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首页> 外文期刊>IEEE Transactions on Power Systems >Optimization and Implementation of a Load Control Scheduler Using Relaxed Dynamic Programming for Large Air Conditioner Loads
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Optimization and Implementation of a Load Control Scheduler Using Relaxed Dynamic Programming for Large Air Conditioner Loads

机译:大型空调机负荷的松弛动态规划的负荷控制调度器的优化与实现

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摘要

This paper presents the optimization and implementation of a relaxed dynamic programming (RDP) algorithm to generate a daily control scheduling for optimal or near-optimal air conditioner loads (ACLs). The conventional control mode for ACL includes demand control, cycling control, and timer control, to assist customers for saving electricity costs. The proposed load control scheduler (LCS) scheme supports any combination of these three control types to save costs optimally during the dispatch period. Microprocessor hardware techniques were applied to carry out the proposed strategy for realistic application. The Visual C++ language was adopted as the developing tool to carry out the proposed work. Field tests of controlling air conditioners located in the campus of National Kaohsiung University of Applied Sciences, Kaohsiung, Taiwan, were tested on-site to demonstrate the effectiveness of the proposed load control strategy. The results show that interruptible load scheduling can reduce the system load effectively, and the load capacity reduced by the proposed load control strategy follows closely the trajectory of the peak load.
机译:本文介绍了松弛动态规划(RDP)算法的优化和实现,以生成用于最佳或接近最佳空调负荷(ACL)的每日控制调度。 ACL的常规控制模式包括需求控制,循环控制和计时器控制,以帮助客户节省电费。提议的负载控制调度程序(LCS)方案支持这三种控制类型的任意组合,以在调度期间最佳地节省成本。应用微处理器硬件技术来执行所提出的实际应用策略。 Visual C ++语言被用作开发工具来完成建议的工作。对位于台湾高雄的国立高雄应用科技大学校园内的空调控制系统进行了现场测试,以证明所提出的负载控制策略的有效性。结果表明,可中断的负荷调度可以有效地降低系统负荷,并且所提出的负荷控制策略所降低的负荷能力紧随峰值负荷的轨迹。

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