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1)  power bidding system
发电竞价系统
1.
Research and development of power bidding system based on optimization efficiency for whole power network;
基于全网最优效益发电竞价系统的研究与开发
2.
A power bidding system based on the mode is developed and the system is proved to be reliable and feasible by simulation an.
文章详细研究了容量合同电量、容量合同电价和效率置换的原则、方法及数学模型,实时市场的竞价模型、报价方式及上网交易、结算的数学模型等,并研究开发了基于该模式的发电竞价系统
2)  power bidding
发电竞价
1.
The implementation of power bidding is an important measure and an inevitable trend in the commercialization of power.
发电竞价上网是实现电力市场化的重要举措和必然趋势。
3)  electricity bidding
发电竞价
1.
The implementing of electricity bidding is an im portant action during the realization of electricity market.
实行发电竞价上网是实现电力市场化的重要举措和必经步骤。
4)  generation bidding
发电竞价
1.
The linear programming model for solving generation bidding problem is described, and the computing procedure isthen illustrated by means of a two-unit case as an example.
介绍了发电竞价问题的线性规划模型 ,并用 2机组为例说明了计算过程。
2.
The basic concept of the network flow program ming NFP method including the model and algorithm for dual- NFP and sim plex- NFP in the generation bidding is introduced firstly.
网络流规划法计算原理符合市场操作过程 ,容易解决竞价中关于时间耦合的约束和网络安全的约束 ,是目前最有前途的发电竞价算
3.
Generally,the dynam ic programm ing method can be used in the generation bidding in order to solve unit com mitm ent and power dispatch problems,in which the start- up cost and start- off constraints can be implemented in unit com mitm ent m odels,while in the power dispatch m odel the dropping characteristics of bidding curve can be handled.
动态规划法可以用来解决发电竞价中的机组组合与功率分配问题。
5)  dynamoelectric competition system
发电竞争系统
1.
Aiming at the question for the dynamoelectric competition system of the Hunan electric power mark.
针对开发电网发电企业超基数发电竞争系统的课题 ,本文讨论应用 VB6 。
6)  bidding at generation side
发电侧竞价
补充资料:电力系统发电功率因数


电力系统发电功率因数
generation power factor of electric power system

d lonl一x}tor、9 tod一〔苦门901191一j丫一rl引、一J电力系统发电功率因数(generation powerfaetor of eleetrie power system)电力系统中所有发电机发出的总有功功率与总视在功率的比值。电力系统发电功率因数是电力系统运行参数之一它表明电力系统中无功补偿的合理性。根据无功功率就地平衡的原则,发电机发出的无功功率只需满足发电厂厂用电、附近用户需求以及就近电力网无功功率损耗即可。所以,电力系统发电功率因数应保持接近于1的较高水平。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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