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231.
Circuit net list bipartitioning using simulated annealing technique has been proposed in the paper. The method converges asymptotically
and probabilistically to global optimization. The circuit net list is partitioned into two partitions such that the number
of interconnections between the partitions is minimized. The proposed method begins with an innovative clustering technique
to obtain a good initial solution. Results obtained show the versatility of the proposed method in solving non polynomial
hard problems of circuit net list partitioning and show an improvement over those available in literature. 相似文献
232.
In a coil box between the roughing and finishing stands on a hot strip mill, a problem has been encountered that the entry
region of the plate touches the bending rolls and deforms. As a result, the defective coil occurs. The condition of plate
bending, which forms a new deformation feature in coiling, is analyzed. In this paper, the authors focus on the research of
the effects of coiling parameters, such as the thickness of plate, roll speed and feeding speed of plate in coil box, and
on specific plate bending. A finite element method is developed to simulate this coiling process. Based on numerical simulation,
the effects of the coiling parameters on the mechanics and deformation of the bending plate are obtained. Numerical simulation
tests have verified the validity of the developed model. 相似文献
233.
234.
A radio frequency identification (RFID) yoking proof scheme can generate proofs of simultaneous presence of two tags in the
range of a specified reader so that an off-line verifier can verify the proofs later. This proof has found several interesting
applications. However, many existing RFID yoking schemes are vulnerable to replay attacks. To overcome the weaknesses, Cho
et al. proposed a new RFID yoking proof protocol and a new grouping protocol. Unfortunately, Cho et al.’s schemes are still
vulnerable to replay attacks. In this paper, in addition to demonstrating weaknesses, we further discuss the rationale behind
these weaknesses to provide a guide line for designing secure RFID yoking schemes. Based on the guide line, we propose a new
RFID yoking scheme and a new RFID grouping scheme. Performance evaluation shows that our scheme outperforms its counterparts. 相似文献
235.
236.
Straddle carriers represent a critical resource in the handling of containers within a container terminal. It is essential that they are deployed in an as efficient manner as possible. The research presented in this paper is motivated by the need to critically evaluate job assignment rules for straddle carriers that operate in a multiple straddle environment. This is achieved by developing a discrete event simulation model using industrial simulation software to model a container terminal located in Melbourne, Australia. The model accounts for variables such as the number of straddle carriers needed, the speed of straddle carriers, the arrival rate of trucks, and the job assignment rule. A principal finding of the study is that increasing the number of straddles in the present set‐up from 6 to 7 has a negligible effect on daily throughput. However, an increase in the number of straddles to 7 is expected to have a profound effect on reducing the average waiting time of trucks within the terminal from over 16 minutes to under 9 minutes, a decrease of 46.5%. However, a further increase in the number of straddles results in no further increase in daily throughput. It was observed that the throughput of the terminal is very sensitive to the speeds at which straddles travel. The management of the terminal has proposed a new heuristic job assignment rule for straddles, because the present rule does not assign the jobs to straddles closest to the truck requesting to load or unload a container. As a result a new heuristic job assignment rule was tested. The simulation results revealed that both the old and new rules performed equally well using performance indicators such as average container flow time, daily throughput, average waiting time of jobs, number of jobs in the queue, and straddle utilisation. Therefore, the new rule will not improve these performance measures if implemented 相似文献
237.
Zbigniew Gronostajski Marek Hawryluk Marcin Kaszuba Paweł Widomski Jacek Ziemba 《International Journal of Automotive Technology》2017,18(4):653-662
This study is focused on tools used in the industrial hot forging process of a front wheel forging (eventually–gear wheel) manufactured for the automotive industry. Four different variants were applied for the tools: 2 die inserts were coated with two different hybrid layers (GN + PVD type), i.e. AlCrTiN and AlCrTiSiN, one insert was only nitrided, and one was pad welded, to improve tool durability. The tool wear was analysed and represented by the material degradation on the working surface, based on the 3D scanning and the material growth of the periodically collected forgings. Additionally, the scanned tools were divided into two areas, in which it was found, based on the reliminary analysis, that various degradation mechanisms are predominant. Microstructural and hardness measurements of the analyzed tools were also performed. Based on the results, it was found that, in the central part of the die insert (area A), thermo-mechanical fatigue and wear occurred, while in the area of the bridge insert (area B), only abrasive wear could be observed. For these areas (A and B), the loss of material was determined separately. In area A for the inserts with hybrid layer GN+AlCrTiSiN and gas nitrided, an intensive increase of wear took place, which was not observed for the pad welded and GN+AlCrTiN layer insert, for which, together with the increase of the forging number, a proportional growth of the loss of material occurred. In area B the weakest results were obtained for the insert with GN+AlCrTiSiN layer, while wear of other die inserts grew similar and proportional. 相似文献
238.
Hydrostatic stresses of copper dual-damascene interconnects are calculated by a commercial finite element software in this
paper. The analytical work is performed to examine the effects of different low-k (k is permittivity) dielectrics, barrier layer and aspect ratio of via on hydrostatic stress distribution in the copper interconnects.
The results of calculation indicate that the hydrostatic stresses are highly non-uniform throughout the copper interconnects
and the highest tensile hydrostatic stress exists on the top interface of lower level interconnect near via. Both the high
coefficient of thermal expansion and the low elastic modulus of the low-k dielectrics and barrier layer can decrease the highest hydrostatic stress on the top interface, which can improve the reliability
of the copper interconnects. 相似文献
239.
240.
Shili Wu Zhenmin Tang Zhaosong Guo 《International Journal of Automotive Technology》2017,18(3):365-375
Mixture faults detection is meaningful for gasoline engines because proper mixture is the basic prerequisite for healthy running of a combustion engine. Among existing methods for faults detection, the data-driven trend analysis technique is widely used due to the simplicity and efficiency in time-domain. The CUSUM (Cumulative Sum Of Errors) algorithm is good at real-time trend extraction, but it’s easy to be costly on the fuel trim signal during the engine in normal working conditions, which will increase battery energy consumption because engine failure is rarely occurs. Hence, the conventional treatment methods of artifacts in the CUSUM algorithm are modified by means of decay function and detection time analysis. The thresholds are tuned according to the characteristics of artifacts instead of residual variability, which leads to better results of trend extraction and less computation. Then, the revised CUSUM algorithm is used for monitoring the mixture abnormal behaviors, and the mixture faults can be detected in real time through analyzing the variation features of fuel trim signal. The lightweight faults detector using the advanced CUSUM algorithm (FD-A-CUSUM) is evaluated on the experimental data collected from a Ford engine. The validation results show that while engine works under normal conditions, the computation of FD-A-CUSUM has decreased by 72.79 % in comparison with the detection method using the original CUSUM algorithm (FD-O-CUSUM), and the false alarm ratio of FD-A-CUSUM is 3.37 %. Futhermore, the detection results of FD-A-CUSUM for two leakage faults have achieved 91.18 % test accuracy. 相似文献