• Title/Summary/Keyword: TMR System

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Development of a Tractor Attached TMR Mixer(III) -Cost analysis- (트랙터 견인형 TMR 배합기의 개발(III) -경제성 분석-)

  • Park, K. K.;Kim, H. J.;Seo, S. H.;Nah, K. D.;Hong, D. H.;Jang, C.;Ha, Y. S.;Lee, J. S.
    • Journal of Biosystems Engineering
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    • v.25 no.4
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    • pp.265-272
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    • 2000
  • Feasibility of the self-TMR mixing/feeding system for dairy farm in Korea was analyzed by comparing with a traditional feeding system. The total operating cost of self-TMR feeding system decreased with an increase of farm size. However, the cost was higher than that of traditional feeding system because of its high purchasing cost of TMR mixer as an initial investment. Profit per unit input of the TMR feeding system became greater over the traditional system when the farm size is larger than 17 heads due to more and better milk production. The profitable discrepancy became bigger as dairy farm size increases.

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Development of Farm Size Dairy Feedmill System in Korea(II) -Development of the TMR Main Center- (우리나라의 낙농단지규모에 알맞는 사료가공시설의 모델개발(II) -TMR 지원시설의 모델 개발-)

  • Kim, T.W.;Park, K.K.
    • Journal of Biosystems Engineering
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    • v.19 no.4
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    • pp.343-357
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    • 1994
  • Current commercial dairy feed has various problems in low feed productivity, inadequate formulation and higher feeding cost due to excessive capital investment and non-specialized system for the end product. To solve those problems, 6 TMR terminal models were developed in this study. The developed TMR terminal system consists of TMR terminal, TMR main center and combined system linked TMR terminal and TMR main center. 15 TMR main center models were developed to support 10, 20, 30, 40, 50 TMR terminal(30 ton/day basis) by 3 different types, and evaluated for capital investment and operation cost by the analysis of the newly developed computer program. Optimum model size is analyzed and suggested for each model. Followings are summary of this study : 1. The capital investment costs of TMR main centers were 1,600 to 3,800 million won for type 1, 2,200 to 4,500 million won for type 2 and 2,200 to 4,800 million won for type 3. Also model MACE30 or bigger were justified as the economical models. 2. The feed production costs of TMR main center models were 3,166 to 4,824 won/ton for type 1, 3,816 to 6,182 won/ton for type 2 and 3,990 to 6,263 won/ton for type 3. So feed production cost range was 3,166 to 6,263 won/ton. 3. The bigger production capacity, the less TMR main center production cost. The feed production cost of the biggest model MACE50 was 62~65% of smallest model MACE10.

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TMR Contribution Analysis of Spindle-Disk System Vibration for the High-Density Hard Disk Drive of 80GB/Platter (80GB/PLATTER 하드 디스크 드라이브 설계를 위한 스핀들-디스크 시스템 진동의 TMR 기여도 분석)

  • 강성우;한윤식;오동호;황태연;김명업
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2001.11a
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    • pp.58-64
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    • 2001
  • An investigation of the TMR(Track Misregistration) requirements to achieve the capacity of 80GBytes/Platter in 7200rpm disk drive system is reported. This paper also gives an overview of the PES(Position Error Signal) characteristics in the 57,500TPI disk drive to estimate the required 95,000TPI-system PES. The TMR measured by PES are presented and decomposed in order to identify the portions and their contributions of the spindle-disk system vibration and HSA(Head-Stack-Assembly) system vibration respectively. A comprehensive review on the servo system is also presented to provide the practical limits of the modem servo architecture into TMR budget design. The decomposed PES energy distribution shows that the spindle-disk pack vibration is one of the top-ranking sources of the total TMR budget and its percentage contribution is about 50% considering all the other TMR sources.

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Modeling of a Small Group Scale TMR Plant for Beef Cattle and Dairy Farm in Korea(I) - Development of TMR Plant Model - (한우 및 낙농 단지용 소형 TMR 플랜트 모델 개발(I))

  • Ha, Yu-Shin;Hong, Dong-Hyuck;Park, Kyung-Kyoo
    • Journal of Biosystems Engineering
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    • v.34 no.5
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    • pp.342-350
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    • 2009
  • Currently TMR feed produced in commercial plant is one of the major source to feed cattle for both beef and dairy farm. However, because of lack of cutting and mixing system for utilizing domestic produced firmly baled round roughage in commercial TMR plant, these commercial TMR feed can not satisfy to farmers both in quality and price points of view. In order to solve these problems, a farm group size TMR plant model was developed in this study. The model plant was consist of round bale receiving and cutting system, pneumatic conveying system for transfer the roughage which was cut at the cutter to TMR mixer through pneumatic conveyor, TMR mixer enable to soften the stiff rice strew and to mix with other ingredients, finished feed bin which can be transfer to either packing system or individual farm, packing system by tycon bag which contains 400 kg unit and bulk unloading system to individual farmer. Also, a simulation model ARENA was applied to the model system in order to evaluate and check the production rate in each unit process and operation rate of total system and to find out if there are any clogged unit system obstructing the smooth flow of the total process flow. Processing cycle for produce one batch of the model plant was less than 30 minutes. Thus, it will take less than four hours for producing 16 tons per day equivalent to 1,000 beef cattle's daily feed.

Effects of Feeding System on Rumen Fermentation Parameters and Nutrient Digestibility in Holstein Steers

  • Li, D.Y.;Lee, Sang S.;Choi, N.J.;Lee, S.Y.;Sung, H.G.;Ko, J.Y.;Yun, S.G.;Ha, J.K.
    • Asian-Australasian Journal of Animal Sciences
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    • v.16 no.10
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    • pp.1482-1486
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    • 2003
  • In order to compare effects of feeding systems on rumen fermentation characteristics and nutrient digestion, steers were fed either total mixed ration (TMR) or separate concentrate-roughage ration (CR). Total tract digestibility of nutrients was higher in steers receiving TMR. Especially, DM, ADF and NDF in TMR were digested to a greater extent than those in CR. Rumen pH was not influenced by the feeding systems. Holstein steers on TMR had higher ruminal $NH_3$-N than those on CR. Feeding system did not alter VFA production but TMR feeding resulted in lower A/P ratio. TMR feeding tended to increase the number of bacteria and protozoa in the rumen fluid. Also steers fed TMR generally had higher fiber degrading enzyme activities, which might be the result of increased number of cellulolytic microbes in the rumen of animals on TMR. Our results indicate that TMR may provide more favorable condition for nutrient digestion both in the rumen and in the total tract of steers.

Development of a Tractor Attached TMR Mixer(II) -Modification of TMR mixer and its performance test- (트랙트 견인형 TMR 배합기의 개발(II) -TMR 배합기의 수정 개발 및 성능시험-)

  • Park, K. K.;Koo, Y. M.;Kim, H. J.;Seo, S. H.;Jang, C.;Nah, K. D.;Hong, D. H.;Lee, J. S.
    • Journal of Biosystems Engineering
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    • v.25 no.4
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    • pp.257-264
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    • 2000
  • A tractor attached TMR(model 430) mixer has been developed in a previous study. However, the mixer was found to be improved through field applications in its capacity, manufacturing cost, ergonomic design and power-train requirement. The TMR mixer was modified into a model TMR500, approved by Institute of Agricultural Mechanization, as follows : 1. Roughage cutting system was seperated from the mixer, resulting in the 33% reduction of manufacturing cost. 2. Enlarged hopper capacity enabled to feed 60 heads at a batch. 3. Hydraulically controlled gate system saved ergonomic man power. 4. Power transmission system was changed from a chain-sprocket system(27:1) to the gear-train reduction system(38.6:1) to satisfy the recommended use of 540rpm PTO input.

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A FPGA Development for the Fail Safe Control of TMR System (TMR시스템의 고장안전제어를 위한 FPGA 개발)

  • 강민수;이정석;김현기;유광균;이기서
    • Proceedings of the KSR Conference
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    • 2000.05a
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    • pp.336-343
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    • 2000
  • This paper proposes the failsafe control logic. which has applied to the voting on the TMR system by using FPGA The self-detection circuit is also designed for detecting a characteristic of fault at TMR system. The fault producing in the self-detection system is largely classified among an intermittent fault, a transient fault and a permanent fault. If it is happened to the permanent fault, the system can be failed. Therefore, it is designed the logic circuit which is not transferred the permanent fault to the system after shut off output. The control logic of the Fail Safe proposed in the paper is required for a circuit integrate of device to minimize the failure happened. Therefore, it makes to design FPGA with modeling of VHDL. The circuit of the Fail Safe of TMR system is able to apply to nuclear system, rail-way system, aerospace and aircraft system which is required for high reliability.

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A study on the Reliability evaluation and Design of TMR system accroding to the structure of voter (보터의 구조에 따른 TMR 시스템의 신뢰도 평가 및 설계에 관한 연구)

  • Kim, Hyun-Ki;Lee, Suk-Kuin;Lee, Key-Seo
    • Proceedings of the KIEE Conference
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    • 1998.07a
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    • pp.375-377
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    • 1998
  • This paper shows two models of the TMR system- fail passive system - having a fault tolerant system characteristic used in airplane and railway system. We design the single system, single-voter TMR system and triplicated voter TMR system based on MC68000 and calculate the failure rate of components using MIL-SPEC-217F and evaluate the reliability and MTTF(Mean Time To Failure) of the designed systems by Markov model.

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Nutritional evaluation of total mixed rations containing rice grain in an in vitro rumen fermentation system

  • Yang, Sung Jae;Kim, Han Been;Moon, Joon Beom;Kim, Na Eun;Park, Joong Kook;Park, Byung Ki;Lee, Se Young;Seo, Jakyeom
    • Korean Journal of Agricultural Science
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    • v.45 no.4
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    • pp.741-748
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    • 2018
  • This study was conducted to evaluate the nutritional value of total mixed rations (TMR) containing rice grain in an in vitro rumen fermentation system. Three types of grains (corn, wheat, and rice), timothy, and soybean meal (SBM) were used to prepare the experimental TMR: Corn TMR, Wheat TMR, and Rice TMR. The rumen fermentation characteristics of all the experimental TMRs were evaluated by an in vitro anaerobic system using rumen fluid for 24 and 48 h. The digestibility of the nutrients (dry matter [DM], crude protein [CP], and neutral detergent fiber [NDF]), pH, ammonia ($NH_3-N$), and volatile fatty acids (VFA) were determined. Rice TMR showed a higher DM digestibility than that of the Corn TMR at 48 h (p < 0.05). In all treatments, the CP digestibility was more than 80% at 48 h, but no significant differences were observed among the treatments. The NDF digestibility tended to be the lowest in the Wheat TMR (p = 0.06), and the pH tended to be the lowest in the Rice TMR (p = 0.09) among the treatments for the 48 h incubation. The Wheat TMR had the highest $NH_3-N$ concentration among the treatments (p < 0.01). Rice TMR had a lowest total VFA concentration among the treatments (p = 0.05) at 24 h, but no significant differences were observed at 48 h. Based on this in vitro result, it was considered that a rice grain has the potential to replace conventional grain ingredients when the TMR was formulated.

Development of a Fermented TMR for Pigs Using Bale-Wrapping System (랩-베일을 이용한 양돈용 TMR 발효사료 제조 시스템 개발)

  • Kim, Hyuck-Joo;Yu, Byeong-Kee;Lee, Sunghyoun;Yu, Ji-Su;Seo, Hyoung-Duk
    • Journal of Animal Environmental Science
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    • v.20 no.3
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    • pp.105-116
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    • 2014
  • In this study, we developed a fermented TMR producing system which could a continuous operation of baling and wrapping the mixed TMR. The baling part has fixed chamber of dia. 900 mm and width 900 mm. And the the turn-table type wrapping part is very compact compared to conventional one in market. The test result were: The absorbed power of the prototype in working was 9.0~15.7 kW. The combined baling and wrapping performance was over 20 bales/hr. The leakage in the process was around 1.9 kg for making a 350 kg TMR bale. The diameter of wrapped TMR bale was 900~950 mm, and its weight was 350 kg in average. Therefore the density was $718kg/m^3$, and it was very high density to the inputted TMR. The pH of the fermented TMR was 5.0~5.6 which was similar to the fermented haylage, also the TMR had no butyric acid's odor.