Javascript must be enabled to continue!
Research on construction schedule risk management of power supply and distribution projects based on MCS-AHP model
View through CrossRef
In order to manage the construction schedule risk of power supply and distribution engineering, a construction schedule risk evaluation model, namely the Monte Carlo simulation method - Analytic Hierarchy Process (MCS-AHP) model, is proposed. In this model, the Monte Carlo simulation method is adopted to improve the analytic Hierarchy Process (AHP), and the normal distribution interval is used to replace the specific value when constructing the fuzzy complementary judgment matrix, to reduce the risk of fuzzy thinking and incomplete information or scattered data in the process of investigation and judgment and improve the scientific evaluation. This paper takes a power supply and distribution project in Guangdong Province as an example uses the MCS-AHP model to measure the key factors limiting the project progress, and uses the AHP method for comparative analysis, to verify the feasibility of the MCS-AHP model. The analysis shows that the key influencing factors are material and equipment procurement, production and arrival, installation of 10 kv high voltage switchboard, electrical acceptance and single machine commissioning, installation of low-voltage switchboard and DC switchboard, and foundation construction of power station equipment, etc., which are consistent with the actual situation. Therefore, it is feasible to construct the MCS-AHP model, which can provide a new way of thinking for schedule risk management analysis.
Title: Research on construction schedule risk management of power supply and distribution projects based on MCS-AHP model
Description:
In order to manage the construction schedule risk of power supply and distribution engineering, a construction schedule risk evaluation model, namely the Monte Carlo simulation method - Analytic Hierarchy Process (MCS-AHP) model, is proposed.
In this model, the Monte Carlo simulation method is adopted to improve the analytic Hierarchy Process (AHP), and the normal distribution interval is used to replace the specific value when constructing the fuzzy complementary judgment matrix, to reduce the risk of fuzzy thinking and incomplete information or scattered data in the process of investigation and judgment and improve the scientific evaluation.
This paper takes a power supply and distribution project in Guangdong Province as an example uses the MCS-AHP model to measure the key factors limiting the project progress, and uses the AHP method for comparative analysis, to verify the feasibility of the MCS-AHP model.
The analysis shows that the key influencing factors are material and equipment procurement, production and arrival, installation of 10 kv high voltage switchboard, electrical acceptance and single machine commissioning, installation of low-voltage switchboard and DC switchboard, and foundation construction of power station equipment, etc.
, which are consistent with the actual situation.
Therefore, it is feasible to construct the MCS-AHP model, which can provide a new way of thinking for schedule risk management analysis.
Related Results
Mechanical circulatory support devices in left main occlusion: a multicenter study from 2008 to 2020
Mechanical circulatory support devices in left main occlusion: a multicenter study from 2008 to 2020
Abstract
Introduction
Evidence of benefit in the use of mechanical circulatory support devices (MCS) in patients with acute myoc...
Crowdsensing-driven route optimisation algorithms for smart urban mobility
Crowdsensing-driven route optimisation algorithms for smart urban mobility
Urban rörlighet anses ofta vara en av de främsta möjliggörarna för en hållbar statsutveckling.
Idag skulle det dock kräva ett betydande skifte mot renare och effektivare stadstran...
MODULAR CONSTRUCTION SYSTEMS: A FOCUS ON DEVELOPING TECHNICAL EXPERTISE IN MALAYSIA
MODULAR CONSTRUCTION SYSTEMS: A FOCUS ON DEVELOPING TECHNICAL EXPERTISE IN MALAYSIA
The Government has clearly put focus on MCS as the future of construction through the Construction 4.0 Strategic Plan (2021-2025) and National Construction Policy 2030. However, th...
Analysis of factors affecting baseline SF-36 Mental Component Summary in Adult Spinal Deformity and its impact on surgical outcomes
Analysis of factors affecting baseline SF-36 Mental Component Summary in Adult Spinal Deformity and its impact on surgical outcomes
Abstract
Objectives
To identify the factors that affect SF-36 mental component summary (MCS) in patients with adult spinal deformity (ASD) at the time of presentation, and to anal...
Sulfur vacancies and Schottky heterojunction promote the photocatalytic H2 evolution of MnxCd1-xS: accelerated charge separation, rich active sites and decreased overpotential
Sulfur vacancies and Schottky heterojunction promote the photocatalytic H2 evolution of MnxCd1-xS: accelerated charge separation, rich active sites and decreased overpotential
This study adopted the solvothermal method to load non-precious metal Cu2MoS4 (CMS) co-catalyst onto Mn0.43Cd0.57S (MCS). MCS nanoparticles were closely attached on CMS nanosheets ...
Development of an app-based bedside clinical decision-making tool for mechanical cardiocirculatory support in patients with cardiogenic shock: the MCS-Aid app
Development of an app-based bedside clinical decision-making tool for mechanical cardiocirculatory support in patients with cardiogenic shock: the MCS-Aid app
Abstract
Background
Patients presenting with cardiogenic shock remain at high risk of morbidity and mortality. Several mechanica...
Development of an app-based bedside clinical decision-making tool for mechanical cardiocirculatory support in patients with cardiogenic shock: the MCS-Aid app
Development of an app-based bedside clinical decision-making tool for mechanical cardiocirculatory support in patients with cardiogenic shock: the MCS-Aid app
Abstract
Background
Patients presenting with cardiogenic shock remain at high risk of morbidity and mortality. Several mechanica...
Object-Based Analyses of Mesoscale Convective Systems and Embedded Storms over the Indian Monsoon Zone Using Datasets from Satellite, Radar and Model Simulations         &
Object-Based Analyses of Mesoscale Convective Systems and Embedded Storms over the Indian Monsoon Zone Using Datasets from Satellite, Radar and Model Simulations         &
Mesoscale convective systems (MCSs), the largest type of deep convective storms are formed when convection aggregates and grows upscale, forming a distinct mesoscale circulation th...

