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Simulation of Greenhouse Climate Monitoring and Control with Wireless Sensor Network and Event-Based Control

机译:无线传感器网络和基于事件的控制对温室气候监控的仿真

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摘要

Monitoring and control of the greenhouse environment play a decisive role in greenhouse production processes. Assurance of optimal climate conditions has a direct influence on crop growth performance, but it usually increases the required equipment cost. Traditionally, greenhouse installations have required a great effort to connect and distribute all the sensors and data acquisition systems. These installations need many data and power wires to be distributed along the greenhouses, making the system complex and expensive. For this reason, and others such as unavailability of distributed actuators, only individual sensors are usually located in a fixed point that is selected as representative of the overall greenhouse dynamics. On the other hand, the actuation system in greenhouses is usually composed by mechanical devices controlled by relays, being desirable to reduce the number of commutations of the control signals from security and economical point of views. Therefore, and in order to face these drawbacks, this paper describes how the greenhouse climate control can be represented as an event-based system in combination with wireless sensor networks, where low-frequency dynamics variables have to be controlled and control actions are mainly calculated against events produced by external disturbances. The proposed control system allows saving costs related with wear minimization and prolonging the actuator life, but keeping promising performance results. Analysis and conclusions are given by means of simulation results.
机译:温室环境的监测和控制在温室生产过程中起着决定性的作用。确保最佳气候条件直接影响作物的生长性能,但通常会增加所需的设备成本。传统上,温室设施需要付出巨大的努力才能连接和分配所有传感器和数据采集系统。这些设施需要沿着温室分布许多数据和电源线,从而使系统复杂且昂贵。因此,以及其他原因(例如分布式执行器不可用),通常只有单个传感器位于固定点上,该固定点被选为代表整个温室动态的代表。另一方面,温室中的致动系统通常由继电器控制的机械设备组成,从安全和经济的角度来看,希望减少控制信号的换向次数。因此,为了克服这些缺点,本文描述了如何将温室气候控制表示为基于事件的系统与无线传感器网络的结合,其中必须控制低频动态变量并主要计算控制动作应对外部干扰产生的事件。所提出的控制系统可以节省与磨损最小化有关的成本,并延长执行机构的寿命,但仍能保持有希望的性能结果。仿真结果给出了分析和结论。

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