| 1979 Society of Automotive Engineers, Inc., "Improvement of Citybus Fuel Economy Using a Hydraulic Hybrid Propulsion System--A Theoretical and Experimental Study", by P. Buchwald et al., pp. 1-15. |
| 1985 Society of Automotive Engineers, Inc., "Predicting the Retardation Performance of Vehicles Equipped with Hydro-Pneumatic Energy Storage System", by Anthony S. Davies et al., pp. 2.516-2.523. |
| 1985 Society of Automotive Engineers, Inc., "Studies of an Accumulator Energy-Storage Automobile Design with a Single Pump/Motor Unit", by S. Tollefson et al., pp. 1-9. |
| 1985 Society of Automotive Engineers, Inc., "Fuel Economy and Operating Characteristics of a Hydropneumatic Energy Storage Automobile", Peirong Wu et al., pp. 1-10. |
| Automotive Engineering, vol. 92, No. 10, Oct. 1984, International Viewpoints, "Regenerative Braking for Buses Gives Fuel Saving", by David Scott and Jack Yamaguchi, pp. 95-99. |
| Commercial Motor, Jan. 24, 1987, Brakes Developments, "Braking New Ground", pp. 35-36. |
| "Cumulo Bus for London", Dec. 1985, p. 537. |
| Automotive Engineering, vol. 87, No. 10, Oct. 1979, International Viewpoints, "Regenerative Braking Cuts Bus Fuel Needs", by David Scott, pp. 102-107. |
| University of Queensland, May 1984, Department of Mechanical Engineering, (Drawing of FIG. 4) "Optimisation of a Regenerative Energy Storage System for a 10 Tonne Bus", by M. K. Vint. |
| University of Queensland, Aug. 1986, Department of Mechanical Engineering, "Overview of the Design and Installation of a Regenerative Braking, Storage and Propulsion System for a Leyland Panther Bus", by M. K. Vint, pp. (i)-5. |