This paper presents an innovative open loop control technique for direct single stage hydraulic proportional valves whose response rate is significantly higher than that obtained by standard open loop control techniques, even comparable to more costly commercial closed loop systems. Different from standard open loop techniques, which provide the coil with a constant current proportional to the target position, the control strategy proposed in this paper employs the peak and hold (P&H) technique, widely used in Diesel engine modern supply systems, to boost the duty cycle value of the pulse width modulation (PWM) signal for a short time, namely during the spool displacement, while maintaining a lower duty cycle for holding the spool in the required opening position. The developed "boosted PWM" technique only requires a low cost microcontroller, such as a peripheral interface controller (PIC) equipped with a metal oxide semiconductor (MOS) power driver. The PWM parameters are calibrated as a function of the spool displacement so as to maximize the response rate without introducing overshoots: the collected data are stored in the PIC. Different valve opening procedures with step response have been compared to demonstrate the merits of the proposed boosted PWM technique. No overshoots have been registered. Moreover, the proposed method is characterized by a significantly higher response rate with respect to a standard open loop control, which approximately has the same cost. Similar experimental tests show that the proposed boosted PWM technique has a response rate even higher than that provided by the more costly commercial closed loop system mounted on the valve, and it produces no overshoots.

Boosted PWM open loop control of hydraulic proportional valves / Amirante, Riccardo; Catalano, La; Innone, A.. - In: ENERGY CONVERSION AND MANAGEMENT. - ISSN 0196-8904. - 49:8(2008), pp. 2225-2236. (Intervento presentato al convegno 68° Congresso Nazionale ATI tenutosi a Palermo nel 23-26 settembre 2008) [10.1016/j.enconman.2008.02.001].

Boosted PWM open loop control of hydraulic proportional valves

AMIRANTE, Riccardo;
2008-01-01

Abstract

This paper presents an innovative open loop control technique for direct single stage hydraulic proportional valves whose response rate is significantly higher than that obtained by standard open loop control techniques, even comparable to more costly commercial closed loop systems. Different from standard open loop techniques, which provide the coil with a constant current proportional to the target position, the control strategy proposed in this paper employs the peak and hold (P&H) technique, widely used in Diesel engine modern supply systems, to boost the duty cycle value of the pulse width modulation (PWM) signal for a short time, namely during the spool displacement, while maintaining a lower duty cycle for holding the spool in the required opening position. The developed "boosted PWM" technique only requires a low cost microcontroller, such as a peripheral interface controller (PIC) equipped with a metal oxide semiconductor (MOS) power driver. The PWM parameters are calibrated as a function of the spool displacement so as to maximize the response rate without introducing overshoots: the collected data are stored in the PIC. Different valve opening procedures with step response have been compared to demonstrate the merits of the proposed boosted PWM technique. No overshoots have been registered. Moreover, the proposed method is characterized by a significantly higher response rate with respect to a standard open loop control, which approximately has the same cost. Similar experimental tests show that the proposed boosted PWM technique has a response rate even higher than that provided by the more costly commercial closed loop system mounted on the valve, and it produces no overshoots.
2008
Boosted PWM open loop control of hydraulic proportional valves / Amirante, Riccardo; Catalano, La; Innone, A.. - In: ENERGY CONVERSION AND MANAGEMENT. - ISSN 0196-8904. - 49:8(2008), pp. 2225-2236. (Intervento presentato al convegno 68° Congresso Nazionale ATI tenutosi a Palermo nel 23-26 settembre 2008) [10.1016/j.enconman.2008.02.001].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11589/5407
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