Claims
- 1. A system for transferring control of a steam turbine between a single and a sequential mode of operation, said system comprising
- a plurality of steam inlet valves;
- means to generate first control signals for operating predetermined steam inlet valves to control the flow of steam in a sequential mode;
- means to generate second control signals for operating predetermined steam inlet valves to control the flowing steam in the single mode;
- means when operated to initiate a transfer from the sequential mode to the single mode of operation and vice versa;
- switching means operable to a first condition and a second condition, said switching means connecting the first control signals to the predetermined steam inlet valves when in the first condition and connecting the second control signals to the predetermined steam inlet valves when in the second condition;
- means responsive to the operation of the transfer initiating means when the switching means is in the first condition to operate the switching means from the first to the second condition repetitively at a successively increasing frequency to a predetermined maximum frequency during a first portion of each transfer from the sequential to single mode;
- means responsive to the operation of the transfer initiating means when the switcing means is in the second condition to operate the switching means from the second to the first condition repetitively at a successively increasing frequency to a predetermined maximum frequency during a first portion of each transfer from the single to the sequential mode;
- means to operate the switching means repetitively at a sucessively decreasing frequency during the final portion of each transfer to the opposite condition of that to which the switching means is operated at an increasing frequency during the first portion of each transfer; and
- filtering means to average the first and second repetitive control signals throughout the transfer, whereby the control signal applied to the predetermined valves gradually changes from either the first to the second or the second to the first control signal during the transfer.
- 2. A system according to claim 1 wherein the predetermined steam inlet valves for the single and sequential valve modes are the same valves.
- 3. A system according to claim 2 wherein the predetermined steam inlet valves for the single and sequential valve modes are different valves.
- 4. A system for transferring control of a steam turbine between a full arc and a partial arc mode of operation, said system comprising:
- a plurality of valve means for controlling the flow of steam to the turbine;
- a first control signal for controlling the valve means to admit steam in a partial arc mode;
- a second control signal for controlling the valve means to admit steam in a full arc mode;
- a switch means operable to a first condition to connect the first signal to operate the valve means and operable to a second condition to connect the second signal to operate the valve means, said switch including operating means responsive to a driver signal of a first level to change the switch means from the first to the second condition and a driver signal of a second level to change the switch from the second to the first condition;
- gating means having at least one output connected to the switch operating means to conduct a first level driver signal in response to a first predetermined input condition, and to conduct a second level driver signal in response to a second predetermined input condition;
- means when operated to initiate a transfer of control from the full arc to the partial arc mode of operation and vice versa;
- a pulse generating means having an output to produce at said output a series of electrical pulses, said generating means including means responsive to the operation of the transfer initiation means to modulate the frequency of the pulses in an increasing direction toward a predetermined maximum frequency and to modulate the frequency of the pulses in a decreasing direction from the predetermined maximum frequency, said output being connected to the input of the gating means;
- means governed by a first input condition of the gating means prior to the operation of the transfer initiating means to cause each pulse from the pulse generating means to operate the gating means to conduct a first level driver signal and to conduct a second level driver signal in the absence of each pulse during the increasing frequency modulation of the pulses and to cause each pulse from the pulse generating means to conduct a second level driver signal and to conduct a first level driver signal in the absence of each pulse during the decreasing modulation of the pulses;
- whereby the frequency of the second control signal is modulated in an increasing direction during the first portion of the transfer period and the frequency of the first control signal is modulated in a decreasing direction during the final portion of the transfer period at times when a transfer is initiated from the first control signal to the second control signal.
- 5. A system according to claim 4 wherein the pulse generating means includes a digital counter operative to produce at its output a series of signals at predetermined spaced time intervals corresponding to a succession of counts, and a rate multiplier connected to the output of the digital counter to produce at its output said series of electrical pulses having a different frequency in accordance with each output count of the counter.
- 6. A system according to claim 5 further including means connected to the digital counter to vary the rate of the output signals from the counter; whereby the time of each successive different frequency of the rate multiplier is variable to vary the period of transfer between the sequential and single mode of operation.
- 7. A system according to claim 5 wherein the counter produces an output signal at a predetermined maximum count, and the pulse generating means responds to said output signal to reverse the direction of the counter to change from an increasing to a decreasing frequency.
- 8. A system according to claim 4 wherein each switch means is a single pole, single throw junction field effect transistor switch with a two-channel high speed driver.
- 9. A system for transferring the control of a steam turbine between a single and sequential mode of operation and vice versa; comprising
- a plurality of steam inlet valves each operative to a position corresponding to the amplitude of an electrical signal,
- means to generate an electrical signal having an amplitude corresponding to a total steam flow demand for the plurality of valves,
- means governed by the total demand signal to generate for each valve a valve position signal to control the flow of steam through predetermined ones of the valves in a sequential mode,
- means governed by the total demand signal to generate for each valve a valve position signal to control the flow of steam through predetermined ones of the valves in the single mode,
- an up/down digital counter operative when activated in one direction to generate at its output a series of spaced signals, each signal corresponding to a binary coded number that successively increases in value to a predetermined maximum, and operative when activated in the other direction to generate at its output a series of spaced signals, each signal corresponding to a binary coded number that successively decreases in value to a predetermined minimum,
- a rate multiplier connected to the output of the digital counter to generate a series of pulses that correspond in frequency to each binary coded signal, whereby the frequency incrementally increases as the counter counts in one direction and incrementally decreases as the counter counts in the other direction,
- a first gating means operatively connected to the counter to activate the counter first in the one direction to a maximum count and then in the other direction to a minimum count,
- a second gating means connected to the output of the rate multiplier and the first gating means operative to produce one or the other of two distinct signals in response to each output pulse during the operation of the counter in one direction and to produce one or the other of two distinct signals in response to each output pulse during the operation of the counter in the other direction,
- switching means responsive to the one distinct signal to conduct one of the sequential or single control signals to operate the predetermined valves and responsive to the other distinct signal to conduct the other of the sequential or single control signals to operate the predetermined valves,
- means to initiate a transfer between the single and sequential mode,
- means responsive to the transfer initiating means at times when the switching means is responding to the one distinct signal to operate the second gating means to produce the other distinct signal in response to each output pulse from the rate multiplier while the counter is counting in one direction,
- means responsive to a count corresponding to the maximum count of the counter to operate the second gating means to produce the one distinct signal in response to each output pulse from the rate multiplier while the counter is counting in the other direction, and
- means reponsive to a minimum count of the counter to deactivate the counter to cease the generation of the series of pulses by the rate multiplier,
- whereby the second gating means is producing the other distinct signal upon the cessation of the pulse generation.
- 10. A system according to claim 9 further comprising a filtering means connected to the output of the switching means to average the frequency modulated control signals during the transfer.
- 11. A system according to claim 10 wherein each complete transfer between single and sequential mode corresponds to a predetermined number of successive counter outputs, said counter is operative to produce the successive counts at equally spaced time intervals, and said system further comprises, means to vary the time between each successive count, whereby the time for a complete transfer is varied between a predetermined minimum and a predetermined maximum period.
- 12. A system according to claim 10 further comprising, means when activated to suspend the operation of the counter, whereby the valves are controlled by an averaged signal having an amplitude in accordance with the frequency of the distinct signals at the time of suspension of the operation.
- 13. A system according to claim 10 further comprising means when activated to reverse the direction of the activated counter, whereby the frequency of operation of the switching means and the signal produced by the second gating means is reversed to reverse the transfer to the opposite control signal from that toward which such transfer is occurring prior to such activation.
- 14. A system according to claim 10 wherein the means responsive to the transfer initiating means includes a plurality of digital flip-flop circuit devices.
- 15. A system according to claim 10 further comprising, a single power source, and circuit means responsive to the activation of the single power source to govern the second gating means to conduct the same distinct signal.
- 16. A system according to claim 10 wherein the predetermined maximum frequency rate of the rate multiplier at the maximum count of the counter is in the neighborhood of five hundred kilohertz.
- 17. A system according to claim 10 wherein the number of individual counts of the counter generated during a complete transfer is in the neighborhood of two thousand.
- 18. A system for transferring the control of a steam turbine between a single and sequential mode of operation and vice versa; comprising
- a first plurality of steam inlet valves each operative to a position corresponding to the amplitude of an electrical signal for controlling the steam in a single mode;
- a second plurality of steam inlet valves each operative to a position corresponding to the amplitude of an electrical signal for controlling the steam in a sequential mode;
- means to generate first control signals for controlling variably the first plurality of valves in the single mode;
- means to generate second control signals for variably controlling the second plurality of valves in the partial arc mode;
- means to generate first bias signals for opening the first plurality of valves at times when the steam flow is controlled by the second plurality of valves and to generate second bias signals for opening the second plurality of valves at times when the steam flow is controlled by the first plurality of valves;
- means when operated to initiate a transfer from the single mode to the sequential mode and vice versa;
- switching means operable to a first condition to connect the first control signals to the first plurality of valves and the first biasing signal to the second plurality valves, said switching means operable to a second condition to connect the second control signals to the second plurality of valves and the first biasing signal to the first plurality of valves;
- means responsive to the operation of the transfer initiating means when the switching means is in the first condition to operate the switching means from the first to the second condition repetitively at a successively increasing frequency to a predetermined maximum frequency during a first portion of each transfer from the sequential to single mode;
- means responsive to the operation of the transfer initiating means when the switching means is in the second condition to operate the switching means from the second to the first condition repetitively at a successively increasing frequency to a predetermined maximum frequency during a first portion of each transfer from the single to the sequential mode;
- means to operate the switching means repetitively at a successively decreasing frequency during the final portion of each transfer to the opposite condition of that to which the switching means is operated at an increasing frequency during the first portion of each transfer; and
- filtering means to average the first and second repetitive control signals throughout the transfer, whereby the control signal applied to the first or second plurality valves gradually changes from either the first to the second or the second to the first control signal during the transfer.
CROSS-REFERENCE TO RELATED APPLICATION
W.E. Case No. 45,810 entitled "Frequency Modulation Transfer System and Method" filed by William E. Zitelli concurrently herewith and assigned to a common assignee.
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Number |
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Eggenberger et al. |
Jul 1963 |
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Eggenberger et al. |
Jul 1963 |
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3723018 |
Yoshihiro et al. |
Mar 1973 |
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