4.4 Article

Lanchester equation for cognitive domain using hesitant fuzzy linguistic terms sets

Related references

Note: Only part of the references are listed.
Article Physics, Multidisciplinary

The solution of Lanchester's equations with inter-battle reinforcement strategies

Mark McCartney

Summary: Constant reinforcement leads to outright victory, linear reinforcement can result in stalemate, and quadratic reinforcement may lead to chaotic behavior and the creation of fractal partitioning.

PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS (2022)

Article Management

Optimising structure in a networked Lanchester model for fires and manoeuvre in warfare

Alexander C. Kalloniatis et al.

Summary: The study presents a generalization of the classical Lanchester model using networks to describe the maneuver and engagement patterns between two combat forces. By optimizing internal maneuver and external engagement structures, a sequence of transitions from defeat to stalemate and then to victory can be achieved.

JOURNAL OF THE OPERATIONAL RESEARCH SOCIETY (2021)

Article Computer Science, Hardware & Architecture

Network Security Situation Prediction of Improved Lanchester Equation Based on Time Action Factor

Huiqian Song et al.

Summary: Existing network security situational awareness and prediction often do not fully consider network defense utility and time factor, leading to uncertainty in attack prediction and lack of effective emergency response strategies; therefore, a network behavior calculation model based on the Lanchester equation of time action factor is proposed, incorporating differential geometry principles and the second linear law of the Lanchester equation for active defense.

MOBILE NETWORKS & APPLICATIONS (2021)

Article Management

Targeting, Deployment, and Loss-Tolerance in Lanchester Engagements

Michael P. Atkinson et al.

Summary: Existing Lanchester combat models focus on force size and attrition rate, but other factors such as targeting capability, tactical restrictions, and morale also play important roles in battle outcomes. Research suggests that prioritizing more units and better weapons is preferred over improved targeting capability and relaxed deployment restrictions.

OPERATIONS RESEARCH (2021)

Article Mathematics

Lanchester Models for Irregular Warfare

Moshe Kress

MATHEMATICS (2020)

Article Management

Similarity and entropy measures for hesitant fuzzy sets

Junhua Hu et al.

INTERNATIONAL TRANSACTIONS IN OPERATIONAL RESEARCH (2018)

Article Management

Lanchester model for three-way combat

Moshe Kress et al.

EUROPEAN JOURNAL OF OPERATIONAL RESEARCH (2018)

Article Computer Science, Artificial Intelligence

Uncertainty Measures of Extended Hesitant Fuzzy Linguistic Term Sets

Cuiping Wei et al.

IEEE TRANSACTIONS ON FUZZY SYSTEMS (2018)

Article Computer Science, Artificial Intelligence

A consensus model for large-scale group decision making with hesitant fuzzy information and changeable clusters

Zhibin Wu et al.

INFORMATION FUSION (2018)

Article Management

An efficient approximate solution for stochastic Lanchester models

Donghyun Kim et al.

JOURNAL OF THE OPERATIONAL RESEARCH SOCIETY (2017)

Article Management

Lanchester modelling of intelligence in combat

S G Coulson

IMA Journal of Management Mathematics (2017)

Article Computer Science, Artificial Intelligence

The new extension of TOPSIS method for multiple criteria decision making with hesitant Pythagorean fuzzy sets

Decui Liang et al.

APPLIED SOFT COMPUTING (2017)

Article Computer Science, Artificial Intelligence

Multiple criteria decision-making methods with completely unknown weights in hesitant fuzzy linguistic term setting

B. Farhadinia

KNOWLEDGE-BASED SYSTEMS (2016)

Article Psychology, Biological

Fight the power: Lanchester's laws of combat in human evolution

Dominic D. P. Johnson et al.

EVOLUTION AND HUMAN BEHAVIOR (2015)

Article Computer Science, Artificial Intelligence

A VIKOR-based method for hesitant fuzzy multi-criteria decision making

Huchang Liao et al.

FUZZY OPTIMIZATION AND DECISION MAKING (2013)

Article Computer Science, Information Systems

Information measures for hesitant fuzzy sets and interval-valued hesitant fuzzy sets

B. Farhadinia

INFORMATION SCIENCES (2013)

Article Computer Science, Artificial Intelligence

Hesitant Fuzzy Linguistic Term Sets for Decision Making

Rosa M. Rodriguez et al.

IEEE TRANSACTIONS ON FUZZY SYSTEMS (2012)

Article Engineering, Multidisciplinary

Combat modelling with partial differential equations

Therese Keane

APPLIED MATHEMATICAL MODELLING (2011)

Article Computer Science, Artificial Intelligence

Hesitant fuzzy information aggregation in decision making

Meimei Xia et al.

INTERNATIONAL JOURNAL OF APPROXIMATE REASONING (2011)

Article Operations Research & Management Science

Lanchester Models and the Battle of Britain

Ian R. Johnson et al.

NAVAL RESEARCH LOGISTICS (2011)

Article Computer Science, Artificial Intelligence

Hesitant Fuzzy Sets

Vicenc Torra

INTERNATIONAL JOURNAL OF INTELLIGENT SYSTEMS (2010)