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Optimization for Biogas Power Plants using Automatic Control of Gas Pressures

机译:通过自动控制气压优化沼气发电厂

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In many cases, gas storages on biogas power plants are not used optimally to store gas as much as their capacity. The digester is sometimes overload to store gas and the controller cannot deliver gas to other storage. Consequently, gas is often released from digester to avoid over pressure. At the end, biogas power plant has less efficiency. Hence, a mechanism to control gas pressure to make different pressure between its storages is required. Fans were used to manipulate the most majority system pressures on a biogas power plant using frequency converters. Measurements, simulations, and experiments were conducted to create a new system on a biogas power plant. A controller, Programmable Logic Controller was used to control the entire system pressure using Proportional-Integral-Derivative algorithm. When the gas pressures are not in the allowable range of pressure, then the controller changes the fans’ frequency to the desired conditions. As a result, gas moves to another storage and system pressures are in the allowable range.
机译:在许多情况下,沼气发电厂的储气库没有被最佳地用来储存其最大容量的气体。蒸煮器有时会超负荷存储气体,而控制器无法将气体输送到其他存储设备。因此,气体通常会从蒸煮器中释放出来,以避免过压。最后,沼气发电厂的效率较低。因此,需要一种控制气压以在其存储之间产生不同压力的机构。风扇用于使用变频器来控制沼气发电厂的大多数系统压力。进行了测量,模拟和实验,以在沼气发电厂上创建新系统。使用比例积分微分算法的控制器,可编程逻辑控制器来控制整个系统压力。当气压不在允许的压力范围内时,控制器将风扇的频率更改为所需的条件。结果,气体移动到另一个存储设备,并且系统压力在允许范围内。

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