| Literature DB >> 34379651 |
Xiaokang Han1, Wenzhou Yan1, Mei Lu1.
Abstract
Industry is an important pillar of the national economy. Industrial projects are the most complex and difficult projects to control in the construction industry, and major industrial projects are even more complex and difficult to control. Multi-agent coordination is one of the core issues of industrial projects. Based on an analysis of the engineering and construction chains and agent relationships and agent networks of industrial projects, a complex network of the engineering and construction agents of industrial projects is established, and the complex network structural holes theory is applied to study the nonrepeated relationships among agents in industrial projects. Assuming agents are linked through contract relations and the most critical contract index between the agents in the contract amount, through structural hole analysis considering the EPC and PMC model, the aggregate constraint list is obtained, 2D network diagram and 3D network diagram are shown. According to the aggregate constraint value, the EPC contractor with the minimum aggregate constraint value and the project management company with the minimum aggregate constraint value are the critical agent in EPC and PMC model. By analyzing the complex network comprising different models of industrial projects, it is concluded that the characteristics of the agent maintain an advantage in competition, the coordination mechanism of the integration of agent interests, and multi-agent relations are considered to solve the multi-agent coordination problem in major industrial projects.Entities:
Mesh:
Year: 2021 PMID: 34379651 PMCID: PMC8357179 DOI: 10.1371/journal.pone.0255858
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1Industrial project construction stage composition.
Fig 2Industrial project construction stage and agent composition.
Fig 3Basic model of the engineering and construction chains of industrial projects.
Fig 4Engineering and construction agent networks under the industrial project-EPC model.
Fig 5Engineering and construction agent networks under the industrial project-PMC model.
Agent list of the EPC model.
| Agent Name | Node Code | Node Description |
|---|---|---|
| Owner |
| |
| Government |
| |
| Financial Institution |
| |
| Consultant Agent |
| |
| Insurance Company |
| |
| Supervising Company 1 |
| Gasification, conversion, purification, pressure swing adsorption (PSA) hydrogen production |
| Supervising Company 2 |
| Methanol, sulfur recovery, formaldehyde, glycol |
| Supervising Company 3 |
| Air separation, coal storage and transportation, boiler operation |
| Supervising Company 4 |
| Auxiliary facilities |
| Feasibility Study Company |
| |
| General Design Company |
| |
| Licenser 1 |
| Gasification |
| Licenser 2 |
| Conversion |
| Licenser 3 |
| Purification |
| Licenser 4 |
| PSA hydrogen production |
| Licenser 5 |
| Sulfur recovery |
| Licenser 6 |
| Methanol |
| Licenser 7 |
| Formaldehyde |
| Licenser 8 |
| Glycol |
| Licenser 9 |
| Air separation |
| Licenser 10 |
| Boiler operation |
| FEED/Basic Design Company 1 |
| Gasification, conversion, purification, PSA hydrogen production |
| FEED/Basic Design Company 2 |
| Methanol, sulfur recovery, formaldehyde, glycol |
| FEED/Basic Design Company 3 |
| Air separation, coal storage and transportation, boiler operation |
| FEED/Basic Design Company 4 |
| Auxiliary facilities |
| EPC Contractor 1 |
| Gasification, conversion |
| EPC Contractor 2 |
| Purification, PSA hydrogen production |
| EPC Contractor 3 |
| Methanol, sulfur recovery, formaldehyde, glycol |
| EPC Contractor 4 |
| Formaldehyde, glycol |
| EPC Contractor 5 |
| Air separation |
| EPC Contractor 6 |
| Coal storage and transportation, boiler operation |
| EPC Contractor 7 |
| Auxiliary facilities |
| ⋮ | ⋮ | ⋮ |
| Commissioning Company 1 |
| Gasification, conversion, purification, PSA hydrogen production |
| Commissioning Company 2 |
| Methanol, sulfur recovery, formaldehyde, glycol |
| Commissioning Company 3 |
| Boiler operation |
| Commissioning Company 4 |
| Air separation |
Note: The design companies, suppliers and construction subcontractors of the EPC contractors are not reflected in detail in this table because there are too many agents.
Fig 6Agent network under the EPC model.
List of the edge attribute values between the agents under the EPC model.
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| 100 |
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| 1000 |
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| 100 |
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| 800 |
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| 800 |
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| 222695 |
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| 54138 |
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| 87304 |
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| 284500 |
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| 40878 |
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| 39864 |
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| 25230 |
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| 100 |
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| 100 |
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| 100 |
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| 100 |
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| 100 |
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| 100 |
| ⋮ | ⋮ | ⋮ |
Aggregate constraint list of the agents under the EPC model.
| Node Code | Aggregate Constraint |
|---|---|
|
| 0.239107 |
|
| 1 |
|
| 1 |
|
| 1 |
|
| 1 |
|
| 0.891819 |
|
| 0.920579 |
|
| 0.746002 |
|
| 0.829588 |
|
| 1 |
|
| 0.661507 |
|
| 0.914321 |
|
| 0.853987 |
|
| 0.849438 |
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| 0.853987 |
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| 0.860496 |
|
| 0.90974 |
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| 0.885114 |
|
| 0.953296 |
|
| 0.852011 |
|
| 0.845111 |
|
| 0.89492 |
|
| 0.962055 |
|
| 0.919464 |
|
| 0.889431 |
|
| 0.347874 |
|
| 0.325535 |
|
| 0.269459 |
|
| 0.293377 |
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| 0.283277 |
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| 0.285006 |
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| 0.270003 |
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| 0.941948 |
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| 1.037853 |
|
| 0.884161 |
|
| 0.867589 |
Fig 7Agent network and structural holes under the EPC model—2D diagram of aggregation constraint analysis.
Fig 8Agent network and structural holes under the EPC model—3D diagram of aggregation constraint analysis.
Fig 9Agent network and structural holes under the EPC model—VOS map of aggregation constraint analysis.
Agent list of the PMC model.
| Agent Name | Node Code | Node Description |
|---|---|---|
| Owner |
| |
| Government |
| |
| Financial Institution |
| |
| Consultant Agent |
| |
| Insurance Company |
| |
| Supervising Company 1 |
| Gasification, conversion, purification, PSA hydrogen production |
| Supervising Company 2 |
| Methanol, sulfur recovery, formaldehyde, glycol |
| Supervising Company 3 |
| Air separation, coal storage and transportation, boiler operation |
| Supervising Company 4 |
| Auxiliary facilities |
| Feasibility Study Company |
| |
| General Design Company |
| |
| Licenser 1 |
| Gasification |
| Licenser 2 |
| Conversion |
| Licenser 3 |
| Purification |
| Licenser 4 |
| PSA hydrogen production |
| Licenser 5 |
| Sulfur recovery |
| Licenser 6 |
| Methanol |
| Licenser 7 |
| Formaldehyde |
| Licenser 8 |
| Glycol |
| Licenser 9 |
| Air separation |
| Licenser 10 |
| Boiler operation |
| FEED/Basic Design Company 1 |
| Gasification, conversion, purification, PSA hydrogen production |
| FEED/Basic Design Company 2 |
| Methanol, sulfur recovery, formaldehyde, glycol |
| FEED/Basic Design Company 3 |
| Air separation, coal storage and transportation, boiler |
| FEED/Basic Design Company 4 |
| Auxiliary facilities |
| Project management company |
| |
| Detailed Design Company 1 |
| Gasification |
| Detailed Design Company 2 |
| Conversion |
| Detailed Design Company3 |
| Purification |
| Detailed Design Company 4 |
| Methanol, sulfur recovery |
| Detailed Design Company 5 |
| Formaldehyde, glycol |
| Detailed Design Company 6 |
| PSA hydrogen production |
| Detailed Design Company 7 |
| Coal storage and transportation |
| Detailed Design Company 8 |
| Boiler operation |
| Detailed Design Company 9 |
| Auxiliary facilities 1 |
| Detailed Design Company 10 |
| Auxiliary facilities 2 |
| Detailed Design Company 11 |
| Administrative region |
| ⋮ | ⋮ | ⋮ |
| Commissioning Company 1 |
| Gasification, conversion, purification, PSA hydrogen production |
| Commissioning Company 2 |
| Methanol, sulfur recovery, formaldehyde, glycol |
| Commissioning Company 3 |
| Boiler operation |
| Commissioning Company 4 |
| Air separation |
Note: The design companies, suppliers and construction subcontractors are not reflected in detail in this table because there are too many agents.
Fig 10Agent network under the PMC model.
List of the edge attribute values between the agents under the PMC model.
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|---|---|---|
|
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| 100 |
|
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| 100 |
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| 1000 |
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| 3000 |
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| 500 |
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| 400 |
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| 250 |
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| 150 |
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| 1000 |
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| 1000 |
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| 100 |
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| 300 |
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| 100 |
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| 200 |
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| 800 |
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| 500 |
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| 2000 |
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| 200 |
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| 150 |
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| 5000 |
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| 1000 |
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| 800 |
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| 10000 |
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| 100 |
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| 100 |
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| 100 |
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| 100 |
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| 100 |
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| 100 |
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| 100 |
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| 100 |
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| 100 |
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| 100 |
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| 100 |
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| 100 |
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| 100 |
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| 5000 |
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| 800 |
| ⋮ | ⋮ | ⋮ |
Aggregate constraint list of the agents under the PMC model.
| Node Code | Aggregate Constraint |
|---|---|
|
| 0.060541 |
|
| 0.590764 |
|
| 0.590764 |
|
| 0.863014 |
|
| 0.948306 |
|
| 0.770015 |
|
| 0.735227 |
|
| 0.690072 |
|
| 0.66298 |
|
| 0.605193 |
|
| 0.569726 |
|
| 0.793005 |
|
| 0.566507 |
|
| 0.634142 |
|
| 0.566507 |
|
| 0.621823 |
|
| 0.776284 |
|
| 0.714627 |
|
| 0.882314 |
|
| 0.568044 |
|
| 0.591354 |
|
| 0.83545 |
|
| 0.922496 |
|
| 0.764961 |
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| 0.74836 |
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| 0.495381 |
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| 0.961418 |
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| 0.823678 |
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| 0.867778 |
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| 0.923292 |
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| 0.951105 |
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| 0.830518 |
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| 0.738826 |
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| 0.763754 |
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| 0.863014 |
|
| 0.863014 |
|
| 0.797158 |
Fig 11Agent network and structural holes under the PMC model—2D diagram of aggregation constraint analysis.
Fig 12Agent network and structural holes under the PMC model—3D diagram of aggregation constraint analysis.
Fig 13Agent network and structural holes under the PMC model—VOS map of aggregation constraint analysis.