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District heating temperature control algorithm based on short term weather forecast and consumption predictions

机译:基于短期天气预报和消费预测的区域供热温度控制算法

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District heating grids are complex systems where energy production has to match the consumption load while key system parameters like temperatures and pressures through the grid have to be kept within limits. The choice of a control strategy for the grid depends on the selected key performance indicators. The scientific contribution of this paper is a methodology for controlling the supply water temperature setpoint of a heat power plant using heat consumption predictions. The proposed algorithm aims to provide more heat energy to the difficult consumers when they need it the most. The required input information are the short term weather forecast, the supply hot water temperature propagation delays of the district heating grid as a function of the grid load level and consumption profiles based on historical data or heat consumption models. The methodology is applied on a simplified case study of a 120MW district heating grid. The results showed that within a specific supply water temperature range the performance of the grid in terms of minimum pressure difference at the consumers over a year was significantly better using the proposed proactive algorithm compared to simple reactive and constant temperature control strategies.
机译:区域供热电网是复杂的系统,其中能源生产必须与能耗负荷相匹配,而关键系统参数(例如通过电网的温度和压力)必须保持在限制范围内。网格的控制策略的选择取决于所选的关键性能指标。本文的科学贡献是一种利用热量消耗预测来控制火力发电厂的供水温度设定点的方法。所提出的算法旨在在困难的消费者最需要时为他们提供更多的热能。所需的输入信息包括短期天气预报,区域供热电网的供水热水温度传播延迟(取决于电网负荷水平)和基于历史数据或热量消耗模型的消耗曲线。该方法应用于一个120MW区域供热电网的简化案例研究。结果表明,与简单的反应性和恒定温度控制策略相比,使用所提出的主动性算法,在特定的给水温度范围内,电网在一年内对用户的最小压差方面的性能明显更好。

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