Travelled to:
1 × Brazil
2 × France
2 × Germany
2 × Italy
2 × USA
Collaborated with:
B.Ravindran S.F.Fahmy H.Cho H.Wu S.Feizabadi
Talks about:
time (11) real (9) schedul (6) distribut (5) system (4) softwar (3) accrual (3) thread (3) memori (3) embed (3)
Person: E. Douglas Jensen
DBLP: Jensen:E=_Douglas
Contributed to:
Wrote 10 papers:
- SAC-2012-FahmyRJ #implementation #interface #kernel #linux #programming #realtime #scheduling #thread
- Implementing distributable real-time threads in the Linux kernel: programming interface and scheduling support (SFF, BR, EDJ), pp. 1771–1778.
- DATE-2009-FahmyRJ #bound #distributed #memory management #multi #on the #realtime #transaction
- On bounding response times under software transactional memory in distributed multiprocessor real-time systems (SFF, BR, EDJ), pp. 688–693.
- SAC-2009-FahmyRJ #analysis #distributed #realtime #transaction
- Response time analysis of software transactional memory-based distributed real-time systems (SFF, BR, EDJ), pp. 334–338.
- AdaEurope-2008-FahmyRJ #performance #realtime #scheduling #thread
- Fast Scheduling of Distributable Real-Time Threads with Assured End-to-End Timeliness (SFF, BR, EDJ), pp. 211–225.
- SAC-2008-FahmyRJ #realtime #scheduling #thread
- Scheduling distributable real-time threads in the presence of crash failures and message losses (SFF, BR, EDJ), pp. 294–301.
- DATE-2006-ChoRJ #embedded #realtime
- Lock-free synchronization for dynamic embedded real-time systems (HC, BR, EDJ), pp. 438–443.
- SAC-2006-ChoRJ #embedded #on the #realtime #scheduling
- On utility accrual processor scheduling with wait-free synchronization for embedded real-time software (HC, BR, EDJ), pp. 918–922.
- SAC-2006-WuRJ #bound #embedded #energy #on the #realtime
- On bounding energy consumption in dynamic, embedded real-time systems (HW, BR, EDJ), pp. 933–934.
- DATE-2005-WuRJ #energy #realtime #scheduling
- Energy-Efficient, Utility Accrual Real-Time Scheduling Under the Unimodal Arbitrary Arrival Model (HW, BR, EDJ), pp. 474–479.
- SAC-2005-FeizabadiRJ #algorithm #named #scheduling
- MSA: a memory-aware utility accrual scheduling algorithm (SF, BR, EDJ), pp. 857–862.