Project study and Index of subjects

The hours of research, the tests and the technical trials have been going for three years, for starters, our work is compiled in four volumes.
The index is available, with the proper authorisation, to future commercial and financial partners who are interested in building the pre-industry prototype.

INDEX

Volume 1

  • 1. General information
    • 1.1 The power generator of the future 2020
    • 1.2 Strategy for new developments and projects
    • 1.3 Evolution of the STG power generator
    • 1.4 Purpose of the project
    • 1.5 Technical sheet
    • 1.6 Business plan 2017
    • 1.7 Technical specifications
    • 1.8 Extender characteristics
  • 2. Theoretical part
    • 2.1 Basic concepts
      • 2.1.1 Second generation of the STG power generator
      • 2.1.2 Battery network blueprint
      • 2.1.3 Additional blueprints
    • 2.2 Electronic
      • CONTROL PANEL
      • 2.2.1 Extender control unit
      • 2.2.2 Test for the final “thrust”
      • 2.2.3 Control unit
      • 2.2.4 Traction control
    • 2.3 LINEAR GENERATOR
      • 2.3.1 Linear motor with banana effect
      • 2.3.2 Linear motor 2°
      • 2.3.3 Linear motor 004
      • 2.3.4 Linear motor
      • 2.3.5 Linear generator idea 181206
      • 2.3.6 Linear generator idea, concept 2 190128
      • 2.3.7 Indications for ETL 190418
      • 2.3.8 Additional indications for ETEL 190515
    • 2.4 LITERATURE
      • 2.4.1 Utopia of the magnetic accumulation
      • 2.4.2 Electric linear motors (extensive lecture in Bologna)
      • 2.4.3 Operation 170209
      • 2.4.4 Miniaturisation of the electric panel 170523
      • 2.4.5 Velocity graphic 190514
      • 2.4.6 Connection technology 192109
      • 2.4.7 Everlight datasheet itr8102
    • 2.5 MECHANICS
      • 2.5.1 Linear motor observations report
      • 2.5.2 Parameters of regulation 170228
      • 2.5.3 Strategical working vision 170131
      • 2.5.4 Request offered to Athena 190515
    • 2.6 THEORETICAL STUDIES
      • CALCULATIONS
      • 2.6.1 STG graphic
      • 2.6.2 Formula to uncover the cylinder capacity 181217
      • 2.6.3 Cartel calculation 190213
      • 2.6.4 Average speed per piston 190215
      • 2.6.5 Theoretic simulation of …..
      • 2.6.6 Theoretical graphic of speed 190322
      • 2.6.7 Blue bird pression calculation
      • 2.6.8 ….Forces calculation
      • 2.6.9 Cartel1xxxx
      • 2.6.10 MEL consumption
    • 2.7 CONCEPTS
      • 2.7.1 Extender STG 3 Niz STG
      • 2.7.2 Characteristics of Extender STG 3 Niz
      • 2.7.3 Extender STG 3 Niz
      • 2.7.4 Cycle details of Extender STG_3
      • 2.7.5 Lubrification
      • 2.7.6 Calculations concept 181208
      • 2.7.7 …
      • 2.7.8 Fiat parameters
    • 2.8 HYPOTHESIS
      • 2.8.1 Graphic 2-stroke motor cycle
      • 2.8.2 Graphic curves 190324
      • 2.8.3 Piston Velocity vs Position 190418 
    • 2.9 LITERATURE
      • 2.9.1 Piston dynamics
      • 2.9.2 Endothermic motors 042418
      • 2.9.3 Technology pills 190212
      • 2.9.4 Average actual pression 190212
      • 2.9.5 Graphic piston average velocity 190215
      • 2.9.6 Acceleration calculation 190309
      • 2.9.7 Graphic curves 190324
      • 2.9.8 Comparative analysis of real motors 190502
      • 2.9.9 Calculation Biella-manovella mechanism 
      • 2.9.10 Calculation with levers
      • 2.9.11 Calculation of Manuelle forces
      • 2.9.12 Graphic data motor 8
      • 2.9.13 Crankshaft data
      • 2.9.14 Motor equilibration
      • 2.9.15 Internal combustion engine
    • 2.10 TESTS
      • 2.10.1 Test 5°
      • 2.10.2 Test 8°
      • 2.10.3 Test 4°
      • 2.10.4 Test 11°A
      • 2.10.4 Test 11°B
      • 2.10.5 Test 14
      • 2.10.6 Test 15
      • 2.10.7 Prova15°
      • 2.10.8 Correction test 15
      • 2.10.9 Test 16
      • 2.10.10 Test 17
      • 2.10.11 First stirrings …021
      • 2.10.12 Test 23
      • 2.10.13 Test 25
      • 2.10.14 Electrical design for space heaters 1 70501
      • 2.10.15 Next works from 02/06/2017-170603
      • 2.10.16 Result test 25

Volume 2

  • 3. Hardware
    • 3.1 DATA
      • 3.1.1 Test 12-018
      • 3.1.2 Data calculation …. 019
      • 3.1.3 Regulation parameters 020
      • 3.1.4 Technical data …024-11/10/2017
    • 3.2 BLUEPRINTS
      • 3.2.1 Detail central cylinder 008
      • 3.2.2 Central body 009
      • 3.2.3 3D designs def 010317
      • 3.2.4 General 3D creation, modifications 101
      • 3.2.5 Assembly drawing Extender, version 102
      • 3.2.6 Version 2, Extender with new engine mount 110
      • 3.2.7 Extender with kit assembling isometric update 111
      • 3.2.8 Extender with kit assembling plant update 112
      • 3.2.9 New isometric assembling with Swing part 113
      • 3.2.10 New version 114
      • 3.2.11 New assembling with Swing part 115
      • 3.2.12 New assembling with Swing part 116
      • 3.2.13 Swing part old engine 117
      • 3.2.14 Lamination magnetic sensor 118
      • 3.2.15 Extender injection with kit assembling plant update 119
      • 3.2.16 Pre-compression chamber 130
      • 3.2.17 Pre-compression chamber support 131
      • 3.2.18 Cart support 132
      • 3.2.19 Central support for magnets 133
      • 3.2.20 Testa Centrale 134
      • 3.2.21 Head 135
      • 3.2.22 Unibol 136
      • 3.2.23 Support C 137
      • 3.2.24 Biella 138
      • 3.2.25 Oil seal 139
      • 3.2.26 Optic line support 140
      • 3.2.27 Linear motor support 141
      • 3.2.28 Linear motor regulation support 142
      • 3.2.29 Engine crossbar 143
      • 3.2.30 Sensor support 144
      • 3.2.31 Extern discharge assemblage 145
      • 3.2.32 Intern discharge assemblage 146
      • 3.2.33 Extender delineation (obstructions and functionality)
      • 3.2.34 Extender in section (obstructions and functionality)
      • 3.2.35 1st version Extender
      • 3.2.36 New Extender
      • 3.2.37 License for Extender STG Niz
      • 3.2.38 Guidelines
      • 3.2.39 Driving modification
      • 3.2.40 “Swing” part with new isometric assemblage
      • 3.2.41 3D blueprint of Extender
      • 3.2.42 Extender section for patents
    • 3.3 SUPPLIERS
      • 3.3.1 ARGOR 191213
    • 3.4 GREASING
      • 3.4.1 Lubrification 007
    • 3.5 SILENCER
      • THEORY
      • 3.5.1 The Silencer 170507-003
      • 3.5.2 Sound absorption 170506-007
      • 3.5.3 Discharge for 2-stroke 170507-006
      • 3.5.4 Acoustic sound 1 decibel 170507-008
      • 3.5.5 Acoustic sound 2 170507-009
      • DRAWINGS AND TESTS
      • 3.5.6 Silencer test 202
      • 3.5.7 Silencer blueprints 170507-004
      • 3.5.8 Dim_lung report 170510-005
      • 3.5.9 Muffled silencer 170517
      • 3.5.10 Silencer test 170520-002
    • 3.6 TESTS
      • 3.6.1 Carburator
      • 3.6.2 Test 8
      • 3.6.3 Test 11
      • 3.6.4 New extender version A
      • 3.6.5 Problem with engine and magnets
      • 3.6.6 Test 12
      • 3.6.7 Parameters of regulation
      • 3.6.8 First whines of …..
      • 3.6.9 Use of sensors for injection
      • 3.6.10 Test No°
      • 3.6.11 Technical data … 11/10/2017
      • 3.6.12 Test 16
      • 3.6.13 Test 17
      • 3.6.14 Test 18
      • 3.6.15 Extender variant 2 with new engine mount
      • 3.6.16 Extender with isometric update assemblage kit
    • 3.7 STUDIES
      • 3.7.1 Extender STG 3 Niz STG
      • 3.7.2 Extender STG 3 description
      • 3.7.3 Extender STG 3 cycles
      • 3.7.4 Detail of central cylinder
      • 3.7.5 Central Body
      • 3.7.6 Central cylinder Tie rods
      • 3.7.7 Carburator
      • 3.7.8 Test corrections
      • 3.7.9 New Extender version A
      • 3.7.10 Problem with engine and magnets
      • 3.7.11 Use of sensor for injection
      • 3.7.12 Test 19
      • 3.7.13 Valve 1
  • 4. Electric hardware
    • 4.1 CONNECTION
      • 4.1.1 …. plug 190905
      • 4.1.2 Plug picture A
      • 4.1.3 Plug picture B
      • 4.1.4 Plug picture C
      • 4.1.5 Extender connections
      • 4.1.6 Extender connections PDF
      • 4.1.7 Plug picture E
      • 4.1.8 Plug picture F
      • 4.1.9 Plug picture G
    • 4.2 PROVIDERS
      • 4.2.1 Tutorial Mot_lineari_lezione_estesa_bologna
      • 4.2.2 ETEL offer on the linear engine 060218 DC13553-1-3
      • 4.2.3 ETEL linear engine 3D blueprint 2/9/19
      • 4.2.4 ETEL linear motor details 29/08/2019 SUISSE-LMS20-100
      • 4.2.5 ETEL structural details 1 19/07/2019-ID-LMS_interface_drawing
      • 4.2.6 ETEL structural details 2 19/07/2019-ID-LMS_interface_drawing
      • 4.2.7 Links 171117 LM15
      • 4.2.8 Relais 180409
      • 4.2.9 Construction 181130
      • 4.2.10 Trilogy linear motors and positioners 181130
      • 4.2.11 Textbook for the synchronous motors project 1FK7 190517
      • 4.2.12 Diodo IN4001_7 191022
      • 4.2.13 Relais  Db_C30-A30.pd 191024
      • 4.2.14 Itr8102
      • 4.2.15 Product_Overview_v3.0_french
      • 4.2.16 ETEL SA inspection report 17/02/2017
      • 4.2.17 Rapporto visita ETEL SA del 17_02_17
      • 4.2.18 Ti07_ignition_coils_i_2013_low

Volume 3

  • 4. Electric harward
    • 4.3 LINEAR MOTOR
      • 4.3.1 Linear motors banana effect
      • 4.3.2 Linear motors test obsevation
      • 4.3.3 Linear motors “step step”
      • 4.3.4 Linear motors 2nd “step step”
      • 4.3.5 Linear motor step step.hlsx
      • 4.3.6 Ironcore_Linear_Motors_catalogue 197_570101_
      • 4.3.7 Linear motor chart 180525
      • 4.3.8 Trilogy linear motors and positioners 181130
      • 4.3.9 Generator calculation190305
      • 4.3.10 ETEL DS – LMS20-100 190719 19/07/2019
      • 4.3.11 ETEL 190719 2019 07 19 – ID – LMS interface-drawing
      • 4.3.12 ETEL LMA11-050-XXX
      • 4.3.13 ETEL MWD_interface_drawing
      • 4.3.14 ETEL 190719 2019 07 19 – ID LMS_interface_drawing
      • SCHEMATICS 
    • 4.4.0 POWER SUPPLY
      • 4.4.1 Charger 1191004 12 V DC 42 A
      • 4.4.2 Charger services 191004 12 V DC 42 A
      • 4.4.3 Sockets panel 191004 230_400 V
      • 4.4.4 USB convertor between PC and processor 006 191004
      • 4.4.5 Processor inverter 191005 12 V DC 5 A
      • 4.4.6 Net adaptor 230_380V 191026
      • 4.4.7 Transformer Charging cables 191026
      • 4.4.8 3KW transformer 191026
    • 4.5.0 CONSOLES
      • 4.5.1 Spark plugs settings 191004
      • 4.5.2 Internal setting 191005
      • 4.5.3 Service setting 191021
      • 4.5.4 Motor generator selector 191021
      • 4.5.5 Motor generator selector 191022
      • 4.5.6 Clog relais blueprint 191024
      • 4.5.7 Clog relais 191024
    • 4.6.0 SPARK PLUGS ELECTRONIC
      • 4.6.1 Injector electronics 062118
      • 4.6.2 Injector electronics from above 190918
      • 4.6.3 Injector and sparkplug electronics 100929
      • 4.6.4 Injector and sparkplug settings 191024
    • 4.7.0 FILTER
      • 4.7.1 Opposing filters 190531
      • 4.7.2 Filter 190531
      • 4.7.3 Filter pack 191010
    • 4.8.0 CASE PICTURES
      • 4.8.1 Schematics 191022-002
      • 4.8.2 Schematics 191027-001
      • 4.8.3 Schematics 191018-001
      • 4.8.4 Schematics 191818-002
      • 4.8.5 Schematics 191818-003
      • 4.8.6 Schematics 191818-004
      • 4.8.7 Schematics 191818-005
      • 4.8.8 Schematics 191818-006
      • 4.8.9 Schematics 191818-007
      • 4.8.10 Schematics 191818-008
    • 4.9.0 INVERTER
      • 4.9.1 Miniaturization electronic panel 170523
      • 4.9.2 State of affairs 171025
      • 4.9.3 Picture schematics 180605-001
      • 4.9.4 Picture schematics 180607
      • 4.9.5 LevelConverterv0.1_bb-190917
      • 4.9.6 LevelConverterv0.1_schem 190917
      • 4.9.7 Picture schematics 190918-004
      • 4.9.8 Picture schematics 190918-008
      • 4.9.9 Picture schematics 190918-011
      • 4.9.10 Picture schematics 190918-012
      • 4.9.11 Picture schematics 190918-013
      • 4.9.12 Picture schematics 190922-001
      • 4.9.13 Picture schematics 190922-002
      • 4.9.14 Picture schematics 191008-001
      • 4.9.15 Picture schematics 191008-002
      • 4.9.16 Picture schematics 191008-003
      • 4.9.17 Picture schematics 191010-003
      • 4.9.18 Picture schematics 191012-001
      • 4.9.19 Diode IN2001_7-19022
      • 4.9.20 Nucleo-F303ZE-191023
      • 4.9.21 STEVAL-IHM028V2-191023
      • 4.9.22 STM32F303VC-191023
      • 4.9.23 EN. DM00244518-191026
      • 4.9.24 Processer plate support 191128
      • 4.9.25 Core-144 board schematic 191128 STM32
      • 4.9.26 Photo schematic IMG_1409
    • 4.10.0 STUDIES AND TEST GENERATOR IGNITION
      • 4.10.1 Test 5
      • 4.10.2 Working strategy 1
      • 4.10.3 Extender principle electric scheme
      • 4.10.4 Heater electric scheme
      • 4.10.5 …ignition

Volume 4

  • 5. INJECTION
    • 5.0 DIPLOMA THESIS
      • 5.1 General conception of the prototype
      • 5.2 Academical year project thesis 2016/17
      • 5.3 Test bench improvement
    • 5.1.0 INJECTION TEST
      • 5.1.1 Direct injection
      • 5.1.2 Test 1
      • 5.1.3 Test 7
      • 5.1.4 Injection calculation report 013
      • 5.1.5 Test 18
      • 5.1.6 Technical data …. 11/10/2017-024
      • 5.1.7 Work report on Bluebird motor 170426
      • 5.1.8 Bluebird test bench 170918
      • 5.1.9 Blue bird consummation 190811
      • 5.1.10 Bluebird pression calculation
      • 5.1.11 Motor explosion 45_55_60cc phase 2 (22_07_2016)
      • 5.1.12 Report on blue bird motor test (Tornio)
      • 5.1.13 Test sheet 25
    • 5.2.0 DIFFERENT ASSEMBLAGES
      • 5.2.1 Direct injection 001
      • 5.2.2 Purpose of test injection 002
      • 5.2.3 Injection observations 003
      • 5.2.4 Injection observations 004
      • 5.2.5 Operating strategy 1 005
      • 5.2.6 Test 6 006
      • 5.2.7 GAS blueprint for testing 007
      • 5.2.8 Injector sketch 008
      • 5.2.9 Question on the injectors 009
      • 5.2.10 Fiat injectors with nozzles 010
      • 5.2.11 Test 4 011
      • 5.2.12 Test 7
      • 5.2.13 Test 8
      • 5.2.14 Injection calculation report 014
      • 5.2.15 NT17001
      • 5.2.16 Test 9°
      • 5.2.17 Test 10°
      • 5.2.18 Test 21°
      • 5.2.19 Test 21, PDF
      • 5.2.20 Test 25°
      • 5.2.21 Injector assemblage 050
      • 5.2.22 Injector assemblage 2
      • 5.2.23 Assemblage injector 3
      • 5.2.24 Methane tank
      • 5.2.25 Assemblage injector
      • 5.2.26 Assemblage injector 2
      • 5.2.27 Assemblage injector 3
      • 5.2.28 Assemblage injector 4
      • 5.2.29 Injection adaptor
      • 5.2.30 Injection stopper 071MOD_002
      • 5.2.31 Injector support 072 MOD_003
      • 5.2.32 Injector clip 073 MOD_004
      • 5.2.33 GAS distributor 080
      • 5.2.34 Updating kit for the extender injection 119
      • 5.2.35 Sensors for injection 170401
      • 5.2.36 Injector sketch 170429
      • 5.2.37 Honda injector 50cc
      • 5.2.38 Venturi beak
      • 5.2.39 Injection stopper 071MOD_002
      • 5.2.40 Clothespin
      • 5.2.41 System injection blueprint
  • 6. Report
    • 6.1 Electronic and mechanical functioning
    • 6.2 Measurement report 20170519
    • 6.3 Measurement 23/02/2018
    • 6.4 Test 11
  • 7. Collaboration
    • 7.1 AVL Project PV1986B_015_REPORT_190319
    • 7.2 AVL quotation_linear_engine_concept_phase_send
    • 7.3 AVL Linear engine concept, executive summary
    • 7.4 ETEL linear engines offer
    • 7.5 ETEL linear motors details 29/08/2019 SWITZERLAND – LMS20-100 (presentation)
    • 7.6 CLM_17/09/2019
    • 7.7 Ingo robb1
    • 7.8 Robby Moto Brochure teps
    • 7.9 Description of the Robby moto range extender
    • 7.10 Robby moto, article in the newspaper “Il Sole 24 ORE”
    • 7.11 Robby Ingineering Budget Sviluppo Motogeneratore
  • 8. Information
    • 8.1 Related products
    • 8.2 Informative sheetSvizzera e sviluppo intern.
    • 8.3 Electric cars consumption
    • 8.4 Fuel consumption in Europe
    • 8.5 Electricity production in Europe
    • 8.6 Why should we ask the oil companies?
    • 8.7 Vehicle A performance
    • 8.8 Linear motors of Padova University
  • 9. Patents
    • Upon request