• Title/Summary/Keyword: 도심주행모드

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A Study on the Characteristics of Battery SOC Management for SUV Extended Range EV (SUV EREV의 주행평가를 통한 배터리 SOC 제어 특성에 관한 연구)

  • Jeong, Taecheol;Kim, Jaehwan;Kim, Seonkyung;Sun, Jin;Kim, SeokMyung;Kang, Dongwoo;Noh, Yunjoo
    • Transactions of the Korean Society of Automotive Engineers
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    • v.22 no.2
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    • pp.44-51
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    • 2014
  • This paper describes system definition of the extended range EV and presents cruising strategy of EV mode and ER mode. Also high voltage battery strategic SOC could be indicated and compared depends on various generator working cycles. A C-segment SUV has been produced and carried out cruising test in order to validate on highway, city and hill climbing road. This paper shows advantages and disadvantages of SOC variation on each road environments and presents the strategies as the cruising test results. On the basis of the test result, this paper suggests future works and research directions for strategy of battery management to extended range EV.

A Study on the Driving Patterns for Passenger Car in the Metropolitan Area (승용차의 도심 주행패턴에 관한 연구)

  • 정남훈;이우택;선우명호
    • Transactions of the Korean Society of Automotive Engineers
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    • v.11 no.1
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    • pp.18-24
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    • 2003
  • Vehicle emission is one of the major sources of air pollution, and provides some undesirable effects on the atmospheric environment and human health. In this study, the driving data were recorded during road tests in Seoul metropolitan wet and analyzed by statistical techniques. The objective of the study is to analyze the driving Patterns of passenger car that influence on emissions in urban driving. The results show that the average speed is around 29.2 km/h, and the average fuel economy is 10.23 km/$\ell$. The vehicle speed of Seoul metropolitan area is slower, and the stop-and-go operation is more frequent than CVS-75 test mode which is used far emission and fuel economy test.

Development of Urban Driving Cycle for Performance Evaluation of Electric Vehicles Part II: Verification of Driving Cycle (전기자동차 성능평가를 위한 도심 주행 모드 개발 Part II: 주행 모드 검증)

  • Jeong, Nak-Tak;Yang, Seong-Mo;Kim, Kwang-Seup;Choi, Su-Bin;Wang, Maosen;You, Sehoon;Kim, Hyunsoo;Suh, Myung-Won
    • Transactions of the Korean Society of Automotive Engineers
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    • v.23 no.2
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    • pp.161-168
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    • 2015
  • Recently, due to various environmental problems such as global warming, increases of international oil prices, exhaustion of resource, a paradigm of world automobile market is rapidly changing from conventional vehicles using internal combustion engine to eco-friendly vehicles using electric power such as EV, HEV, PHEV and FCEV. Generally, in order to measure fuel consumption and pollutant emissions of cars, chassis dynamometer tests are performed on various driving cycles before actual driving test. There are many driving cycles for performance evaluation of conventional vehicles. However, there is a lack of researches on driving cycle for EV. In this study, the urban driving cycle for performance evaluation of electric vehicles was developed. This study is composed of two parts. In the part 1, the urban driving cycle 'GUDC-EV(Gwacheon-city Urban Driving Cycle for Electric Vehicles)' was developed by using driving data, which were obtained through actual driving experiment, and statistic analysis with chronological table. In this paper part 2, in order to verify the developed driving cycle GUDC-EV, virtual EV platforms were configured and simulations were performed with actual driving data using In addition, simulation results were compared with existing driving cycles such as FTP-72, NEDC and Japan 10-15.

Development of Urban Driving Cycle for Performance Evaluation of Electric Vehicles Part I : Development of Driving Cycle (전기 자동차 성능 평가를 위한 도심 주행 모드 개발 Part I : 주행 모드 개발)

  • Yang, Seong-Mo;Jeong, Nak-Tak;Kim, Kwang-Seup;Choi, Su-Bin;Wang, Maosen;Kim, Hyun-Soo;Suh, Myung-Won
    • Transactions of the Korean Society of Automotive Engineers
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    • v.22 no.7
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    • pp.117-126
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    • 2014
  • Recently, due to various environmental problems such as global warming, increasing of international oil prices and exhaustion of resource, a paradigm of world automobile market is rapidly changing from vehicles using internal combustion engine to eco-friendly vehicles using electric power such as EV (Electric Vehicle), HEV (Hybrid Electric Vehicle), PHEV (Plug-in Hybrid electric Vehicle) and FCEV (Fuel Cell Electric Vehicle). There are many driving cycles for performance evaluation of conventional vehicles. However there is a lack of researches on driving cycle for EV. This study is composed of part 1 and part 2. In this paper part 1, in order to develop urban driving cycle for performance evaluation of electric vehicles, Gwacheon-city patrol route of police patrol car was selected. Actual driving test was performed using EV. The driving data such as velocity, time, GPS information etc. were recorded. GUDC-EV (Gwacheon-city Urban Driving Cycle for Electric Vehicles) including road gradient was developed through the results of analyzing recorded data. Reliability of the driving cycle development method was substantiated through comparison of electricity performance. In the second part of this study, the developed driving cycle was compared to simulation result of the existing urban driving cycle. Verification of the developed driving cycle for EV performance evaluation was described.

Vehicle localization in GPS signal unavailability area using weakly coupled IMU and GPS (관성 센서와 GPS 약결합을 통한 GPS 음영지역에서 차량 위치 추정)

  • Kim, Do-Yoon;Park, Hyun-Keun
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.1942-1943
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    • 2011
  • 차량의 무인화에 대한 관심이 증대하면서 자율 주행 문제의 중요성이 부각되고 있다. 현재 전역적인 차량 위치는 GPS에 도움을 받고 있지만 도심 고층 빌딩 밀집 지역에서 GPS 신호가 불안해지는 멀티 패스 페이딩 현상에 대한 대안 및 터널을 통과할 때 GPS 신호가 단절되는 구간에 대한 대안이 필요하다. 본 연구에서는 MEMS 기반의 관성 센서를 제작하고 이를 이용하여 차량의 주행 모드를 자동으로 판별한 뒤 각 상황에 알맞은 칼만 필터를 설계하여 차량 위치를 파악하는 알고리즘을 제안한다. 제안한 알고리즘은 실제 임베디드 시스템에 이식되어 10Hz로 동작함을 확인하였고 GPS 음영 지역에서 3분 이내에는 GPS 오차 범위 내에서 차량 위치를 파악할 수 있음을 실험을 통해 확인하였다.

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The Development of Hybrid Electric Vehicle Technology (하이브리드 전기자동차의 기술과 전망)

  • 남궁억
    • Journal of the KSME
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    • v.35 no.10
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    • pp.924-932
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    • 1995
  • 국제 환경규제가 강화되어짐에 따라 초저공해 자동차인 ULEV 및 무공해 자동차인 ZEV의 개 발을 필수적이다. 캘리포니아주법규에 따르면 Maker의 NMOG(non meth-ane organic gas) 평 균치를 만족한다 하더라도 ZEV의 판매는 의무화되어 있다. 1989-1993 MY 기간중 연평균 판매 대수가 35,000대 이상인 Mater는 1998년 2% 적용대상이 되며, 2003년부터는 연간 3,000대 이상 판매되는 모든 Maker에 ZEV 10%가 적용된다. 이와 관련 2003년 이후 하이브리드 전기자동차 및 전기자동차의 개발은 나머지 75%(ULEV를 포함할 경우 25%)의 IC엔진이 탑재된 자동차를 판매하기 위해서 이루어지지 않으면 안되게 되어 있다. 하이브리드 자동차는 전기자동차와는 달리 주행거리에 제한을 받지 않으며, 엔진의 효율이 가장 좋은 RPM에서 발전기를 회전시킴으 로써 생성된 에너지를 배터리에 충전, 도심지에서 전기자동차 모드(mode)로 주행하기 때문에 대도시의 대기오염을 줄일 수 있고, 소음이 극히 적기 때문에 미래의 도시형 자동차로서 각광 받을 수 있는 자동차로 생각된다.

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Study on new type vehicle fuel economy correction formula review according to the applicable (신형식 자동차 적용에 따른 연비 보정식 검토에 관한 연구)

  • Lim, Jaehyuk;Kim, Sungwoo;Lee, Minho;Kim, Kiho
    • Journal of Energy Engineering
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    • v.25 no.4
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    • pp.198-206
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    • 2016
  • Fuel economy label will be used as a national indicator in energy management, leading to the development of car technology manufacturer and plays a role in providing consumer vehicle purchase information. But the government's fuel economy label is continued consumer complaint is different and diminishing fuel economy were introduced by the government to measure the exact fuel economy label than resetting the 5-cycle test method in the US for the domestic vehicle standards. Originally two test mode in order to reduce the impact of the sharp increase in the resources required but methods of calculating a measured result value by driving all of the five test mode a variety of environmental conditions and the running pattern is reflected to the fuel economy label (city( FTP-75 mode), highway(HWFET mode)) and using 5-cycle correction formula for calculating a fuel consumption value and the equivalent value to calculate the result of the 5-cycle test. The compensation was calculated expression 30s, 5-Cycle Test Method of vehicles in 2011 was considered necessary to review the existing 5-cycle correction formula for the New Type car due to the recent rapid development of automotive technology. In this study, recent technology is targeting 14 units New Type car applied over the same test method and the existing check test mode specific fuel economy properties and, as a result of analyzing the corrected expression differences that have already been developed with the existing test vehicle resulting large did not show the difference was found to correction formula also not getting the existing fuel correction expression significant effect on the improvement of the current automobile technology as a maximum error of less than 1.5%.

A Study on The Performance and Fuel Economy of Diesel Vehicles According to Change in Fuel Properties (연료물성에 따른 경유 차량의 성능 및 에너지소비효율 연구)

  • Noh, Kyeong-Ha;Lee, Min-Ho;Kim, Ki-Ho;Lee, Jung-Min
    • Journal of the Korean Applied Science and Technology
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    • v.35 no.3
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    • pp.667-675
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    • 2018
  • Increasing emissions regulations and demand of high-efficiency cars that travels a lot of distance with less fuel, there is growing interest in Energy Consumption Efficiency. Korean energy consumption efficiency compute combined Fuel Economy by driven city & highway driving mode and present final Energy Consumption Efficiency as using 5-cycle correction formula. Energy consumption efficiency is computed Carbon-balance-method, when used burning fuel play a key role in vehicle performance & Energy Consumption Efficiency. In Korea, vehicle fuel is circulate by Petroleum and Petroleum Alternative Business Act, there is property difference in quality standard because petroleum sector's refine method or type of crude oil. It does not appear a big difference according to fuel, because it sets steady quality standard, it may affect the performance of automobile. Thus, in research We purchase a few diesel fuel which circulated in the market in summer season though directly-managed-gas station by petroleum sector, resolve property each of fuel, we compute Fuel Economy each of them. We analyze into change depend on applying for property as nowadays utilizing Energy Consumption Efficiency calculating formula of gasoline and diesel fuel. As result, Density each of sample fuel has a maximum difference roughly 0.9%, net heat value each of sample fuel has difference 1.6%, result of current Energy Consumption Efficiency each of sample fuel has a difference roughly 1% at city drive mode, 1.4% at highway drive mode. Result of use gasoline calculator formula shows less 6% result than nowadays utilizing Energy Consumption Efficiency calculating formula, each of sample's Energy Consumption Efficiency shows maximum roughly 1.4% result in city & highway drive mode.

A Study of Hazard Analysis and Monitoring Concepts of Autonomous Vehicles Based on V2V Communication System at Non-signalized Intersections (비신호 교차로 상황에서 V2V 기반 자율주행차의 위험성 분석 및 모니터링 컨셉 연구)

  • Baek, Yun-soek;Shin, Seong-geun;Ahn, Dae-ryong;Lee, Hyuck-kee;Moon, Byoung-joon;Kim, Sung-sub;Cho, Seong-woo
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.19 no.6
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    • pp.222-234
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    • 2020
  • Autonomous vehicles are equipped with a wide rage of sensors such as GPS, RADAR, LIDAR, camera, IMU, etc. and are driven by recognizing and judging various transportation systems at intersections in the city. The accident ratio of the intersection of the autonomous vehicles is 88% of all accidents due to the limitation of prediction and judgment of an area outside the sensing distance. Not only research on non-signalized intersection collision avoidance strategies through V2V and V2I is underway, but also research on safe intersection driving in failure situations is underway, but verification and fragments through simple intersection scenarios Only typical V2V failures are presented. In this paper, we analyzed the architecture of the V2V module, analyzed the causal factors for each V2V module, and defined the failure mode. We presented intersection scenarios for various road conditions and traffic volumes. we used the ISO-26262 Part3 Process and performed HARA (Hazard Analysis and Risk Assessment) to analyze the risk of autonomous vehicle based on the simulation. We presented ASIL, which is the result of risk analysis, proposed a monitoring concept for each component of the V2V module, and presented monitoring coverage.

A Study on the Structure and Characteristics of Light-duty FC Hybrid Vehicle (경부하 FC 하이브리드 자동차의 구조와 특성에 관한 연구)

  • Bong, Tae-Keun
    • Journal of Advanced Marine Engineering and Technology
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    • v.31 no.8
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    • pp.911-917
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    • 2007
  • Global primary energy demand is projected to increase by 1.7% per year from 2000 to 2030. Almost three-quaters of the increase in demand will come from the transportation sector. Fuel cell hybrid vehicle technology has the potential to significantly reduce energy and harmful emissions, as well as our dependence on foreign oil. In this paper, a systematic and logical methodology is developed and improved mainly to design light duty fuel cell hybrid electric vehicle. We investigated structure and characteristics of light duty FC hybrid vehicle carefully. It can easily be expanded to analyze vehicle-to-grid power connectable plug-in NeHEV. A fuel cell hybrid neighbourhood electric vehicle configuration has been studied in-depth utilizing the proposed methodology.