971 resultados para differential evolution algorithm


Relevância:

100.00% 100.00%

Publicador:

Resumo:

Tässä työssä tutkitaan ohjelmistoarkkitehtuurisuunnitteluominaisuuksien vaikutusta erään client-server –arkkitehtuuriin perustuvan mobiilipalvelusovelluksen suunnittelu- ja toteutusaikaan. Kyseinen tutkimus perustuu reaalielämän projektiin, jonka kvalitatiivinen analyysi paljasti arkkitehtuurikompponenttien välisten kytkentöjen merkittävästi vaikuttavan projektin työmäärään. Työn päätavoite oli kvantitatiivisesti tutkia yllä mainitun havainnon oikeellisuus. Tavoitteen saavuttamiseksi suunniteltiin ohjelmistoarkkitehtuurisuunnittelun mittaristo kuvaamaan kyseisen järjestelmän alijärjestelmien arkkitehtuuria ja luotiin kaksi suunniteltua mittaristoa käyttävää, työmäärää (komponentin suunnittelu-, toteutus- ja testausaikojen summa) arvioivaa mallia, joista toinen on lineaarinen ja toinen epälineaarinen. Näiden mallien kertoimet sovitettiin optimoimalla niiden arvot epälineaarista gloobaalioptimointimenetelmää, differentiaalievoluutioalgoritmia, käyttäen, niin että mallien antamat arvot vastasivat parhaiten mitattua työmäärää sekä kaikilla ominaisuuksilla eli attribuuteilla että vain osalla niistä (yksi jätettiin vuorotellen pois). Kun arkkitehtuurikompenttien väliset kytkennät jätettiin malleista pois, mitattujen ja arvoitujen työmäärien välinen ero (ilmaistuna virheenä) kasvoi eräässä tapauksessa 367 % entisestä tarkoittaen sitä, että näin muodostettu malli vastasi toteutusaikoja huonosti annetulla ainestolla. Tämä oli suurin havaitu virhe kaikkien poisjätettyjen ominaisuuksien kesken. Saadun tuloksen perusteella päätettiin, että kyseisen järjestelmän toteutusajat ovat vahvasti riippuvaisia kytkentöjen määrästä, ja näin ollen kytkentöjen määrä oli mitä todennäköisemmin kaikista tärkein työmäärään vaikuttava tekijä tutkitun järjestelmän arkkitehtuurisuunnittelussa.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

Diplomityössä esitetään menetelmä populaation monimuotoisuuden mittaamiseen liukulukukoodatuissa evoluutioalgoritmeissa, ja tarkastellaan kokeellisesti sen toimintaa. Evoluutioalgoritmit ovat populaatiopohjaisia menetelmiä, joilla pyritään ratkaisemaan optimointiongelmia. Evoluutioalgoritmeissa populaation monimuotoisuuden hallinta on välttämätöntä, jotta suoritettu haku olisi riittävän luotettavaa ja toisaalta riittävän nopeaa. Monimuotoisuuden mittaaminen on erityisen tarpeellista tutkittaessa evoluutioalgoritmien dynaamista käyttäytymistä. Työssä tarkastellaan haku- ja tavoitefunktioavaruuden monimuotoisuuden mittaamista. Toistaiseksi ei ole ollut olemassa täysin tyydyttäviä monimuotoisuuden mittareita, ja työn tavoitteena on kehittää yleiskäyttöinen menetelmä liukulukukoodattujen evoluutioalgoritmien suhteellisen ja absoluuttisen monimuotoisuuden mittaamiseen hakuavaruudessa. Kehitettyjen mittareiden toimintaa ja käyttökelpoisuutta tarkastellaan kokeellisesti ratkaisemalla optimointiongelmia differentiaalievoluutioalgoritmilla. Toteutettujen mittareiden toiminta perustuu keskihajontojen laskemiseen populaatiosta. Keskihajonnoille suoritetaan skaalaus, joko alkupopulaation tai nykyisen populaation suhteen, riippuen lasketaanko absoluuttista vai suhteellista monimuotoisuutta. Kokeellisessa tarkastelussa havaittiin kehitetyt mittarit toimiviksi ja käyttökelpoisiksi. Tavoitefunktion venyttäminen koordinaattiakseleiden suunnassa ei vaikuta mittarin toimintaan. Myöskään tavoitefunktion kiertäminen koordinaatistossa ei vaikuta mittareiden tuloksiin. Esitetyn menetelmän aikakompleksisuus riippuu lineaarisesti populaation koosta, ja mittarin toiminta on siten nopeaa suuriakin populaatioita käytettäessä. Suhteellinen monimuotoisuus antaa vertailukelpoisia tuloksia riippumatta parametrien lukumäärästä tai populaation koosta.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

Industry's growing need for higher productivity is placing new demands on mechanisms connected with electrical motors, because these can easily lead to vibration problems due to fast dynamics. Furthermore, the nonlinear effects caused by a motor frequently reduce servo stability, which diminishes the controller's ability to predict and maintain speed. Hence, the flexibility of a mechanism and its control has become an important area of research. The basic approach in control system engineering is to assume that the mechanism connected to a motor is rigid, so that vibrations in the tool mechanism, reel, gripper or any apparatus connected to the motor are not taken into account. This might reduce the ability of the machine system to carry out its assignment and shorten the lifetime of the equipment. Nonetheless, it is usually more important to know how the mechanism, or in other words the load on the motor, behaves. A nonlinear load control method for a permanent magnet linear synchronous motor is developed and implemented in the thesis. The purpose of the controller is to track a flexible load to the desired velocity reference as fast as possible and without awkward oscillations. The control method is based on an adaptive backstepping algorithm with its stability ensured by the Lyapunov stability theorem. As a reference controller for the backstepping method, a hybrid neural controller is introduced in which the linear motor itself is controlled by a conventional PI velocity controller and the vibration of the associated flexible mechanism is suppressed from an outer control loop using a compensation signal from a multilayer perceptron network. To avoid the local minimum problem entailed in neural networks, the initial weights are searched for offline by means of a differential evolution algorithm. The states of a mechanical system for controllers are estimated using the Kalman filter. The theoretical results obtained from the control design are validated with the lumped mass model for a mechanism. Generalization of the mechanism allows the methods derived here to be widely implemented in machine automation. The control algorithms are first designed in a specially introduced nonlinear simulation model and then implemented in the physical linear motor using a DSP (Digital Signal Processor) application. The measurements prove that both controllers are capable of suppressing vibration, but that the backstepping method is superior to others due to its accuracy of response and stability properties.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

Nowadays, the upwind three bladed horizontal axis wind turbine is the leading player on the market. It has been found to be the best industrial compromise in the range of different turbine constructions. The current wind industry innovation is conducted in the development of individual turbine components. The blade constitutes 20-25% of the overall turbine budget. Its optimal operation in particular local economic and wind conditions is worth investigating. The blade geometry, namely the chord, twist and airfoil type distributions along the span, responds to the output measures of the blade performance. Therefore, the optimal wind blade geometry can improve the overall turbine performance. The objectives of the dissertation are focused on the development of a methodology and specific tool for the investigation of possible existing wind blade geometry adjustments. The novelty of the methodology presented in the thesis is the multiobjective perspective on wind blade geometry optimization, particularly taking simultaneously into account the local wind conditions and the issue of aerodynamic noise emissions. The presented optimization objective approach has not been investigated previously for the implementation in wind blade design. The possibilities to use different theories for the analysis and search procedures are investigated and sufficient arguments derived for the usage of proposed theories. The tool is used for the test optimization of a particular wind turbine blade. The sensitivity analysis shows the dependence of the outputs on the provided inputs, as well as its relative and absolute divergences and instabilities. The pros and cons of the proposed technique are seen from the practical implementation, which is documented in the results, analysis and conclusion sections.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

Nel periodo storico compreso tra la seconda metà dell’Ottocento ed il primo ventennio del Novecento, un’ondata di innovazioni tecnologiche e scientifiche, unitamente all’espansione dell’industria siderurgica e la conseguente diffusione del ferro come materiale da costruzione, portarono alla realizzazione di strutture metalliche grandiose. Ciò fu reso possibile grazie ad una fervida attività di ricerca che permise la risoluzione di problematiche tecniche di assoluto rilievo, come la progettazione di grandi coperture o di ponti destinati al traffico ferroviario in grado di coprire luci sempre maggiori. In questo contesto si sviluppò il sistema della chiodatura come metodo di unione per il collegamento rigido e permanente dei vari elementi che compongono la struttura portante metallica. Ad oggi il sistema della chiodatura è stato quasi completamente sostituito dalla bullonatura di acciaio ad alta resistenza e dalla saldatura, che garantendo gli stessi standard di affidabilità e sicurezza, offrono vantaggi in termini economici e di rapidità esecutiva. Tuttavia lo studio delle unioni chiodate continua a rivestire notevole importanza in tutti quei casi in cui il progettista debba occuparsi di restauro, manutenzione o adeguamento di strutture esistenti che in molti casi continuano ad assolvere le funzioni per le quali erano state progettate. La valutazione delle strutture esistenti, in particolare i ponti, ha assunto un’importanza sempre crescente. L’incremento della mobilità e del traffico sulle infrastrutture di trasporto ha portato ad un incremento contemporaneo di carichi e velocità sui ponti. In particolare nelle ferrovie, i ponti rappresentano una parte strategica della rete ferroviaria e in molti casi, essi hanno già raggiunto i loro limiti di capacità di traffico, tanto è vero che l’età media del sessanta percento dei ponti metallici ferroviari è di un centinaio di anni. Pertanto i carichi di servizio, i cicli di sforzo accumulati a causa dei carichi da traffico e il conseguente invecchiamento delle strutture esistenti, inducono la necessità della valutazione della loro rimanente vita a fatica. In questo contesto, la valutazione delle condizioni del ponte e le conseguenti operazioni di manutenzione o sostituzione diventano indispensabili. Negli ultimi decenni sono state effettuate numerose iniziative di ricerca riguardo il comportamento a fatica dei ponti ferroviari chiodati, poiché le passate esperienze hanno mostrato che tali connessioni sono suscettibili di rotture per fatica. Da uno studio dell’ASCE Committee on Fatigue and Fracture Reliability è emerso che l’ottanta, novanta percento delle crisi nelle strutture metalliche è da relazionarsi ai fenomeni di fatica e frattura. Il danno per fatica riportato dai ponti chiodati è stato osservato principalmente sulle unioni tra elementi principali ed è causato dagli sforzi secondari, che si possono sviluppare in diverse parti delle connessioni. In realtà riguardo la valutazione della fatica sui ponti metallici chiodati, si è scoperto che giocano un ruolo importante molti fattori, anzitutto i ponti ferroviari sono soggetti a grandi variazioni delle tensioni indotte da carichi permanenti e accidentali, così come imperfezioni geometriche e inclinazioni o deviazioni di elementi strutturali comportano sforzi secondari che solitamente non vengono considerati nella valutazione del fenomeno della fatica. Vibrazioni, forze orizzontali trasversali, vincoli interni, difetti localizzati o diffusi come danni per la corrosione, rappresentano cause che concorrono al danneggiamento per fatica della struttura. Per questo motivo si studiano dei modelli agli elementi finiti (FE) che riguardino i particolari delle connessioni e che devono poi essere inseriti all’interno di un modello globale del ponte. L’identificazione degli elementi critici a fatica viene infatti solitamente svolta empiricamente, quindi è necessario che i modelli numerici di cui si dispone per analizzare la struttura nei particolari delle connessioni, così come nella sua totalità, siano il più corrispondenti possibile alla situazione reale. Ciò che ci si propone di sviluppare in questa tesi è un procedimento che consenta di affinare i modelli numerici in modo da ottenere un comportamento dinamico analogo a quello del sistema fisico reale. Si è presa in esame la seguente struttura, un ponte metallico ferroviario a binario unico sulla linea Bologna – Padova, che attraversa il fiume Po tra le località di Pontelagoscuro ed Occhiobello in provincia di Ferrara. Questo ponte fu realizzato intorno agli anni che vanno dal 1945 al 1949 e tra il 2002 e il 2006 ha subito interventi di innalzamento, ampliamento ed adeguamento nel contesto delle operazioni di potenziamento della linea ferroviaria, che hanno portato tra l’altro all’affiancamento di un nuovo ponte, anch’esso a singolo binario, per i convogli diretti nella direzione opposta. Le travate metalliche del ponte ferroviario sono costituite da travi principali a traliccio a gabbia chiusa, con uno schema statico di travi semplicemente appoggiate; tutte le aste delle travi reticolari sono formate da profilati metallici in composizione chiodata. In particolare si è rivolta l’attenzione verso una delle travate centrali, della quale si intende affrontare un’analisi numerica con caratterizzazione dinamica del modello agli Elementi Finiti (FEM), in modo da conoscerne lo specifico comportamento strutturale. Ad oggi infatti l’analisi strutturale si basa prevalentemente sulla previsione del comportamento delle strutture tramite modelli matematici basati su procedimenti risolutivi generali, primo fra tutti il Metodo agli Elementi Finiti. Tuttavia i risultati derivanti dal modello numerico possono discostarsi dal reale comportamento della struttura, proprio a causa delle ipotesi poste alla base della modellazione. Difficilmente infatti si ha la possibilità di riscontrare se le ipotesi assunte nel calcolo della struttura corrispondano effettivamente alla situazione reale, tanto più se come nella struttura in esame si tratta di una costruzione datata e della quale si hanno poche informazioni circa i dettagli relativi alla costruzione, considerando inoltre che, come già anticipato, sforzi secondari e altri fattori vengono trascurati nella valutazione del fenomeno della fatica. Nel seguito si prenderanno in esame le ipotesi su masse strutturali, rigidezze dei vincoli e momento d’inerzia delle aste di parete, grandezze che caratterizzano in particolare il comportamento dinamico della struttura; per questo sarebbe ancora più difficilmente verificabile se tali ipotesi corrispondano effettivamente alla costruzione reale. Da queste problematiche nasce l’esigenza di affinare il modello numerico agli Elementi Finiti, identificando a posteriori quei parametri meccanici ritenuti significativi per il comportamento dinamico della struttura in esame. In specifico si andrà a porre il problema di identificazione come un problema di ottimizzazione, dove i valori dei parametri meccanici vengono valutati in modo che le caratteristiche dinamiche del modello, siano il più simili possibile ai risultati ottenuti da elaborazioni sperimentali sulla struttura reale. La funzione costo è definita come la distanza tra frequenze proprie e deformate modali ottenute dalla struttura reale e dal modello matematico; questa funzione può presentare più minimi locali, ma la soluzione esatta del problema è rappresentata solo dal minimo globale. Quindi il successo del processo di ottimizzazione dipende proprio dalla definizione della funzione costo e dalla capacità dell’algoritmo di trovare il minimo globale. Per questo motivo è stato preso in considerazione per la risoluzione del problema, l’algoritmo di tipo evolutivo DE (Differential Evolution Algorithm), perché gli algoritmi genetici ed evolutivi vengono segnalati per robustezza ed efficienza, tra i metodi di ricerca globale caratterizzati dall’obiettivo di evitare la convergenza in minimi locali della funzione costo. Obiettivo della tesi infatti è l’utilizzo dell’algoritmo DE modificato con approssimazione quadratica (DE-Q), per affinare il modello numerico e quindi ottenere l’identificazione dei parametri meccanici che influenzano il comportamento dinamico di una struttura reale, il ponte ferroviario metallico a Pontelagoscuro.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

Social behaviour is mainly based on swarm colonies, in which each individual shares its knowledge about the environment with other individuals to get optimal solutions. Such co-operative model differs from competitive models in the way that individuals die and are born by combining information of alive ones. This paper presents the particle swarm optimization with differential evolution algorithm in order to train a neural network instead the classic back propagation algorithm. The performance of a neural network for particular problems is critically dependant on the choice of the processing elements, the net architecture and the learning algorithm. This work is focused in the development of methods for the evolutionary design of artificial neural networks. This paper focuses in optimizing the topology and structure of connectivity for these networks.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

Social behavior is mainly based on swarm colonies, in which each individual shares its knowledge about the environment with other individuals to get optimal solutions. Such co-operative model differs from competitive models in the way that individuals die and are born by combining information of alive ones. This paper presents the particle swarm optimization with differential evolution algorithm in order to train a neural network instead the classic back propagation algorithm. The performance of a neural network for particular problems is critically dependant on the choice of the processing elements, the net architecture and the learning algorithm. This work is focused in the development of methods for the evolutionary design of artificial neural networks. This paper focuses in optimizing the topology and structure of connectivity for these networks

Relevância:

100.00% 100.00%

Publicador:

Resumo:

This work develops a method for solving ordinary differential equations, that is, initial-value problems, with solutions approximated by using Legendre's polynomials. An iterative procedure for the adjustment of the polynomial coefficients is developed, based on the genetic algorithm. This procedure is applied to several examples providing comparisons between its results and the best polynomial fitting when numerical solutions by the traditional Runge-Kutta or Adams methods are available. The resulting algorithm provides reliable solutions even if the numerical solutions are not available, that is, when the mass matrix is singular or the equation produces unstable running processes.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

This paper applies a genetic algorithm with hierarchically structured population to solve unconstrained optimization problems. The population has individuals distributed in several overlapping clusters, each one with a leader and a variable number of support individuals. The hierarchy establishes that leaders must be fitter than its supporters with the topological organization of the clusters following a tree. Computational tests evaluate different population structures, population sizes and crossover operators for better algorithm performance. A set of known benchmark test problems is solved and the results found are compared with those obtained from other methods described in the literature, namely, two genetic algorithms, a simulated annealing, a differential evolution and a particle swarm optimization. The results indicate that the method employed is capable of achieving better performance than the previous approaches in regard as the two criteria usually employed for comparisons: the number of function evaluations and rate of success. The method also has a superior performance if the number of problems solved is taken into account. (C) 2013 Elsevier B.V. All rights reserved.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

This paper shows the Particle Swarm Optimization algorithm with a Differential Evolution. Each candidate solution is sampled uniformly in [!5,5] D, whereDdenotes the search space dimension, and the evolution is performed with a classical PSO algorithm and a classical DE/x/1 algorithm according to a random threshold.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

The effectiveness of an optimization algorithm can be reduced to its ability to navigate an objective function’s topology. Hybrid optimization algorithms combine various optimization algorithms using a single meta-heuristic so that the hybrid algorithm is more robust, computationally efficient, and/or accurate than the individual algorithms it is made of. This thesis proposes a novel meta-heuristic that uses search vectors to select the constituent algorithm that is appropriate for a given objective function. The hybrid is shown to perform competitively against several existing hybrid and non-hybrid optimization algorithms over a set of three hundred test cases. This thesis also proposes a general framework for evaluating the effectiveness of hybrid optimization algorithms. Finally, this thesis presents an improved Method of Characteristics Code with novel boundary conditions, which better characterizes pipelines than previous codes. This code is coupled with the hybrid optimization algorithm in order to optimize the operation of real-world piston pumps.

Relevância:

90.00% 90.00%

Publicador:

Resumo:

In this paper, a mixed-integer quadratic programming approach is proposed for the short-term hydro scheduling problem, considering head-dependency, discontinuous operating regions and discharge ramping constraints. As new contributions to earlier studies, market uncertainty is introduced in the model via price scenarios, and risk aversion is also incorporated by limiting the volatility of the expected profit through the conditional value-at-risk. Our approach has been applied successfully to solve a case Study based on one of the main Portuguese cascaded hydro systems, requiring a negligible computational time.

Relevância:

90.00% 90.00%

Publicador:

Resumo:

Over 70% of the total costs of an end product are consequences of decisions that are made during the design process. A search for optimal cross-sections will often have only a marginal effect on the amount of material used if the geometry of a structure is fixed and if the cross-sectional characteristics of its elements are property designed by conventional methods. In recent years, optimalgeometry has become a central area of research in the automated design of structures. It is generally accepted that no single optimisation algorithm is suitable for all engineering design problems. An appropriate algorithm, therefore, mustbe selected individually for each optimisation situation. Modelling is the mosttime consuming phase in the optimisation of steel and metal structures. In thisresearch, the goal was to develop a method and computer program, which reduces the modelling and optimisation time for structural design. The program needed anoptimisation algorithm that is suitable for various engineering design problems. Because Finite Element modelling is commonly used in the design of steel and metal structures, the interaction between a finite element tool and optimisation tool needed a practical solution. The developed method and computer programs were tested with standard optimisation tests and practical design optimisation cases. Three generations of computer programs are developed. The programs combine anoptimisation problem modelling tool and FE-modelling program using three alternate methdos. The modelling and optimisation was demonstrated in the design of a new boom construction and steel structures of flat and ridge roofs. This thesis demonstrates that the most time consuming modelling time is significantly reduced. Modelling errors are reduced and the results are more reliable. A new selection rule for the evolution algorithm, which eliminates the need for constraint weight factors is tested with optimisation cases of the steel structures that include hundreds of constraints. It is seen that the tested algorithm can be used nearly as a black box without parameter settings and penalty factors of the constraints.

Relevância:

90.00% 90.00%

Publicador:

Resumo:

The present study was done with two different servo-systems. In the first system, a servo-hydraulic system was identified and then controlled by a fuzzy gainscheduling controller. The second servo-system, an electro-magnetic linear motor in suppressing the mechanical vibration and position tracking of a reference model are studied by using a neural network and an adaptive backstepping controller respectively. Followings are some descriptions of research methods. Electro Hydraulic Servo Systems (EHSS) are commonly used in industry. These kinds of systems are nonlinearin nature and their dynamic equations have several unknown parameters.System identification is a prerequisite to analysis of a dynamic system. One of the most promising novel evolutionary algorithms is the Differential Evolution (DE) for solving global optimization problems. In the study, the DE algorithm is proposed for handling nonlinear constraint functionswith boundary limits of variables to find the best parameters of a servo-hydraulic system with flexible load. The DE guarantees fast speed convergence and accurate solutions regardless the initial conditions of parameters. The control of hydraulic servo-systems has been the focus ofintense research over the past decades. These kinds of systems are nonlinear in nature and generally difficult to control. Since changing system parameters using the same gains will cause overshoot or even loss of system stability. The highly non-linear behaviour of these devices makes them ideal subjects for applying different types of sophisticated controllers. The study is concerned with a second order model reference to positioning control of a flexible load servo-hydraulic system using fuzzy gainscheduling. In the present research, to compensate the lack of dampingin a hydraulic system, an acceleration feedback was used. To compare the results, a pcontroller with feed-forward acceleration and different gains in extension and retraction is used. The design procedure for the controller and experimental results are discussed. The results suggest that using the fuzzy gain-scheduling controller decrease the error of position reference tracking. The second part of research was done on a PermanentMagnet Linear Synchronous Motor (PMLSM). In this study, a recurrent neural network compensator for suppressing mechanical vibration in PMLSM with a flexible load is studied. The linear motor is controlled by a conventional PI velocity controller, and the vibration of the flexible mechanism is suppressed by using a hybrid recurrent neural network. The differential evolution strategy and Kalman filter method are used to avoid the local minimum problem, and estimate the states of system respectively. The proposed control method is firstly designed by using non-linear simulation model built in Matlab Simulink and then implemented in practical test rig. The proposed method works satisfactorily and suppresses the vibration successfully. In the last part of research, a nonlinear load control method is developed and implemented for a PMLSM with a flexible load. The purpose of the controller is to track a flexible load to the desired position reference as fast as possible and without awkward oscillation. The control method is based on an adaptive backstepping algorithm whose stability is ensured by the Lyapunov stability theorem. The states of the system needed in the controller are estimated by using the Kalman filter. The proposed controller is implemented and tested in a linear motor test drive and responses are presented.

Relevância:

90.00% 90.00%

Publicador:

Resumo:

Työssä pyrittiin etsimään differentiaalievoluutioalgoritmilla kaksiakseliselle, välijäähdytyksellä, välipoltolla ja rekuperaattorilla varustetulle mikrokaasuturbiinille sellaiset kompressorien painesuhteet ja rekuperaattorin rekuperaatioaste, että saavutettaisiin mandollisimman hyvä osakuormahyötysuhteen säilyvyys. Osakuormatehon säätömenetelmäksi oli valittu pyörimisnopeussäädön ja turbiinien sisääntulolämpötilan alentamisen yhdistelmä, jossa generaattorilla varustetun akselin pyörimisnopeus sekä molempien turbiinien sisääntulolämpötilat olivat toisistaan riippumatta vapaasti säädettävissä. Työssä löydettiin optimaalinen säätömenetelmien yhdistelmä, jolla saavutetaan parempi osakuormahyötysuhteen säilyvyys, kuin millään käytetyistä menetelmistä yksinään. Lisäksi havaittiin, ettei optimaalinen säätömenetelmä merkittävästi riipu koneikolle valituista suunnittelupisteen parametreista. Osakuormahyötysuhteen säilyvyyden kannalta optimaalinen koneikko ei merkittävästi poikennut suunnittelupisteen hyötysuhteen kannalta optimaalisesta.