Watanabe, Kenzo; Mochizuki, Kouji, “ A high resolution, linear resistance to frquency converter,” IEEE Trans.Instrum.Meas., vol. 45(3), 1996, pp. 761-764.
N. M. Mohan and V. J. Kumar, “Direct digital converter for a single, active element resistive sensor,” in Proc. IEEE I2MTC, Singapore, 2009, pp. 828–831.
N. M. Mohan, B. George and V. J. Kumar, “A novel dual slope resistance to digital converter,” IEEE Trans. Instrum. Meas., vol. 59, no. 5, pp. 1013-1018, May 2010.
F. Reverter, J. Jordana, M. Gasulla and R. Pallàs-Areny, “Accuracy and resolution of direct resistive sensor-to-microcontroller interfaces,” Sensors and Actuators A: Physical, 121(1), 2005, pp. 78-87.
D. Vyroubal, “ A circuit for lead resistance compensation and complex balancing of the strain gauge bridge,” IEEE Trans. Instrum. Meas., vol. 42, no. 1, pp. 44-48, 1993.
W. Petchmaneelumka, P. Julsereewong, A. Julsereewong, J. Tongpakpanang, “Simple interface circuit with lead-wire-resistance compensation for single resistive sensors,” in Proc. IEEE ICCAS, Korea, Oct. 2012, pp. 1076-1079.
T. K. Maiti, “ A novel lead-wire-resistance compensation technique using two – wire Resistance Temperature Detector,” IEEE Sensors
Journal, vol.6, no. 6, pp. 1454-1458, Dec 2006.
T. K. Maiti, A. Kar, “ Novel remote measurement technique using resistive sensor as grounded load in an opamp based V - to- I converter,” IEEE Sensors Journal, vol. 9, no. 3, pp. 244-245, March 2009.