In this paper a Vertex Covering Obnoxious Facility Location model on a Plane has been designed with a combination of three interacting criteria as follows: 1) Minimize the overall importance of the various exist-ing f...In this paper a Vertex Covering Obnoxious Facility Location model on a Plane has been designed with a combination of three interacting criteria as follows: 1) Minimize the overall importance of the various exist-ing facility points;2) Maximize the minimum distance from the facility to be located to the existing facility points;3) Maximize the number of existing facility points covered. Area restriction concept has been incor-porated so that the facility to be located should be within certain restricted area. The model developed here is a class of maximal covering problem, that is covering maximum number of points where the facility is within the upper bounds of the corresponding mth feasible region Two types of compromise solution methods have been designed to get a satisfactory solution of the multi-objective problem. A transformed non- linear programming algorithm has been designed for the proposed non-linear model. Rectilinear dis-tance norm has been considered as the distance measure as it is more appropriate to various realistic situa-tions. A numerical example has been presented to illustrate the solution algorithm.展开更多
为准确有效地确定导弹发射阵地选址位置,克服目前阵地选址过程中主观因素较强和难以判断选址方案优劣的弊端,提出基于地理信息系统(geographic information system,GIS)与改进优劣解距离法(technique for order preference by similarit...为准确有效地确定导弹发射阵地选址位置,克服目前阵地选址过程中主观因素较强和难以判断选址方案优劣的弊端,提出基于地理信息系统(geographic information system,GIS)与改进优劣解距离法(technique for order preference by similarity to an ideal solution,TOPSIS)的两阶段阵地选址方法。初选阶段,构建影响发射阵地选址的指标体系,利用改进层次分析法得到各指标综合权重,针对定量指标,采用GIS技术建立多环缓冲区进行空间分析,得到发射阵地选址备选方案;精选阶段,结合备选方案各指标得分,针对定性指标,利用灰色关联改进的TOPSIS进行综合评价,得到导弹发射阵地最优选址方案。实例验证表明:该方法具有较好的可操作性和适用性,主观因素影响较小,能够为导弹发射阵地选址提供决策依据。展开更多
An iterative method based on Shapley Value Cooperative Game Theory is proposed for the calculation of local marginal price (LMP) for each Distributed Generator (DG) bus on a network. The LMP value is determined for ea...An iterative method based on Shapley Value Cooperative Game Theory is proposed for the calculation of local marginal price (LMP) for each Distributed Generator (DG) bus on a network. The LMP value is determined for each DG on the basis of its contribution to reduce loss and emission reduction, which is assessed using the Shapley Value approach. The proposed approach enables the Distribution Company (DISCO) decision-maker to operate the network optimally in terms of loss and emission. The proposed method is implemented in the Taiwan Power Company distribution network 7 warnings consisting of 84 buses and 11 feeders in the MATLAB environment. The results show that the proposed approach allows DISCO to operate the network on the basis of its priority between the reduction of active power loss and emission in the network.展开更多
文摘In this paper a Vertex Covering Obnoxious Facility Location model on a Plane has been designed with a combination of three interacting criteria as follows: 1) Minimize the overall importance of the various exist-ing facility points;2) Maximize the minimum distance from the facility to be located to the existing facility points;3) Maximize the number of existing facility points covered. Area restriction concept has been incor-porated so that the facility to be located should be within certain restricted area. The model developed here is a class of maximal covering problem, that is covering maximum number of points where the facility is within the upper bounds of the corresponding mth feasible region Two types of compromise solution methods have been designed to get a satisfactory solution of the multi-objective problem. A transformed non- linear programming algorithm has been designed for the proposed non-linear model. Rectilinear dis-tance norm has been considered as the distance measure as it is more appropriate to various realistic situa-tions. A numerical example has been presented to illustrate the solution algorithm.
文摘为准确有效地确定导弹发射阵地选址位置,克服目前阵地选址过程中主观因素较强和难以判断选址方案优劣的弊端,提出基于地理信息系统(geographic information system,GIS)与改进优劣解距离法(technique for order preference by similarity to an ideal solution,TOPSIS)的两阶段阵地选址方法。初选阶段,构建影响发射阵地选址的指标体系,利用改进层次分析法得到各指标综合权重,针对定量指标,采用GIS技术建立多环缓冲区进行空间分析,得到发射阵地选址备选方案;精选阶段,结合备选方案各指标得分,针对定性指标,利用灰色关联改进的TOPSIS进行综合评价,得到导弹发射阵地最优选址方案。实例验证表明:该方法具有较好的可操作性和适用性,主观因素影响较小,能够为导弹发射阵地选址提供决策依据。
文摘An iterative method based on Shapley Value Cooperative Game Theory is proposed for the calculation of local marginal price (LMP) for each Distributed Generator (DG) bus on a network. The LMP value is determined for each DG on the basis of its contribution to reduce loss and emission reduction, which is assessed using the Shapley Value approach. The proposed approach enables the Distribution Company (DISCO) decision-maker to operate the network optimally in terms of loss and emission. The proposed method is implemented in the Taiwan Power Company distribution network 7 warnings consisting of 84 buses and 11 feeders in the MATLAB environment. The results show that the proposed approach allows DISCO to operate the network on the basis of its priority between the reduction of active power loss and emission in the network.