Much Workload Control research has focussed on the order release stage but failed to address practical considerations that impact practical application. Order release mechanisms have been developed through simulations that neglect job size variation effects while empirical evidence suggests groups of small/large jobs are often found in practice. When job sizes vary, it is difficult to release all jobs effectively—small jobs favour a short period between releases and a tight workload bounding while large jobs require a longer period between releases and a slacker workload bounding. This paper represents a return from a case study setting to theory building. Through simulation, the impact of job sizes on overall performance is explored using ...
Protecting throughput from variance is the key to achieving lean. Workload control (WLC) accomplishe...
Workload Control is a production planning and control concept developed for high-variety job shops. ...
Protecting throughput from variance is the key to achieving lean. Workload control (WLC) accomplishe...
A variety of order release mechanisms have been developed for workload control. In this paper the ef...
Every production planning concept that incorporates controlled order release will initially withhold...
Past research on workload control (WLC) has been essentially focused on discrete order release. This...
The workload control literature highlights the importance of balancing the shop floor workload, but ...
An important scheduling function of manufacturing systems is controlled order release. While there e...
This paper addresses the problem of lot splitting in the context of workload control (WLC). Past stu...
Every production planning concept that incorporates controlled order release will initially withhold...
Every production planning concept that incorporates controlled order release will initially withhold...
Most studies on the performance of workload control (WLC) order release methods assume products have...
Workload Control is a production planning and control concept developed for high-variety job shops. ...
In the workload control literature, the Load-Oriented Order Release (LOOR) approach has been neglect...
Protecting throughput from variance is the key to achieving lean. Workload control (WLC) accomplishe...
Workload Control is a production planning and control concept developed for high-variety job shops. ...
Protecting throughput from variance is the key to achieving lean. Workload control (WLC) accomplishe...
A variety of order release mechanisms have been developed for workload control. In this paper the ef...
Every production planning concept that incorporates controlled order release will initially withhold...
Past research on workload control (WLC) has been essentially focused on discrete order release. This...
The workload control literature highlights the importance of balancing the shop floor workload, but ...
An important scheduling function of manufacturing systems is controlled order release. While there e...
This paper addresses the problem of lot splitting in the context of workload control (WLC). Past stu...
Every production planning concept that incorporates controlled order release will initially withhold...
Every production planning concept that incorporates controlled order release will initially withhold...
Most studies on the performance of workload control (WLC) order release methods assume products have...
Workload Control is a production planning and control concept developed for high-variety job shops. ...
In the workload control literature, the Load-Oriented Order Release (LOOR) approach has been neglect...
Protecting throughput from variance is the key to achieving lean. Workload control (WLC) accomplishe...
Workload Control is a production planning and control concept developed for high-variety job shops. ...
Protecting throughput from variance is the key to achieving lean. Workload control (WLC) accomplishe...