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Titlebook: Internet of Things in Smart Sewer and Drainage Systems; Theory and Applicati Abdul Salam Book 2024 The Editor(s) (if applicable) and The Au

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Storm and Stream Technologies,sion (upgrading, population increase, regulatory requirements, etc.) making current infrastructure outdated and insufficient to meet needs and danger of flooding due to overdesigned conveyance system. In this chapter new solutions are developed to address these issues.
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Smart Sewer Experimental Results,asurement campaigns are carried out in sandy soil, silty clay loam, and silty clay loam soil type. The path loss experiments are conducted for different aboveground receiver antenna angles by using dipole and planar antennas. The path loss, return loss, PDP, and antenna measurements are reported.
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Smart Sewer Soil Modeling for IoT Communications,yers of varying thickness. Therefore, it is important to understand the penetration ability of microwave signals through those layers. In this chapter, a smart sewer soil modeling solution for IoT communications has been presented.
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Internet of Things in Sewer Monitoring,rch efforts in attaining an autonomous sewer system. In this chapter, sewer IOUTs are developed which use underground sensor nodes to gather and communicate the information to the cloud or central server for real-time decision-making.
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City Scale Drainage System IoT Testbeds,, there is a need to test these networks before deployment so that real-life scenarios can be emulated to address the challenges, i.e., privacy and pricing, of DSA. In this chapter a testbed is designed to measure the complexity of radio networks in diverse environments.
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Book 2024management (SWM) systems. It explores technical challenges and presents recent results to improve sewer and drainage system management using wireless underground communications and sensing in IoT. The book addresses both existing sensing network technologies and those currently in development in thr
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