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Titlebook: Design and Implementation of Practical Schedulers for M2M Uplink Networks; Using MATLAB Akshay Kumar,Ahmed Abdelhadi,T. Charles Clancy Book

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Akteure und Entscheidungsverfahrench as packet arrival rate, maximum tolerable delay, payload size, and diverse delay requirements of different applications. The proposed schedulers are equally applicable to all relevant residential and industrial use-cases such as industrial automation, smart home, and smart grid. The theoretical d
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Design and Implementation of Practical Schedulers for M2M Uplink NetworksUsing MATLAB
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https://doi.org/10.1007/978-3-658-12898-2 smart homes, etc. An M2M network comprises of very large number of networked sensing devices working together to provide smart services and applications. Recently, the idea of coexistence of M2M traffic along with traditional human-to-human (H2H) traffic in LTE network is also gaining momentum in t
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Strategische Wissenschaftskommunikationexist packet schedulers that are analytically derived by solving an optimization problem with objective of maximizing a network utility function. In some cases, these optimization problems are convex and can be solved easily using the Lagrangian multiplier method described in Sect. 2.4. Furthermore
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https://doi.org/10.1007/978-3-658-12898-2service fairness among all traffic classes. The proposed scheduler is general enough to be applied to any M2M application, communication standard and hardware-software architecture. Finally, using simulations we benchmark the performance of proposed scheduler against various state-of-the-art packet
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Akteure und Entscheidungsverfahrenthe solution to which results in optimal packet scheduler. We extended our solution to a multi-tier uplink system with M2M aggregators and application server. The implementation complexity of proposed schedulers is vastly reduced using a novel iterative and distributed optimization architecture. Usi
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