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首页> 外文期刊>IEEE Transactions on Power Systems >Numerical Solutions to Nash-Cournot Equilibria in Coupled Constraint Electricity Markets
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Numerical Solutions to Nash-Cournot Equilibria in Coupled Constraint Electricity Markets

机译:耦合约束电力市场中纳什古诺均衡的数值解

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摘要

A numerical method based on a relaxation algorithm and the Nikaido-Isoda function is presented for the calculation of Nash-Cournot equilibria in electricity markets. Nash equilibrium is attained through a relaxation procedure applied to an objective function, the Nikaido-Isoda function, which is derived from the existing profit maximization functions calculated by the generating companies. We also show how to use the relaxation algorithm to compute, and enforce, a coupled constraint equilibrium, which occurs if regulatory, generation, and distribution (and more) restrictions are placed on the companies and entire markets. Moreover, we use the relaxation algorithm to compute players' payoffs under several player configurations. This is needed for the solution of our game under cooperative game theory concepts, such as the bilateral Shapley value and the kernel. We show that the existence of both depends critically on demand price elasticity. The numerical method converges to a unique solution under rather specific but plausible concavity conditions. A case study from the IEEE 30-bus system, and a three-bus bilateral market example with a dc model of the transmission line constraints are presented and discussed.
机译:提出了一种基于松弛算法和Nikaido-Isoda函数的数值方法,用于计算电力市场中的纳什古诺均衡。纳什均衡是通过对目标函数Nikaido-Isoda函数应用松弛程序来实现的,Nikido-Isoda函数是根据发电公司计算的现有利润最大化函数得出的。我们还展示了如何使用松弛算法来计算和实施耦合约束平衡,如果对公司和整个市场施加了监管,生产和分配(及更多)限制,则会发生这种平衡。此外,我们使用松弛算法来计算几种玩家配置下的玩家收益。这是根据合作博弈论概念(例如双边Shapley值和核)解决我们的博弈所需要的。我们表明,两者的存在都主要取决于需求价格弹性。数值方法在相当具体但合理的凹度条件下收敛到唯一解。提出并讨论了一个来自IEEE 30总线系统的案例研究,以及一个具有传输线约束的dc模型的三总线双边市场示例。

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