看出对于N层系统,在许多情况下,P(a / sub i /)是凹函数(等效于-P(a / sub i /)是凸的),可以将似乎是N维的问题减少到N行搜索。本文还展示了如何以两种方式构建相对人口覆盖函数。首先使用分析模型来确定信号强度和总体覆盖范围(均匀和瑞利)。第二种以网格格式使用数字信号强度和总体估计。本文还包括一些示例,以说明该方法的工作原理以及所提供的性能增益。这些示例之一使用了位于瑞典吕勒奥的示例发射机的实际网格估计。

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