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Distributed Flow Control using Embedded Sensor-Actuator Networks for the Reduction of Combined Sewer Overflow (CSO) Events

机译:使用嵌入式传感器致动器网络的分布式流量控制,用于减少组合下水道溢出(CSO)事件

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This paper studies the distributed control of network flows using an embedded sensor-actuator network. We focus on the problem of reducing the frequency of combined sewer overflow (CSO) events in city sewer systems. This is an important environmental problem whose cost effective solution is of great interest across the world. Our approach embeds microprocessor controlled sensors and actuators directly into the sewer network. These embedded processors communicate with each other over a multi-hop communication network whose topology follows the topology of the sewer network. We use Pontryagin's maximum principle to develop a switching control where control decisions are made in a distributed manner. We present simulation results showing that the proposed method has the potential of greatly reducing the frequency of CSO events over existing passive thresholding strategies.
机译:本文使用嵌入式传感器执行器网络研究网络流的分布式控制。我们专注于降低城市下水道系统中的下水道溢出(CSO)事件频率的问题。这是一个重要的环境问题,其成本效益的解决方案对全世界具有极大的兴趣。我们的方法将微处理器控制的传感器和执行器直接嵌入到下水道网络中。这些嵌入式处理器通过多跳通信网络彼此通信,该多跳通信网络拓扑遵循下水道网络的拓扑。我们使用Pontryagin的最大原理来开发一个切换控制,其中控制决策是以分布式方式进行的。我们存在模拟结果,表明所提出的方法具有大大降低现有无源阈值策略的CSO事件的频率。

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