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The design and implementation about short-time Generation Scheduling system on the basis of SCUCSCED

机译:基于SCUC&SCED的短时发电调度系统的设计与实现

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At present the main problem of short-time Generation Scheduling software is the low level of automatical planning which cannot coordinate well network security constraints, capacity constraints and other practical constraints. This kind of situation results in low efficiency of making plan. The result of Generation Scheduling is unsatisfactory and unable to achieve the security and economy unification. Security Constrained Unit Commitment (SCUC) and Security Constrained Economic Dispatch (SCED) technology which can calculate the large-scale power grid unit commitment and economic dispatch problems has made tremendous progress. This paper reports upon the security-constrained commitment and dispatch algorithms and their implementation for Fujian power grid short-time Generation Scheduling. The Mixed Integer Programming (MIP) method is utilized to solve the short-time Generation Scheduling commitment problem and the Linear Programming (LP) method solves the short-time Generation Scheduling economic dispatch problem. The design and implementation of Generation Scheduling system on the basis of SCUC and SCED are discussed in the paper. The purpose,design ideas and architecture of the integrated system as well as functions of sub-systems in it and algorithms adopted are expounded.The System includes the following functions: flow management, case management, constraint management, cost construction and management, closed-loop iterative optimization and Security Check, Result demonstration and evaluation etc. The actual operating practice of presented system in Fujian power grid proves that it can mitigate the dispatchers'burden and run stably with correct scheduling given.
机译:目前短时间发电调度软件的主要问题是较低的自动规划,无法协调网络安全约束,容量约束和其他实际约束。这种情况导致制定计划的低效率。发电调度的结果令人不满意,无法实现安全和经济统一。安全约束单位承诺(SCUC)和安全约束经济调度(SCED)技术,可以计算大规模电网的承诺和经济派遣问题取得了巨大的进展。本文报告了安全受累的承诺和派遣算法及其对福建电网短时间发电调度的实施。混合整数编程(MIP)方法用于解决短时间产生调度承诺问题,线性编程(LP)方法解决了短时间发电调度经济调度问题。本文讨论了基于SCUC和SCED基于SCUC和SCED的设计和实现。阐述了集成系统的目的,设计思路和架构以及采用的算法的子系统功能。系统包括以下功能:流量管理,案例管理,约束管理,成本建设和管理,关闭 - 循环迭代优化和安全检查,结果示范和评估等。福建电网呈现系统的实际操作实践证明,它可以减轻调度员的折叠并稳定地运行正确的调度。

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