A simulation-based methodology is proposed to map the mean of steady-state cycle time (CT) as a function of throughput (TH) and product mix (PM) for manufacturing systems. Nonlinear regression models motivated by queueing analysis are assumed for the underlying response surface. To ensure efficiency and control estimation error, simulation experiments are built up sequentially using a multi-stage procedure to collect data for fitting the models. The resulting response surface is able to provide a CT estimate for any TH and any PM, and thus allows the decision maker to instantly investigate options and trade offs regarding their production planning
The analysis of manufacturing systems with finite capacity and with general service time distributio...
[EN] The aim of this paper is to propose a simulation model based on system dynamics and the element...
Sustainable manufacturing includes efficient use of capital intensive manufacturing machines. For a ...
Cycle time-throughput (CT-TH) percentile curves quantify the relationship between percentiles of cyc...
Cycle time-throughput (CT-TH) percentile curves quantify the relationship between percentiles of cyc...
Cycle Time-Throughput-Product mix (CT-TH-PM) surfaces give the mean cycle time as a function of thro...
Abstract: Cycle time-throughput-product mix (CT-TH-PM) surfaces of bottleneck workstations are helpf...
Predicting the mean cycle time as a function of throughput and product mix is helpful in making the ...
Abstract—In semiconductor manufacturing, cycle time-throughput (CT-TH) curves are often used to make...
In semiconductor manufacturing, cycle time-throughput(CT-TH) curves are often used for planning purp...
The use of cycle time throughput curves in the semiconductor manufacturing industry is imperative t...
Changing customer needs and short product life cycles, confront production systems with growing chal...
On-time delivery performance of a semiconductor manufacturing system depends on the cycle time distr...
The shorter cycle time (CT) and higher throughput rate (TH) are primary goals of the industry, inclu...
Predicting the cycle time distribution as a function of throughput is helpful in making a trade-off ...
The analysis of manufacturing systems with finite capacity and with general service time distributio...
[EN] The aim of this paper is to propose a simulation model based on system dynamics and the element...
Sustainable manufacturing includes efficient use of capital intensive manufacturing machines. For a ...
Cycle time-throughput (CT-TH) percentile curves quantify the relationship between percentiles of cyc...
Cycle time-throughput (CT-TH) percentile curves quantify the relationship between percentiles of cyc...
Cycle Time-Throughput-Product mix (CT-TH-PM) surfaces give the mean cycle time as a function of thro...
Abstract: Cycle time-throughput-product mix (CT-TH-PM) surfaces of bottleneck workstations are helpf...
Predicting the mean cycle time as a function of throughput and product mix is helpful in making the ...
Abstract—In semiconductor manufacturing, cycle time-throughput (CT-TH) curves are often used to make...
In semiconductor manufacturing, cycle time-throughput(CT-TH) curves are often used for planning purp...
The use of cycle time throughput curves in the semiconductor manufacturing industry is imperative t...
Changing customer needs and short product life cycles, confront production systems with growing chal...
On-time delivery performance of a semiconductor manufacturing system depends on the cycle time distr...
The shorter cycle time (CT) and higher throughput rate (TH) are primary goals of the industry, inclu...
Predicting the cycle time distribution as a function of throughput is helpful in making a trade-off ...
The analysis of manufacturing systems with finite capacity and with general service time distributio...
[EN] The aim of this paper is to propose a simulation model based on system dynamics and the element...
Sustainable manufacturing includes efficient use of capital intensive manufacturing machines. For a ...